Endress+Hauser Proline Promag W 400 Operating Instructions Manual
Below you will find brief information for Proline Promag W 400. This Electromagnetic Flowmeter instruction provides a basic overview of the device. It contains details on installation, electrical connection, operation, commissioning, diagnostics, maintenance. This manual help you transporting, mounting, connecting, operating, commissioning, troubleshooting, maintaining and disposing of the product.
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BA01214D/06/EN/03.15
71280372
Valid as of version
01.00.zz (Device firmware)
Products Solutions
Operating Instructions
Proline Promag W 400
EtherNet/IP
Electromagnetic flowmeter
Services
AUTHORIZED DISTRIBUTOR:
InstrumentsAndControl.com
Houston, Texas USA [email protected]
832-615-3588
Proline Promag W 400 EtherNet/IP
• Make sure the document is stored in a safe place such that it is always available when working on or with the device.
• To avoid danger to individuals or the facility, read the "Basic safety instructions" section carefully, as well as all other safety instructions in the document that are specific to working procedures.
• The manufacturer reserves the right to modify technical data without prior notice. Your
Endress+Hauser Sales Center will supply you with current information and updates to these Instructions.
2 Endress+Hauser
Proline Promag W 400 EtherNet/IP Table of contents
Table of contents
1 Document information . . . . . . . . . . . . . . 6
Document function . . . . . . . . . . . . . . . . . . . . .
Symbols used . . . . . . . . . . . . . . . . . . . . . . . . . .
Safety symbols . . . . . . . . . . . . . . . . . .
Electrical symbols . . . . . . . . . . . . . . . .
Tool symbols . . . . . . . . . . . . . . . . . . . .
Symbols for certain types of information . . . . . . . . . . . . . . . . . . . .
Symbols in graphics . . . . . . . . . . . . . . .
Documentation . . . . . . . . . . . . . . . . . . . . . . . .
Standard documentation . . . . . . . . . . .
Supplementary device-dependent documentation . . . . . . . . . . . . . . . . . .
Registered trademarks . . . . . . . . . . . . . . . . . . .
2 Basic safety instructions . . . . . . . . . . . . 9
Requirements for the personnel . . . . . . . . . . . .
Designated use . . . . . . . . . . . . . . . . . . . . . . . .
Workplace safety . . . . . . . . . . . . . . . . . . . . . .
Operational safety . . . . . . . . . . . . . . . . . . . . .
Product safety . . . . . . . . . . . . . . . . . . . . . . . .
IT security . . . . . . . . . . . . . . . . . . . . . . . . . . .
3 Product description . . . . . . . . . . . . . . . . 12
Product design . . . . . . . . . . . . . . . . . . . . . . . .
4 Incoming acceptance and product identification . . . . . . . . . . . . . . . . . . . . . 13
Incoming acceptance . . . . . . . . . . . . . . . . . . .
Product identification . . . . . . . . . . . . . . . . . . .
Transmitter nameplate . . . . . . . . . . .
Sensor nameplate . . . . . . . . . . . . . . .
Symbols on measuring device . . . . . .
5 Storage and transport . . . . . . . . . . . . . 17
Storage conditions . . . . . . . . . . . . . . . . . . . . .
Transporting the product . . . . . . . . . . . . . . . .
Measuring devices without lifting lugs . . . . . . . . . . . . . . . . . . . . . . . . .
Measuring devices with lifting lugs . .
Transporting with a fork lift . . . . . . . .
Packaging disposal . . . . . . . . . . . . . . . . . . . . .
6 Installation . . . . . . . . . . . . . . . . . . . . . . . 19
Installation conditions . . . . . . . . . . . . . . . . . .
Mounting position . . . . . . . . . . . . . . .
Requirements from environment and process . . . . . . . . . . . . . . . . . . . . . . .
Special mounting instructions . . . . . .
Mounting the measuring device . . . . . . . . . . .
Required tools . . . . . . . . . . . . . . . . . .
Preparing the measuring device . . . . .
Mounting the sensor . . . . . . . . . . . . .
Mounting the transmitter of the remote version . . . . . . . . . . . . . . . . .
Turning the transmitter housing . . . .
Turning the display module . . . . . . . .
Post-installation check . . . . . . . . . . . . . . . . . .
7 Electrical connection . . . . . . . . . . . . . . 36
Connection conditions . . . . . . . . . . . . . . . . . .
Required tools . . . . . . . . . . . . . . . . . .
Requirements for connecting cable . . .
Terminal assignment . . . . . . . . . . . . .
Pin assignment, device plug . . . . . . . .
Shielding and grounding . . . . . . . . . .
Requirements for the supply unit . . . .
Preparing the measuring device . . . . .
Preparing the connecting cable for the remote version . . . . . . . . . . . . . .
Connecting the measuring device . . . . . . . . . .
Connecting the remote version . . . . .
Connecting the transmitter . . . . . . . .
Ensuring potential equalization . . . . .
Special connection instructions . . . . . . . . . . . .
Hardware settings . . . . . . . . . . . . . . . . . . . . .
Setting the device address . . . . . . . . .
Ensuring the degree of protection . . . . . . . . . .
Degree of protection IP66/67, Type
4X enclosure . . . . . . . . . . . . . . . . . . .
Degree of protection IP68, Type 6P enclosure, with "Cust-potted" option . .
Post-connection check . . . . . . . . . . . . . . . . . .
8 Operation options . . . . . . . . . . . . . . . . . 49
Overview of operation options . . . . . . . . . . . .
Structure of the operating menu . . . .
Operating philosophy . . . . . . . . . . . .
Operational display . . . . . . . . . . . . . .
Navigation view . . . . . . . . . . . . . . . .
Editing view . . . . . . . . . . . . . . . . . . .
Operating elements . . . . . . . . . . . . . .
Opening the context menu . . . . . . . . .
Navigating and selecting from list . . .
Calling the parameter directly . . . . . .
Calling up help text . . . . . . . . . . . . . .
Changing the parameters . . . . . . . . .
8.3.10 User roles and related access authorization . . . . . . . . . . . . . . . . . .
8.3.11 Disabling write protection via access code . . . . . . . . . . . . . . . . . . . . . . . . .
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Table of contents Proline Promag W 400 EtherNet/IP
8.3.12 Enabling and disabling the keypad lock . . . . . . . . . . . . . . . . . . . . . . . . .
Function range . . . . . . . . . . . . . . . . .
Prerequisites . . . . . . . . . . . . . . . . . . .
Establishing a connection . . . . . . . . .
Logging on . . . . . . . . . . . . . . . . . . . .
User interface . . . . . . . . . . . . . . . . . .
Disabling the Web server . . . . . . . . . .
Logging out . . . . . . . . . . . . . . . . . . . .
Access to the operating menu via the operating tool . . . . . . . . . . . . . . . . . . . . . . . .
Connecting the operating tool . . . . . .
FieldCare . . . . . . . . . . . . . . . . . . . . .
9 System integration . . . . . . . . . . . . . . . . 70
Overview of device description files . . . . . . . . .
Current version data for the device . . .
Operating tools . . . . . . . . . . . . . . . . .
Overview of system files . . . . . . . . . . . . . . . . .
Cyclic data transmission . . . . . . . . . . . . . . . .
Block model . . . . . . . . . . . . . . . . . . .
Input and output groups . . . . . . . . . .
10 Commissioning . . . . . . . . . . . . . . . . . . . . 75
10.1 Function check . . . . . . . . . . . . . . . . . . . . . . .
10.2 Switching on the measuring device . . . . . . . . .
10.3 Establishing a connection via FieldCare . . . . . .
10.4 Configuring the device address via software . .
10.4.1 Ethernet network and Web server . . .
10.5 Setting the operating language . . . . . . . . . . . .
10.6 Configuring the measuring device . . . . . . . . . .
10.6.1 Defining the tag name . . . . . . . . . . . .
10.6.2 Setting the system units . . . . . . . . . .
10.6.3 Configuring the communication interface . . . . . . . . . . . . . . . . . . . . . .
10.6.4 Configuring the local display . . . . . . .
10.6.5 Configuring the low flow cut off . . . . .
10.6.6 Configuring empty pipe detection . . .
10.7 Advanced settings . . . . . . . . . . . . . . . . . . . . .
10.7.1 Carrying out a sensor adjustment . . . .
10.7.2 Configuring the totalizer . . . . . . . . . .
10.7.3 Carrying out additional display configurations . . . . . . . . . . . . . . . . . .
10.7.4 Performing electrode cleaning . . . . . .
10.7.5 Administration configuration . . . . . .
10.8 Configuration management . . . . . . . . . . . . . .
10.8.1 Function range of "Configuration management" parameter . . . . . . . . . .
10.9 Simulation . . . . . . . . . . . . . . . . . . . . . . . . . . .
10.10.1 Write protection via access code . . . . .
10.10.2 Write protection via write protection switch . . . . . . . . . . . . . . . . . . . . . . . .
4
11 Operation . . . . . . . . . . . . . . . . . . . . . . . 100
11.2 Reading the device locking status . . . . . . . . .
11.3 Adjusting the operating language . . . . . . . . .
11.4 Configuring the display . . . . . . . . . . . . . . . .
11.5 Reading measured values . . . . . . . . . . . . . . .
11.5.1 Process variables . . . . . . . . . . . . . . .
11.5.2 Totalizer . . . . . . . . . . . . . . . . . . . . .
11.7 Performing a totalizer reset . . . . . . . . . . . . .
11.8 Showing data logging . . . . . . . . . . . . . . . . .
12 Diagnostics and troubleshooting . . 105
12.1 General troubleshooting . . . . . . . . . . . . . . . .
12.2.1 Transmitter . . . . . . . . . . . . . . . . . . .
12.3 Diagnostic information on local display . . . . .
12.3.1 Diagnostic message . . . . . . . . . . . . .
12.3.2 Calling up remedial measures . . . . .
12.4 Diagnostic information in the Web browser .
12.4.1 Diagnostic options . . . . . . . . . . . . . .
12.4.2 Calling up remedy information . . . .
12.5 Diagnostic information in FieldCare . . . . . . .
12.5.1 Diagnostic options . . . . . . . . . . . . . .
12.5.2 Calling up remedy information . . . .
12.6.1 Reading out diagnostic information 113
12.7 Adapting the diagnostic information . . . . . .
12.7.1 Adapting the diagnostic behavior . . .
12.8 Overview of diagnostic information . . . . . . .
12.9 Pending diagnostic events . . . . . . . . . . . . . .
12.10 Diagnostic list . . . . . . . . . . . . . . . . . . . . . . .
12.11 Event logbook . . . . . . . . . . . . . . . . . . . . . . .
12.11.1 Event history . . . . . . . . . . . . . . . . . .
12.11.2 Filtering the event logbook . . . . . . .
12.11.3 Overview of information events . . . .
12.12 Resetting the measuring device . . . . . . . . . .
12.12.1 Function scope of "Device reset" parameter . . . . . . . . . . . . . . . . . . . .
12.13 Device information . . . . . . . . . . . . . . . . . . .
12.14 Firmware history . . . . . . . . . . . . . . . . . . . . .
13 Maintenance . . . . . . . . . . . . . . . . . . . . 123
13.1 Maintenance tasks . . . . . . . . . . . . . . . . . . . .
13.1.1 Exterior cleaning . . . . . . . . . . . . . . .
13.1.2 Interior cleaning . . . . . . . . . . . . . . .
13.1.3 Replacing seals . . . . . . . . . . . . . . . .
13.2 Measuring and test equipment . . . . . . . . . . .
13.3 Endress+Hauser services . . . . . . . . . . . . . . .
14 Repair . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
14.1 General notes . . . . . . . . . . . . . . . . . . . . . . .
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Proline Promag W 400 EtherNet/IP
14.2 Spare parts . . . . . . . . . . . . . . . . . . . . . . . . .
14.3 Endress+Hauser services . . . . . . . . . . . . . . .
14.4 Return . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
14.5 Disposal . . . . . . . . . . . . . . . . . . . . . . . . . . .
14.5.1 Removing the measuring device . . . .
14.5.2 Disposing of the measuring device . .
15 Accessories . . . . . . . . . . . . . . . . . . . . . . 126
15.1 Device-specific accessories . . . . . . . . . . . . . .
15.1.1 For the transmitter . . . . . . . . . . . . .
15.1.2 For the sensor . . . . . . . . . . . . . . . . .
15.2 Service-specific accessories . . . . . . . . . . . . . .
15.3 System components . . . . . . . . . . . . . . . . . . .
16 Technical data . . . . . . . . . . . . . . . . . . . 128
16.1 Application . . . . . . . . . . . . . . . . . . . . . . . . .
16.2 Function and system design . . . . . . . . . . . . .
16.3 Input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
16.4 Output . . . . . . . . . . . . . . . . . . . . . . . . . . . .
16.5 Power supply . . . . . . . . . . . . . . . . . . . . . . . .
16.6 Performance characteristics . . . . . . . . . . . . .
16.7 Installation . . . . . . . . . . . . . . . . . . . . . . . . .
16.8 Environment . . . . . . . . . . . . . . . . . . . . . . . .
16.9 Process . . . . . . . . . . . . . . . . . . . . . . . . . . . .
16.10 Mechanical construction . . . . . . . . . . . . . . .
16.11 Operability . . . . . . . . . . . . . . . . . . . . . . . . .
16.12 Certificates and approvals . . . . . . . . . . . . . .
16.13 Application packages . . . . . . . . . . . . . . . . . .
16.14 Accessories . . . . . . . . . . . . . . . . . . . . . . . . .
16.15 Documentation . . . . . . . . . . . . . . . . . . . . . .
17 Appendix . . . . . . . . . . . . . . . . . . . . . . . . 162
17.1 Overview of the operating menu . . . . . . . . . .
17.1.1 "Operation" menu . . . . . . . . . . . . . . .
17.1.2 "Setup" menu . . . . . . . . . . . . . . . . . .
17.1.3 "Diagnostics" menu . . . . . . . . . . . . . .
17.1.4 "Expert" menu . . . . . . . . . . . . . . . . .
Index . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 181
Table of contents
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Document information Proline Promag W 400 EtherNet/IP
1 Document information
1.1 Document function
These Operating Instructions contain all the information that is required in various phases of the life cycle of the device: from product identification, incoming acceptance and storage, to mounting, connection, operation and commissioning through to troubleshooting, maintenance and disposal.
1.2 Symbols used
1.2.1 Safety symbols
Symbol
DANGER
WARNING
CAUTION
NOTICE
Meaning
DANGER!
This symbol alerts you to a dangerous situation. Failure to avoid this situation will result in serious or fatal injury.
WARNING!
This symbol alerts you to a dangerous situation. Failure to avoid this situation can result in serious or fatal injury.
CAUTION!
This symbol alerts you to a dangerous situation. Failure to avoid this situation can result in minor or medium injury.
NOTE!
This symbol contains information on procedures and other facts which do not result in personal injury.
1.2.2 Electrical symbols
Symbol Meaning
Direct current
Direct current and alternating current
Protective ground connection
A terminal which must be connected to ground prior to establishing any other connections.
Symbol Meaning
Alternating current
Ground connection
A grounded terminal which, as far as the operator is concerned, is grounded via a grounding system.
Equipotential connection
A connection that has to be connected to the plant grounding system: This may be a potential equalization line or a star grounding system depending on national or company codes of practice.
1.2.3 Tool symbols
Symbol Meaning
Torx screwdriver
Phillips head screwdriver
Open-ended wrench
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Proline Promag W 400 EtherNet/IP
1.2.4 Symbols for certain types of information
Symbol Meaning
Permitted
Procedures, processes or actions that are permitted.
Preferred
Procedures, processes or actions that are preferred.
Forbidden
Procedures, processes or actions that are forbidden.
Tip
Indicates additional information.
Reference to documentation
Reference to page
Reference to graphic
, ,
…
Series of steps
Result of a sequence of actions
Help in the event of a problem
Visual inspection
Document information
1.2.5 Symbols in graphics
Symbol
1, 2, 3,...
A, B, C, ...
-
Meaning
Item numbers
Views
Hazardous area
Flow direction
Symbol Meaning
, , …
Series of steps
A-A, B-B, C-C, ...
Sections
.
Safe area (non-hazardous area)
1.3 Documentation
For an overview of the scope of the associated Technical Documentation, refer to the following:
• The CD-ROM provided for the device (depending on the device version, the CD-ROM might not be part of the delivery!)
• The W@M Device Viewer : Enter the serial number from the nameplate
( www.endress.com/deviceviewer )
• The Endress+Hauser Operations App : Enter the serial number from the nameplate or scan the 2-D matrix code (QR code) on the nameplate.
For a detailed list of the individual documents along with the documentation code
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Document information Proline Promag W 400 EtherNet/IP
1.3.1 Standard documentation
Document type
Technical Information
Brief Operating Instructions
Purpose and content of the document
Planning aid for your device
The document contains all the technical data on the device and provides an overview of the accessories and other products that can be ordered for the device.
Guide that takes you quickly to the 1st measured value
The Brief Operating Instructions contain all the essential information from incoming acceptance to initial commissioning.
1.3.2 Supplementary device-dependent documentation
Additional documents are supplied depending on the device version ordered: Always comply strictly with the instructions in the supplementary documentation. The supplementary documentation is an integral part of the device documentation.
1.4 Registered trademarks
EtherNet/IP TM
Trademark of ODVA, Inc.
Microsoft ®
Registered trademark of the Microsoft Corporation, Redmond, Washington, USA
Applicator ® , FieldCare ® , Field Xpert TM , HistoROM ® , Heartbeat Technology TM
Registered or registration-pending trademarks of the Endress+Hauser Group
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Proline Promag W 400 EtherNet/IP Basic safety instructions
2 Basic safety instructions
2.1 Requirements for the personnel
The personnel for installation, commissioning, diagnostics and maintenance must fulfill the following requirements:
‣ Trained, qualified specialists must have a relevant qualification for this specific function and task
‣ Are authorized by the plant owner/operator
‣ Are familiar with federal/national regulations
‣ Before beginning work, the specialist staff must have read and understood the instructions in the Operating Instructions and supplementary documentation as well as in the certificates (depending on the application)
‣ Following instructions and basic conditions
The operating personnel must fulfill the following requirements:
‣ Being instructed and authorized according to the requirements of the task by the facility's owner-operator
‣ Following the instructions in these Operating Instructions
2.2 Designated use
Application and media
The measuring device described in these Instructions is intended only for flow measurement of liquids with a minimum conductivity of 5 μS/cm.
Depending on the version ordered, the measuring device can also measure potentially explosive, flammable, poisonous and oxidizing media.
Measuring devices for use in hazardous areas, in hygienic applications or in applications where there is an increased risk due to process pressure, are labeled accordingly on the nameplate.
To ensure that the measuring device remains in proper condition for the operation time:
‣ Only use the measuring device in full compliance with the data on the nameplate and the general conditions listed in the Operating Instructions and supplementary documentation.
‣ Based on the nameplate, check whether the ordered device is permitted for the intended use in the hazardous area (e.g. explosion protection, pressure vessel safety).
‣ Use the measuring device only for media against which the process-wetted materials are adequately resistant.
‣ If the measuring device is not operated at atmospheric temperature, compliance with the relevant basic conditions specified in the associated device documentation is
absolutely essential: "Documentation" section → 7.
This measuring device is optionally tested in accordance with OIML R49 and has an
EC type-examination certificate according to Measuring Instruments Directive
2004/22/EC (MID) for service subject to legal metrological control ("custody transfer") for cold water (Annex MI ‐ 001).
The permitted fluid temperature in these applications is 0 to 50 °C.
Incorrect use
Non-designated use can compromise safety. The manufacturer is not liable for damage caused by improper or non-designated use.
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Basic safety instructions Proline Promag W 400 EtherNet/IP
L WARNING
Danger of breakage of the sensor due to corrosive or abrasive fluids!
‣ Verify the compatibility of the process fluid with the sensor material.
‣ Ensure the resistance of all fluid-wetted materials in the process.
‣ Observe the specified pressure and temperature range.
Verification for borderline cases:
‣ For special fluids and fluids for cleaning, Endress+Hauser is glad to provide assistance in verifying the corrosion resistance of fluid-wetted materials, but does not accept any warranty or liability as minute changes in the temperature, concentration or level of contamination in the process can alter the corrosion resistance properties.
Residual risks
The external surface temperature of the housing can increase by max. 10 K due to the power consumption of the electronic components. Hot process fluids passing through the measuring device will further increase the surface temperature of the housing. The surface of the sensor, in particular, can reach temperatures which are close to the fluid temperature.
Possible burn hazard due to fluid temperatures!
‣ For elevated fluid temperature, ensure protection against contact to prevent burns.
2.3 Workplace safety
For work on and with the device:
‣ Wear the required personal protective equipment according to federal/national regulations.
For welding work on the piping:
‣ Do not ground the welding unit via the measuring device.
If working on and with the device with wet hands:
‣ It is recommended to wear gloves on account of the higher risk of electric shock.
2.4 Operational safety
Risk of injury.
‣ Operate the device in proper technical condition and fail-safe condition only.
‣ The operator is responsible for interference-free operation of the device.
Conversions to the device
Unauthorized modifications to the device are not permitted and can lead to unforeseeable dangers.
‣ If, despite this, modifications are required, consult with Endress+Hauser.
Repair
To ensure continued operational safety and reliability,
‣ Carry out repairs on the device only if they are expressly permitted.
‣ Observe federal/national regulations pertaining to repair of an electrical device.
‣ Use original spare parts and accessories from Endress+Hauser only.
Environmental requirements
If a plastic transmitter housing is permanently exposed to certain steam and air mixtures, this can damage the housing.
‣ If you are unsure, please contact your Endress+Hauser Sales Center for clarification.
‣ If used in an approval-related area, observe the information on the nameplate.
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Proline Promag W 400 EtherNet/IP Basic safety instructions
2.5 Product safety
This measuring device is designed in accordance with good engineering practice to meet state-of-the-art safety requirements, has been tested, and left the factory in a condition in which it is safe to operate.
It meets general safety standards and legal requirements. It also complies with the EC directives listed in the device-specific EC Declaration of Conformity. Endress+Hauser confirms this by affixing the CE mark to the device.
2.6 IT security
We only provide a warranty if the device is installed and used as described in the
Operating Instructions. The device is equipped with security mechanisms to protect it against any inadvertent changes to the device settings.
IT security measures in line with operators' security standards and designed to provide additional protection for the device and device data transfer must be implemented by the operators themselves.
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Product description Proline Promag W 400 EtherNet/IP
3 Product description
The device consists of a transmitter and a sensor.
Two device versions are available:
• Compact version - transmitter and sensor form a mechanical unit.
• Remote version - transmitter and sensor are mounted in separate locations.
3.1 Product design
1
2
3
4
5
6
7
8
1 Important components of the compact version
1 Display module
2 Smart sensor electronics module
3 HistoROM DAT (plug-in memory)
4 Main electronics module
5 Terminals (screw terminals, some available as plug-in terminals) or fieldbus connectors
6 Transmitter housing, compact version
7 Cable glands
8 Sensor, compact version
A0017218
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Proline Promag W 400 EtherNet/IP Incoming acceptance and product identification
4 Incoming acceptance and product identification
4.1 Incoming acceptance
1
+
2
1
+
2
Are the order codes on the delivery note (1) and the product sticker (2) identical?
Are the goods undamaged?
Do the nameplate data match the ordering information on the delivery note?
Is the CD-ROM with the
Technical Documentation
(depends on device version) and documents present?
• If one of the conditions is not satisfied, contact your Endress+Hauser Sales Center.
• Depending on the device version, the CD-ROM might not be part of the delivery!
The Technical Documentation is available via the Internet or via the Endress+Hauser
Operations App
, see the "Product identification" section → 14.
4.2 Product identification
The following options are available for identification of the measuring device:
• Nameplate specifications
• Order code with breakdown of the device features on the delivery note
• Enter serial numbers from nameplates in W@M Device Viewer
( www.endress.com/deviceviewer ): All information about the measuring device is displayed.
• Enter the serial number from the nameplates into the Endress+Hauser Operations App or scan the 2-D matrix code (QR code) on the nameplate with the Endress+Hauser
Operations App : all the information for the measuring device is displayed.
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Incoming acceptance and product identification Proline Promag W 400 EtherNet/IP
For an overview of the scope of the associated Technical Documentation, refer to the following:
• The chapters "Additional standard documentation on the device" → 8 and
"Supplementary device-dependent documentation" → 8
• The W@M Device Viewer : Enter the serial number from the nameplate
( www.endress.com/deviceviewer )
• The Endress+Hauser Operations App : Enter the serial number from the nameplate or scan the 2-D matrix code (QR code) on the nameplate.
4.2.1 Transmitter nameplate
3 4 5 6 7
1
2
Order code:
Ser. no.:
Ext. ord. cd.:
8
9 i i
Patents
Date:
10
13 12
2 Example of a transmitter nameplate
1 Manufacturing location
2 Name of the transmitter
3 Order code
4 Serial number (Ser. no.)
5 Extended order code (Ext. ord. cd.)
6 Permitted ambient temperature (T a
)
7 Firmware version (FW) and device revision (Dev.Rev.) from the factory
8 Degree of protection
9 Permitted temperature range for cable
10 2-D matrix code
11 Manufacturing date: year-month
12 CE mark, C-Tick
13 Electrical connection data, e.g. available inputs and outputs, supply voltage
11
A0017346
14 Endress+Hauser
Proline Promag W 400 EtherNet/IP
4.2.2 Sensor nameplate
Incoming acceptance and product identification
1
6
Order Code:
Ser.No.:
Ext. ord. cd.:
Tm:
Material:
2
3
5
4
7
8
9
10
11 i
Patents i
13 12
Date:
15 14
A0017186
3 Example of sensor nameplate
1 Name of the sensor
2 Manufacturing location
3 Order code
4 Serial number (ser. no.)
5 Extended order code (ext. ord. cd.)
6 Nominal diameter of sensor
7 Test pressure of the sensor
8 Fluid temperature range
9 Material of lining and electrodes
10 Degree of protection: e.g. IP, NEMA
11 Permitted ambient temperature (T a
12 2-D matrix code
13 CE mark, C-Tick
14 Flow direction
15 Manufacturing date: year-month
)
Order code
The measuring device is reordered using the order code.
Extended order code
• The device type (product root) and basic specifications (mandatory features) are always listed.
• Of the optional specifications (optional features), only the safety and approvalrelated specifications are listed (e.g. LA). If other optional specifications are also ordered, these are indicated collectively using the # placeholder symbol (e.g. #LA#).
• If the ordered optional specifications do not include any safety and approval-related specifications, they are indicated by the + placeholder symbol (e.g. XXXXXX-ABCDE
+).
Endress+Hauser 15
Incoming acceptance and product identification Proline Promag W 400 EtherNet/IP
4.2.3 Symbols on measuring device
Symbol Meaning
WARNING!
This symbol alerts you to a dangerous situation. Failure to avoid this situation can result in serious or fatal injury.
Reference to documentation
Refers to the corresponding device documentation.
Protective ground connection
A terminal which must be connected to ground prior to establishing any other connections.
16 Endress+Hauser
Proline Promag W 400 EtherNet/IP Storage and transport
5 Storage and transport
5.1 Storage conditions
Observe the following notes for storage:
• Store in the original packaging to ensure protection from shock.
• Do not remove protective covers or protective caps installed on process connections.
They prevent mechanical damage to the sealing surfaces and contamination in the measuring tube.
• Protect from direct sunlight to avoid unacceptably high surface temperatures.
• Select a storage location where moisture cannot collect in the measuring device as fungus and bacteria infestation can damage the lining.
• Store in a dry and dust-free place.
• Do not store outdoors.
5.2 Transporting the product
Transport the measuring device to the measuring point in the original packaging.
Endress+Hauser
A0015604
Do not remove protective covers or caps installed on process connections. They prevent mechanical damage to the sealing surfaces and contamination in the measuring tube.
5.2.1 Measuring devices without lifting lugs
L WARNING
Center of gravity of the measuring device is higher than the suspension points of the webbing slings.
Risk of injury if the measuring device slips.
‣ Secure the measuring device against slipping or turning.
‣ Observe the weight specified on the packaging (stick-on label).
A0015606
17
Storage and transport Proline Promag W 400 EtherNet/IP
5.2.2 Measuring devices with lifting lugs
L CAUTION
Special transportation instructions for devices with lifting lugs
‣ Only use the lifting lugs fitted on the device or flanges to transport the device.
‣ The device must always be secured at two lifting lugs at least.
5.2.3 Transporting with a fork lift
If transporting in wood crates, the floor structure enables the crates to be lifted lengthwise or at both sides using a forklift.
L CAUTION
Risk of damaging the magnetic coil
‣ If transporting by forklift, do not lift the sensor by the metal casing.
‣ This would buckle the casing and damage the internal magnetic coils.
A0023726
5.3 Packaging disposal
All packaging materials are environmentally friendly and 100% recyclable:
• Measuring device secondary packaging: polymer stretch film that conforms to EC
Directive 2002/95/EC (RoHS).
• Packaging:
– Wood crate, treated in accordance with ISPM 15 standard, which is confirmed by the affixed IPPC logo.
or
– Carton in accordance with European Packaging Directive 94/62EC; recyclability is confirmed by the affixed RESY symbol.
• Seaworthy packaging (optional): Wood crate, treated in accordance with ISPM 15 standard, which is confirmed by the affixed IPPC logo.
• Carrying and mounting hardware:
– Disposable plastic pallet
– Plastic straps
– Plastic adhesive strips
• Dunnage: Paper cushion
18 Endress+Hauser
Proline Promag W 400 EtherNet/IP
6 Installation
6.1 Installation conditions
6.1.1 Mounting position
Mounting location
Installation
A0023343
Preferably install the sensor in an ascending pipe, and ensure a sufficient distance to the next pipe elbow: h ≥ 2 × DN
To prevent measuring errors arising from accumulation of gas bubbles in the measuring tube, avoid the following mounting locations in the pipe:
• Highest point of a pipeline.
• Directly upstream of a free pipe outlet in a down pipe.
Installation in down pipes
Install a siphon with a vent valve downstream of the sensor in down pipes whose length h
≥ 5 m (16.4 ft). This precaution is to avoid low pressure and the consequent risk of damage to the measuring tube. This measure also prevents the system losing prime.
For information on the liner's resistance to partial vacuum
1
2
Endress+Hauser
4 Installation in a down pipe
1 Vent valve
2 Pipe siphon h Length of down pipe
Installation in partially filled pipes
A partially filled pipe with a gradient necessitates a drain-type configuration.
A0017064
19
Installation
20
Proline Promag W 400 EtherNet/IP
³
2 × DN
³
5 × DN
A0017063
Orientation
The direction of the arrow on the sensor nameplate helps you to install the sensor according to the flow direction (direction of medium flow through the piping).
An optimum orientation position helps avoid gas and air accumulations and deposits in the measuring tube.
The measuring device also offers the empty pipe detection function to detect partially filled measuring pipes in the event of outgassing fluids or variable process pressures.
Vertical
A0015591
Optimum for self-emptying pipe systems and for use in conjunction with empty pipe detection.
Horizontal
1
2 2
3
A0016260
1 EPD electrode for empty pipe detection
2 Measuring electrodes for signal detection
3 Reference electrode for potential equalization
• The measuring electrode plane must be horizontal. This prevents brief insulation of the two measuring electrodes by entrained air bubbles.
• Empty pipe detection only works if the transmitter housing is pointing upwards as otherwise there is no guarantee that the empty pipe detection function will actually respond to a partially filled or empty measuring tube.
Inlet and outlet runs
If possible, install the sensor upstream from fittings such as valves, T-pieces or elbows.
Observe the following inlet and outlet runs to comply with accuracy specifications:
Endress+Hauser
Proline Promag W 400 EtherNet/IP Installation
≥ 5 × DN ≥ 2 × DN
A0016275
To keep within the in-service maximum permissible errors for custody transfer no additional requirements apply with regard to the graphic illustrated above.
Installation dimensions
For the dimensions and installation lengths of the device, see the "Technical
Information" document, "Mechanical construction" section
6.1.2 Requirements from environment and process
Ambient temperature range
Transmitter
Local display
–40 to +60 °C (–40 to +140 °F)
–20 to +60 °C (–4 to +140 °F), the readability of the display may be impaired at temperatures outside the temperature range.
Sensor
Liner Do not exceed or fall below the permitted temperature range of the liner .
If operating outdoors:
• Install the measuring device in a shady location.
• Avoid direct sunlight, particularly in warm climatic regions.
• Avoid direct exposure to weather conditions.
Temperature tables
Observe the interdependencies between the permitted ambient and fluid temperatures when operating the device in hazardous areas.
For detailed information on the temperature tables, see the separate document entitled "Safety Instructions" (XA) for the device.
System pressure
A0015594
Endress+Hauser 21
Installation Proline Promag W 400 EtherNet/IP
Never install the sensor on the pump suction side in order to avoid the risk of low pressure, and thus damage to the liner.
Furthermore, install pulse dampers if reciprocating, diaphragm or peristaltic pumps are used.
• For information on the liner's resistance to partial vacuum → 139
• For information on the shock resistance of the measuring system → 138
• For information on the vibration resistance of the measuring system → 138
Vibrations
In the event of very strong vibrations, the pipe and sensor must be supported and fixed.
It is also advisable to mount the sensor and transmitter separately.
• For information on the shock resistance of the measuring system → 138
• For information on the vibration resistance of the measuring system → 138
L
A0016266
5 Measures to avoid device vibrations (L > 10 m (33 ft))
Adapters
Suitable adapters to DIN EN 545 (double-flange reducers) can be used to install the sensor in larger-diameter pipes. The resultant increase in the rate of flow improves measuring accuracy with very slow-moving fluids. The nomogram shown here can be used to calculate the pressure loss caused by reducers and expanders.
The nomogram only applies to liquids with a viscosity similar to that of water.
1. Calculate the ratio of the diameters d/D.
2. From the nomogram read off the pressure loss as a function of flow velocity
(downstream from the reduction) and the d/D ratio.
22 Endress+Hauser
Proline Promag W 400 EtherNet/IP Installation max. 8° d D
[mbar] 100
10
1
8 m/s
7 m/s
6 m/s
5 m/s
4 m/s
3 m/s
2 m/s
1 m/s d / D 0.5
0.6
0.7
0.8
0.9
6.1.3 Special mounting instructions
Display protection
‣ To ensure that the optional display protection can be easily opened, maintain the following minimum head clearance: 350 mm (13.8 in)
Permanent immersion in water
A0016359
6 Engineering unit in m(ft)
Replacement of cable gland on connection housing → 135
A0017296
Endress+Hauser 23
Installation
Buried applications
Proline Promag W 400 EtherNet/IP
24
A0017298
6.2 Mounting the measuring device
6.2.1 Required tools
For transmitter
• Torque wrench
• For wall mounting:
Open-ended wrench for hexagonal screw max. M5
• For pipe mounting:
– Open-ended wrench AF 8
– Phillips head screwdriver PH 2
• For turning the transmitter housing (compact version):
– Phillips head screwdriver PH 2
– Torx screwdriver TX 20
– Open-ended wrench AF 7
For sensor
For flanges and other process connections:
• Screws, nuts, seals etc. are not included in the scope of supply and must be provided by the customer.
• Appropriate mounting tools
6.2.2 Preparing the measuring device
1. Remove all remaining transport packaging.
2. Remove any protective covers or protective caps present from the sensor.
3. Remove stick-on label on the electronics compartment cover.
6.2.3 Mounting the sensor
L WARNING
Danger due to improper process sealing!
‣ Ensure that the inside diameters of the gaskets are greater than or equal to that of the process connections and piping.
‣ Ensure that the gaskets are clean and undamaged.
‣ Install the gaskets correctly.
1. Ensure that the direction of the arrow on the sensor matches the flow direction of the medium.
Endress+Hauser
Proline Promag W 400 EtherNet/IP Installation
2. To ensure compliance with device specifications, install the measuring device between the pipe flanges in a way that it is centered in the measurement section.
3. If using ground disks, comply with the Installation Instructions provided.
4. Observe required screw tightening torques → 25.
5. Install the measuring device or turn the transmitter housing so that the cable entries do not point upwards.
Endress+Hauser
A0013964
Mounting the seals
L CAUTION
An electrically conductive layer could form on the inside of the measuring tube!
Risk of measuring signal short circuit.
‣ Do not use electrically conductive sealing compounds such as graphite.
Comply with the following instructions when installing seals:
• Make sure that the seals do not protrude into the piping cross-section.
• For DIN flanges: only use seals according to DIN EN 1514-1.
• For "hard rubber" lining: additional seals are always required.
• For "polyurethane" lining: generally additional seals are not required.
Mounting the ground cable/ground disks
Comply with the information on potential equalization and detailed mounting instructions
for the use of ground cables/ground disks → 44.
Screw tightening torques
Please note the following:
• The screw tightening torques listed below apply only to lubricated threads and to pipes not subjected to tensile stress.
• Tighten the screws uniformly and in diagonally opposite sequence.
• Overtightening the screws will deform the sealing faces or damage the seals.
Screw tightening torques for EN 1092-1 (DIN 2501), PN 6/10/16/25/40
Nominal diameter
[mm]
25
32
40
50
65
65
80
80
100
100
Pressure rating Threaded fasteners
[bar] [mm]
PN 40
PN 40
PN 40
4 × M12
4 × M16
4 × M16
PN 40
PN 16
PN 40
PN 16
PN 40
PN 16
PN 40
4 × M16
8 × M16
8 × M16
8 × M16
8 × M16
8 × M16
8 × M20
Max. screw tightening torque [Nm]
Hard rubber Polyurethane
–
–
–
15
24
31
40
43
59
48
32
32
40
34
36
50
40
27
27
34
25
Installation
26
Proline Promag W 400 EtherNet/IP
400
400
450
450
450
450
500
350
350
350
350
400
400
Nominal diameter
[mm]
125
125
150
150
200
200
200
250
250
250
300
300
300
700
700
700
700
800
800
500
500
500
600
600
600
600
800
800
900
PN 6
PN 10
PN 16
PN 25
PN 6
PN 10
PN 10
PN 16
PN 25
PN 6
PN 10
PN 16
PN 25
PN 16
PN 25
PN 6
PN 16
PN 25
PN 6
PN 10
PN 16
PN 25
PN 6
PN 6
PN 10
PN 16
PN 25
PN 6
PN 10
Pressure rating Threaded fasteners
[bar] [mm]
PN 16
PN 40
PN 16
8 × M16
8 × M24
8 × M20
PN 40
PN 10
PN 16
8 × M24
8 × M20
12 × M20
PN 25
PN 10
PN 16
PN 25
PN 10
PN 16
PN 25
12 × M24
12 × M20
12 × M24
12 × M27
12 × M20
12 × M24
16 × M27
12 × M20
16 × M20
16 × M24
16 × M30
16 × M20
16 × M24
16 × M27
16 × M33
16 × M20
20 × M24
20 × M27
20 × M33
20 × M20
20 × M24
20 × M30
20 × M33
20 × M24
20 × M27
20 × M33
20 × M36
24 × M24
24 × M27
24 × M33
24 × M39
24 × M27
24 × M30
24 × M36
24 × M45
24 × M27
148
246
278
449
206
331
155
275
317
139
206
415
431
369
664
230
193
289
112
153
198
256
119
111
112
152
227
90
151
104
82
98
150
94
134
153
Max. screw tightening torque [Nm]
Hard rubber Polyurethane
56
83
74
48
71
63
104
106
70
88
91
61
134
81
118
138
92
71
85
215
326
126
133
196
253
123
120
118
165
252
98
167
139
246
318
507
182
316
171
300
360
147
219
443
516
385
721
637
Endress+Hauser
Proline Promag W 400 EtherNet/IP Installation
1)
Nominal diameter
[mm]
900
900
900
1 000
1 000
1 000
1 000
1 200
1 200
1 200
1 400
1 400
1 400
1 600
1 600
1 600
1 800
1 800
1 800
2 000
2 000
2 000
Designed acc. to EN 1092-1 (not to DIN 2501)
PN 6
PN 10
PN 16
PN 6
PN 10
PN 16
PN 6
PN 10
PN 16
Pressure rating Threaded fasteners
[bar] [mm]
PN 10
PN 16
PN 25
28 × M30
28 × M36
28 × M45
PN 6
PN 10
PN 16
28 × M27
28 × M33
28 × M39
PN 25
PN 6
PN 10
PN 16
PN 6
PN 10
PN 16
28 × M52
32 × M30
32 × M36
32 × M45
36 × M33
36 × M39
36 × M45
40 × M33
40 × M45
40 × M52
44 × M36
44 × M45
44 × M52
48 × M39
48 × M45
48 × M56
440
946
1 007
547
961
1 108
629
1 047
1 324
970
319
564
701
430
654
729
Max. screw tightening torque [Nm]
Hard rubber Polyurethane
316
353
690
307
398
716
218
402
502
208
405
518
971
299
568
753
398
618
762
417
893
1 100
521
895
1 003
605
1 092
1 261
Screw tightening torques for ASME B16.5, Class 150/300
Nominal diameter Pressure rating Threaded fasteners
100
100
150
50
80
80
150
200
[mm]
25
25
40
40
50
4
4
6
6
8
2
3
3
[in]
1
1
1 ½
1 ½
2
[psi]
Class 150
Class 300
Class 150
Class 300
Class 150
Class 300
Class 150
Class 300
Class 150
Class 300
Class 150
Class 300
Class 150
8 × 5/8
4 × 5/8
8 × ¾
8 × 5/8
8 × ¾
8 × ¾
12 × ¾
8 × ¾
[in]
4 × ½
4 × 5/8
4 × ½
4 × ¾
4 × 5/8
Max. screw tightening torque [Nm]
([lbf · ft])
Hard rubber
–
Polyurethane
7 (5)
–
–
–
35 (26)
8 (6)
10 (7)
15 (11)
22 (16)
18 (13)
60 (44)
38 (28)
42 (31)
58 (43)
79 (58)
70 (52)
107 (79)
11 (8)
43 (32)
26 (19)
31 (23)
40 (30)
59 (44)
51 (38)
80 (59)
Endress+Hauser 27
Installation
28
Proline Promag W 400 EtherNet/IP
Nominal diameter
[mm]
250
300
350
400
450
500
600
16
18
20
[in]
10
12
14
24
Pressure rating Threaded fasteners
[psi]
Class 150
Class 150
Class 150
Class 150
Class 150
Class 150
Class 150
[in]
12 × 7/8
12 × 7/8
12 × 1
16 × 1
16 × 1 1/8
20 × 1 1/8
20 × 1 ¼
Max. screw tightening torque [Nm]
([lbf · ft])
Hard rubber
101 (74)
Polyurethane
75 (55)
133 (98)
135 (100)
103 (76)
158 (117)
128 (94)
204 (150)
183 (135)
268 (198)
150 (111)
234 (173)
217 (160)
307 (226)
Screw tightening torques for AWWA C207, Class D
900
1 000
1 050
1 200
1 350
1 500
1 650
1 800
2 000
Nominal diameter
[mm] [in]
700
750
800
28
30
32
48
54
60
66
36
40
42
72
78
Threaded fasteners
[in]
28 × 1 ¼
28 × 1 ¼
28 × 1 ½
32 × 1 ½
36 × 1 ½
36 × 1 ½
44 × 1 ½
44 × 1 ¾
52 × 1 ¾
52 × 1 ¾
60 × 1 ¾
64 × 2
Max. screw tightening torque [Nm] ([lbf · ft])
Hard rubber Polyurethane
247 (182)
287 (212)
394 (291)
292 (215)
302 (223)
422 (311)
419 (309)
420 (310)
528 (389)
552 (407)
730 (538)
758 (559)
946 (698)
975 (719)
853 (629)
430 (317)
477 (352)
518 (382)
531 (392)
–
–
–
–
–
Screw tightening torques for AS 2129, Table E
Nominal diameter
[mm]
50
80
100
150
200
250
300
350
400
450
500
600
700
Threaded fasteners
[mm]
4 × M16
4 × M16
8 × M16
8 × M20
8 × M20
12 × M20
12 × M24
12 × M24
12 × M24
16 × M24
16 × M24
16 × M30
20 × M30
98
123
203
226
226
271
439
355
Max. screw tightening torque [Nm]
Hard rubber Polyurethane
32
49
–
–
38
64
96
–
–
–
–
–
–
–
–
–
–
–
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Endress+Hauser
Installation
Nominal diameter
[mm]
750
800
900
1 000
1 200
Nominal diameter
[mm]
50
80
100
150
200
250
300
350
375
400
450
500
600
700
750
800
900
1 000
1 200
Threaded fasteners
[mm]
20 × M30
20 × M30
24 × M30
24 × M30
32 × M30
Screw tightening torques for AS 4087, PN 16
Threaded fasteners
[mm]
4 × M16
4 × M16
4 × M16
8 × M20
8 × M20
8 × M20
12 × M24
12 × M24
12 × M24
12 × M24
12 × M24
16 × M24
16 × M27
20 × M27
20 × M30
20 × M33
24 × M33
24 × M33
32 × M33
Max. screw tightening torque [Nm]
Hard rubber Polyurethane
559
631
627
–
–
–
634
727
–
–
393
330
529
631
627
595
703
147
103
203
137
226
301
271
Max. screw tightening torque [Nm]
Hard rubber Polyurethane
32
49
–
–
76
52
77
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
Screw tightening torques for JIS B2220, 10/20K
Nominal diameter
[mm]
25
25
32
32
40
40
50
50
65
Pressure rating Threaded fasteners
[bar] [mm]
10K
20K
10K
4 × M16
4 × M16
4 × M16
20K
10K
20K
10K
20K
10K
4 × M16
4 × M16
4 × M16
4 × M16
8 × M16
4 × M16
Max. screw tightening torque [Nm]
Hard rubber Polyurethane
–
–
–
19
19
22
–
40
–
–
20
55
22
24
24
33
17
45
29
Installation Proline Promag W 400 EtherNet/IP
Nominal diameter
[mm]
65
80
80
100
100
125
125
150
150
200
200
250
250
300
300
20K
10K
20K
10K
20K
10K
20K
10K
20K
Pressure rating Threaded fasteners
[bar] [mm]
20K
10K
20K
8 × M16
8 × M16
8 × M20
10K
20K
10K
8 × M16
8 × M20
8 × M20
8 × M22
8 × M20
12 × M22
12 × M20
12 × M22
12 × M22
12 × M24
16 × M22
16 × M24
61
91
100
159
91
75
81
74
138
Max. screw tightening torque [Nm]
Hard rubber Polyurethane
28
29
42
23
23
35
35
56
60
29
48
51
52
80
87
144
79
63
72
63
124
6.2.4 Mounting the transmitter of the remote version
L CAUTION
Ambient temperature too high!
Danger of electronics overheating and housing deformation.
‣ Do not exceed the permitted maximum ambient temperature .
‣ If operating outdoors: Avoid direct sunlight and exposure to weathering, particularly in warm climatic regions.
L CAUTION
Excessive force can damage the housing!
‣ Avoid excessive mechanical stress.
The transmitter of the remote version can be mounted in the following ways:
• Wall mounting
• Pipe mounting
30 Endress+Hauser
Proline Promag W 400 EtherNet/IP
Wall mounting
17 (0.67)
14 (0.55)
5.8 (0.23)
= =
Installation
5.8 (0.23)
149 (5.85)
7 Engineering unit mm (in)
1. Drill the holes.
2. Insert wall plugs into the drilled holes.
3. Screw in the securing screws slightly at first.
4. Fit the transmitter housing over the securing screws and mount in place.
5. Tighten the securing screws.
Post mounting
L WARNING
Excessive tightening torque applied to the fixing screws on plastic housing!
Risk of damaging the plastic transmitter.
‣ Tighten the fixing screws as per the tightening torque: 2 Nm (1.5 lbf ft)
A0020523
Endress+Hauser 31
Installation
32
ø
ø 20…70
( 0.79…2.75)
Proline Promag W 400 EtherNet/IP
3 x TX 25
~
102 (
~ 4.0)
4 x SW 8
A0020705
8 Engineering unit mm (in)
6.2.5 Turning the transmitter housing
To provide easier access to the connection compartment or display module, the transmitter housing can be turned.
1.
4 x TX 20 3.
4.
2.
TO
TO
A0021602
5.
2 x 3 mm
TO TO
6.
A0021603
Endress+Hauser
Proline Promag W 400 EtherNet/IP
7.
4 x TX 20
TO
TO
8.
Installation
A0021604
9.
4 x 4 mm
11.
10.
Endress+Hauser
A0021605
1. Loosen the fixing screws of the housing cover (when reassembling, pay attention to
the tightening torque → 34).
2. Open the housing cover.
3. Unlock the display module.
4. Remove the display module.
5. Loosen the fixing screws of the smart sensor electronics module (when reassembling,
pay attention to the tightening torque → 34).
6. Remove the smart sensor electronics module (when reassembling, pay attention to
the coding of the plug → 33).
7. Loosen the fixing screws of the main electronics module (when reassembling, pay
attention to the tightening torque → 34).
8. Remove the main electronics module.
9. Loosen the fixing screws of the transmitter housing (when reassembling, pay
attention to the tightening torque → 34).
10. Lift the transmitter housing.
11. Turn the housing to the desired position in increments of 90°.
Reassembling the transmitter housing
L WARNING
Excessive tightening torque applied to the fixing screws!
Damage to the transmitter.
‣ When reassembling, tighten the fixing screws as per the tightening torque:
33
Installation Proline Promag W 400 EtherNet/IP
Step Fixing screw
1
5
7
10
Housing cover
Smart sensor electronics module
Main electronics module
Transmitter housing
Tightening torques for housing made of:
Aluminum Plastic
2.5 Nm (1.8 lbf ft) 1 Nm (0.7 lbf ft)
0.6 Nm (0.4 lbf ft)
1.5 Nm (1.1 lbf ft)
5.5 Nm (4.1 lbf ft)
NOTICE
Plug of the smart sensor electronics module connected incorrectly!
No measuring signal is output.
‣ Plug in the plug of the smart sensor electronics module as per the coding.
34
TO
PUSH
REMOVE
‣ Reverse the procedure to reassemble the measuring device.
6.2.6 Turning the display module
The display module can be turned to optimize display readability and operability.
1.
4 x TX 20 3.
4.
2.
TO
TO
PUSH
REMOVE
A0021585
A0021617
1. Loosen the fixing screws of the housing cover (when reassembling, pay attention to
the tightening torque → 35).
2. Open the housing cover.
3. Unlock the display module.
4. Pull out the display module and turn it to the desired position in increments of 90°.
Endress+Hauser
Proline Promag W 400 EtherNet/IP Installation
Reassembling the transmitter housing
L WARNING
Excessive tightening torque applied to the fixing screws!
Damage to the transmitter.
‣ When reassembling, tighten the fixing screws as per the tightening torque:
Step Fixing screw
1 Housing cover
Tightening torque for housing made of:
Aluminum Plastic
2.5 Nm (1.8 lbf ft) 1 Nm (0.7 lbf ft)
‣ Reverse the procedure to reassemble the measuring device.
6.3 Post-installation check
Is the device undamaged (visual inspection)?
Does the measuring device conform to the measuring point specifications?
For example:
• Process temperature
• Process pressure (refer to the section on "Pressure-temperature ratings" in the "Technical
Information" document)
• Ambient temperature
• Measuring range
Has the correct orientation for the sensor been selected ?
• According to sensor type
• According to medium temperature
• According to medium properties (outgassing, with entrained solids)
Does the arrow on the sensor nameplate match the direction of flow of the fluid through the piping ?
Are the measuring point identification and labeling correct (visual inspection)?
Is the device adequately protected from precipitation and direct sunlight?
Have the fixing screws been tightened with the correct tightening torque?
Endress+Hauser 35
Electrical connection Proline Promag W 400 EtherNet/IP
7 Electrical connection
The measuring device does not have an internal circuit breaker. For this reason, assign the measuring device a switch or power-circuit breaker so that the power supply line can be easily disconnected from the mains.
7.1 Connection conditions
7.1.1 Required tools
• Torque wrench
• For cable entries: Use corresponding tools
• For housing cover: Torx screwdriver or flat-blade screwdriver
• Wire stripper
• When using stranded cables: crimping tool for ferrule
7.1.2 Requirements for connecting cable
The connecting cables provided by the customer must fulfill the following requirements.
Electrical safety
In accordance with applicable federal/national regulations.
Permitted temperature range
• –40 °C (–40 °F) to +80 °C (+176 °F)
• Minimum requirement: cable temperature range ≥ ambient temperature +20 K
Power supply cable
Standard installation cable is sufficient.
Signal cable
EtherNet/IP
The standard ANSI/TIA/EIA-568-B.2 Annex specifies CAT 5 as the minimum category for a cable used for EtherNet/IP. CAT 5e and CAT 6 are recommended.
For more information on planning and installing EtherNet/IP networks, please refer to the "Media Planning and Installation Manual. EtherNet/IP" of ODVA Organization.
Connecting cable for remote version
Electrode cable
Standard cable
Cable for empty pipe detection (EPD)
3 ×0.38 mm 2 (20 AWG) with common, braided copper shield ( ~ 7 mm (0.28 in) and individual shielded cores
4 ×0.38 mm 2 (20 AWG) with common, braided copper shield ( ~ 7 mm (0.28 in) and individual shielded cores
Conductor resistance ≤50 Ω/km (0.015 Ω/ft)
Capacitance: core/shield ≤420 pF/m (128 pF/ft)
Operating temperature –20 to +80 °C (–68 to +176 °F)
36 Endress+Hauser
Proline Promag W 400 EtherNet/IP Electrical connection
Coil current cable
Standard cable
Conductor resistance
Capacitance: core/core, shield grounded
Operating temperature
Test voltage for cable insulation
2 ×0.75 mm 2 (18 AWG) with common, braided copper shield ( ~ 7 mm (0.28")) and individually shielded cores
≤37 Ω/km (0.011 Ω/ft)
≤120 pF/m (37 pF/ft)
–20 to +80 °C (–68 to +176 °F)
≤ AC 1433 V r.m.s. 50/60 Hz or ≥ DC 2026 V
3
4
1
2
5
6
7 a b
A0003194
9 Cable cross-section a Electrode cable b Coil current cable
1 Core
2 Core insulation
3 Core shield
4 Core jacket
5 Core reinforcement
6 Cable shield
7 Outer jacket
Reinforced connecting cables
Reinforced connecting cables with an additional, reinforcing metal braid should be used for:
• When laying the cable directly in the ground
• Where there is a risk of damage from rodents
• If using the device below IP68 degree of protection
Operation in zones of severe electrical interference
The measuring system meets the general safety requirements → 159 and EMC
Grounding is by means of the ground terminal provided for the purpose inside the connection housing. The stripped and twisted lengths of cable shield to the ground terminal must be as short as possible.
Cable diameter
• Cable glands supplied:
– For standard cable: M20 × 1.5 with cable 6 to 12 mm (0.24 to 0.47 in)
– For reinforced cable: M20 × 1.5 with cable 9.5 to 16 mm (0.37 to 0.63 in)
• (Plug-in) spring terminals for wire cross-sections 0.5 to 2.5 mm 2 (20 to 14 AWG)
Endress+Hauser 37
Electrical connection Proline Promag W 400 EtherNet/IP
7.1.3 Terminal assignment
Transmitter
EtherNet/IP connection version
The sensor can be ordered with terminals or a device plug.
Connection methods available
Outputs
Terminals
Power supply
Terminals
Device plug Terminals
Possible options for order code
"Electrical connection"
• Option A : coupling M20x1
• Option B : thread M20x1
• Option C : thread G ½"
• Option D : thread NPT ½"
• Option L : plug M12x1 + thread NPT ½"
• Option N : plug M12x1 + coupling M20
• Option P : plug M12x1 + thread G ½"
• Option U : plug M12x1 + thread M20
1 2
1 2
1 Supply voltage (wide range power unit)
2 EtherNet/IP
Supply voltage
Order code for "Power supply"
Option L
(wide range power unit)
1 (L+/L)
Terminal numbers
AC100 to 240 V
AC/DC24 V
2 (L-/N)
EtherNet/IP signal transmission
Order code for "Output"
Option N
Connection via
EtherNet/IP connector
A0020428
38 Endress+Hauser
Proline Promag W 400 EtherNet/IP
Remote version
A
Electrical connection
1
6 5 7 8 4 37 36
2
42 41
1
2 n.c.
n.c.
5 7 4 37 n.c.
42 41
B
A0020534
10 Remote version terminal assignment
A Transmitter wall-mount housing
B Sensor connection housing
1 Electrode cable
2 Coil current cable n.c. Not connected, insulated cable shields
Terminal No. and cable colors: 6/5 = brown; 7/8 = white; 4 = green; 36/37 = yellow
7.1.4 Pin assignment, device plug
Order codes for the M12x1 connectors, see the "Order code for electrical connection" column:
EtherNet/IP
EtherNet/IP
Device plug for signal transmission (device side)
1
2
4
3
Pin
1
2
3
4
+
+
-
-
A0016812
Assignment
Tx
Rx
Tx
Rx
Coding
D
Plug/socket
Socket
Endress+Hauser 39
Electrical connection Proline Promag W 400 EtherNet/IP
7.1.5 Shielding and grounding
7.1.6 Requirements for the supply unit
Supply voltage
Transmitter
Order code for "Power supply"
Option L
Terminal voltage
AC100 to 240 V
AC/DC24 V
Frequency range
50/ 60 Hz, ±4 Hz
50/ 60 Hz, ±4 Hz
7.1.7 Preparing the measuring device
1. Remove dummy plug if present.
2. If measuring device is delivered with cable glands:
Observe cable specification → 36.
7.1.8 Preparing the connecting cable for the remote version
When terminating the connecting cable, pay attention to the following points:
• In the case of electrode cables, make sure that the ferrules do not touch the core shields on the sensor side. Minimum distance = 1 mm (exception: green “GND” cable)
• In the case of coil current cables, insulate one core of the three-core wire at the level of the core reinforcement. You only require two cores for the connection.
• Fit the fine-wire cores with ferrules.
Transmitter
Electrode cable Coil current cable
40
17 (0.67)
8 (0.31)
100 (3.94)*
80 (3.15)
50 (1.97)
90 (3.54)*
70 (2.76)
50 (1.97)
8 (0.31) 10 (0.39)
A
1
1
2
2
1
2
2
GND
B
11 Engineering unit mm (in)
A = Termination of the cables
B = Termination of the fine-wire cores with ferrules
1 = Red ferrules, 1.0 mm (0.04 in)
2 = White ferrules, 0.5 mm (0.02 in)
* = Stripping only for reinforced cables
A0021324
12
1
A
B
Engineering unit mm (in)
A0021325
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Proline Promag W 400 EtherNet/IP
Sensor
Electrode cable Coil current cable
Electrical connection
Endress+Hauser
20 (0.79)* 170 (6.69)*
80 (3.15)
50 (1.97) 18.5 (0.73)
6 (0.24)
20 (0.79)* 160 (6.30)*
70 (2.76)
50 (1.97)
10 (0.39)
8 (0.31)
A
1
2
³ 1 (0.04)
2
GND
2
B 1
A0016488
A = Termination of the cables
B = Termination of the fine-wire cores with ferrules
1 = Red ferrules, 1.0 mm (0.04 in)
2 = White ferrules, 0.5 mm (0.02 in)
* = Stripping only for reinforced cables
A
B
1
1
1
A0016489
7.2 Connecting the measuring device
L WARNING
Risk of electric shock! Components carry dangerous voltages!
‣ Have electrical connection work carried out by correspondingly trained specialists only.
‣ Observe applicable federal/national installation codes and regulations.
‣ Comply with local workplace safety regulations.
‣ Observe grounding concept of the plant.
‣ Never mount or wire the measuring device while it is connected to the supply voltage.
‣ Before the supply voltage is applied, connect the protective ground to the measuring device.
7.2.1 Connecting the remote version
L WARNING
Risk of damaging the electronic components!
‣ Ground the remote version: connect the sensor and transmitter to the same potential equalization.
‣ Only connect the sensor to a transmitter with the same serial number.
‣ Ground the connection housing of the sensor via the external screw terminal.
The following procedure (in the action sequence given) is recommended for the remote version:
1. Mount the sensor and transmitter.
2. Connect the connecting cable.
41
Electrical connection
42
Proline Promag W 400 EtherNet/IP
3. Connect the transmitter.
4 x
1.
TX 20
2.
4.
6 5 7 8 4 37 36 42 41
3.
A0017445
13 Transmitter: main electronics module with terminals
1. Loosen the 4 fixing screws on the housing cover.
2. Open the housing cover.
3. Push the cable through the cable entry . To ensure tight sealing, do not remove the sealing ring from the cable entry.
4. Strip the cable and cable ends. In the case of stranded cables, also fit ferrules
5. Connect the cable in accordance with the terminal assignment → 39.
6. Firmly tighten the cable glands.
7.
WARNING! Housing degree of protection may be voided due to insufficient sealing of the housing. Screw in the screw without using any lubricant.
Reverse the removal procedure to reassemble the transmitter.
3.
42 41
37 4 7 5
A0021527
14 Sensor: connection module
1. Loosen the securing clamp of the housing cover.
2. Unscrew and lift off the housing cover.
3.
NOTICE! For conduit extensions: Fit O-ring on cable and push it back sufficiently.
When inserting the cable, the O-ring must be located outside the conduit extension.
Push the cable through the cable entry . To ensure tight sealing, do not remove the sealing ring from the cable entry.
4. Strip the cable and cable ends. In the case of stranded cables, also fit ferrules
5. Connect the cable in accordance with the terminal assignment → 39.
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Proline Promag W 400 EtherNet/IP Electrical connection
6. Firmly tighten the cable glands.
7.
WARNING! Housing degree of protection may be voided due to insufficient sealing of the housing. Screw in the screw without using any lubricant. The threads on the cover are coated with a dry lubricant.
Reverse the procedure to reassemble the sensor.
7.2.2 Connecting the transmitter
L WARNING
Housing degree of protection may be voided due to insufficient sealing of the housing.
‣ Screw in the screw without using any lubricant. The threads on the cover are coated with a dry lubricant.
Tightening torques for plastic housing
Housing cover fixing screw
Cable entry
Ground terminal
1.3 Nm
4.5 to 5 Nm
2.5 Nm
4 x
1.
PH 2
2.
5.
Endress+Hauser
6.
1 2
3.
10 (0.4)
4.
A0021356
15 Connecting the supply voltage and EtherNet/IP
1. Loosen the 4 fixing screws on the housing cover.
2. Open the housing cover.
3. Push the cable through the cable entry . To ensure tight sealing, do not remove the sealing ring from the cable entry.
4. Strip the cable and cable ends. In the case of stranded cables, also fit ferrules.
5. Connect the cable in accordance with the terminal assignment → 38. For supply
voltage: open the shock protection cover.
6. Firmly tighten the cable glands.
7.
WARNING! Housing degree of protection may be voided due to insufficient sealing of the housing. Screw in the screw without using any lubricant.
Reverse the removal procedure to reassemble the transmitter.
43
Electrical connection Proline Promag W 400 EtherNet/IP
7.2.3 Ensuring potential equalization
Requirements
L CAUTION
Electrode damage can result in the complete failure of the device!
‣ Same electrical potential for the fluid and sensor
‣ Remote version: same electrical potential for the sensor and transmitter
‣ Company-internal grounding concepts
‣ Pipe material and grounding
Connection examples for standard situations
Metal, grounded pipe
44
A0016315
16 Potential equalization via measuring tube
Connection example in special situations
Unlined and ungrounded metal pipe
This connection method also applies in situations where:
• The customary potential equalization is not used
• Equalizing currents are present
Ground cable Copper wire, at least6 mm 2 (0.0093 in 2 )
DN ≤ 300 DN ≥ 350
A0016317
17 Potential equalization via ground terminal and pipe flanges
1. Connect both sensor flanges to the pipe flange via a ground cable and ground them.
2. If DN ≤ 300 (12"): Mount the ground cable directly on the conductive flange coating of the sensor with the flange screws. If DN ≥ 350 (14"): Mount the ground cable
directly on the metal transport bracket. Observe torques → 25.
3. Connect the connection housing of the transmitter or sensor to ground potential by means of the ground terminal provided for the purpose.
For remote device versions, the ground terminal in the example always refers to the sensor and not to the transmitter.
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Proline Promag W 400 EtherNet/IP
Plastic pipe or pipe with insulating liner
This connection method also applies in situations where:
• The customary potential equalization is not used
• Equalizing currents are present
Ground cable Copper wire, at least6 mm 2 (0.0093 in 2 )
Electrical connection
Endress+Hauser
A0016318
18 Potential equalization via ground terminal and ground disks
1. Connect the ground disks to the ground terminal via the ground cable.
2. Connect the ground disks to ground potential.
For remote device versions, the ground terminal in the example always refers to the sensor and not to the transmitter.
Pipe with a cathodic protection unit
This connection method is only used if the following two conditions are met:
• Metal pipe without liner or pipe with electrically conductive liner
• Cathodic protection is integrated in the personal protection equipment
Ground cable Copper wire, at least6 mm 2 (0.0093 in 2 )
+
–
A0016319
Prerequisite: The sensor is installed in the pipe in a way that provides electrical insulation.
1. Connect the two flanges of the pipe to one another via a ground cable.
2. Guide the shield of the signal lines through a capacitor.
3. Connect the measuring device to the power supply such that it is floating in relation to the protective ground (isolation transformer).
For remote device versions, the ground terminal in the example always refers to the sensor and not to the transmitter.
45
Electrical connection Proline Promag W 400 EtherNet/IP
7.3 Special connection instructions
7.4 Hardware settings
7.4.1 Setting the device address
EtherNet/IP
The IP address of the measuring device can be configured for the network via DIP switches.
Addressing data
IP address and configuration options
1st octet
192.
2nd octet
168.
3rd octet
1.
↓
Can only be configured via software addressing
4th octet
XXX
↓
Can be configured via software addressing and hardware addressing
IP address range
IP address broadcast
Addressing mode ex works
IP address ex works
1 to 254 (4th octet)
255
Software addressing; all DIP switches for hardware addressing are set to OFF.
DHCP server active
For device addressing via software
Setting the address
4
3
2
1
4
3
2
1
2
1
ON OFF
Default Ethernet network settings
IP 192.168.1.212
Write protection
128
64
32
16
8
4
2
1
1. Loosen the 4 fixing screws on the housing cover.
2. Open the housing cover.
3. Set the desired IP address using the corresponding DIP switches on the I/O electronics module.
Hardware addressing with the configured IP address is enabled after 10 s.
4. Reverse the removal procedure to reassemble the transmitter.
A0021322
46 Endress+Hauser
Proline Promag W 400 EtherNet/IP Electrical connection
7.5 Ensuring the degree of protection
7.5.1 Degree of protection IP66/67, Type 4X enclosure
The measuring device fulfills all the requirements for the IP66/67 degree of protection,
Type 4X enclosure.
To guarantee IP66/67 degree of protection, Type 4X enclosure, carry out the following steps after the electrical connection:
1. Check that the housing seals are clean and fitted correctly. Dry, clean or replace the seals if necessary.
2. Tighten all housing screws and screw covers.
3. Firmly tighten the cable glands.
4. To ensure that moisture does not enter the cable entry, route the cable so that it loops down before the cable entry ("water trap").
Endress+Hauser
A0013960
5. Insert dummy plugs into unused cable entries.
7.5.2 Degree of protection IP68, Type 6P enclosure, with "Custpotted" option
Depending on the version, the sensor fulfills all the requirements for the IP68 degree of
protection, Type 6P enclosure and can be used as a remote version → 23.
The degree of protection of the transmitter is always only IP66/67, Type 4X enclosure and
the transmitter must therefore be treated accordingly → 47.
To guarantee IP68 degree of protection, Type 6P enclosure for the "Cust-potted" options, carry out the following steps after the electrical connection:
1. Firmly tighten the cable glands (torque: 2 to 3.5 Nm) until there is no gap between the bottom of the cover and the housing support surface.
2. Firmly tighten the union nut of the cable glands.
3. Pot the field housing with a potting compound.
4. Check that the housing seals are clean and fitted correctly. Dry, clean or replace the seals if necessary.
5. Tighten all housing screws and screw covers (torque: 20 to 30 Nm).
7.6 Post-connection check
Are cables or the device undamaged (visual inspection)?
Do the cables comply with the requirements → 36?
Do the cables have adequate strain relief?
Are all the cable glands installed, firmly tightened and leak-tight? Cable run with "water trap"
47
Electrical connection Proline Promag W 400 EtherNet/IP
Only for remote version: is the sensor connected to the right transmitter?
Check the serial number on the nameplate of the sensor and transmitter.
Does the supply voltage match the specifications on the transmitter nameplate ?
Is the terminal assignment correct ?
If supply voltage is present, do values appear on the display module?
Is the potential equalization established correctly → 44?
Are all housing covers installed and the screws tightened with the correct tightening torque?
48 Endress+Hauser
Proline Promag W 400 EtherNet/IP
8 Operation options
8.1 Overview of operation options
Operation options
SC
1 2 3
1 Local operation via display module
2 Computer with Web browser (e.g. Internet Explorer) or with operating tool (e.g. FieldCare, AMS Device
Manager, SIMATIC PDM)
3 Control system (e.g. PLC)
A0019091
For custody transfer, once the device has been put into circulation or sealed, its operation is restricted.
Endress+Hauser 49
Operation options
50
Proline Promag W 400 EtherNet/IP
8.2 Structure and function of the operating menu
8.2.1 Structure of the operating menu
For an overview of the operating menu with menus and parameters → 162
Operating menu for operators and maintenances
Language !
Operatation Language
Parameter 1
Parameter n
Submenu 1
Setup
Submenu n
Device tag
Wizard 1 / Parameter 1
Wizard n / Parameter n
Advanced setup Enter access code
Parameter 1
Parameter n
Submenu 1
Submenu n
Diagnostics Parameter 1
Parameter n
Submenu 1
Submenu n
Operating menu for experts
Expert Access status display
Parameter n
System
Sensor
Intput
Output
Communication
Application
Diagnostics
19 Schematic structure of the operating menu
A0018237-EN
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Proline Promag W 400 EtherNet/IP Operation options
Operation
Setup
Diagnostics
Expert
8.2.2 Operating philosophy
The individual parts of the operating menu are assigned to certain user roles (operator, maintenance etc.). Each user role contains typical tasks within the device lifecycle.
For custody transfer, once the device has been put into circulation or sealed, its operation is restricted.
Menu task-oriented
User role and tasks
Role "Operator", "Maintenance"
Tasks during operation:
Reading measured values
"Maintenance" role
Commissioning:
• Configuration of the measurement
• Configuration of the communication interface
"Maintenance" role
Fault elimination:
• Diagnostics and elimination of process and device errors
• Measured value simulation
Content/meaning
• Defining the Web server operating language
• Resetting and controlling totalizers
Submenus for fast commissioning:
• Setting the individual system units
• Defining the medium
• Configuration of the digital communication interface
• Configuring the low flow cut off
"Advanced setup" submenu:
• For more customized configuration of the measurement
(adaptation to special measuring conditions)
• Configuration of totalizers
• "Device reset" submenu
Resets the device configuration to certain settings
Contains all parameters for error detection and analyzing process and device errors:
• "Diagnostic list" submenu
Contains up to 5 currently pending diagnostic messages.
• "Event logbook" submenu
Contains 20 event messages that have occurred.
• "Device information" submenu
Contains information for identifying the device.
• "Measured values" submenu
Contains all current measured values.
• "Simulation" submenu
Is used to simulate measured values or output values.
function-oriented Tasks that require detailed knowledge of the function of the device:
• Commissioning measurements under difficult conditions
• Optimal adaptation of the measurement to difficult conditions
• Detailed configuration of the communication interface
• Error diagnostics in difficult cases
Contains all the parameters of the device and makes it possible to access these parameters directly using an access code. The structure of this menu is based on the function blocks of the device:
• "System" submenu
Contains all higher-order device parameters that do not pertain either to measurement or the measured value communication.
• "Sensor" submenu
Configuration of the measurement.
• "Communication" submenu
Configuration of the digital communication interface and the
Web server.
• "Application" submenu
Configuration of the functions that go beyond the actual measurement (e.g. totalizer).
• "Diagnostics" submenu
Error detection and analysis of process and device errors and for device simulation and Heartbeat Technology.
Endress+Hauser 51
Operation options
52
Proline Promag W 400 EtherNet/IP
8.3 Access to the operating menu via the local display
4
8.3.1 Operational display
1
2 X X X X X X X X X
1120.50
F l/h
3
5
A0016502
3
4
1
2
5
Operational display
Device tag
Status area
Display area for measured values (4-line)
Status area
The following symbols appear in the status area of the operational display at the top right:
– F : Failure
– C : Function check
– S : Out of specification
– M : Maintenance required
– : Alarm
– : Warning
• : Locking (the device is locked via the hardware )
• : Communication (communication via remote operation is active)
Display area
In the display area, each measured value is prefaced by certain symbol types for further description:
Measured variable Diagnostic behavior
↓
Measurement channel number
↓ ↓
Example
Appears only if a diagnostics event is present for this measured variable.
Measured variables
Symbol Meaning
Volume flow
Conductivity
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Proline Promag W 400 EtherNet/IP Operation options
Mass flow
Totalizer
The measurement channel number indicates which of the three totalizers is displayed.
Output
The measurement channel number indicates which of the outputs is displayed.
Status input
Measurement channel numbers
Symbol Meaning
Measurement channel 1 to 4
The measurement channel number is displayed only if more than one channel is present for the same measured variable type (e.g. Totalizer 1 to 3).
Diagnostic behavior
The diagnostic behavior pertains to a diagnostic event that is relevant to the displayed measured variable.
For information on the symbols → 109
The number and display format of the measured values can be configured via the
"Format display" parameter → 83. "Operation" menu → Display → Format
display
8.3.2 Navigation view
In the submenu
1
2 /../Operation
Access stat.disp
Locking status
Display
0091-1
Operator
3
4
2
In the wizard
1
/../Curr. output 1
Assign curr.
S
Volume flow
3
4
5
A0013993-EN
5
A0016327-EN
3
4
1
2
5
Navigation view
Navigation path to current position
Status area
Display area for navigation
Navigation path
The navigation path - displayed at the top left in the navigation view - consists of the following elements:
• In the submenu:
Display symbol for menu
• In the wizard:
Display symbol for wizard
↓
Omission symbol for operating menu levels in between
↓
Name of current
• Submenu
• Wizard
• Parameter
↓
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Examples / ../
/ ../
Proline Promag W 400 EtherNet/IP
Display
Display
For more information about the menu icons, refer to the "Display area" section
Status area
The following appears in the status area of the navigation view in the top right corner:
• Of the submenu
– The direct access code for the parameter you are navigating to (e.g. 0022-1)
– If a diagnostic event is present, the diagnostic behavior and status signal
• In the wizard
If a diagnostic event is present, the diagnostic behavior and status signal
• For information on the diagnostic behavior and status signal → 108
• For information on the function and entry of the direct access code → 59
Display area
Menus
Symbol Meaning
Operation
Appears:
• In the menu next to the "Operation" selection
• At the left in the navigation path in the "Operation" menu
Setup
Appears:
• In the menu next to the "Setup" selection
• At the left in the navigation path in the "Setup" menu
Diagnostics
Appears:
• In the menu next to the "Diagnostics" selection
• At the left in the navigation path in the "Diagnostics" menu
Expert
Appears:
• In the menu next to the "Expert" selection
• At the left in the navigation path in the "Expert" menu
Submenus, wizards, parameters
Symbol Meaning
Submenu
Wizard
Parameters within a wizard
No display symbol exists for parameters in submenus.
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Locking
Symbol Meaning
Parameter locked
When displayed in front of a parameter name, indicates that the parameter is locked.
• By a user-specific access code
• By the hardware write protection switch
Wizard operation
Symbol Meaning
Switches to the previous parameter.
Confirms the parameter value and switches to the next parameter.
Opens the editing view of the parameter.
8.3.3 Editing view
Numeric editor
1
2 20
0
5
1
6
2
7
3
8
4
9
3
Text editor
4
3
4
1
2
Editing view
Display area of the entered values
Input mask
A0013941 A0013999
Input mask
The following input symbols are available in the input mask of the numeric and text editor:
Numeric editor
Symbol Meaning
Selection of numbers from 0 to 9.
0
…
9
Inserts decimal separator at the input position.
.
Inserts minus sign at the input position.
–
Confirms selection.
Moves the input position one position to the left.
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Operation options Proline Promag W 400 EtherNet/IP
Exits the input without applying the changes.
Clears all entered characters.
Text editor
Symbol
Aa1
Meaning
Toggle
• Between upper-case and lower-case letters
• For entering numbers
• For entering special characters
Selection of letters from A to Z.
ABC _
…
XYZ abc _
… xyz
"'^ _
…
~& _
Selection of letters from a to z.
Selection of special characters.
Confirms selection.
Switches to the selection of the correction tools.
Exits the input without applying the changes.
Clears all entered characters.
Correction symbols under
Symbol Meaning
Clears all entered characters.
Moves the input position one position to the right.
Moves the input position one position to the left.
Deletes one character immediately to the left of the input position.
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Endress+Hauser
Operation options
8.3.4 Operating elements
Key
+
+
+
+
+
Meaning
Minus key
In a menu, submenu
Moves the selection bar upwards in a choose list.
With a Wizard
Confirms the parameter value and goes to the previous parameter.
With a text and numeric editor
In the input mask, moves the selection bar to the left (backwards).
Plus key
In a menu, submenu
Moves the selection bar downwards in a choose list.
With a Wizard
Confirms the parameter value and goes to the next parameter.
With a text and numeric editor
Moves the selection bar to the right (forwards) in an input screen.
Enter key
For operational display
• Pressing the key briefly opens the operating menu.
• Pressing the key for 2 s opens the context menu.
In a menu, submenu
• Pressing the key briefly:
– Opens the selected menu, submenu or parameter.
– Starts the wizard.
– If help text is open, closes the help text of the parameter.
• Pressing the key for 2 s for parameter:
If present, opens the help text for the function of the parameter.
With a Wizard
Opens the editing view of the parameter.
With a text and numeric editor
• Pressing the key briefly:
– Opens the selected group.
– Carries out the selected action.
• Pressing the key for 2 s confirms the edited parameter value.
Escape key combination (press keys simultaneously)
In a menu, submenu
• Pressing the key briefly:
– Exits the current menu level and takes you to the next higher level.
– If help text is open, closes the help text of the parameter.
• Pressing the key for 2 s returns you to the operational display ("home position").
With a Wizard
Exits the wizard and takes you to the next higher level.
With a text and numeric editor
Closes the text or numeric editor without applying changes.
Minus/Enter key combination (press the keys simultaneously)
Reduces the contrast (brighter setting).
Plus/Enter key combination (press and hold down the keys simultaneously)
Increases the contrast (darker setting).
Minus/Plus/Enter key combination (press the keys simultaneously)
For operational display
Enables or disables the keypad lock (only SD02 display module).
8.3.5 Opening the context menu
Using the context menu, the user can call up the following menus quickly and directly from the operational display:
57
Operation options Proline Promag W 400 EtherNet/IP
• Setup
• Simulation
Calling up and closing the context menu
The user is in the operational display.
1. Press for 2 s.
The context menu opens.
XXXXXXXXXX
20.50
Simulation l/h
2. Press + simultaneously.
The context menu is closed and the operational display appears.
Calling up the menu via the context menu
1. Open the context menu.
2. Press to navigate to the desired menu.
3. Press to confirm the selection.
The selected menu opens.
A0017421-EN
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Operation options
8.3.6 Navigating and selecting from list
Different operating elements are used to navigate through the operating menu. The navigation path is displayed on the left in the header. Icons are displayed in front of the individual menus. These icons are also shown in the header during navigation.
For an explanation of the navigation view with symbols and operating elements
Example: Setting the number of displayed measured values to "2 values"
X X X X X X X X X
20.50
Main menu
Language
0104-1
English
Display/operat.
Setup
Main menu
Language
Display/operat.
Setup
/ ../Display/operat.
Access stat.disp
0091-1
Operator
Locking status
Display
/ ../Display/operat.
Locking status
Display
/ ../Display 0098-1
Format display
1 value, max.
Contrast display
Display intervall
/ ../Format display
1 value, max.
Bargr. + 1 value
2 values
Val. large+2val.
0098-1
/ ../Format display
1 value, max.
Bargr. + 1 value
2 values
Val. large+2val.
0098-1
X X X X X X X X X
2 s
10.50
mA
2800
Hz
A0017448-EN
8.3.7 Calling the parameter directly
A parameter number is assigned to every parameter to be able to access a parameter directly via the onsite display. Entering this access code in the Direct access parameter calls up the desired parameter directly.
Navigation path
"Expert" menu → Direct access
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Operation options Proline Promag W 400 EtherNet/IP
The direct access code consists of a 4-digit number and the channel number, which identifies the channel of a process variable: e.g. 0914-1. In the navigation view, this appears on the right-hand side in the header of the selected parameter.
0914-2 1
A0017223
1 Direct access code
Note the following when entering the direct access code:
• The leading zeros in the direct access code do not have to be entered.
Example: Input of "914" instead of "0914"
• If no channel number is entered, channel 1 is jumped to automatically.
Example: Input of "0914" → Parameter Totalizer 1
• If a different channel is jumped to: Enter the direct access code with the corresponding channel number.
Example: Input of "0914-2" → Parameter Totalizer 2
For the direct access codes of the individual parameters
8.3.8 Calling up help text
For some parameters, help texts exist, which the user can call up from the navigation view.
These briefly describe the function of the parameter and thus support fast and reliable commissioning.
Calling up and closing the help text
The user is in the navigation view and the selection bar is on a parameter.
1. Press for 2 s.
The help text for the selected parameter opens.
Ent. access code
Enter access code to disable write protec.
A0014002-EN
20 Example: Help text for parameter "Enter access code"
2. Press + simultaneously.
The help text is closed.
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8.3.9 Changing the parameters
For a description of the editing display - consisting of text editor and numeric editor -
with symbols → 55, for a description of the operating elements → 57
Example: Changing the tag name in the "Tag description" parameter from 001-FT-101 to
001-FT-102
3x
/../Advanced setup
Ent. access code
Tag description
1496-1
001-FT-101
Def. access code
001-FT-101
ABC
LMNO
XYZ
DEFG
PQRS
HIJK
TUVW
Aa1 @
001-FT-101
ABC
LMNO
XYZ
DEFG
PQRS
HIJK
TUVW
Aa1 @
001-FT-101
ABC DEFG HIJK
001-FT-10
ABC DEFG HIJK
001-FT-10
ABC DEFG HIJK
1x
1x
2x
001-FT-10
ABC
LMNO
XYZ
DEFG
PQRS
HIJK
TUVW
Aa1 @
001-FT-10
ABC
A a 1 @
DEFG HIJK
001-FT-10
ABC
LMNO
XYZ
DEFG
PQRS
HIJK
TUVW
Aa1 @
001-FT-10
ABC
A a 1 @
DEFG HIJK
001-FT-10
012
= + - *
< > { }
3456
/ [ ]
789
( )
Aa1 @
001-FT-10
012
0 1 2
3456 789
4x
2x
= + - *
0 1 2
< > { }
/ [ ]
001-FT-10
012
0 1 2
3456
( )
Aa1 @
789
1x
= + - *
0 1 2
< > { }
/ [ ] ( )
Aa1 @
= + - *
0 1 2
< > { }
/ [ ] ( )
Aa1 @
/../Advanced setup
Ent. access code
Tag description
1496-1
001-FT-102
Def. access code
Max.
A0014020-EN
A message is displayed if the value entered is outside the permitted value range.
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Operation options Proline Promag W 400 EtherNet/IP
Ent. access code
Invalid or out of range input value
Min:0
Max:9999
A0014049-EN
8.3.10 User roles and related access authorization
The two user roles "Operator" and "Maintenance" have different write access to the parameters if the customer defines a user-specific access code. This protects the device configuration via the local display from unauthorized access .
Access authorization to parameters
User role
Operator
Maintenance
Read access
Without access code
(from the factory)
With access code
Write access
Without access code
(from the factory)
With access code
--
1) Despite the defined access code, certain parameters can always be modified and thus are excepted from the write protection, as they do not affect the measurement. Refer to the "Write protection via access code" section
If an incorrect access code is entered, the user obtains the access rights of the "Operator" role.
The user role with which the user is currently logged on is indicated by the Access status display parameter. Navigation path: Operation → Access status display
8.3.11 Disabling write protection via access code
If the -symbol appears on the local display in front of a parameter, the parameter is write-protected by a user-specific access code and its value cannot be changed at the moment using the local display .
The locking of the write access via local operation can be disabled by entering the customer-defined access code via the respective access option.
1. After you press , the input prompt for the access code appears.
2. Enter the access code.
The -symbol in front of the parameters disappears; all previously writeprotected parameters are now re-enabled.
8.3.12 Enabling and disabling the keypad lock
The keypad lock makes it possible to block access to the entire operating menu via local operation. As a result, it is no longer possible to navigate through the operating menu or change the values of individual parameters. Users can only read the measured values on the operational display.
Local operation with touch control
The keypad lock is switched on and off via the context menu.
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Switching on the keypad lock
The keypad lock is switched on automatically:
• Each time the device is restarted.
• If the device has not been operated for longer than one minute in the measured value display.
1. The device is in the measured value display.
Press the key for longer than 2 seconds.
A context menu appears.
2. In the context menu, select the Keylock on option.
The keypad lock is switched on.
If the user attempts to access the operating menu while the keypad lock is active, the message Keylock on appears.
Switching off the keypad lock
1. The keypad lock is switched on.
Press the key for longer than 2 seconds.
A context menu appears.
2. In the context menu, select the Keylock off option.
The keypad lock is switched off.
8.4 Access to the operating menu via the Web browser
8.4.1 Function range
Thanks to the integrated Web server the device can be operated and configured via a Web browser. The operating menu structure is the same as in the local display. In addition to the measured values, status information on the device is also displayed and allows the user to monitor the status of the device. Furthermore the device data can be managed and the network parameters can be configured.
8.4.2 Prerequisites
Computer hardware
Interface
Connecting cable
Screen
The computer must have an RJ45 interface.
Standard Ethernet cable with RJ45 connector.
Recommended size: ≥12" (depends on the screen resolution)
Web server operation is not optimized for touch screens!
Computer software
Recommended operating systems
Web browsers supported
Microsoft Windows 7 or higher.
Microsoft Windows XP is supported.
• Microsoft Internet Explorer 8 or higher
• Mozilla Firefox
• Google chrome
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Operation options
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Proline Promag W 400 EtherNet/IP
Computer settings
User rights
Proxy server settings of the
Web browser
JavaScript
User rights are required for TCP/IP and proxy server settings (for changes to the IP address, subnet mask etc.).
The Web browser setting Use proxy server for LAN must be disabled .
JavaScript must be enabled.
If JavaScript cannot be enabled: enter http://192.168.1.212/basic.html in the address line of the Web browser. A fully functional but simplified version of the operating menu structure starts in the Web browser.
When installing a new firmware version: To enable correct data display, clear the temporary memory (cache) of the Web browser under Internet options .
Measuring device
Web server
IP address
Web server must be enabled; factory setting: ON
For information on enabling the Web server → 67
If the IP address of the device is not known:
• The IP address can be read out via local operation:
"Diagnostics" menu → Device information → IP address
• Communication with the Web server can be established via the standard IP address 192.168.1.212.
The DHCP function is enabled in the device at the factory, i.e. the device expects an IP address to be assigned by the network. This function can be disabled and the device can be set to the standard IP address
192.168.1.212: set top DIP switch No. 2 from OFF → ON.
4
3
2
1
4
3
2
1
2
ON OFF Default Ethernet network settings
IP 192.168.1.212
1 Write protection
128
64
32
16
8
4
2
1
A0023353
• Once the DIP switch has been activated, the device must be restarted before the device uses the standard IP address.
• If the standard IP address (top DIP switch No. 2 = ON) is used, there is no connection to the EtherNet/IP network.
8.4.3 Establishing a connection
Configuring the Internet protocol of the computer
IP address
Subnet mask
Default gateway
192.168.1.XXX; for XXX all numerical values except: 0, 212 and 255 → e.g.
192.168.1.213
255.255.255.0
192.168.1.212 or leave cells empty
1. Switch on the measuring device and connect to the computer via the cable
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Proline Promag W 400 EtherNet/IP Operation options
2. If a 2nd network card is not used: all the applications on the notebook should be closed, or all the applications that require the Internet or network, such as e-mail,
SAP applications, Internet or Windows Explorer, i.e. close all open Internet browsers.
3. Configure the properties of the Internet protocol (TCP/IP) as defined in the table above.
Starting the Web browser
1. Start the Web browser on the computer.
2. If the IP address of the measuring device is known, enter the defined device address in the address line of the Web browser. If it is unknown, read the IP address via local operation ("Diagnostics" menu → Device information → IP address) or set the upper
DIP switch No. 2 to ON, restart the device and enter the standard IP address
The login page appears.
1 2 3
Device name
Device tag
Webserv.language
English
Ent. access code
Access stat.tool
Maintenance
OK
1 Device tag
2 Picture of device
If a login page does not appear, or if the page is incomplete → 106
A0017362
8.4.4 Logging on
1. Select the preferred operating language for the Web browser.
2. Enter the access code.
3. Press OK to confirm your entry.
Access code 0000 (factory setting); can be changed by customer
If no action is performed for 10 minutes, the Web browser automatically returns to the login page.
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Operation options
8.4.5 User interface
Proline Promag W 400 EtherNet/IP
66
A0017757-EN
3
4
1
2
5
6
Picture of device
Function row with 6 functions
Device tag
Header
Working area
Navigation area
Header
The following information appears in the header:
• Device tag
• Device status with status signal → 111
• Current measured values
Function row
Functions Meaning
Measured values The measured values of the device are displayed
Menu
Device status
Data management
Network configuration
Logout
Access to the operating menu structure of the device, same as for the local display and operating tool
Displays the diagnostic messages currently pending, listed in order of priority
• Data exchange between PC and measuring device:
– Upload the configuration from the device (XML format, create configuration back-up)
– Save the configuration to the device (XML format, restore configuration)
– Export the event list (.csv file)
– Export parameter settings (.csv file, create documentation of the measuring point configuration)
– Export the Heartbeat verification log (PDF file, only available with the "Heartbeat
Verification" application package)
• Upload the device driver for system integration from the device
Configuration and checking of all the parameters required for establishing the connection to the device:
• Network settings (e.g. IP address, MAC address)
• Device information (e.g. serial number, firmware version)
End the operation and call up the login page
Navigation area
If a function is selected in the function bar, the submenus of the function open in the navigation area. The user can now navigate through the menu structure.
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Proline Promag W 400 EtherNet/IP
Parameter
Web server functionality
Operation options
Working area
Depending on the selected function and the related submenus, various actions can be performed in this area:
• Configuring parameters
• Reading measured values
• Calling up help text
• Starting an upload/download
8.4.6 Disabling the Web server
The Web server for the measuring device can enabled and disabled as required via the
Web server functionality parameter.
Navigation
"Expert" menu → Communication → Web server
Parameter overview with brief description
Description
Switch the Web server on and off.
• Off
• On
Selection
On
Factory setting
Enabling the Web server
If the Web server is disabled it can only be re-enabled with the Web server functionality parameter via the following operating options:
• Via local display
• Via "FieldCare" operating tool
8.4.7 Logging out
Before logging out, perform a data backup via the Data management function
(upload configuration from device) if necessary.
1. Select the Logout entry in the function row.
The home page with the Login box appears.
2. Close the Web browser.
3. Reset the modified properties of the Internet protocol (TCP/IP) if they are no longer
If communication with the Web server was established via the standard IP address
192.168.1.212, DIP switch No. 10 must be reset (from ON → OFF) and the IP address of the device is active again for network communication.
8.5 Access to the operating menu via the operating tool
The structure of the operating menu in the operating tools is the same as for operation via the local display.
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Operation options
8.5.1 Connecting the operating tool
Via service interface (CDI-RJ45)
1 2
Proline Promag W 400 EtherNet/IP
3
68
A0023113
1 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or with
"FieldCare" operating tool with COM DTM "CDI Communication TCP/IP"
2 Standard Ethernet connecting cable with RJ45 plug
3 Service interface (CDI -RJ45) of the measuring device with access to the integrated Web server
8.5.2 FieldCare
Function scope
FDT-based plant asset management tool from Endress+Hauser. It can configure all smart field devices in a system and helps you manage them. By using the status information, it is also a simple but effective way of checking their status and condition.
Access takes place via:
Service interface CDI-RJ45 → 68
Typical functions:
• Configuring parameters of transmitters
• Loading and saving device data (upload/download)
• Documentation of the measuring point
• Visualization of the measured value memory (line recorder) and event logbook
For details, see Operating Instructions BA00027S and BA00059S
Source for device description files
Establishing a connection
Via service interface (CDI-RJ45)
1. Start FieldCare and launch the project.
2. In the network: Add a device.
The Add device window opens.
3. Select the CDI Communication TCP/IP option from the list and press OK to confirm.
4. Right-click CDI Communication TCP/IP and select the Add device option in the context menu that opens.
5. Select the desired device from the list and press OK to confirm.
The CDI Communication TCP/IP (Configuration) window opens.
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Proline Promag W 400 EtherNet/IP Operation options
6. Enter the device address in the IP address field: 192.168.1.212 and press Enter to confirm.
7. Establish the online connection to the device.
For details, see Operating Instructions BA00027S and BA00059S
User interface
2 3 4 5 6
Xxxxx
1
Xxxxx
7 8
1 Header
2 Picture of device
3 Device tag
4
Status area with status signal → 111
6 Display area for current measured values
5 Event list with additional functions such as save/load, events list and document creation
7 Navigation area with operating menu structure
8 Operating range
A0021053-EN
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9 System integration
9.1 Overview of device description files
9.1.1 Current version data for the device
Firmware version
Release date of firmware version
Manufacturer ID
Device type ID
Device revision
Device profile
01.01.zz
05.2014
0x49E
0x1047
• On the title page of the Operating instructions
• On transmitter nameplate → 13
• Parameter firmware version
Diagnostics → Device info→ Firmware version
---
Manufacturer ID parameter
Diagnostics → Device info→ Manufacturer ID
Device type parameter
Diagnostics → Device info → Device type
• Major revision
2
• Minor revision 1
• On transmitter nameplate → 13
• Device revision parameter
Diagnostics → Device info → Device revision
Generic device (product type: 0x2B)
9.1.2 Operating tools
Operating tool via
Service interface (CDI)
FieldCare
Sources for obtaining device descriptions
• www.endress.com → Download Area
• CD–ROM (contact Endress+Hauser)
• DVD (contact Endress+Hauser)
9.2 Overview of system files
System files
Electronic Data
Sheet (EDS system file)
Add-on Profile
Level 3
Version
2.1
Description
Certified in accordance with the following ODVA guidelines:
• Conformance test
• Performance test
• PlugFest
Embedded EDS Support (File Object
0x37)
• Major revision
2
• Minor revision 1
System file for "RSLogix 5000" software (Rockwell Automation)
How to acquire
• www.endress.com → Download
Area
• EDS system file integrated in the device: can be downloaded via
www.endress.com → Download
Area
9.3 Integrating the measuring device in the system
A detailed description of how to integrate the device into an automation system (e.g.
from Rockwell Automation) is available as a separate document: www.endress.com
→
Select country → Automation → Digital Communication → Feldbus device integration → EtherNet/IP
For information on the protocol-specific data of EtherNet/IP
Endress+Hauser
Proline Promag W 400 EtherNet/IP System integration
9.4 Cyclic data transmission
Cyclic data transmission when using the device master file (GSD).
9.4.1 Block model
The block model shows which input and output data the measuring device makes available for implicit messaging. Cyclical data exchange is performed using an EtherNet/IP scanner, e.g. a distributed control system etc.
Control system
Transducer
Block
Measuring device
Input Assembly Fix
(Assem100) 44 Byte
Ouput Assembly Fix
(Assem102) 64 Byte
Input Assembly Fix
(Assem101) 88 Byte
Permanently assigned input group
Permanently assigned output group
Configurable input group
→
←
EtherNet/IP
→
9.4.2 Input and output groups
Possible configurations
Configuration 1: Exclusive Owner Multicast
Input Assembly Fix
Input Assembly Configurable
Output Assembly Fix
Input Assembly Fix
Configuration
O → T Configuration
T → O Configuration
Instance
0 x 64
0 x 66
0 x 64
Configuration 2: Input Only Multicast
Input Assembly Fix
Input Assembly Configurable
Output Assembly Fix
Input Assembly Fix
Configuration
O → T Configuration
T → O Configuration
Instance
0 x 68
0 x C7
0 x 64
Configuration 3: Exclusive Owner Multicast
Input Assembly Configurable
Input Assembly Configurable
Output Assembly Fix
Input Assembly Fix
Configuration
O → T Configuration
T → O Configuration
Instance
0 x 68
0 x 66
0 x 65
Configuration 4: Input Only Multicast
Input Assembly Configurable
Input Assembly Configurable
Output Assembly Fix
Input Assembly Fix
Configuration
O → T Configuration
T → O Configuration
Instance
0 x 68
0 x C7
0 x 64
Size [byte]
398
64
44 min. RPI (ms)
–
5
5
Size [byte]
398
–
44 min. RPI (ms)
–
–
5
Size [byte]
398
64
88 min. RPI (ms)
–
5
5
Size [byte]
398
–
88 min. RPI (ms)
–
–
5
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System integration Proline Promag W 400 EtherNet/IP
Configuration 5: Exclusive Owner Multicast
Input Assembly Fix
Input Assembly Configurable
Output Assembly Fix
Input Assembly Fix
Configuration
O → T Configuration
T → O Configuration
Instance
0 x 69
0 x 66
0 x 64
Configuration 6: Input Only Multicast
Input Assembly Fix
Input Assembly Configurable
Output Assembly Fix
Input Assembly Fix
Configuration
O → T Configuration
T → O Configuration
Instance
0 x 69
0 x C7
0 x 65
Configuration 7: Exclusive Owner Multicast
Input Assembly Configurable
Input Assembly Configurable
Output Assembly Fix
Input Assembly Fix
Configuration
O → T Configuration
T → O Configuration
Instance
0 x 69
0 x 66
0 x 64
Configuration 8: Input Only Multicast
Input Assembly Configurable
Input Assembly Configurable
Output Assembly Fix
Input Assembly Fix
Configuration
O → T Configuration
T → O Configuration
Instance
0 x 69
0 x C7
0 x 65
Permanently assigned input group
Input Assembly Fix (Assem100) 44 Byte
Name
Input Assembly Fix
Description
1. File header (not visible)
2. Current diagnosis
3. Mass flow
4. Volume flow
5. Corrected volume flow
6. Temperature
7. Density
8. Reference density
9. Totalizer 1
Size [byte]
–
64
44 min. RPI (ms)
–
5
5
Size [byte]
–
–
44 min. RPI (ms)
–
–
5
Size [byte]
–
64
88 min. RPI (ms)
–
5
5
Size [byte]
–
–
88 min. RPI (ms)
–
–
5
Byte
1 to 4
5 to 8
9 to 12
13 to 16
17 to 20
21 to 24
25 to 28
29 to 32
33 to 36
72 Endress+Hauser
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System integration
Name
1)
Description
10. Totalizer 2
11. Totalizer 3
Structure: Code, number, description (e.g.: 16777265 F882 input signal)
Byte
Detailed description
• Diagnostic information → 114
Configurable input group
Input Assembly Configurable (Assem101) 88 byte
Name
Input Assembly Configurable
Description
1. - 10. Input values 1 to 10
11. - 20. Input values 11 to 20
37 to 40
41 to 44
Format
Real
Double integer
Possible input values
Possible input values 1 to 10:
• Off
• Mass flow
• Volume flow
• Corrected volume flow
• Target mass flow
• Carrier mass flow
• Density
• Reference density
• Concentration
• Temperature
• Carrier pipe temperature
• Electronics temperature
• Oscillation frequency 0
• Oscillation frequency 1
• Oscillation amplitude 0
• Oscillation amplitude 1
• Oscillation frequency 0
• Oscillation frequency 1
• Oscillation damping 0
• Oscillation damping 1
• Signal shift
• Tube damping fluctuation 0
• Tube damping fluctuation 1
• Exciter current 0
• Exciter current 1
• Monitoring of exciter current 0
• Monitoring of exciter current 1
• Totalizer 1
• Totalizer 2
• Totalizer 3
• Sensor integrity
Possible input values 11 to 20:
• Off
• Current diagnosis
• Previous diagnosis
• Mass flow unit
• Volume flow unit
• Corrected volume flow unit
• Temperature unit
• Density unit
• Reference density unit
• Concentration unit
• Current unit
• Status verification
• Totalizer 1 unit
• Totalizer 2 unit
• Totalizer 3 unit
• Verification result
Permanently assigned output group
Output Assembly Fix (Assem102) 64 byte
Name
Output
Assembly Fix
Description (format)
1. Totalizer 1
2. Totalizer 2
3. Totalizer 3
4. Pressure compensation
5. Reference density compensation
6. Temperature compensation
7. Verification
Byte
1
2
3
4
Bit
1
5
6
7
• 0: Enable
• 1: Disable
Value
73
System integration
74
Name
Proline Promag W 400 EtherNet/IP
Description (format)
8. Not used
9. Not used
10. Control totalizer 1 (integer)
11. Not used
12. Control totalizer 2 (integer)
13. Not used
14. Control totalizer 3 (integer)
15. Not used
16. External pressure (real)
17. External pressure unit (integer)
13 to
14
15 to
16
17 to
20
Byte Bit
8 –
2 to 4 0 to 8 –
Value
5 to 6 0 to 8 • 32226: Add
• 32490: Reset and stop
• 32228: Default value and stop
• 198: Reset and add
• 199: Default value and add
7 to 8 0 to 8 –
9…10 0 to 8 See totalizer 1
11 to
12
0 to 8 –
0 to 8 See totalizer 1
0 to 8 –
21 to
22
0 to 8 Data format:
Byte 1 to 4: External pressure
Floating-point number
(IEEE754)
0 to 8 • 2165: Pa a
• 2116: kPa a
• 2137: MPa a
• 4871: bar a
• 2166: Pa g
• 2117: kPa a
• 2138: MPa a
• 2053: bar g
• 2182: Psi a
• 2183: Psi g
• 2244: Customer-specific
0 to 8 – 18. Not used 23 to
24
19. External reference density (real) 25 to
28
20. External reference density unit
(integer)
21. Not used
29 to
30
0 to 8 Data format:
Byte 1 to 4: External ref. density
Floating-point number
(IEEE754)
0 to 8 • 2112: kg/Nm 3
• 2113: kg/Nl
• 2092: g/Scm 3
• 2114: kg/Scm 3
• 2181: lb/Sft 3
0 to 8 –
22. External temperature (real)
31 to
32
33 to
36
23. External temperature unit
(integer)
24. Not used
37 to
38
0 to 8 Data format:
Byte 1 to 4: External temperature
Floating-point number
(IEEE754)
0 to 8 • 4608: °C
• 4609: °F
• 4610: K
• 4611: °R
0 to 8 –
25. Start verification (integer)
26. Not used
39 to
40
41 to
42
43 to
64
0 to 8
0 to 8
• 32378: Start
• 32713: Cancel
–
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Proline Promag W 400 EtherNet/IP Commissioning
10 Commissioning
10.1 Function check
Before commissioning the measuring device:
‣ Make sure that the post-installation and post-connection checks have been performed.
• "Post-installation check" checklist → 35
• "Post-connection check" checklist → 47
10.2 Switching on the measuring device
‣ After a successful function check, switch on the measuring device.
After a successful startup, the local display switches automatically from the startup display to the operational display.
If nothing appears on the local display or a diagnostic message is displayed, refer to
the section on "Diagnostics and troubleshooting" → 105.
10.3 Establishing a connection via FieldCare
• For FieldCare connection → 68
• For establishing a connection via FieldCare → 68
• For FieldCare user interface → 69
10.4 Configuring the device address via software
In the "Communication" submenu the device address can be set.
Navigation
"Setup" menu → Communication → Device address
10.4.1 Ethernet network and Web server
When delivered, the measuring device has the following factory settings:
IP address
Subnet mask
Default gateway
192.168.1.212
255.255.255.0
192.168.1.212
• If hardware addressing is active, software addressing is disabled.
• If a switch is made to hardware addressing, the address configured via software addressing is retained for the first 9 places (the first three octets).
• If the IP address of the device is not known, the device address currently configured
10.5 Setting the operating language
Factory setting: English or ordered local language
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Commissioning
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X X X X X X X X X
20.50
XX XX
Main menu
Language
0104-1
Operation
Setup
Language
à English
Deutsch
Español
Français
English
Language
à English
Deutsch
Español
Français
0104-1
Hauptmenü
Sprache
0104-1
Betrieb
Setup
0104-1
Deutsch
21 Taking the example of the local display
A0013996
10.6 Configuring the measuring device
The Setup menu with its guided wizards contains all the parameters needed for standard operation.
Navigation to the Setup menu
X X X X X X X X X
20.50
mA
Main menu
Language
0104-1
English
Display/operat.
Setup
Main menu
Display/operat.
Setup
Diagnostic
/ ../Setup
Status input
XXXXXXXXX
XXXXXXXXX
22 Using the example of the local display
Navigation
"Setup" menu
A0017444-EN
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Proline Promag W 400 EtherNet/IP
Setup
Device tag
‣ System units
Volume flow unit
Volume unit
Conductivity unit
Temperature unit
Mass flow unit
Mass unit
Density unit
‣ Communication
MAC address
Default network settings
DHCP client
IP address
Subnet mask
Default gateway
‣ Display
Format display
Value 1 display
0% bargraph value 1
100% bargraph value 1
Value 2 display
Value 3 display
0% bargraph value 3
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Commissioning
77
Commissioning
100% bargraph value 3
Value 4 display
‣ Low flow cut off
Assign process variable
On value low flow cutoff
Off value low flow cutoff
Pressure shock suppression
‣ Empty pipe detection
Empty pipe detection
New adjustment
Switch point empty pipe detection
Response time empty pipe detection
‣ Advanced setup
Enter access code
‣ Sensor adjustment
Installation direction
‣ Totalizer 1 to 3
Assign process variable
Unit totalizer
Totalizer operation mode
Failure mode
‣ Display
Format display
Value 1 display
0% bargraph value 1
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100% bargraph value 1
Decimal places 1
Value 2 display
Decimal places 2
Value 3 display
0% bargraph value 3
100% bargraph value 3
Decimal places 3
Value 4 display
Decimal places 4
Display language
Display interval
Display damping
Header
Header text
Separator
Backlight
‣ Electrode cleaning circuit
Electrode cleaning circuit
ECC duration
ECC recovery time
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Commissioning
79
Commissioning Proline Promag W 400 EtherNet/IP
ECC cleaning cycle
ECC Polarity
‣ Administration
‣ Define access code
Define access code
Confirm access code
Device reset
10.6.1 Defining the tag name
To enable fast identification of the measuring point within the system, you can enter a unique designation using the Device tag parameter and thus change the factory setting.
1 XXXXXXXXX
Device tag
Parameter
23 Header of the operational display with tag name
1 Device tag
The number of characters displayed depends on the characters used.
Entry of the tag name in the "FieldCare" operating tool → 69
Navigation
"Setup" menu → Device tag
Parameter overview with brief description
Description
Enter the name for the measuring point.
User entry
Max. 32 characters, such as letters, numbers or special characters (e.g. @, %, /).
Factory setting
Promag 400
A0013375
10.6.2 Setting the system units
In the System units submenu the units of all the measured values can be set.
Navigation
"Setup" menu → Advanced setup → System units
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Parameter
Volume flow unit
Volume unit
Conductivity unit
Temperature unit
Mass flow unit
‣ System units
Volume flow unit
Volume unit
Conductivity unit
Temperature unit
Mass flow unit
Mass unit
Density unit
Corrected volume flow unit
Corrected volume unit
Parameter overview with brief description
Description
Select volume flow unit.
Result
The selected unit applies for:
• Output
• Low flow cut off
• Simulation process variable
Select volume unit.
Result
The selected unit is taken from: Volume flow unit parameter
Select conductivity unit.
Result
The selected unit applies for:
Simulation process variable
Select temperature unit.
Result
The selected unit applies for:
• Output
• Reference temperature
• Simulation process variable
Select mass flow unit.
Result
The selected unit applies for:
• Output
• Low flow cut off
• Simulation process variable
Selection
Unit choose list
Unit choose list
Unit choose list
Unit choose list
Unit choose list
Commissioning
Factory setting
Country-specific:
• l/h
• gal/min (us)
Country-specific:
• l
• gal (us)
µS/cm
Country-specific:
• °C (Celsius)
• °F (Fahrenheit)
Country-specific:
• kg/h
• lb/min
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Commissioning
Mass unit
Parameter
Density unit
MAC address
Parameter
Default network settings
DHCP client
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Description
Select mass unit.
Result
The selected unit is taken from: Mass flow unit parameter
Select density unit.
Result
The selected unit applies for:
• Output
• Simulation process variable
• Density adjustment (in Expert menu)
Selection
Unit choose list
Unit choose list
Factory setting
Country-specific:
• kg
• lb
Country-specific:
• kg/l
• lb/ft³
10.6.3 Configuring the communication interface
The Communication submenu guides you systematically through all the parameters that have to be configured for selecting and setting the communication interface.
Navigation
"Setup" menu → Communication
‣ Communication
MAC address
Default network settings
DHCP client
IP address
Subnet mask
Default gateway
Parameter overview with brief description
Description User interface / Selection /
User entry
Displays the MAC address of the measuring device.
MAC = Media Access Control
Unique 12-digit character string comprising letters and numbers, e.g.:
00:07:05:10:01:5F
Select whether to restore network settings.
• Off
• On
Select to activate/deactivate DHCP client functionality.
Result
If the web server's DHCP client functionality is activated, the IP address, subnet mask and default gateway are automatically set.
Identification is via the MAC address of the measuring device.
• Off
• On
Factory setting
Each measuring device is given an individual address.
Off
On
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Proline Promag W 400 EtherNet/IP
IP address
Subnet mask
Parameter
Default gateway
Commissioning
Description
IP address of the Web server of the measuring device.
Displays the subnet mask.
Displays the default gateway.
User interface / Selection /
User entry
4 octet: 0 to 255 (in the particular octet)
4 octet: 0 to 255 (in the particular octet)
4 octet: 0 to 255 (in the particular octet)
Factory setting
192.168.1.212
255.255.255.0
0.0.0.0
10.6.4 Configuring the local display
The Display wizard guides you systematically through all the parameters that can configured for configuring the local display.
Navigation
"Setup" menu → Display
Structure of the wizard
Format display
Value 1 display
0% bargraph value 1
100% bargraph value 1
Value 2 display
Value 3 display
0% bargraph value 3
100% bargraph value 3
Value 4 display
End of wizard
A0013797-EN
24 "Display" wizard in the "Setup" menu
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Commissioning
Parameter
Format display
Value 1 display
0% bargraph value 1
100% bargraph value 1
Value 2 display
Value 3 display
0% bargraph value 3
100% bargraph value 3
Value 4 display
Proline Promag W 400 EtherNet/IP
Parameter overview with brief description
–
–
–
–
–
–
Prerequsite
An option was selected in the
Value 3 display parameter.
An option was selected in the
Value 3 display parameter.
–
Description
Select how measured values are shown on the display.
Select the measured value that is shown on the local display.
Enter 0% value for bar graph display.
Enter 100% value for bar graph display.
Select the measured value that is shown on the local display.
Select the measured value that is shown on the local display.
Enter 0% value for bar graph display.
Enter 100% value for bar graph display.
Select the measured value that is shown on the local display.
Selection / User entry
• 1 value, max. size
• 1 bargraph + 1 value
• 2 values
• 1 value large + 2 values
• 4 values
• Volume flow
• Mass flow
• Conductivity
• Temperature
• Electronic temperature
• Totalizer 1
• Totalizer 2
• Totalizer 3
Signed floating-point number
Signed floating-point number
Picklist (see 1st display value)
Picklist (see 1st display value)
Signed floating-point number
Signed floating-point number
Picklist (see 1st display value)
Factory setting
1 value, max. size
Volume flow
0 l/h
0.025 l/h
None
None
0
0
None
10.6.5 Configuring the low flow cut off
The Low flow cut off wizard guides you systematically through all the parameters that have to be set for configuring the low flow cut off.
Navigation
"Setup" menu → Low flow cut off
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Structure of the wizard
Parameter
Assign process variable
On value low flow cutoff
Off value low flow cutoff
Pressure shock suppression
Commissioning
Off
Assign variable
Volume flow Mass flow
On value
Off value
Pres. shock sup.
End of wizard
25 "Low flow cut off" wizard in the "Setup" menu
Parameter overview with brief description
Description
Enter time frame for signal suppression (= active pressure shock suppression).
Selection / User entry Factory setting
Select process variable for low flow cut off.
• Off
• Volume flow
• Mass flow
Enter on value for low flow cut off.
Enter off value for low flow cut off.
Signed floating-point number
0 to 100.0 %
Volume flow
0 l/h
50 %
0 to 100 s 0 s
A0020524-EN
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Commissioning Proline Promag W 400 EtherNet/IP
10.6.6 Configuring empty pipe detection
The Empty pipe detection wizard guides you systematically through all the parameters that have to be set for configuring the low flow cut off.
Navigation
"Setup" menu → Empty pipe detection
Structure of the wizard
Empty pipe det.
Off
Cancel
Ok
On
New adjustment
Empty pipe adj.
Full pipe adjust.
Progress
Busy Not ok
Switch point EPD
Response time
End of wizard
26 "Empty pipe detection" wizard in the "Setup" menu
Parameter
Empty pipe detection
New adjustment
Progress
Parameter overview with brief description
Description
Switch empty pipe detection on and off.
Select type of adjustment.
Selection / User interface /
User entry
• Off
• On
• Cancel
• Empty pipe adjust
• Full pipe adjust
• Ok
• Busy
• Not ok
0 to 100 %
Off
Cancel
50 %
Factory setting
Switch point empty pipe detection Enter hysteresis in %, below this value the measuring tube will detected as empty.
Response time empty pipe detection Enter the time before diagnostic message
S862 ''Pipe empty'' is displayed for empty pipe detection.
0 to 100 s 1 s
A0017210-EN
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10.7 Advanced settings
The Advanced setup submenu with its submenus contains parameters for specific settings.
Navigation to the "Advanced setup" submenu
X X X X X X X X X
20.50
mA
Main menu
Language
0104-1
English
Display/operat.
Setup
Main menu
Display/operat.
Setup
Diagnostic
/ ../Setup
Status input
XXXXXXXXX
XXXXXXXXX
/ ../Setup
XXXXXXXXX
XXXXXXXXX
Advanced setup
/ ../Advanced setup
Ent. access code
Device tag
Def. access code
0092-1
✱✱✱✱
A0017519-EN
27 Taking the example of the local display
Navigation
"Setup" menu → Advanced setup
‣
Advanced setup
Enter access code
‣ Sensor adjustment
Installation direction
‣ Totalizer 1 to 3
Assign process variable
Unit totalizer
Endress+Hauser 87
Commissioning
Totalizer operation mode
Failure mode
‣ Display
Format display
Value 1 display
0% bargraph value 1
100% bargraph value 1
Decimal places 1
Value 2 display
Decimal places 2
Value 3 display
0% bargraph value 3
100% bargraph value 3
Decimal places 3
Value 4 display
Decimal places 4
Display language
Display interval
Display damping
Header
Header text
Separator
Backlight
‣ Electrode cleaning circuit
Electrode cleaning circuit
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Parameter
Installation direction
ECC duration
ECC recovery time
ECC cleaning cycle
ECC Polarity
‣ Administration
‣ Define access code
Define access code
Confirm access code
Device reset
10.7.1 Carrying out a sensor adjustment
The Sensor adjustment submenu contains parameters that pertain to the functionality of the sensor.
Navigation
"Setup" menu → Advanced setup → Sensor adjustment
‣ Sensor adjustment
Installation direction
Parameter overview with brief description
Description
Set sign of flow direction to match the direction of the arrow on the sensor.
Selection
• Flow in arrow direction
• Flow against arrow direction
Factory setting
Flow in arrow direction
10.7.2 Configuring the totalizer
In the "Totalizer 1 to 3" submenu the individual totalizer can be configured.
Navigation
"Setup" menu → Advanced setup → Totalizer 1 to 3
‣ Totalizer 1 to 3
Assign process variable
Unit totalizer
Endress+Hauser 89
Commissioning
Parameter
Assign process variable
Unit totalizer
Totalizer operation mode
Failure mode
Totalizer operation mode
Failure mode
Parameter overview with brief description
Description
Select process variable for totalizer.
Select process variable totalizer unit.
Selection
• Off
• Volume flow
• Mass flow
Unit choose list
Select totalizer calculation mode.
• Net flow total
• Forward flow total
• Reverse flow total
Define totalizer behavior in alarm condition. • Stop
• Actual value
• Last valid value
Proline Promag W 400 EtherNet/IP
Factory setting
Volume flow l
Net flow total
Stop
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10.7.3 Carrying out additional display configurations
In the Display submenu you can set all the parameters associated with the configuration of the local display.
Navigation
"Setup" menu → Advanced setup → Display
‣ Display
Format display
Value 1 display
0% bargraph value 1
100% bargraph value 1
Decimal places 1
Value 2 display
Decimal places 2
Value 3 display
0% bargraph value 3
100% bargraph value 3
Decimal places 3
Value 4 display
Decimal places 4
Display language
Display interval
Display damping
Header
Header text
Separator
Backlight
Endress+Hauser 91
0% bargraph value 1
100% bargraph value 1
Decimal places 1
Value 2 display
Decimal places 2
Value 3 display
0% bargraph value 3
100% bargraph value 3
Decimal places 3
Value 4 display
Decimal places 4
Commissioning
Parameter
Format display
Value 1 display
Proline Promag W 400 EtherNet/IP
Parameter overview with brief description
–
–
–
–
–
–
–
–
–
–
Prerequsite
An option was selected in the
Value 3 display parameter.
An option was selected in the
Value 3 display parameter.
–
Description
Select how measured values are shown on the display.
Select the measured value that is shown on the local display.
Enter 0% value for bar graph display.
Enter 100% value for bar graph display.
Select the number of decimal places for the display value.
Select the measured value that is shown on the local display.
Select the number of decimal places for the display value.
Select the measured value that is shown on the local display.
Enter 0% value for bar graph display.
Enter 100% value for bar graph display.
Select the number of decimal places for the display value.
Select the measured value that is shown on the local display.
Select the number of decimal places for the display value.
Selection / User entry
• 1 value, max. size
• 1 bargraph + 1 value
• 2 values
• 1 value large + 2 values
• 4 values
• Volume flow
• Mass flow
• Conductivity
• Temperature
• Electronic temperature
• Totalizer 1
• Totalizer 2
• Totalizer 3
Signed floating-point number
Signed floating-point number
• x
• x.x
• x.xx
• x.xxx
• x.xxxx
Picklist (see 1st display value)
• x
• x.x
• x.xx
• x.xxx
• x.xxxx
Picklist (see 1st display value)
Signed floating-point number
Signed floating-point number
• x
• x.x
• x.xx
• x.xxx
• x.xxxx
Picklist (see 1st display value)
• x
• x.x
• x.xx
• x.xxx
• x.xxxx
Factory setting
1 value, max. size
Volume flow
0 l/h
0.025 l/h x.xx
None x.xx
None
0
0 x.xx
None x.xx
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Parameter
Display language
Display interval
Display damping
Header
Header text
Separator
Backlight
Commissioning
–
–
–
–
–
–
–
Prerequsite Description
Set display language.
Set time measured values are shown on display if display alternates between values.
Set display reaction time to fluctuations in the measured value.
Select header contents on local display.
Enter display header text.
Select decimal separator for displaying numerical values.
Switch the local display backlight on and off.
Only for device version with onsite display SD03
(touch control)
Selection / User entry
• English
• Deutsch
• Français
• Español
• Italiano
• Nederlands
• Portuguesa
• Polski
• русский язык
(Russian)
• Svenska
• Türkçe
• 中文 (Chinese)
• 日本語 (Japanese)
• 한국어 (Korean)
• ةّيبَرَعْلا (Arabic)
• Bahasa Indonesia
• ภาษาไทย (Thai)
• tiếng Việt
(Vietnamese)
• čeština (Czech)
1 to 10 s
0.0 to 999.9 s
• Device tag
• Free text
• .
• ,
• Disable
• Enable
Factory setting
English
(alternatively, the ordered language is preset in the device)
5 s
0.0 s
Device tag
.
------------
Enable
10.7.4 Performing electrode cleaning
The Electrode cleaning circuit wizard guides you systematically through all the parameters that have to be set for configuring electrode cleaning.
The wizard only appears if the device was ordered with an electrode cleaning circuit.
Navigation
"Setup" menu → Advanced setup → Electrode cleaning circuit
‣
Electrode cleaning circuit
Electrode cleaning circuit
ECC duration
ECC recovery time
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Commissioning
Parameter
Electrode cleaning circuit
ECC duration
ECC recovery time
ECC cleaning cycle
ECC Polarity
Parameter
Define access code
Device reset
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ECC cleaning cycle
ECC Polarity
Parameter overview with brief description
Enter the duration of electrode cleaning in seconds.
Description Selection / User entry / User interface
Enable the cyclic electrode cleaning circuit.
• Off
• On
0.01 to 30 s
Define recovery time after electrode cleaning. During this time the current output values will be held at last valid value.
1 to 3.0
+38 s
Enter the pause duration between electrode cleaning cycles.
Select the polarity of the electrode cleaning circuit.
0.5 to 168 h
• Positive
• Negative
Off
2 s
5 s
40 min
Factory setting
Depends on the electrode material
10.7.5 Administration configuration
The Administration submenu contains administrative parameters.
Navigation
"Setup" menu → Advanced setup → Administration
‣ Administration
Define access code
Device reset
Parameter overview with brief description
Description
Restrict write-access to parameters to protect the configuration of the device against unintentional changes via the local display.
Restart or reset device manually.
User entry / Selection
0 to 9 999
• Cancel
• To delivery settings
• Restart device
0
Cancel
Factory setting
10.8 Configuration management
After commissioning, you can save the current device configuration, copy it to another measuring point or restore the previous device configuration.
You can do so using the Configuration management parameter and the related options found in the Configuration backup display submenu.
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Navigation
"Setup" menu → Advanced setup → Configuration backup display
‣ Configuration backup display
Operating time
Last backup
Configuration management
Comparison result
Parameter
Operating time
Last backup
Configuration management
Comparison result
Commissioning
Parameter overview with brief description
Prerequsite
–
–
A local display is provided.
– Comparison between present device data and display backup.
Description
Indicates how long the device has been in operation.
Indicates when the last data backup was saved to the display module.
Select action for managing the device data in the display module.
User interface /
Selection
Days (d), hours (h), minutes (m), seconds
(s)
Days (d), hours (h), minutes (m), seconds
(s)
• Cancel
• Execute backup
• Restore
• Duplicate
• Compare
• Clear backup data
• Settings identical
• Settings not identical
• No backup available
• Backup settings corrupt
• Check not done
• Dataset incompatible
–
–
Factory setting
Cancel
Check not done
10.8.1 Function range of "Configuration management" parameter
Options
Execute backup
Restore
Duplicate
Description
The current device configuration is backed up from the integrated HistoROM to the device's display module. The backup copy includes the transmitter data of the device.
The last backup copy of the device configuration is restored from the display module to the device's integrated HistoROM. The backup copy includes the transmitter data of the device.
The transmitter configuration from another device is duplicated to the device using the display module.
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Options
Compare
Clear backup data
Description
The device configuration saved in the display module is compared with the current device configuration of the integrated HistoROM.
The backup copy of the device configuration is deleted from the display module of the device.
While this action is in progress, the configuration cannot be edited via the local display and a message on the processing status appears on the display.
10.9 Simulation
The Simulation submenu enables you to simulate, without a real flow situation, various process variables in the process and the device alarm mode and to verify downstream signal chains (switching valves or closed-control loops).
The parameters displayed depend on:
• The selected device order
• The set operating mode of the pulse/frequency/switch outputs
Navigation
"Diagnostics" menu → Simulation
‣ Simulation
Assign simulation process variable
Value process variable
Simulation device alarm
Diagnostic event category
Simulation diagnostic event
Parameter overview with brief description
Parameter
Assign simulation process variable
Value process variable
Simulation device alarm
–
Prerequsite
A process variable is selected in the Assign simulation process variable parameter.
– activated.
Description
Select a process variable for the simulation process that is
Enter the simulation value for the selected process variable.
Selection / User entry
• Off
• Volume flow
• Mass flow
• Conductivity
Signed floating-point number
Switch the device alarm on and off.
• Off
• On
Off
0
Off
Factory setting
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Parameter
Diagnostic event category
Simulation diagnostic event
Commissioning
–
–
Prerequsite Description
Select the category of the diagnostic event.
Switch simulation of the diagnostic event on and off.
For the simulation, you can choose from the diagnostic events of the category selected in the Diagnostic event category parameter.
Selection / User entry
• Sensor
• Electronics
• Configuration
• Process
• Off
• Picklist
Diagnostic events
(depends on the selected category)
Factory setting
Process
Off
10.10 Protecting settings from unauthorized access
The following options exist for protecting the configuration of the measuring device from unintentional modification after commissioning:
• Write protection via access code for the local display and Web browser
• Write protection via write protection switch
• Write protection via keypad lock → 62
10.10.1 Write protection via access code
The effects of the customer-specific access code are as follows:
• Via local operation, the parameters for the measuring device configuration are writeprotected and their values can no longer be changed.
• Device access via the Web browser is protected, as are the parameters for the measuring device configuration.
Navigation
"Setup" menu → Advanced setup → Administration → Define access code
‣ Define access code
Define access code
Confirm access code
Defining the access code via local display
1. Navigate to the Enter access code parameter.
2. Max. Define a max. 4-digit numeric code as an access code.
3. Enter the access code again to confirm the code.
The -symbol appears in front of all write-protected parameters.
The device automatically locks the write-protected parameters again if a key is not pressed for 10 minutes in the navigation and editing view. The device locks the write-protected
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Commissioning Proline Promag W 400 EtherNet/IP parameters automatically after 60 s if the user skips back to the operational display mode from the navigation and editing view.
• If write access is activated via access code, it can be also be deactivated only via the
• The user role with which the user is currently logged on via the local display
Access status display parameter. Navigation path:
"Operation" menu → Access status display
Parameters which can always be modified via the local display
Certain parameters that do not affect the measurement are excepted from write protection via the local display. Despite the defined access code, these parameters can always be modified even if the other parameters are locked.
Defining the access code via the Web browser
1. Navigate to the "Enter access code" parameter .
2. Max. Define a max. 4-digit numeric code as an access code.
3. Enter the access code again to confirm the code.
The Web browser switches to the login page.
If no action is performed for 10 minutes, the Web browser automatically returns to the login page.
The user role with which the user is currently logged on via the Web browser is indicated by the Access status tooling parameter.
Navigation path: "Operation" menu → Access status tooling
10.10.2 Write protection via write protection switch
Unlike write protection via a user-specific access code, this allows write access to the entire operating menu - other than the "Contrast display" parameter - to be locked.
The parameter values are now read only and cannot be edited any more (exception
"Contrast display" parameter ):
Via local display
4
3
2
1
4
3
2
1
2
1
ON OFF
Default Ethernet network settings
IP 192.168.1.212
Write protection
128
64
32
16
8
4
2
1
A0023059
1. Loosen the 4 fixing screws on the housing cover and open the housing cover.
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2. Setting the write protection switch (WP) on the main electronics module to the ON position enables the hardware write protection. Setting the write protection switch
(WP) on the main electronics module to the OFF position (factory setting) disables the hardware write protection.
If hardware write protection is enabled, the Locking status parameter displays the Hardware locked option. In addition, on the local display the -symbol appears in front of the parameters in the header of the operational display and in the navigation view.
X X X X X X X X X
20.50
XX XX
A0015870
If hardware write protection is disabled, no option is displayed in the Locking status parameter. On the local display, the -symbol disappears from in front of the parameters in the header of the operational display and in the navigation view.
3.
WARNING! Excessive tightening torque applied to the fixing screws! Risk of damaging the plastic transmitter. Tighten the fixing screws as per the tightening
Reverse the removal procedure to reassemble the transmitter.
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11 Operation
11.1 Read out and modify current Ethernet settings
If the Ethernet settings such as the IP address of the measuring device are unknown, they can be read out and modified as explained in the following example for an IP address.
4
3
2
1
4
3
2
1
2
ON OFF Default Ethernet network settings
IP 192.168.1.212
1 Write protection
128
64
32
16
8
4
2
1
A0023058
Prerequisite
• Software addressing is enabled: All the DIP switches for hardware addressing are set to
OFF
• Measuring device is switched on.
1. Set the DIP switch for "Default Ethernet network settings, IP 192.168.1.212" from
OFF → ON .
2. Restart the device.
The device's Ethernet settings are reset to their factory settings:
IP address: 192.168.1.212; Subnet mask: 255.255.255.0; Default gateway:
192.168.1.212
3. Enter the default setting for the IP address in the address line of the Web browser.
4. Navigate to IP address parameter in the operating menu: "Setup" menu
→ Communication → IP address
The parameter displays the configured IP address.
5. Change the IP address of the device if necessary.
6. Set the DIP switch for "Default Ethernet network settings, IP 192.168.1.212" from ON
→ OFF .
7. Restart the device.
The modified IP address of the device is now enabled.
11.2 Reading the device locking status
The write protection types that are currently active can be determined using the Locking status parameter.
Navigation
"Operation" menu → Locking status
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Function scope of "Locking status" parameter
Options
None
Hardware locked
Temporarily locked
Description
The access status displayed in "Access status display" parameter
Only appears on local display.
The DIP switch for hardware locking is activated on the main electronics module.
This locks write access to the parameters .
Write access to the parameters is temporarily lock due to device-internal processing (e.g. data upload/download, reset). Once the internal processing has been completed, the parameters can be changed once again.
11.3 Adjusting the operating language
For information on the operating languages supported by the measuring device
11.4 Configuring the display
• Basic settings for local display → 83
• Advanced settings for local display → 91
11.5 Reading measured values
With the Measured values submenu, it is possible to read all the measured values.
11.5.1 Process variables
The Process variables submenu contains all the parameters needed to display the current measured values for every process variable.
Navigation
"Diagnostics" menu → Measured values → Process variables
‣ Process variables
Volume flow
Mass flow
Conductivity
Volume flow
Parameter
Mass flow
Conductivity
Parameter overview with brief description
Description
Displays the volume flow currently measured.
Displays the mass flow currently calculated.
Displays the corrected volume flow currently calculated.
User interface
Signed floating-point number
Signed floating-point number
Signed floating-point number
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Operation
Parameter
Totalizer value 1 to 3
Totalizer overflow 1 to 3
Proline Promag W 400 EtherNet/IP
11.5.2 Totalizer
The Totalizer submenu contains all the parameters needed to display the current measured values for every totalizer.
Navigation
"Diagnostics" menu → Measured values → Totalizer
‣ Totalizer
Totalizer value 1 to 3
Totalizer overflow 1 to 3
Parameter overview with brief description
Prerequsite
In the Assign process variable parameter in the Totalizer 1 to 3 submenu, one of the following options is selected:
• Volume flow
• Mass flow
In the Assign process variable parameter in the Totalizer 1 to 3 submenu, one of the following options is selected:
• Volume flow
• Mass flow
Description
Displays the current totalizer counter value.
Displays the current totalizer overflow.
User interface
Signed floating-point number
Integer with sign
0 l
Factory setting
0
11.6 Adapting the measuring device to the process conditions
The following are available for this purpose:
• Basic settings using the Setup menu
• Advanced settings using the Advanced setup submenu
11.7 Performing a totalizer reset
Function scope of "Control Totalizer " parameter
Options
Totalize
Reset + hold
Preset + hold
Reset + totalize
Preset + totalize
Description
The totalizer is started.
The totaling process is stopped and the totalizer is reset to 0.
The totaling process is stopped and the totalizer is set to its defined start value from the Preset value parameter.
The totalizer is reset to 0 and the totaling process is restarted.
The totalizer is set to the defined start value in Preset value parameterand the totaling process is restarted.
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Function scope of "Reset all totalizers" parameter
Options
Reset + totalize
Description
Resets all totalizers to 0 and restarts the totaling process. This deletes all the flow values previously totalized.
Navigation
"Operation" menu → Operation
‣ Totalizer handling
Control Totalizer 1 to 3
Preset value 1 to 3
Reset all totalizers
Parameter
Control Totalizer 1 to 3
Preset value 1 to 3
Reset all totalizers
Parameter overview with brief description
Description
Control totalizer value.
Specify start value for totalizer.
Reset all totalizers to 0 and start.
Selection / User entry
• Totalize
• Reset + hold
• Preset + hold
• Reset + totalize
• Preset + totalize
Totalize
Signed floating-point number 0 l
• Cancel
• Reset + totalize
Cancel
Factory setting
11.8 Showing data logging
In the device, the extended function of the HistoROM must be enabled (order option) so that the Data logging submenu appears. This contains all the parameters for the measured value history.
The data logging history is also available via the FieldCare plant asset management
Function scope
• A total of 1000 measured values can be stored
• 4 logging channels
• Adjustable logging interval for data logging
• Display of the measured value trend for each logging channel in the form of a chart
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28 Chart of a measured value trend
A0016222
103
Operation
Parameter
Assign channel 1 to 4
Logging interval
Clear logging data
Proline Promag W 400 EtherNet/IP
• x-axis: depending on the number of channels selected displays 250 to 1000 measured values of a process variable.
• y-axis: displays the approximate measured value span and constantly adapts this to the ongoing measurement.
If the length of the logging interval or the assignment of the process variables to the channels is changed, the content of the data logging is deleted.
Navigation
"Diagnostics" menu → Data logging
"Data logging" submenu
‣ Data logging
Assign channel 1
Assign channel 2
Assign channel 3
Assign channel 4
Logging interval
Clear logging data
‣ Display channel 1
‣
Display channel 2
‣ Display channel 3
‣ Display channel 4
Parameter overview with brief description
Description
Define the logging interval for data logging.
This value defines the time interval between the individual data points in the memory.
Selection / User entry
Assign process variable to logging channel.
• Off
• Volume flow
• Mass flow
• Flow velocity
• Conductivity
• Electronic temperature
1.0 to 3 600.0 s
Clear the entire logging data.
• Cancel
• Clear data
Off
10.0 s
Cancel
Factory setting
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12 Diagnostics and troubleshooting
12.1 General troubleshooting
For local display
Problem
Local display dark and no output signals
Local display dark and no output signals
Local display dark and no output signals
Local display dark and no output signals
Supply voltage does not match that specified on the nameplate.
No contact between connecting cables and terminals.
Terminals are not plugged into the main electronics module correctly.
Main electronics module is defective.
Possible causes Remedial action
Apply the correct supply voltage .
Check the connection of the cables and correct if necessary.
Check terminals.
Local display dark and no output signals
Local display dark and no output signals
Local display is dark, but signal output is within the valid range
The connector between the main electronics module and display module is not plugged in correctly.
The connecting cable is not plugged in correctly.
Check the connection and correct if necessary.
1. Check the connection of the electrode cable and correct if necessary.
2. Check the connection of the coil current cable and correct if necessary.
Display is set too bright or too dark. • Set the display brighter by simultaneously pressing + .
• Set the display darker by simultaneously pressing + .
Display module is defective.
Local display is dark, but signal output is within the valid range
Backlighting of local display is red Diagnostic event with "Alarm" diagnostic behavior has occurred.
Text on local display appears in a foreign language and cannot be understood.
Incorrect operating language is configured.
Take remedial measures → 114
Message on local display:
"Communication Error"
"Check Electronics"
Communication between the display module and the electronics is interrupted.
1. Press + for 2 s ("home position").
2. Press .
3. Set the desired language in the
Language parameter.
• Check the cable and the connector between the main electronics module and display module.
For output signals
Problem
Signal output outside the valid range
Device shows correct value on local display, but signal output is incorrect, though in the valid range.
Device measures incorrectly.
Possible causes
Main electronics module is defective.
Configuration error
Configuration error or device is operated outside the application.
Remedial action
Check and correct parameter configuration.
1. Check and correct parameter configuration.
2. Observe limit values specified in the "Technical Data".
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For access
Problem
No write access to parameters
No write access to parameters
No connection via EtherNet/IP
Not connecting to Web server
Not connecting to Web server
Not connecting to Web server
Not connecting to Web server
No or incomplete display of contents in the Web browser
Web browser frozen and operation no longer possible
Web browser frozen and operation no longer possible
Content of Web browser incomplete or difficult to read
Content of Web browser incomplete or difficult to read
Possible causes Remedial action
Hardware write protection enabled Set the write protection switch on the main electronics module to the
OFF position .
Current user role has limited access authorization
Device plug connected incorrectly
Incorrect setting for the Ethernet interface of the computer
2. Enter correct customer-specific
Check the pin assignment of the device plug .
1. Check the properties of the
Internet protocol (TCP/IP) → 64.
2. Check the network settings with the IT manager.
Web server disabled
The use of the proxy server is not disabled in the Web browser settings of the computer.
Other network connections or programs are still active on the computer.
• JavaScript not enabled
• JavaScript cannot be enabled
Via the "FieldCare" operating tool check whether the Web server of the measuring device is enabled
and enable it if necessary → 67.
Disable the use of the proxy server in the Web browser settings of the computer.
Using the example of MS Internet
Explorer:
1. Under Control Panel open
Internet options .
2. Select the Connections tab and then double-click LAN settings .
3. In the LAN settings disable the use of the proxy server and select
OK to confirm.
• Make sure that no other network connections are established by the computer (also no WLAN) and close other programs withe network access to the computer.
• If using a docking station for notebooks make sure that a network connection to another network is not active.
1. Enable JavaScript.
2. Enter http://192.168.1.212/ basic.html as the IP address.
Data transfer active
Connection lost
Not using optimum version of Web server.
Unsuitable view settings.
Wait until data transfer or current action is finished.
1. Check cable connection and power supply.
2. Refresh the Web browser and restart if necessary.
1. Use the correct Web browser
2. Clear the Web browser cache and restart the Web browser.
Change the font size/display ratio of the Web browser.
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12.2 Diagnostic information via light emitting diodes
12.2.1 Transmitter
Various light emitting diodes (LEDs) on the main electronics module of the transmitter provide information on device status.
Power
LED
Device status
Off
Green
Green
Flashing red
Color
Red
Alternately flashing red/ green
Network status Off
Green
Link/Activity Orange
Flashing orange
Communication Flashing white
Alarm
Flashing green
Red
Flashing red
Green
Flashing green
Off
Red
Flashing red
Flashing red/green
Meaning
Supply voltage is off or too low
Supply voltage is ok
Device status is ok
A device error of diagnostic behavior "Warning" has occurred
A device error of diagnostic behavior "Alarm" has occurred
Boot loader is active
Device has no EtherNet/IP address
Device's EtherNet/IP connection is active
Device has EtherNet/IP address but no EtherNet/IP connection
EtherNet/IP address of the device has been assigned twice
Device's EtherNet/IP connection is in timeout mode
Link available but no activity
Activity present
Measuring device is ok
Measuring device not configured
Firmware error
Main error
Error
Start measuring device
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12.3 Diagnostic information on local display
12.3.1 Diagnostic message
Faults detected by the self-monitoring system of the measuring device are displayed as a diagnostic message in alternation with the operational display.
Operational display in alarm condition
2 1
Diagnostic message
S
X
X X X X X X X X X
20.50
S
XX
X X X X X X X X X
S801
Supply voltage i Menu
3
4
5
A0013939-EN
3
4
1
2
5
Status signal
Diagnostic behavior
Diagnostic behavior with diagnostic code
Short text
Operating elements
If two or more diagnostic events are pending simultaneously, only the message of the diagnostic event with the highest priority is shown.
Other diagnostic events that have occurred can be called up in the Diagnostics menu:
Status signals
The status signals provide information on the state and reliability of the device by categorizing the cause of the diagnostic information (diagnostic event).
The status signals are categorized according to VDI/VDE 2650 and NAMUR
Recommendation NE 107: F = Failure, C = Function Check, S = Out of Specification, M
= Maintenance Required
Symbol Meaning
Failure
A device error has occurred. The measured value is no longer valid.
A0013956
Function check
The device is in service mode (e.g. during a simulation).
A0013959
A0013958
Out of specification
The device is operated:
Outside its technical specification limits (e.g. outside the process temperature range)
Maintenance required
Maintenance is required. The measured value remains valid.
A0013957
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Diagnostic behavior
Symbol
A0013961
Meaning
Alarm
• Measurement is interrupted.
• Signal outputs and totalizers assume the defined alarm condition.
• A diagnostic message is generated.
• The background lighting changes to red.
A0013962
Warning
Measurement is resumed. The signal outputs and totalizers are not affected. A diagnostic message is generated.
Diagnostic information
The fault can be identified using the diagnostic information. The short text helps you by providing information about the fault. In addition, the corresponding symbol for the diagnostic behavior is displayed in front of the diagnostic information on the local display.
Example
Diagnostic behavior
A0013962
Status signal
↓
Diagnostic information
Diagnostic code
Diagnostic number
↓
Short text
↓
Curr.output 1
A0013958
NAMUR
NE 107
441
3-digit number
Operating elements
Key
A0013970
Meaning
Plus key
In a menu, submenu
Opens the message about the remedial measures.
A0013952
Enter key
In a menu, submenu
Opens the operating menu.
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12.3.2 Calling up remedial measures
X
X X X X X X X X X
20.50
S
XX
X X X X X X X X X
S801
Supply voltage i
S
Menu
1
Diagnostic list
Diagnostics 1
S801 Supply voltage
Diagnostics 2
Diagnostics 3
S
2
4
6
Supply voltage (ID:203)
S801 0d00h02m25s
Increase supply voltage
3
5
A0013940-EN
29 Message for remedial measures
1 Diagnostic information
2 Short text
3 Service ID
4 Diagnostic behavior with diagnostic code
5 Operation time of occurrence
6 Remedial measures
The user is in the diagnostic message.
1. Press ( symbol).
The Diagnostic list submenu opens.
2. Select the desired diagnostic event with or and press .
The message for the remedial measures for the selected diagnostic event opens.
3. Press + simultaneously.
The message for the remedial measures closes.
The user is in the Diagnostics menu at an entry for a diagnostics event, e.g. in the
Diagnostic list submenu or the Previous diagnostics parameter.
1. Press .
The message for the remedial measures for the selected diagnostic event opens.
2. Press + simultaneously.
The message for the remedial measures closes.
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12.4 Diagnostic information in the Web browser
12.4.1 Diagnostic options
Any faults detected by the measuring device are displayed in the Web browser on the home page once the user has logged on.
1
Endress+Hauser
2 3
A0017759-EN
1
2
3
Status area with status signal
Diagnostic information → 109
Remedial measures with Service ID
Furthermore, diagnostic events that have occurred can be viewed in the Diagnostics menu:
Status signals
The status signals provide information on the state and reliability of the device by categorizing the cause of the diagnostic information (diagnostic event).
Symbol Meaning
Failure
A device error has occurred. The measured value is no longer valid.
A0017271
Function check
The device is in service mode (e.g. during a simulation).
A0017278
A0017277
Out of specification
The device is operated:
Outside its technical specification limits (e.g. outside the process temperature range)
Maintenance required
Maintenance is required. The measured value is still valid.
A0017276
The status signals are categorized in accordance with VDI/VDE 2650 and NAMUR
Recommendation NE 107.
12.4.2 Calling up remedy information
Remedy information is provided for every diagnostic event to ensure that problems can be rectified quickly. These measures are displayed in red along with the diagnostic event and the related diagnostic information.
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12.5 Diagnostic information in FieldCare
12.5.1 Diagnostic options
Any faults detected by the measuring device are displayed on the home page of the operating tool once the connection has been established.
1
Xxxxxx/…/…/
Device name:
Device tag:
Xxxxxxx
Xxxxxxx
Status signal: Function check (C)
Mass flow:
Volume flow:
12.34
12.34
kg/h
+
+
+
+
P
Xxxxxx
Diagnostics 1:
P
Remedy information:
P
Access status tooling:
Operation
Setup
Diagnostics
Expert
C485 Simu...
Deactivate...
Mainenance
Failure (F)
Function check (C)
Diagnostics 1:
Remedy information:
Out of spezification (S)
C485 Simulation measured vari...
Deactivate Simulation (Service...
Maintenance required (M)
2
3
A0021799-EN
1
Status area with status signal → 108
2
Diagnostic information → 109
3 Remedial measures with Service ID
Furthermore, diagnostic events that have occurred can be viewed in the Diagnostics menu:
Diagnostic information
The fault can be identified using the diagnostic information. The short text helps you by providing information about the fault. In addition, the corresponding symbol for the diagnostic behavior is displayed in front of the diagnostic information on the local display.
Diagnostic behavior
Status signal
↓
Diagnostic information
Diagnostic code
Diagnostic number
↓
Short text
↓
Example Curr.output 1
A0013962 A0013958
NAMUR
NE 107
441
3-digit number
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12.5.2 Calling up remedy information
Remedy information is provided for every diagnostic event to ensure that problems can be rectified quickly:
• On the home page
Remedy information is displayed in a separate field below the diagnostics information.
• In the Diagnostics menu
Remedy information can be called up in the working area of the user interface.
The user is in the Diagnostics menu.
1. Call up the desired parameter.
2. On the right in the working area, mouse over the parameter.
A tool tip with remedy information for the diagnostic event appears.
12.6 Diagnostic information via communication interface
12.6.1 Reading out diagnostic information
The current diagnostic event and associated diagnostic information can be read out via the input assembly (fix assembly):
Bytes
Contents
0 1
↓
2
"Empty" or "Reserved"
3 4
↓
5
"Empty" or "Padding bytes"
6 7
↓
Diagnostic number of diagnostic event which is displayed in the Actual diagnostics parameter
242
For content of bytes 8 to 16
12.7 Adapting the diagnostic information
12.7.1 Adapting the diagnostic behavior
Each item of diagnostic information is assigned a specific diagnostic behavior at the factory. The user can change this assignment for certain diagnostic information in the
Diagnostic behavior submenu .
"Expert" menu → System → Diagnostic handling → Diagnostic behavior
You can assign the following options to the diagnostic number as the diagnostic behavior:
Options
Alarm
Warning
Description
Measurement is interrupted. The totalizers assume the defined alarm condition. A diagnostic message is generated.
The background lighting changes to red.
Measurement is resumed. The totalizers are not affected. A diagnostics message is generated.
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Options Description
Logbook entry only The device continues to measure. The diagnostic message is entered in the Event logbook (events list) submenu only and is not displayed in alternation with the measured value display.
Off The diagnostic event is ignored, and no diagnostic message is generated or entered.
12.8 Overview of diagnostic information
The amount of diagnostic information and the number of measured variables affected increase if the measuring device has one or more application packages.
In the case of some items of diagnostic information, the status signal and the
diagnostic behavior can be changed. Adapt the diagnostic information → 113
Diagnostic number
Short text Remedy instructions
Diagnostic of sensor
004
022
043
062
082
Sensor
Sensor temperature
Sensor short circuit
Sensor connection
Data storage
1. Change sensor
2. Contact service
1.Change main electronic module
2.Change sensor
1.Check sensor and cable 2.Change
sensor or cable
1.Check sensor connections
2.Contact service
1. Check module connections
2. Contact service
083 Memory content 1. Restart device
2. Contact service
Contact service 190 Special event 1
Diagnostic of electronic
201 Device failure
222
242
252
1. Restart device
2. Contact service
Electronic drift Change main electronic module
Software incompatible 1. Check software
2. Flash or change main electronics module
Modules incompatible 1. Check electronic modules 2.
Change electronic modules
262
270
271
272
273
281
283
Module connection 1. Check module connections
2. Change main electronics
Main electronic failure Change main electronic module
Main electronic failure 1. Restart device
2. Change main electronic module
Main electronic failure 1. Restart device
2. Contact service
Main electronic failure Change electronic
Electronic initialization Firmware update active, please wait!
Memory content 1. Reset device 2. Contact service
S
F
S
F
F
F
F
F
F
F
F
F
F
F
F
F
F
F
Status signal
[from the factory]
Diagnostic behavior
[from the factory]
Alarm
Alarm
Warning
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
Alarm
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Endress+Hauser
Diagnostics and troubleshooting
Diagnostic number
Short text Remedy instructions
302
311
311
322
382
383
Device verification active
Electronic failure
Electronic failure
Electronic drift
Data storage
Memory content
Device verification active, please wait.
1. Reset device 2. Contact service
1. Do not reset device
2. Contact service
1.Perform verification manually
2.Change electronic
1. Insert DAT module 2. Change
DAT module
1. Restart device 2. Check or change DAT module 3. Contact service
Contact service
F
M
S
F
F
390 Special event 2
Diagnostic of configuration
410 Data transfer
F
411
437
438
Up-/download active
Configuration incompatible
Dataset
1. Check connection
2. Retry data transfer
F
Up-/download active, please wait C
1. Restart device
2. Contact service
F
M 1. Check data set file
2. Check device configuration
3. Up- and download new configuration
Deactivate flow override C
Deactivate simulation C
453
484
485
495
500
500
530
531
537
Flow override
Simulation failure mode
Simulation measured variable
Simulation diagnostic event
Electrode 1 potential exceeded
Electrode difference voltage too high
Electrode cleaning is running
Empty pipe detection
Configuration
Deactivate simulation
Deactivate simulation
C
C
1. Check process cond.
2. Increase system pressure
1. Check process cond.
2. Increase system pressure
1. Check process cond.
2. Increase system pressure
Execute EPD adjustment
1. Check IP addresses in network 2.
Change IP address
Contact service
F
F
C
S
F
F 590 Special event 3
Diagnostic of process
832
833
834
Electronic temperature too high
Electronic temperature too low
Process temperature too high
835 Process temperature too low
Reduce ambient temperature
Increase ambient temperature
Reduce process temperature
Increase process temperature
S
S
S
S
C
Status signal
[from the factory]
Diagnostic behavior
[from the factory]
Warning
Alarm
Warning
Warning
Alarm
Alarm
Alarm
Alarm
Warning
Alarm
Warning
Warning
Alarm
Warning
Warning
Alarm
Alarm
Warning
Warning
Warning
Alarm
Warning
Warning
Warning
Warning
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Diagnostic
842
862
882
937
938 number
Short text
Process limit
Empty pipe
Input signal
EMC interference
EMC interference
990
1)
Special event 4
Diagnostic status is changeable.
Remedy instructions
Low flow cut off active!
1. Check low flow cut off configuration
1. Check for gas in process
2. Adjust empty pipe detection
1. Check input configuration
2. Check external device or process conditions
Change main electronic module
1. Check ambient conditions regarding EMC influence
2. Change main electronic module
Contact service
S
F
S
F
F
S
Status signal
[from the factory]
Diagnostic behavior
[from the factory]
Warning
Warning
Alarm
Warning
Alarm
Alarm
12.9 Pending diagnostic events
The Diagnostics menu allows the user to view the current diagnostic event and the previous diagnostic event separately.
To call up the measures to rectify a diagnostic event:
• Via "FieldCare" operating tool → 113
Other pending diagnostic events can be displayed in the Diagnostic list
Navigation
"Diagnostics" menu
Structure of the submenu
Diagnostics → Actual diagnostics
Previous diagnostics
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Parameter
Actual diagnostics
Previous diagnostics
Diagnostics and troubleshooting
Parameter overview with brief description
Prerequsite
1 diagnostic event has occurred.
2 diagnostic events have already occurred.
Description
Displays the current diagnostic event along with the diagnostic information.
If two or more messages occur simultaneously, the message with the highest priority is shown on the display.
Displays the diagnostic event that occurred prior to the current diagnostic event along with the diagnostic information.
User interface
Symbol for diagnostic behavior, diagnostic code and short message.
–
Factory setting
Symbol for diagnostic behavior, diagnostic code and short message.
–
12.10 Diagnostic list
In the Diagnostic list submenu, up to 5 currently pending diagnostic events can be displayed along with the related diagnostic information. If more than 5 diagnostic events are pending, the events with the highest priority are shown on the display.
Navigation path
Diagnostics menu→ Diagnostic list submenu
/ ../Diagnose list
Diagnostics
F273 Main electronic
Diagnostics 2
Diagnostics 3
30 Illustrated using the example of the local display
To call up the measures to rectify a diagnostic event:
• Via "FieldCare" operating tool → 113
A0014006-EN
12.11 Event logbook
12.11.1 Event history
A chronological overview of the event messages that have occurred is provided in the
Events list submenu.
Navigation path
"Diagnostics" menu → Event logbook → Events list
/ ../Eventlist
I1091 Config. change
F
I1157 Mem.err. ev.list
0d01h19m10s
F311 Electr. failure
31 Illustrated using the example of the local display
A0014008-EN
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The event history includes entries for:
In addition to the operation time of its occurrence, each event is also assigned a symbol that indicates whether the event has occurred or is ended:
• Diagnostic event
– : Event has occurred
– : Event has ended
• Information event
: Event has occurred
To call up the measures to rectify a diagnostic event:
• Via "FieldCare" operating tool → 113
For filtering the displayed event messages → 118
12.11.2 Filtering the event logbook
Using the Filter options parameter, you can define which category of event messages is displayed in the Events list submenu.
Navigation path
"Diagnostics" menu → Event logbook → Filter options
Filter categories
• All
• Failure (F)
• Function check (C)
• Out of specification (S)
• Maintenance required (M)
• Information (I)
12.11.3 Overview of information events
Unlike a diagnostic event, an information event is displayed in the event logbook only and not in the diagnostic list.
Info name
I1110
I1137
I1151
I1155
I1156
I1157
I1000
Info number
I1089
I1090
I1091
I1092
I1185
I1186
I1187
I1188
--------(Device ok)
Power on
Configuration reset
Configuration changed
Trend data deleted
Write protection switch changed
Electronic changed
History reset
Reset electronic temperature
Memory error trend
Memory error event list
Display backup done
Restore via display done
Settings downloaded with display
Display data cleared
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Device reset
Parameter
Diagnostics and troubleshooting
I1361
I1397
I1398
I1444
I1445
I1457
I1459
I1461
I1462
I1189
Info number
I1256
I1264
I1335
I1351
I1353
Info name
Backup compared
Display: access status changed
Safety sequence aborted
Firmware changed
Empty pipe detection adjustment failure
Empty pipe detection adjustment ok
Wrong web server login
Fieldbus: access status changed
CDI: access status changed
Device verification passed
Device verification failed
Failed:Measured error verification
Failed: I/O module verification
Failed: Sensor verification
Failed:Sensor electronic module verific.
12.12 Resetting the measuring device
Using the Device reset parameter it is possible to reset the entire device configuration or some of the configuration to a defined state.
Navigation
"Setup" menu → Advanced setup → Administration → Device reset
‣
Administration
‣ Define access code
Define access code
Confirm access code
Device reset
Parameter overview with brief description
Description
Restart or reset device manually.
Selection
• Cancel
• To delivery settings
• Restart device
Cancel
Factory setting
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Diagnostics and troubleshooting Proline Promag W 400 EtherNet/IP
12.12.1 Function scope of "Device reset" parameter
Options
Cancel
To delivery settings
Restart device
History reset
Description
No action is executed and the user exits the parameter.
Every parameter for which a customer-specific default setting was ordered is reset to this customer-specific value. All other parameters are reset to the factory setting.
The restart resets every parameter whose data are in the volatile memory (RAM) to the factory setting (e.g. measured value data). The device configuration remains unchanged.
Every parameter is reset to its factory setting.
12.13 Device information
The Device information submenu contains all the parameters that display different information for identifying the device.
Navigation
"Diagnostics" menu → Device information
‣ Device information
Device tag
Serial number
Firmware version
Device name
Order code
Extended order code 1
Extended order code 2
Extended order code 3
ENP version
IP address
Subnet mask
Default gateway
120 Endress+Hauser
Device tag
Parameter
Serial number
Firmware version
Device name
Order code
Extended order code 1
Extended order code 2
Extended order code 3
ENP version
IP address
Subnet mask
Default gateway
Proline Promag W 400 EtherNet/IP Diagnostics and troubleshooting
Parameter overview with brief description
Description
Enter the name for the measuring point.
Displays the serial number of the measuring device.
Displays the device firmware version installed.
Displays the name of the transmitter.
Displays the device order code.
User interface / User entry
Max. 32 characters, such as letters, numbers or special characters (e.g. @, %, /)
Max. 11-digit character string comprising letters and numbers.
Character string with the following format: xx.yy.zz
Character string composed of letters, numbers and certain punctuation marks.
Character string composed of letters, numbers and certain punctuation marks
Character string Displays the 1st part of the extended order code.
Displays the 2nd part of the extended order code.
Displays the 3rd part of the extended order code.
Displays the version of the electronic nameplate.
Displays the IP address of the Web server of the measuring device.
Displays the subnet mask.
Displays the default gateway.
Character string
Character string
Character string in the format xx.yy.zz
4 octet: 0 to 255 (in the particular octet)
4 octet: 0 to 255 (in the particular octet)
4 octet: 0 to 255 (in the particular octet)
Factory setting
Promag 400
79AFFF16000
01.01
Promag 400
–
–
-
-
2.02.00
192.168.1.212
255.255.255.0
0.0.0.0
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Diagnostics and troubleshooting Proline Promag W 400 EtherNet/IP
12.14 Firmware history
Release date
Firmwar e version
Order code for
"Firmware version"
Firmware changes
10.2013 01.00.00 Option 77 Original firmware
07.2014 01.01.zz Option 74 Update
Documentation type
Operating
Instructions
Operating
Instructions
Documentation
BA01214D/06/EN/
01.13
BA01214D/06/EN/
02.14
Flashing the firmware to the current version or to the previous version is possible via the service interface (CDI) .
For the compatibility of the firmware version with the previous version, the installed device description files and operating tools, observe the information about the device in the "Manufacturer's information" document.
The manufacturer's information is available:
• In the Download Area of the Endress+Hauser Internet site: www.endress.com →
Download
• Specify the following details:
– Text search: Manufacturer's information
– Search range: documentation
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Proline Promag W 400 EtherNet/IP Maintenance
13 Maintenance
13.1 Maintenance tasks
No special maintenance work is required.
13.1.1 Exterior cleaning
When cleaning the exterior of measuring devices, always use cleaning agents that do not attack the surface of the housing or the seals.
L WARNING
Cleaning agents can damage the plastic transmitter housing!
‣ Do not use high-pressure steam.
‣ Only use the permitted cleaning agents specified.
Permitted cleaning agents for the plastic transmitter housing
• Commercially available household cleaners
• Methyl alcohol or isopropyl alcohol
• Mild soap solutions
13.1.2 Interior cleaning
No interior cleaning is planned for the device.
13.1.3 Replacing seals
The sensor's seals (particularly aseptic molded seals) must be replaced periodically.
The interval between changes depends on the frequency of the cleaning cycles, the cleaning temperature and the medium temperature.
Replacement seals (accessory) → 160
13.2 Measuring and test equipment
Endress+Hauser offers a wide variety of measuring and test equipment, such as W@M or device tests.
Your Endress+Hauser Sales Center can provide detailed information on the services.
For a list of some of the measuring and test equipment, refer to the "Accessories" chapter of the "Technical Information" document for the device.
13.3 Endress+Hauser services
Endress+Hauser offers a wide variety of services for maintenance such as recalibration, maintenance service or device tests.
Your Endress+Hauser Sales Center can provide detailed information on the services.
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Repair
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14 Repair
14.1 General notes
Repair and conversion concept
The Endress+Hauser repair and conversion concept provides for the following:
• The measuring devices have a modular design.
• Spare parts are grouped into logical kits with the associated Installation Instructions.
• Repairs are carried out by Endress+Hauser Service or by correspondingly trained customers.
• Certified devices can be converted into other certified devices by Endress+Hauser Service or at the factory only.
Notes for repair and conversion
For repair and modification of a measuring device, observe the following notes:
• Use only original Endress+Hauser spare parts.
• Carry out the repair according to the Installation Instructions.
• Observe the applicable standards, federal/national regulations, Ex documentation (XA) and certificates.
• Document every repair and each conversion and enter them into the W@M life cycle management database.
14.2 Spare parts
W@M Device Viewer ( www.endress.com/deviceviewer ):
All the spare parts for the measuring device, along with the order code, are listed here and can be ordered. If available, users can also download the associated Installation
Instructions.
Measuring device serial number:
• Is located on the nameplate of the device.
• Can be read out via the Serial number parameter in the Device information
14.3 Endress+Hauser services
Contact your Endress+Hauser Sales Center for information on services and spare parts.
14.4 Return
The measuring device must be returned if it is need of repair or a factory calibration, or if the wrong measuring device has been delivered or ordered. Legal specifications require
Endress+Hauser, as an ISO-certified company, to follow certain procedures when handling products that are in contact with the medium.
To ensure safe, swift and professional device returns, please refer to the procedure and conditions for returning devices provided on the Endress+Hauser website at http://www.endress.com/support/return-material
14.5 Disposal
14.5.1 Removing the measuring device
1. Switch off the device.
Endress+Hauser
Proline Promag W 400 EtherNet/IP Repair
2.
WARNING! Danger to persons from process conditions. Beware of hazardous process conditions such as pressure in the measuring device, high temperatures or aggressive fluids.
Carry out the mounting and connection steps from the chapters "Mounting the measuring device" and "Connecting the measuring device" in the logically reverse sequence. Observe the safety instructions.
14.5.2 Disposing of the measuring device
L WARNING
Danger to personnel and environment from fluids that are hazardous to health.
‣ Ensure that the measuring device and all cavities are free of fluid residues that are hazardous to health or the environment, e.g. substances that have permeated into crevices or diffused through plastic.
Observe the following notes during disposal:
• Observe valid federal/national regulations.
• Ensure proper separation and reuse of the device components.
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Accessories Proline Promag W 400 EtherNet/IP
15 Accessories
Various accessories, which can be ordered with the device or subsequently from Endress
+Hauser, are available for the device. Detailed information on the order code in question is available from your local Endress+Hauser sales center or on the product page of the
Endress+Hauser website: www.endress.com
.
15.1 Device-specific accessories
15.1.1 For the transmitter
Accessories
Display protection
Connecting cable for remote version
Ground cable
Post mounting kit
Compact → remote conversion kit
Promag 50/53 → Promag
400 conversion kit
Description
Is used to protect the display against impact or scoring from sand in desert areas.
For details, see Special Documentation SD00333F
Coil current and electrode cables, various lengths, reinforced cables available on request.
Set, consisting of two ground cables for potential equalization.
Post mounting kit for transmitter.
For converting a compact device version to a remote device version.
For converting a Promag with transmitter 50/53 to a Promag 400.
15.1.2 For the sensor
Accessories
Ground disks
Description
Are used to ground the fluid in lined measuring tubes to ensure proper measurement.
For details, see Installation Instructions EA00070D
15.2 Service-specific accessories
Accessories
Applicator
Description
Software for selecting and sizing Endress+Hauser measuring devices:
• Calculation of all the necessary data for identifying the optimum flowmeter: e.g.
nominal diameter, pressure loss, accuracy or process connections.
• Graphic illustration of the calculation results
Administration, documentation and access to all project-related data and parameters throughout the entire life cycle of a project.
Applicator is available:
• Via the Internet: https://wapps.endress.com/applicator
• On CD-ROM for local PC installation.
126 Endress+Hauser
Proline Promag W 400 EtherNet/IP Accessories
W@M
FieldCare
Life cycle management for your plant
W@M supports you with a wide range of software applications over the entire process: from planning and procurement, to the installation, commissioning and operation of the measuring devices. All the relevant device information, such as the device status, spare parts and device-specific documentation, is available for every device over the entire life cycle.
The application already contains the data of your Endress+Hauser device. Endress
+Hauser also takes care of maintaining and updating the data records.
W@M is available:
• Via the Internet: www.endress.com/lifecyclemanagement
• On CD-ROM for local PC installation.
FDT-based plant asset management tool from Endress+Hauser.
It can configure all smart field units in your system and helps you manage them. By using the status information, it is also a simple but effective way of checking their status and condition.
For details, see Operating Instructions BA00027S and BA00059S
15.3 System components
Accessories
Memograph M graphic display recorder
Description
The Memograph M graphic display recorder provides information on all relevant measured variables. Measured values are recorded correctly, limit values are monitored and measuring points analyzed. The data are stored in the 256 MB internal memory and also on a SD card or USB stick.
For details, see "Technical Information" TI00133R and Operating Instructions
BA00247R
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Technical data
Measuring principle
Measuring system
Measured variable
Measuring range
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16 Technical data
16.1 Application
The measuring device described in these Instructions is intended only for flow measurement of liquids with a minimum conductivity of 5 μS/cm.
Depending on the version ordered, the measuring device can also measure potentially explosive, flammable, poisonous and oxidizing media.
To ensure that the device remains in proper operating condition for its service life, use the measuring device only for media against which the process-wetted materials are adequately resistant.
16.2 Function and system design
Electromagnetic flow measurement on the basis of Faraday's law of magnetic induction .
The device consists of a transmitter and a sensor.
Two device versions are available:
• Compact version - transmitter and sensor form a mechanical unit.
• Remote version - transmitter and sensor are mounted in separate locations.
For information on the structure of the device
16.3 Input
Direct measured variables
• Volume flow (proportional to induced voltage)
• Electrical conductivity
In custody transfer: only volume flow
Calculated measured variables
Mass flow
Typically v = 0.01 to 10 m/s (0.03 to 33 ft/s) with the specified accuracy
Electrical conductivity: 5 to 10 000 µS/cm
Flow characteristic values in SI units
Nominal diameter
Recommended flow
[mm]
25
32
40
[in]
1
–
1 ½
Min./max. full scale value
(v ~ 0.3/10 m/s)
[m 3 /h]
9 to 300 dm 3 /min
15 to 500 dm 3 /min
25 to 700 dm 3 /min
Factory settings
Full scale value current output
(v ~ 2.5 m/s)
[m 3 /h]
75 dm 3 /min
125 dm 3 /min
200 dm 3 /min
Pulse value
(~ 2 pulse/s)
[m 3 ]
0.5 dm
1 dm 3
1.5 dm
3
3
Low flow cut off
(v ~ 0.04 m/s)
[m
3 dm
3
1 dm 3
2 dm 3
3
/h]
/min
/min
/min
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Proline Promag W 400 EtherNet/IP
Endress+Hauser
Technical data
1 000
–
1 200
–
1 400
–
1 600
500
600
700
750
800
900
200
250
300
350
375
400
450
[mm]
50
65
80
100
125
150
–
1 800
–
2 000
Nominal diameter
–
60
–
40
42
48
54
30
32
36
20
24
28
66
72
78
–
14
15
16
18
8
10
12
4
–
6
[in]
2
–
3
Recommended flow
Min./max. full scale value
(v ~ 0.3/10 m/s)
[m 3 /h]
35 to 1 100 dm 3 /min
60 to 2 000 dm 3 /min
90 to 3 000 dm 3 /min
145 to 4 700 dm 3 /min
220 to 7 500 dm 3 /min
20 to 600
35 to 1 100
55 to 1 700
80 to 2 400
110 to 3 300
140 to 4 200
140 to 4 200
180 to 5 400
220 to 6 600
310 to 9 600
420 to 13 500
480 to 15 000
550 to 18 000
690 to 22 500
850 to 28 000
950 to 30 000
1 250 to 40 000
1 550 to 50 000
1 700 to 55 000
1 950 to 60 000
2 200 to 70 000
2 500 to 80 000
2 800 to 90 000
3 300 to 100 000
3 400 to 110 000
Factory settings
4 000
4 500
6 000
7 000
8 000
10 000
13 000
1 000
1 200
1 200
1 500
2 000
2 500
3 500
Full scale value current output
(v ~ 2.5 m/s)
[m 3 /h]
300 dm 3 /min
500 dm 3 /min
750 dm 3 /min
1 200 dm 3 /min
1 850 dm 3 /min
150
300
500
750
14 000
16 000
18 000
20 500
23 000
28 500
28 500
Pulse value
(~ 2 pulse/s)
Low flow cut off
(v ~ 0.04 m/s)
0.5
0.75
0.75
1
1
1.5
1.5
0.1
0.15
0.15
0.25
0.25
0.3
0.5
2.5
3
3.5
2
2
2.5
3.5
[m 3 ]
2.5 dm 3
5 dm 3
5 dm 3
10 dm 3
15 dm 3
0.025
0.05
0.05
0.1
60
75
100
125
125
150
200
30
40
50
15
20
20
25
225
250
300
325
350
450
450
[m 3 /h]
5 dm 3 /min
8 dm 3 /min
12 dm 3 /min
20 dm 3 /min
30 dm 3 /min
2.5
5
7.5
10
Flow characteristic values in US units
Nominal diameter
Recommended flow
[in]
1
–
[mm]
25
32
Factory settings
Min./max. full scale value
(v ~ 0.3/10 m/s)
[gal/min]
2.5 to 80
4 to 130
Full scale value current output
(v ~ 2.5 m/s)
[gal/min]
18
30
Pulse value
(~ 2 pulse/s)
Low flow cut off
(v ~ 0.04 m/s)
[gal]
0.2
0.2
[gal/min]
0.25
0.5
129
Technical data
130
Proline Promag W 400 EtherNet/IP
54
–
60
36
40
42
48
28
30
32
18
20
24
–
66
72
78
–
12
14
15
16
6
8
10
3
4
–
[in]
1 ½
2
–
Nominal diameter
900
1 000
–
1 200
–
1 400
–
450
500
600
700
750
800
1 600
–
1 800
–
2 000
150
200
250
300
350
375
400
[mm]
40
50
65
80
100
125
Recommended flow
Factory settings
800 to 24 000
1 000 to 30 000
1 400 to 44 000
1 900 to 60 000
2 150 to 67 000
2 450 to 80 000
3 100 to 100 000
3 800 to 125 000
4 200 to 135 000
5 500 to 175 000
9 to 300 Mgal/d
10 to 340 Mgal/d
12 to 380 Mgal/d
[gal/min]
7 to 190
10 to 300
16 to 500
24 to 800
40 to 1 250
60 to 1 950
90 to 2 650
155 to 4 850
250 to 7 500
350 to 10 600
500 to 15 000
600 to 19 000
600 to 19 000
13 to 450 Mgal/d
14 to 500 Mgal/d
16 to 570 Mgal/d
18 to 650 Mgal/d
20 to 700 Mgal/d
Min./max. full scale value
(v ~ 0.3/10 m/s)
13 500
16 500
19 500
24 000
30 000
33 000
42 000
2 400
3 600
4 800
4 800
6 000
7 500
10 500
Full scale value current output
(v ~ 2.5 m/s)
[gal/min]
50
75
130
200
300
450
600
1 200
1 500
75 Mgal/d
85 Mgal/d
95 Mgal/d
110 Mgal/d
120 Mgal/d
140 Mgal/d
175 Mgal/d
175 Mgal/d
Pulse value
(~ 2 pulse/s)
50
75
100
125
150
200
225
250
250
400
0.0005 Mgal/d
0.0005 Mgal/d
0.0005 Mgal/d
25
30
50
50
5
10
15
2
2
5
[gal]
0.5
0.5
1
0.0008 Mgal/d
0.0008 Mgal/d
0.0008 Mgal/d
0.0010 Mgal/d
0.0010 Mgal/d
Low flow cut off
(v ~ 0.04 m/s)
360
480
600
600
1.3 Mgal/d
1.3 Mgal/d
1.3 Mgal/d
90
120
180
210
270
300
45
60
60
60
12
15
30
[gal/min]
0.75
1.25
2
2.5
4
7
1.7 Mgal/d
2.2 Mgal/d
2.6 Mgal/d
3.0 Mgal/d
2.9 Mgal/d
Recommended measuring range
For custody transfer, the applicable approval determines the permitted measuring range and the pulse value.
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Operable flow range
Input signal
Output signal
Signal on alarm
Technical data
Over 1000 : 1
For custody transfer, the operable flow range is 100 : 1 to 250 : 1, depending on the nominal diameter. Further details are specified by the applicable approval.
External measured values
Various pressure transmitters and temperature measuring devices can be ordered
from Endress+Hauser: see "Accessories" section → 127
It is recommended to read in external measured values to calculate the following measured variables:
Corrected volume flow
Fieldbuses
The measured values are written from the automation system to the measuring device via
EtherNet/IP.
16.4 Output
EtherNet/IP
Standards In accordance with IEEE 802.3
Depending on the interface, failure information is displayed as follows:
EtherNet/IP
Device diagnostics Device condition can be read out in Input Assembly
Local display
Plain text display
Backlight
With information on cause and remedial measures
Red backlighting indicates a device error.
Status signal as per NAMUR recommendation NE 107
Operating tool
• Via digital communication:
EtherNet/IP
• Via service interface
Plain text display With information on cause and remedial measures
Web browser
Plain text display With information on cause and remedial measures
Endress+Hauser 131
Technical data
Low flow cut off
Galvanic isolation
Protocol-specific data
132
Proline Promag W 400 EtherNet/IP
Light emitting diodes (LED)
Status information Status indicated by various light emitting diodes
The following information is displayed depending on the device version:
• Supply voltage active
• Data transmission active
• Device alarm/error has occurred
• EtherNet/IP network available
• EtherNet/IP connection established
The switch points for low flow cut off are user-selectable.
The following connections are galvanically isolated from each other:
• Outputs
• Power supply
EtherNet/IP
Protocol
Communication type
Device profile
Manufacturer ID
Device type ID
Baud rates
Polarity
Supported CIP connections
Explicit connections
I/O connections
Configuration options for measuring device
Configuration of the EtherNet interface
Configuration of the device address
• The CIP Networks Library Volume 1: Common Industrial Protocol
• The CIP Networks Library Volume 2: EtherNet/IP Adaptation of CIP
• 10Base-T
• 100Base-TX
Generic device (product type: 0x2B)
0x49E
0x1067
Automatic ¹⁰⁄₁₀₀ Mbit with half-duplex and full-duplex detection
Auto-polarity for automatic correction of crossed TxD and RxD pairs
Max. 3 connections
Max. 6 connections
Max. 6 connections (scanner)
• DIP switches on the electronics module for IP addressing
• Manufacturer-specific software (FieldCare)
• Add-on Profile Level 3 for Rockwell Automation control systems
• Web browser
• Electronic Data Sheet (EDS) integrated in the measuring device
• Speed: 10 MBit, 100 MBit, auto (factory setting)
• Duplex: half-duplex, full-duplex, auto (factory setting)
• DIP switches on the electronics module for IP addressing (last octet)
• DHCP
• Manufacturer-specific software (FieldCare)
• Add-on Profile Level 3 for Rockwell Automation control systems
• Web browser
• EtherNet/IP tools, e.g. RSLinx (Rockwell Automation)
No Device Level Ring (DLR)
Fix Input
RPI
Exclusive Owner Multicast
Exclusive Owner Multicast
5 ms to 10 s (factory setting: 20 ms)
Instance configuration:
O → T configuration:
T → O configuration:
Instance
0x68
0x66
0x64
Instance
Size [byte]
398
56
32
Size [byte]
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Input only Multicast
Input only Multicast
Input Assembly
Configurable Input
RPI
Exclusive Owner Multicast
Exclusive Owner Multicast
Input only Multicast
Input only Multicast
Instance configuration:
O → T configuration:
T → O configuration:
Instance configuration:
O → T configuration:
T → O configuration:
Instance configuration:
O → T configuration:
T → O configuration:
• Current device diagnostics
• Volume flow
• Mass flow
• Conductivity
• Totalizer 1
• Totalizer 2
• Totalizer 3
5 ms to 10 s (factory setting: 20 ms)
Instance configuration:
O → T configuration:
T → O configuration:
Instance configuration:
O → T configuration:
T → O configuration:
Instance configuration:
O → T configuration:
T → O configuration:
Instance configuration:
O → T configuration:
T → O configuration:
Instance
0x68
0x66
0x65
Instance
0x69
0x66
0x65
Instance
0x68
0xC7
0x65
Instance
0x69
0xC7
0x65
0x69
0x66
0x64
Instance
0x68
0xC7
0x64
Instance
0x69
0xC7
0x64
Technical data
-
56
32
Size [byte]
398
-
32
Size [byte]
-
-
32
Size [byte]
398
56
88
Size [byte]
-
56
88
Size [byte]
398
-
88
Size [byte]
-
-
88
Endress+Hauser 133
Technical data Proline Promag W 400 EtherNet/IP
Configurable Input Assembly
Fix Output
Output Assembly
Configuration
Configuration Assembly
• Volume flow
• Mass flow
• Electronic temperature
• Conductivity
• Totalizer 1 to 3
• Flow velocity
• Volume flow unit
• Mass flow unit
• Temperature unit
• Conductivity unit
• Unit totalizer 1-3
• Flow velocity unit
• Verification result
• Verification status
The range of options increases if the measuring device has one or more application packages.
• Activation of reset totalizers 1-3
• Activation of reference density compensation
• Reset totalizers 1-3
• External density
• Density unit
• Activation verification
• Start verification
Only the most common configurations are listed below.
• Software write protection
• Mass flow unit
• Mass unit
• Volume flow unit
• Volume unit
• Density unit
• Conductivity
• Temperature unit
• Totalizer 1-3:
– Assignment
– Unit
– Operating mode
– Failure mode
• Alarm delay
16.5 Power supply
Terminal assignment
Pin assignment, device plug
Supply voltage Transmitter
Order code for "Power supply"
Option L
Terminal voltage
AC100 to 240 V
AC/DC24 V
Frequency range
50/ 60 Hz, ±4 Hz
50/ 60 Hz, ±4 Hz
Power consumption
Order code for "Output"
Option N : EtherNet/IP
Maximum power consumption
30 VA/8 W
134 Endress+Hauser
Proline Promag W 400 EtherNet/IP
Current consumption
Power supply failure
Technical data
Transmitter
Order code for "Power supply"
Option L : AC 100 to 240 V
Option L : AC/DC 24 V
Maximum
Current consumption
145 mA
350 mA
• Totalizers stop at the last value measured.
• Configuration is retained in the plug-in memory (HistoROM DAT).
• Error messages (incl. total operated hours) are stored.
Maximum switch-on current
25 A (< 5 ms)
27 A (< 5 ms)
Electrical connection
Potential equalization
Terminals
Cable entries
Transmitter
• Supply voltage cable: plug-in spring terminals for wire cross-sections
0.5 to 2.5 mm 2 (20 to 14 AWG)
• Signal cable: plug-in spring terminals for wire cross-sections
0.5 to 2.5 mm 2 (20 to 14 AWG)
• Electrode cable: spring terminals for wire cross-sections 0.5 to 2.5 mm 2 (20 to 14 AWG)
• Coil current cable: spring terminals for wire cross-sections
0.5 to 2.5 mm 2 (20 to 14 AWG)
Sensor connection housing
Spring terminals for wire cross-sections0.5 to 2.5 mm 2 (20 to 14 AWG)
Cable entry thread
• M20 x 1.5
• Via adapter:
– NPT ½"
– G ½"
Cable gland
• For standard cable: M20 × 1.5 with cable 6 to 12 mm (0.24 to 0.47 in)
• For reinforced cable: M20 × 1.5 with cable 9.5 to 16 mm (0.37 to 0.63 in)
If metal cable entries are used, use a grounding plate.
Cable specification
Reference operating conditions
16.6 Performance characteristics
In accordance with DIN EN 29104
• Medium temperature: +28 ± 2 °C (+82 ± 4 °F)
• Ambient temperature: +22 ± 2 °C (+72 ± 4 °F)
• Warm-up period:30 min
Endress+Hauser 135
Technical data Proline Promag W 400 EtherNet/IP
Installation
• Inlet run > 10 × DN
• Outlet run > 5 × DN
• Sensor and transmitter grounded.
• The sensor is centered in the pipe.
No special requirements must be observed at the inlet and outlet runs to keep within the in-service maximum permissible errors for custody transfer.
Maximum measured error Error limits under reference operating conditions o.r. = of reading
Volume flow
• ±0.5 % o.r. ± 1 mm/s (0.04 in/s)
• Optional: ±0.2 % o.r. ± 2 mm/s (0.08 in/s)
Fluctuations in the supply voltage do not have any effect within the specified range.
[%]
1.0
0.5
0
2.5
2.0
1.5
0
0
1 2
0.5 %
0.2 %
5 10
32 Maximum measured error in % o.r.
4
15
[%]
1.0
0.5
0
2.5
2.0
1.5
0 v
0.5
v
0.2
33 Flat Spec in % o.r.
0.5 %
0.2 %
Flat Spec flow values0.5 %
[mm]
25 to 600
Nominal diameter
[in]
1 to 24
6
20
[m/s]
0.5
25
8 10 [m/s] v
30 32 [ft/s]
A0005531 v
0.5
10 [m/s] v
32 [ft/s]
A0017051
[ft/s]
1.64
136 Endress+Hauser
Proline Promag W 400 EtherNet/IP
Repeatability
Flat Spec flow values0.2 %
[mm]
25 to 600
Nominal diameter
[in]
1 to 24
Electrical conductivity
Max. measured error not specified.
o.r. = of reading
Volume flow max. ±0.1 % o.r. ± 0.5 mm/s (0.02 in/s)
Electrical conductivity
Max. ±5 % o.r.
16.7 Installation
"Mounting requirements" → 19
16.8 Environment
Ambient temperature range
Storage temperature
Atmosphere
[m/s]
1.5
v
0.2
Technical data
[ft/s]
4.92
The storage temperature corresponds to the operating temperature range of the measuring transmitter and the appropriate measuring sensors.
• Protect the measuring device against direct sunlight during storage in order to avoid unacceptably high surface temperatures.
• Select a storage location where moisture cannot collect in the measuring device as fungus or bacteria infestation can damage the liner.
• If protection caps or protective covers are mounted these should never be removed before installing the measuring device.
If a plastic transmitter housing is permanently exposed to certain steam and air mixtures, this can damage the housing.
If you are unsure, please contact your Endress+Hauser Sales Center for clarification.
Degree of protection Transmitter
• As standard: IP66/67, type 4X enclosure
• When housing is open: IP20, type 1 enclosure
Endress+Hauser 137
Technical data
Shock resistance
Vibration resistance
Mechanical load
Electromagnetic compatibility (EMC)
Proline Promag W 400 EtherNet/IP
Sensor
• As standard: IP66/67, type 4X enclosure
• Optionally available for remote version:
– IP66/67, type 4X enclosure; fully welded, with protective varnish EN ISO 12944 C5-M.
Suitable for use in corrosive atmospheres.
– IP68, type 6P enclosure; fully welded, with protective varnish as per EN ISO 12944 C5-
M. Suitable for permanent immersion in water ≤3 m (10 ft) or 48 hours at depths ≤
10 m (30 ft).
– IP68, type 6P enclosure; fully welded, with protective varnish as per EN ISO 12944
Im1/Im2/Im3. Suitable for permanent immersion in saline water ≤3 m (10 ft) or 48 hours at depths ≤10 m (30 ft) or in buried applications.
Compact version
6 ms 30 g, according to IEC 60068-2-27
Remote version
• Transmitter: 6 ms 30 g, according to IEC 60068-2-27
• Sensor: 6 ms 50 g, according to IEC 60068-2-27
Compact version
• Vibration sinusoidal, 1 g peak, according to IEC 60068-2-6
• Vibration broad-band random, 1.54 g rms, according to IEC 60068-2-64
Remote version
• Transmitter
– Vibration sinusoidal, 1 g peak, according to IEC 60068-2-6
– Vibration broad-band random, 1.54 g rms, according to IEC 60068-2-64
• Sensor:
– Vibration sinusoidal, 2 g peak, according to IEC 60068-2-6
– Vibration broad-band random, 2.70 g rms, according to IEC 60068-2-64
• Protect the transmitter housing against mechanical effects, such as shock or impact; the use of the remote version is sometimes preferable.
• Never use the transmitter housing as a ladder or climbing aid.
• As per IEC/EN 61326 and NAMUR Recommendation 21 (NE 21)
• Complies with emission limits for industry as per EN 55011 (Class A)
For details refer to the Declaration of Conformity.
16.9 Process
Medium temperature range • 0 to +80 °C (+32 to +176 °F) for hard rubber, DN 50 to 2000 (2 to 78")
• –20 to +50 °C (–4 to +122 °F) for polyurethane, DN 25 to 1200 (1 to 48")
In custody transfer mode, the permitted fluid temperature is
0 to +50 °C (+32 to +122 °F).
Conductivity ≥ 5 μS/cm for liquids in general
Note that in the case of the remote version, the requisite minimum conductivity also depends on the cable length .
138 Endress+Hauser
Proline Promag W 400 EtherNet/IP
Pressure-temperature ratings
Pressure tightness
Flow limit
Pressure loss
System pressure
Vibrations
Design, dimensions
Weight
Technical data
An overview of the pressure-temperature ratings for the process connections is provided in the "Technical Information" document
Liner: hard rubber
Nominal diameter
[mm] [in]
50…2000 2…78
Limit values for absolute pressure in [mbar] ([psi]) for fluid temperatures:
+25 °C (+77 °F) +50 °C (+122 °F) +80 °C (+176 °F)
0 (0) 0 (0) 0 (0)
Liner: polyurethane
Nominal diameter
[mm] [in]
25…1200 1…48
Limit values for absolute pressure in [mbar] ([psi]) for fluid temperatures:
+25 °C (+77 °F) +50 °C (+122 °F)
0 (0) 0 (0)
The diameter of the pipe and the flow rate determine the nominal diameter of the sensor.
The optimum velocity of flow is between 2 to 3 m/s (6.56 to 9.84 ft/s). Also match the velocity of flow (v) to the physical properties of the fluid:
• v < 2 m/s (6.56 ft/s): for abrasive fluids (e.g. potter's clay, lime milk, ore slurry)
• v > 2 m/s (6.56 ft/s): for fluids producing buildup (e.g. wastewater sludges)
A necessary increase in the flow velocity can be achieved by reducing the sensor nominal diameter.
For an overview of the measuring range full scale values, see the "Measuring range"
For custody transfer, the applicable approval determines the permitted measuring range.
• No pressure loss occurs if the sensor is installed in a pipe with the same nominal diameter.
• Pressure losses for configurations incorporating adapters according to DIN EN 545
16.10 Mechanical construction
For the dimensions and installation lengths of the device, see the "Technical
Information" document, "Mechanical construction" section
Compact version
Weight data:
• Including the transmitter
– Order code for "Housing" , option M, Q: 1.3 kg (2.9 lb)
– Order code for "Housing" , option A, R: 2.0 kg (4.4 lb)
• Excluding packaging material
Endress+Hauser 139
Technical data
140
Proline Promag W 400 EtherNet/IP
Weight in SI units
Standard version
700
800
900
1 000
1 200
1 400
1 600
1 800
2 000
350
375
400
450
500
600
80
100
125
150
200
250
300
25
32
40
50
65
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 16
PN 16
PN 16
PN 16
PN 10
PN 10
PN 10
PN 40
PN 40
PN 40
PN 40
PN 16
EN 1092-1 (DIN 2501)
DN
[mm]
Pressure rating Weight [kg]
Order code for "Housing", option M, Q
Polycarbonate plastic
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
5
6
5.7
6.7
12
14
20
8
9
10
8.7
9.7
10.7
12.7
14.7
20.7
161
156
208
304
357
485
589
105
120
120
24
43
63
68
850
1 300
1 700
2 200
2 800
1
1
2
2
24.7
43.7
63.7
68.7
105.7
120.7
120.7
161.7
156.7
208.7
304.7
357.7
485.7
589.7
850.7
300.7
700.7
200.7
800.7
AS 4087, PN 16
DN
[mm]
80
100
150
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [kg]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
12
14
24
12.7
14.7
24.7
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Endress+Hauser
Technical data
80
100
125
40
50
65
JIS B2220, 10K
DN
[mm]
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [kg]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
25
32
5
5
5.7
5.7
150
200
250
300
6
7
9
11
13
19
23
40
68
70
6.7
7.7
9.7
11.7
13.7
19.7
23.7
40.7
68.7
70.7
Order code for "Design", option A
Option A "Insertion length short; ISO/DVGW to DN400, DN450-2000 1:1"
EN 1092-1 (DIN 2501)
1)
DN
[mm]
1 200
1 400
1 600
1 800
2 000
450
500
600
700
800
900
1 000
PN 6
1
1
1
100
115
156
191
241
309
360
530
785
059
419
878
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [kg]
PN 10
113
133
163
241
316
394
469
718
1 115
1 625
2 108
2 631
Values for aluminum transmitter, AlSi10Mg, coated: + 0.7 kg
PN 16
139
179
224
288
350
441
563
840
1 201
1 842
2 354
2 926
AS 2129, Table E
DN
[mm]
450
500
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [kg]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
144
183
144.7
183.7
141
Technical data
142
Proline Promag W 400 EtherNet/IP
AS 2129, Table E
DN
[mm]
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [kg]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
600
700
261
347
261.7
347.7
750
800
900
1 000
1 200 1
434
494
691
762
238 1
434.7
494.7
691.7
762.7
238.7
700
750
800
900
1 000
1 200
AS 4087, PN 16
DN
[mm]
450
500
600
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [kg]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
134
183
261
134.7
183.7
261.7
1
368
446
504
703
760
220 1
368.7
446.7
504.7
703.7
760.7
220.7
Order code for "Calibration flow", options H and K, or options H/K or order code for "Sensor option", option CA
Option
H
K
CA
Description
MID Type Examination Cert MI-001
OIML R49 Class 2
IP66/67, Type 4X, fully welded; corrosion protection EN ISO 12944 C5-M
EN 1092-1 (DIN 2501)
DN
[mm]
Pressure rating
50
65
80
25
32
40
100
PN 40
PN 40
PN 40
PN 40
PN 16
PN 16
PN 16
Weight [kg]
Order code for "Housing", option M, Q
Polycarbonate plastic
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
9
10
11
9.7
10.7
11.7
12
13
15
17
12.7
13.7
15.7
17.7
Endress+Hauser
Proline Promag W 400 EtherNet/IP Technical data
EN 1092-1 (DIN 2501)
DN
[mm]
Pressure rating
125
150
200
250
300
PN 16
PN 16
PN 10
PN 10
PN 10
Weight [kg]
Order code for "Housing", option M, Q
Polycarbonate plastic
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
22
27
22.7
27.7
38
51
60
38.7
51.7
60.7
AS 2129, PN 16
DN
[mm]
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [kg]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
80 15 15.7
100
125
150
17
22
27
17.7
22.7
27.7
80
100
125
150
40
50
65
JIS B2220, 10K
DN
[mm]
25
32
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [kg]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
9
10
9.7
10.7
200
250
300
10
11
12
13
15
20
25
34
50
57
10.7
11.7
12.7
13.7
15.7
20.7
25.7
34.7
50.7
57.7
Endress+Hauser 143
Technical data Proline Promag W 400 EtherNet/IP
Weight in US units
Standard version
12
14
16
18
20
24
6
8
10
2
3
4
ASME B16.5, Class 150
DN
[in]
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [lbs]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
1
1½
11
18
12.5
19.5
20
26
31
53
95
161
21.5
27.5
32.5
54.5
96.5
162.5
238
386
452
562
628
893
239.5
387.5
453.5
563.5
629.5
894.5
48
54
60
32
36
40
42
AWWA C207, Class D
DN
[in]
28
30
Order code for "Housing", option M, Q
Polycarbonate plastic
882
1 014
Weight [lbs]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
883.5
1 015.5
66
72
78
1
1
1
2
3
4
5
8
9
10
213
764
985
426
087
851
954
159
041
143
1
1
1
2
3
4
5
8
9
10
214.5
765.5
986.5
427.5
088.5
852.5
955.5
160.5
042.5
144.5
144 Endress+Hauser
Proline Promag W 400 EtherNet/IP Technical data
Order code for "Design", option A
Option A "Insertion length short; ISO/DVGW to DN400, DN450-2000 1:1"
ASME B16.5, Class 150
DN
[in]
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [lbs]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
18
20
423
505
424.5
506.5
24 668 667.5
54
60
66
36
40
42
48
72
78
AWWA C207, Class D
DN
[in]
Order code for "Housing", option M, Q
Polycarbonate plastic
Weight [lbs]
Order code for "Housing", option A, R
Aluminum, AlSi10Mg, coated
28
30
32
589
703
847
590.5
704.5
848.5
1
1
1
1
2
3
4
5
6
039
297
480
989
809
517
701
665
866
1
1
1
1
2
3
4
5
6
040.5
298.5
481.5
990.5
810.5
518.5
702.5
666.5
867.5
Order code for "Sensor option", option CA
Option CA "IP66/67, Type 4X, fully welded; corrosion protection EN ISO 12944 C5-M
ASME B16.5, Class 150
DN
[in]
1
1½
2
8
10
12
3
4
6
Weight
[lbs]
17.6
19.8
24.3
33.1
41.9
61.7
97.0
134.5
189.6
Endress+Hauser 145
Technical data
146
Transmitter remote version
Wall-mount housing
Depends on the material of the wall-mount housing:
• Polycarbonate plastic: 1.3 kg (2.9 lb)
• Aluminum, AlSi10Mg, coated: 2.0 kg (4.4 lb)
Sensor remote version
Weight data:
• Including sensor connection housing
• Excluding the connecting cable
• Excluding packaging material
Weight in SI units
Standard version
450
500
600
700
800
900
1 000
150
200
250
300
350
375
400
EN 1092-1 (DIN 2501)
DN
[mm]
25
32
80
100
125
40
50
65
1 200
1 400
1 600
1 800
2 000
Pressure rating
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 6
PN 16
PN 16
PN 16
PN 16
PN 10
PN 10
PN 10
PN 40
PN 40
PN 40
PN 40
PN 16
Proline Promag W 400 EtherNet/IP
302
355
483
587
848
1298
1698
2198
2798
103
118
118
159
154
206
24
43
63
68
12
14
20
Weight
[kg]
5
6
7
9
10
Endress+Hauser
Proline Promag W 400 EtherNet/IP Technical data
AS 4087, PN 16
DN
[mm]
80
100
125
150
Weight
[kg]
12
14
20
24
JIS B2220, 10K
100
125
150
200
250
300
40
50
65
80
DN
[mm]
25
32
40
67
70
13
19
23
Weight
[kg]
5
5
9
11
6
7
Order code for "Design", option A
Option A "Insertion length short; ISO/DVGW to DN400, DN450-2000 1:1"
EN 1092-1 (DIN 2501)
DN
[mm]
900
1 000
1 200
1 400
1 600
1 800
2 000
450
500
600
700
800
308
359
529
784
1 058
1 418
1 877
PN 6
98
113
154
190
240
393
468
717
1 114
1 624
2 107
2 630
Weight [kg]
PN 10
111
131
161
240
315
441
563
840
1 200
1 841
2 353
2 925
PN 16
139
179
224
288
350
Endress+Hauser 147
Technical data
148
Proline Promag W 400 EtherNet/IP
AS 2129, Table E
DN
[mm]
450
500
600
700
750
800
900
1 000
1 200
Pressure rating
PN 40
PN 40
PN 40
PN 40
PN 16
PN 16
PN 16
PN 16
Weight
[kg]
142
181
259
346
433
493
690
761
1 237
AS 4087, PN 16
750
800
900
1 000
1 200
DN
[mm]
450
500
600
700
Weight
[kg]
132
181
259
367
445
503
702
759
1 219
Order code for "Calibration flow", options H and K or order code for "Sensor option", option
CA
Option
H
K
CA
Description
MID Type Examination Cert MI-001
OIML R49 Class 2
IP66/67, Type 4X, fully welded; corrosion protection EN ISO 12944 C5-M
EN 1092-1 (DIN 2501)
DN
[mm]
25
32
40
50
65
80
100
125
[kg]
11
13
15
20
6.5
8
8.5
10
Endress+Hauser
Proline Promag W 400 EtherNet/IP
EN 1092-1 (DIN 2501)
DN
[mm]
150
200
250
300
AS 4087, PN 16
DN
[mm]
80
100
150
JIS B2220, 10K
Weight in US units
Standard version
ASME B16.5, Class 150
DN
[in]
1
1½
2
6
8
3
4
65
80
100
125
150
200
250
300
DN
[mm]
25
32
40
50
Endress+Hauser
Pressure rating
PN 16
PN 10
PN 10
PN 10
Weight
[lbs]
11
15
20
26
31
53
95
18
23
32
48
10
11
13
55
Weight
[kg]
6.5
7.5
7.5
9
[kg]
13
15
25
Technical data
[kg]
25
36
49
58
149
Technical data
150
Proline Promag W 400 EtherNet/IP
ASME B16.5, Class 150
DN
[in]
10
12
14
16
18
20
24
Weight
[lbs]
587
701
845
1 036
1 294
Weight
[lbs]
161
238
381
448
558
624
889
AWWA C207, Class D
DN
[in]
28
30
32
48
54
60
36
40
42
66
72
78
3 083
4 847
5 949
8 154
9 036
10 139
Weight
[lbs]
878
1 010
1 208
1 760
1 980
2 421
Order code for "Design", option A
Option A "Insertion length short; ISO/DVGW to DN400, DN450-2000 1:1"
ASME B16.5, Class 150
DN
[in]
18
20
24
Weight
[lbs]
420
501
664
AWWA C207, Class D
DN
[in]
28
30
32
36
40
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Measuring tube specification
Endress+Hauser
Technical data
AWWA C207, Class D
DN
[in]
42
48
54
60
66
72
78
Weight
[lbs]
1 477
1 987
1 273
3 515
4 699
5 662
6 864
Order code for "Sensor option", option CA
Option CA "IP66/67, Type 4X, fully welded; corrosion protection EN ISO 12944 C5-M"
ASME B16.5, Class 150
DN
[in]
1
1½
2
8
10
12
3
4
6
Weight
[lbs]
13
15.5
20
29
37
57
93
130
185
100
125
150
200
250
300
350
[mm]
25
32
40
50
65
80
8
10
12
4
–
6
14
[in]
1
–
1 ½
2
–
3
Nominal diameter
PN 16
PN 16
PN 16
PN 10
PN 10
PN 10
PN 6
PN 40
PN 40
PN 40
PN 40
PN 16
PN 16
EN (DIN)
Pressure rating
ASME AS 2129
AWWA AS 4087
JIS
Measuring tube internal diameter
Hard rubber
Class 150
–
–
–
20K
20K
Class 150 – 20K
Class 150 Table E, PN 16 10K
– – 10K
Class 150 Table E, PN 16 10K
Class 150 Table E, PN 16 10K
– – 10K
Class 150 Table E, PN 16 10K
Class 150 Table E, PN 16 10K
Class 150 Table E, PN 16 10K
Class 150 Table E, PN 16 10K
Class 150 Table E, PN 16 –
102
127
156
204
258
309
342
[mm]
–
–
–
50
66
79
[in]
–
–
–
1.97
2.60
3.11
4.02
5.00
6.14
8.03
10.2
12.2
13.5
Polyurethane
102
127
156
204
258
309
342
[mm]
24
32
38
50
66
79
4.02
5.00
6.14
8.03
10.2
12.2
13.5
[in]
0.94
1.26
1.50
1.97
2.60
3.11
151
Technical data
Materials
Proline Promag W 400 EtherNet/IP
Nominal diameter
EN (DIN)
Pressure rating
ASME AS 2129
AWWA AS 4087
750
800
900
1 000
–
1 200
–
[mm]
375
400
450
500
600
700
1 400
–
1 600
–
1 800
2 000
40
42
48
54
30
32
36
20
24
28
[in]
15
16
18
66
72
78
–
60
–
–
PN 6
PN 6
PN 6
PN 6
PN 6
–
PN 6
PN 6
PN 6
–
PN 6
–
PN 6
–
PN 6
–
PN 6
PN 6
JIS
– PN 16 –
Class 150 Table E, PN 16 –
Class 150 – –
Class 150 Table E, PN 16 –
Class 150 Table E, PN 16 –
Class D Table E, PN 16 –
Class D
Class D
Class D
Class D
Class D
Class D
Class D
Table E, PN 16
Table E, PN 16
Table E, PN 16
–
–
–
Table E, PN 16 –
– –
Table E, PN 16 –
– –
–
Class D
–
Class D
Class D
Class D
–
–
–
–
–
–
–
–
–
–
–
–
Measuring tube internal diameter
Hard rubber
742
794
891
994
1 043
1 197
1 339
[mm]
392
392
437
492
594
692
1 402
1 492
1 600
1 638
1 786
1 989
Polyurethane
29.2
31.3
35.1
39.1
41.1
47.1
52.7
[in]
15.4
15.4
17.2
19.4
23.4
27.2
55.2
58.7
63.0
64.5
70.3
78.3
742
794
891
994
1 043
1 197
–
[mm]
–
392
437
492
594
692
–
–
–
–
–
–
29.2
31.3
35.1
39.1
41.1
47.1
–
[in]
–
15.4
17.2
19.4
23.4
27.2
–
–
–
–
–
–
Transmitter housing
Compact version, standard
• Order code for "Housing", option A "Compact, aluminum coated":
Aluminum, AlSi10Mg, coated
• Order code for "Housing", option M : polycarbonate plastic
• Window material:
– For order code for "Housing", option A : glass
– For order code for "Housing", option M : plastic
Compact version, inclined
• Order code for "Housing", option R "Compact, aluminum coated":
Aluminum, AlSi10Mg, coated
• Order code for "Housing", option Q : polycarbonate plastic
• Window material:
– For order code for "Housing", option R : glass
– For order code for "Housing", option Q : plastic
152 Endress+Hauser
Proline Promag W 400 EtherNet/IP
Remote version (wall-mount housing)
• Order code for "Housing", option P "Compact, aluminum coated":
Aluminum, AlSi10Mg, coated
• Order code for "Housing", option N : polycarbonate plastic
• Window material:
– For order code for "Housing", option P : glass
– For order code for "Housing", option N : plastic
Cable entries/cable glands
Technical data
1
2
3
A0020640
34 Possible cable entries/cable glands
1 Cable entry in transmitter housing, wall-mount housing or connection housing with internal thread M20 x
1.5
2 Cable gland M20 x 1.5
3 Adapter for cable entry with internal thread G ½" or NPT ½"
Compact and remote versions and sensor connection housing
Cable entry/cable gland
Cable gland M20 × 1.5
Remote version: cable gland M20 × 1.5
Option of reinforced connecting cable
Adapter for cable entry with internal thread G ½" or
NPT ½"
Material
Plastic
• Sensor connection housing:
Nickel-plated brass
• Transmitter wall-mount housing:
Plastic
Nickel-plated brass
Device plug
Electrical connection
Plug M12x1
Material
• Socket: Stainless steel, 1.4404 (316L)
• Contact housing: Polyamide
• Contacts: Gold-plated brass
Connecting cable for remote version
Electrode and coil current cable
• Standard cable: PVC cable with copper shield
• Reinforced cable: PVC cable with copper shield and additional steel wire braided jacket
Endress+Hauser 153
Technical data Proline Promag W 400 EtherNet/IP
Sensor housing
• DN 25 to 300 (1 to 12"):
– Aluminum, AlSi10Mg, coated
– Carbon steel with Al/Zn protective coating
• DN 50 to 300 (2 to 12"):
Carbon steel with protective varnish (IP68)
• DN 350 to 2000 (14 to 78"):
Carbon steel with protective varnish
Sensor connection housing
• Standard: aluminum, AlSi10Mg, coated (IP66/67)
• Option:
– Polycarbonate for IP68 with DN 50 to 300 (2 to 12")
– Polycarbonate for order code "Sensor option", option CA…CE "Corrosion protection" with
DN 350 to 2000 (14 to 78")
Measuring tubes
• DN 25 to 300 (1 to 12")
: stainless steel, 1.4301/1.4306/304/304L
• DN 350 to 1200 (14 to 48")
1) : stainless steel, 1.4301/304
• DN 1350 to 2000 (54 to 78")
1) : stainless steel, 1.4301 similar to 304
Liner
• DN 25 to 1200 (1 to 48"): polyurethane
• DN 50 to 2000 (2 to 78"): hard rubber
Electrodes
• Stainless steel, 1.4435 (316L)
• Alloy C22, 2.4602 (UNS N06022)
• Tantalum
Process connections
EN 1092-1 (DIN 2501)
• DN 25 to 1200
:
– Stainless steel, 1.4404/1.4571/F316L
– Carbon steel, A105/FE410WB/P250GH/S235JRG2/S235JR+N
• DN 1350 to 2000
– Stainless steel ,1.4404/1.4571
– Carbon steel, P250GH/S235JRG2
• DN 450 to 2000
:
Carbon steel, A105/S235JRG2
EN 1092-1 (DIN 2501), PN6:
DN 350 to 1000
:
Carbon steel, A105/FE410WB/S235JRG2
1)
2)
154
For carbon steel flange material with Al/Zn protective coating (DN 25 to 300 (1 to 12")), protective varnish (IP68) (DN 50 to 300 (2 to 12")) or protective varnish ≥ DN 350 (14")
Order Code for "Design", Option A "Insertion length short"
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Fitted electrodes
Technical data
ASME B16.5
• DN 25 to 1200 (1 to 48"):
Stainless steel, F316L similar to 1.4404
• DN 25 to 300 (1 to 12")
:
Carbon steel, A105 similar to 1.0432
• DN 350 to 1200 (14 to 48")
:
Carbon steel, A105/A515 Grade 70
AWWA C207
• DN 48":
Carbon steel, A105/A181/P265GH/S275JR
• DN 54 to 72":
Carbon steel, P265GH similar to 1.0425
• DN 48 to 78"
Carbon steel, A105/A181/P265GH/S275JR
AS 2129
• DN 50 to 1200:
Carbon steel, A105/S235JRG2
• DN 350 to 1200
:
Carbon steel, A105/FE410WB/P235GH/P265GH/S235JRG2
AS 4087
• DN 50 to 1200:
Carbon steel, A105/S275JR
• DN 350 to 1200
:
Carbon steel, A105/P265GH/S275JR
JIS B2220
• Stainless steel, F316L similar to 1.4404
• Carbon steel, A105/A350LF2
Seals
In accordance with DIN EN 1514-1
Accessories
Display protection
Stainless steel, 1.4301 (304L)
Ground disks
• Stainless steel, 1.4435 (316L)
• Alloy C22, 2.4602 (UNS N06022)
• Tantalum
Measurement, reference and empty pipe detection electrodes available as standard with:
• 1.4435 (316L)
• Alloy C22, 2.4602 (UNS N06022)
• Tantalum
Optionally available with DN 350 to 2000 (14 to 78"):
Exchangeable measuring electrodes made from 1.4435 (316L)
Endress+Hauser 155
Technical data
Process connections
Surface roughness
Local operation
Proline Promag W 400 EtherNet/IP
• EN 1092-1 (DIN 2501)
– DN ≤ 300: fixed flange (PN 10/16/25/40) = form A
– DN ≥ 350: fixed flange (PN 6/10/16/25) = flat face
– DN 450 to 2000
4) : fixed flange (PN 6/10/16) = flat face
• ASME B16.5
– DN 25 to 600 (1 to 24"): fixed flange (Class 150)
– DN 350 to 2000 (14 to 78")
– DN 25 to 150 (1 to 6"): fixed flange (Class 300)
• AWWA C207
– DN 48 to 72": fixed flange (Class D)
– DN 48 to 78"
• AS 2129
– DN 50 to 1200: fixed flange (Table E)
– DN 350 to 1200
• AS 4087
– DN 50 to 1200): fixed flange (PN 16)
– DN 350 to 1200
• JIS B2220
– DN 50 to 300: fixed flange (10K)
– DN 25 to 300: fixed flange (20K)
For information on the materials of the process connections → 154
Electrodes with 1.4435 (316L); Alloy C22, 2.4602 (UNS N06022); tantalum:
≤ 0.3 to 0.5 µm (11.8 to 19.7 µin)
(All data relate to parts in contact with fluid)
16.11 Operability
Via display module
A0020538
Display elements
• 4-line display
• White background lighting; switches to red in event of device errors
• Format for displaying measured variables and status variables can be individually configured
• Permitted ambient temperature for the display: –20 to +50 °C (–4 to +122 °F)
The readability of the display may be impaired at temperatures outside the temperature range.
3)
4)
156
Dimensions as per DIN 2501, DN 65 (2 ½") PN 16 and DN 600 (24") PN 16 only as per EN 1092-1
Order code for "Design", option A "Insertion length short"
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Remote operation
Technical data
Operating elements
External operation via touch control; 3 optical keys: , ,
E
Additional functionality
• Data backup function
The device configuration can be saved in the display module.
• Data comparison function
The device configuration saved in the display module can be compared to the current device configuration.
• Data transfer function
The transmitter configuration can be transmitted to another device using the display module.
Via Ethernet-based fieldbus
This communication interface is available in device versions with EtherNet/IP.
1 2 3
4
Service interface
5 5 5
A0016961
35 Options for remote operation via Ethernet-based fieldbus
1 Control system, e.g. "RSLogix" (Rockwell Automation)
2 Workstation for measuring device operation: with Add-on Profile Level 3 for "RSLogix 5000" (Rockwell
Automation) or with Electronic Data Sheet (EDS)
3 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or with
"FieldCare" operating tool with COM DTM "CDI Communication TCP/IP"
4 Ethernet switch
5 Measuring device
Via service interface (CDI-RJ45)
Endress+Hauser 157
Technical data
EtherNet/IP
1 2
Proline Promag W 400 EtherNet/IP
3
Languages
CE mark
C-Tick symbol
Ex approval
Drinking water approval
A0023113
1 Computer with Web browser (e.g. Internet Explorer) for accessing the integrated device Web server or with
"FieldCare" operating tool with COM DTM "CDI Communication TCP/IP"
2 Standard Ethernet connecting cable with RJ45 plug
3 Service interface (CDI -RJ45) of the measuring device with access to the integrated Web server
Can be operated in the following languages:
• Via local display:
English, German, French, Spanish, Italian, Dutch, Portuguese, Polish, Russian, Turkish,
Chinese, Japanese, Bahasa (Indonesian), Vietnamese, Czech
• Via "FieldCare" operating tool:
English, German, French, Spanish, Italian, Chinese, Japanese
• Via Web browser
English, German, French, Spanish, Italian, Dutch, Portuguese, Polish, Russian, Turkish,
Chinese, Japanese, Bahasa (Indonesian), Vietnamese, Czech
16.12 Certificates and approvals
The measuring system is in conformity with the statutory requirements of the applicable
EC Directives. These are listed in the corresponding EC Declaration of Conformity along with the standards applied.
Endress+Hauser confirms successful testing of the device by affixing to it the CE mark.
The measuring system meets the EMC requirements of the "Australian Communications and Media Authority (ACMA)".
The devices are certified for use in hazardous areas and the relevant safety instructions are provided in the separate "Control Drawing" document. Reference is made to this document on the nameplate.
• ACS
• KTW/W270
• NSF 61
• WRAS BS 6920
158 Endress+Hauser
Proline Promag W 400 EtherNet/IP Technical data
EtherNet/IP certification
Measuring instrument approval
Other standards and guidelines
Endress+Hauser
The measuring device is certified and registered by the ODVA (Open Device Vendor
Association). The measuring system meets all the requirements of the following specifications:
• Certified in accordance with the ODVA Conformance Test
• EtherNet/IP Performance Test
• EtherNet/IP PlugFest compliance
• The device can also be operated with certified devices of other manufacturers
(interoperability)
Promag W 400 is (optionally) approved as a cold water meter (MI ‐ 001) for volume measurement in service subject to legal metrological control in accordance with the
European Measuring Instruments Directive 2004/22/EC (MID).
Promag W 400 is qualified to OIML R49 and has an OIML Certificate of Conformity
(optional).
• EN 60529
Degrees of protection provided by enclosures (IP code)
• EN 61010-1
Safety requirements for electrical equipment for measurement, control and laboratory use
• IEC/EN 61326
Emission in accordance with Class A requirements. Electromagnetic compatibility (EMC requirements).
• ANSI/ISA-61010-1 (82.02.01): 2004
Safety Requirements for Electrical Equipment for Measurement, Control and Laboratory
Use - Part 1 General Requirements
• CAN/CSA-C22.2 No. 61010-1-04
Safety Requirements for Electrical Equipment for Measurement, Control and Laboratory
Use - Part 1 General Requirements
• NAMUR NE 21
Electromagnetic compatibility (EMC) of industrial process and laboratory control equipment
• NAMUR NE 32
Data retention in the event of a power failure in field and control instruments with microprocessors
• NAMUR NE 43
Standardization of the signal level for the breakdown information of digital transmitters with analog output signal.
• NAMUR NE 53
Software of field devices and signal-processing devices with digital electronics
• NAMUR NE 105
Specifications for integrating fieldbus devices in engineering tools for field devices
• NAMUR NE 107
Self-monitoring and diagnosis of field devices
• NAMUR NE 131
Requirements for field devices for standard applications
16.13 Application packages
Many different application packages are available to enhance the functionality of the device. Such packages might be needed to address safety aspects or specific application requirements.
The application packages can be ordered with the device or subsequently from
Endress+Hauser. Detailed information on the order code in question is available from your local Endress+Hauser sales center or on the product page of the Endress+Hauser website: www.endress.com
.
159
Technical data
Cleaning
Proline Promag W 400 EtherNet/IP
Diagnostics functions
Heartbeat Technology
Package
Electrode cleaning circuit
(ECC)
Description
The electrode cleaning circuit (ECC) function has been developed to have a solution for applications where magnetite (Fe
3
O
4
) deposits frequently occur (e.g. hot water). Since magnetite is highly conductive this build up leads to measuring errors and ultimately to the loss of signal. The application package is designed to AVOID build up of highly conductive matter and thin layers (typical of magnetite).
Package
HistoROM extended function
Description
Comprises extended functions concerning the event log and the activation of the measured value memory.
Event log:
Memory volume is extended from 20 message entries (basic version) to up to 100 entries.
Data logging (line recorder):
• Memory capacity for up to 1000 measured values is activated.
• 250 measured values can be output via each of the 4 memory channels. The recording interval can be defined and configured by the user.
• Data logging is visualized via the local display or FieldCare.
Package
Heartbeat Verification
+Monitoring
Description
Heartbeat Monitoring:
Continuously supplies monitoring data, which are characteristic of the measuring principle, for an external condition monitoring system. This makes it possible to:
• Draw conclusions - using these data and other information - about the impact the measuring application has on the measuring performance over time.
• Schedule servicing in time.
• Monitor the product quality, e.g. gas pockets.
Heartbeat Verification:
Makes it possible to check the device functionality on demand when the device is installed, without having to interrupt the process.
• Access via onsite operation or other operating interfaces, such as FieldCare for instance.
• End-to-end, traceable documentation of the verification results, including report.
• Makes it possible to extend calibration intervals in accordance with operator's risk assessment.
16.14 Accessories
Overview of accessories available for order → 126
Standard documentation
160
16.15 Documentation
For an overview of the scope of the associated Technical Documentation, refer to the following:
• The CD-ROM provided for the device (depending on the device version, the CD-ROM might not be part of the delivery!)
• The W@M Device Viewer : Enter the serial number from the nameplate
( www.endress.com/deviceviewer )
• The Endress+Hauser Operations App : Enter the serial number from the nameplate or scan the 2-D matrix code (QR code) on the nameplate.
Brief Operating Instructions
Measuring device
Promag W 400
Documentation code
KA01114D
Endress+Hauser
Proline Promag W 400 EtherNet/IP Technical data
Technical Information
Measuring device
Promag W 400
Documentation code
TI01046D
Supplementary devicedependent documentation
Special documentation
Contents
Heartbeat Technology
Information on Custody Transfer Measurement
Documentation code
SD01183D
SD01230D
Installation Instructions
Contents
Installation Instructions for spare part sets
Documentation code
Overview of accessories available for order → 126
Endress+Hauser 161
Appendix Proline Promag W 400 EtherNet/IP
17 Appendix
17.1 Overview of the operating menu
The following graphic provides an overview of the entire operating menu structure with its menus, submenus and parameters. The page reference indicates where a description of the parameter can be found in the manual.
Depending on the device version, not all submenus and parameters are available in every device. The selection can vary depending on the order code.
For the Order Code "Application Package", the associated parameters are described in the
Special Documentation.
Display language
Operation
Setup
Diagnostics
Expert
17.1.1 "Operation" menu
Navigation Operation
Operation
Display language
Web server language
Access status display
Access status tooling
Locking status
‣ Display
Format display
Contrast display
162 Endress+Hauser
Proline Promag W 400 EtherNet/IP
Backlight
Display interval
‣ Totalizer handling
Control Totalizer 1 to 3
Preset value 1 to 3
Reset all totalizers
17.1.2 "Setup" menu
Navigation Setup
Setup
Device tag
‣
System units
‣ Communication
Volume flow unit
Volume unit
Conductivity unit
Temperature unit
Mass flow unit
Mass unit
Density unit
MAC address
Default network settings
DHCP client
IP address
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Appendix
Appendix
Subnet mask
Default gateway
‣ Display
Format display
Value 1 display
0% bargraph value 1
100% bargraph value 1
Value 2 display
Value 3 display
0% bargraph value 3
100% bargraph value 3
Value 4 display
‣ Low flow cut off
Assign process variable
On value low flow cutoff
Off value low flow cutoff
Pressure shock suppression
‣ Empty pipe detection
Empty pipe detection
New adjustment
Switch point empty pipe detection
Response time empty pipe detection
‣ Advanced setup
Enter access code
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‣ Sensor adjustment
Installation direction
‣ Totalizer 1 to 3
Assign process variable
Unit totalizer
Totalizer operation mode
Failure mode
‣ Display
Format display
Value 1 display
0% bargraph value 1
100% bargraph value 1
Decimal places 1
Value 2 display
Decimal places 2
Value 3 display
0% bargraph value 3
100% bargraph value 3
Decimal places 3
Value 4 display
Decimal places 4
Display language
Display interval
Display damping
Header
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Appendix
Header text
Separator
Backlight
‣ Electrode cleaning circuit
Electrode cleaning circuit
ECC duration
ECC recovery time
ECC cleaning cycle
ECC Polarity
‣
Administration
‣ Define access code
Define access code
Confirm access code
Device reset
17.1.3 "Diagnostics" menu
Navigation Diagnostics
Diagnostics
Actual diagnostics
Previous diagnostics
Operating time from restart
Operating time
‣ Diagnostic list
Diagnostics 1
Diagnostics 2
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Diagnostics 3
Diagnostics 4
Diagnostics 5
‣ Event logbook
Filter options
‣ Event list
‣ Device information
Device tag
Serial number
Firmware version
Device name
Order code
Extended order code 1
Extended order code 2
Extended order code 3
ENP version
IP address
Subnet mask
Default gateway
‣
Measured values
‣ Process variables
Volume flow
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Appendix
168
Mass flow
Conductivity
‣ Totalizer
Totalizer value 1 to 3
Totalizer overflow 1 to 3
‣ Data logging
Assign channel 1
Assign channel 2
Assign channel 3
Assign channel 4
Logging interval
Clear logging data
‣ Display channel 1
‣ Display channel 2
‣ Display channel 3
‣ Display channel 4
‣ Heartbeat
‣ Performing verification
Year
Month
Day
Hour
AM/PM
Minute
Verification mode
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External device information
External reference voltage 1
External reference voltage 2
Start verification
Progress
Status
Overall result
‣ Verification results
Date/time
Verification ID
Operating time
Overall result
Sensor
Sensor electronic module
I/O module
‣ Monitoring results
Noise
Coil current shot time
Reference electrode potential against
PE
‣
Simulation
Assign simulation process variable
Value process variable
Simulation device alarm
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Appendix
‣
System
170
‣ Display
Proline Promag W 400 EtherNet/IP
Diagnostic event category
Simulation diagnostic event
17.1.4 "Expert" menu
The following tables provide an overview of the Expert menu with its submenus and parameters. The direct access code to the parameter is given in brackets. The page reference indicates where a description of the parameter can be found in the manual.
Navigation Expert
Expert
Direct access (0106)
Locking status (0004)
Access status display (0091)
Access status tooling (0005)
Enter access code (0003)
‣ System
‣ Sensor
‣ Communication
‣ Application
‣ Diagnostics
"System" submenu
Navigation Expert → System
Display language (0104)
Format display (0098)
Value 1 display (0107)
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0% bargraph value 1 (0123)
100% bargraph value 1 (0125)
Decimal places 1 (0095)
Value 2 display (0108)
Decimal places 2 (0117)
Value 3 display (0110)
0% bargraph value 3 (0124)
100% bargraph value 3 (0126)
Decimal places 3 (0118)
Value 4 display (0109)
Decimal places 4 (0119)
Display interval (0096)
Display damping (0094)
Header (0097)
Header text (0112)
Separator (0101)
Contrast display (0105)
Backlight (0111)
Access status display (0091)
‣
Diagnostic handling
Alarm delay (0651)
‣ Diagnostic behavior
Assign behavior of diagnostic no. 531
(0741)
Assign behavior of diagnostic no. 832
(0681)
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Appendix
‣ Sensor
Assign behavior of diagnostic no. 833
(0682)
Assign behavior of diagnostic no. 862
(0745)
Assign behavior of diagnostic no. 937
(0743)
Assign behavior of diagnostic no. 302
(0739)
‣ Administration
‣ Define access code
Define access code
Confirm access code
Device reset (0000)
Activate SW option (0029)
Software option overview (0015)
"Sensor" submenu
Navigation Expert → Sensor
‣ Measured values
‣ Process variables
Volume flow (1838)
Mass flow (1847)
Conductivity (1850)
‣ Totalizer
Totalizer value 1 to 3 (0911–1 to 3)
Totalizer overflow 1 to 3 (0910–1 to 3)
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‣ System units
Volume flow unit (0553)
Volume unit (0563)
Conductivity unit (0582)
Temperature unit (0557)
Mass flow unit (0554)
Mass unit (0574)
Density unit (0555)
Date/time format (2812)
‣
User-specific units
User volume text (0567)
User volume offset (0569)
User volume factor (0568)
User mass text (0560)
User mass offset (0562)
‣ Process parameters
Filter options (6710)
User mass factor (0561)
Flow damping (6661)
Flow override (1839)
Conductivity damping (1803)
Conductivity measurement (6514)
‣ Low flow cut off
Assign process variable (1837)
On value low flow cutoff (1805)
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Appendix
Off value low flow cutoff (1804)
Pressure shock suppression (1806)
‣ Empty pipe detection
Empty pipe detection (1860)
Switch point empty pipe detection
(6562)
Response time empty pipe detection
(1859)
Empty pipe adjust value (6527)
Full pipe adjust value (6548)
Measured value EPD (6559)
‣
Empty pipe adjust
New adjustment (6560)
‣ Electrode cleaning circuit
Electrode cleaning circuit (6528)
ECC duration (6555)
ECC recovery time (6556)
ECC cleaning cycle (6557)
ECC Polarity (6631)
‣ External compensation
Density source (6615)
External density (6630)
Fixed density (6623)
‣ Sensor adjustment
Installation direction (1809)
Integration time (6533)
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Measuring period (6536)
‣ Process variable adjustment
Volume flow offset (1831)
Volume flow factor (1832)
Mass flow offset (1841)
Mass flow factor (1846)
Conductivity offset (1848)
Conductivity factor (1849)
‣ Calibration
Nominal diameter (2807)
Calibration factor (6522)
Zero point (6546)
Conductivity calibration factor (6718)
‣
Communication
‣ Configuration
Web server language (7221)
MAC address (7214)
Default network settings (7401)
DHCP client (7212)
IP address (7209)
Subnet mask (7211)
Default gateway (7210)
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Appendix
Web server functionality (7222)
‣ Configurable input assembly
Input assembly position 1 (7402)
Input assembly position 2 (7413)
Input assembly position 3 (7415)
Input assembly position 4 (7416)
Input assembly position 5 (7417)
Input assembly position 6 (7418)
Input assembly position 7 (7419)
Input assembly position 8 (7420)
Input assembly position 9 (7421)
Input assembly position 10 (7403)
Input assembly position 11 (7404)
Input assembly position 12 (7405)
Input assembly position 13 (7406)
Input assembly position 14 (7407)
Input assembly position 15 (7408)
Input assembly position 16 (7409)
Input assembly position 17 (7410)
Input assembly position 18 (7411)
Input assembly position 19 (7412)
Input assembly position 20 (7414)
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‣ Application
Reset all totalizers (2806)
‣ Totalizer 1 to 3
Assign process variable (0914–1 to 3)
Unit totalizer (0915–1 to 3)
Totalizer operation mode
(0908–1 to 3)
Control Totalizer 1 to 3 (0912–1 to 3)
Preset value 1 to 3 (0913–1 to 3)
Failure mode (0901–1 to 3)
‣ Diagnostics
Actual diagnostics (0691)
Previous diagnostics (0690)
Operating time from restart (0653)
Operating time (0652)
‣ Diagnostic list
Diagnostics 1 (0692)
Diagnostics 2 (0693)
Diagnostics 3 (0694)
Diagnostics 4 (0695)
Diagnostics 5 (0696)
‣ Event logbook
Filter options (0705)
‣
Event list
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Appendix
‣ Device information
Device tag (0011)
Serial number (0009)
Firmware version (0010)
Device name (0013)
Order code (0008)
Extended order code 1 (0023)
Extended order code 2 (0021)
Extended order code 3 (0022)
Configuration counter (2751)
ENP version (0012)
IP address (7209)
Subnet mask (7211)
Default gateway (7210)
‣ Data logging
Assign channel 1 (0851)
Assign channel 2 (0852)
Assign channel 3 (0853)
Assign channel 4 (0854)
Logging interval (0856)
Clear logging data (0855)
‣ Display channel 1
‣ Display channel 2
‣ Display channel 3
‣ Display channel 4
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‣ Min/max values
Reset min/max values (6541)
‣ Main electronic temperature
Minimum value (6547)
Maximum value (6545)
‣ Heartbeat
‣ Heartbeat base settings
Plant operator (2754)
Location (2755)
‣
Performing verification
Year (2846)
Month (2845)
Day (2842)
Hour (2843)
AM/PM (2813)
Minute (2844)
Verification mode (12105)
External device information (12101)
External reference voltage 1 (12106)
External reference voltage 2 (12107)
Start verification (12127)
Progress (2808)
Status (12153)
Overall result (12149)
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Appendix
‣ Simulation
‣ Verification results
Date/time (12142)
Verification ID (12141)
Operating time (12126)
Overall result (12149)
Sensor (12152)
Sensor electronic module (12151)
I/O module (12145)
‣ Monitoring results
Noise (12158)
Coil current shot time (12150)
Reference electrode potential against
PE (12155)
Assign simulation process variable
(1810)
Value process variable (1811)
Simulation device alarm (0654)
Diagnostic event category (0738)
Simulation diagnostic event (0737)
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Index
A
Access authorization to parameters
Read access . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Write access . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Access code . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Incorrect input . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Adapters . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
Adapting the diagnostic behavior . . . . . . . . . . . . . . . 113
Ambient temperature range . . . . . . . . . . . . . . . . . . . 21
Application . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9, 128
Applicator . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 128
Approvals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 158
B
Buried applications . . . . . . . . . . . . . . . . . . . . . . . . . . 24
C
C-Tick symbol . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 158
Cable entries
Technical data . . . . . . . . . . . . . . . . . . . . . . . . . . 135
Cable entry
Degree of protection . . . . . . . . . . . . . . . . . . . . . . . 47
CE mark . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11, 158
Certificates . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 158
Checklist
Post-connection check . . . . . . . . . . . . . . . . . . . . . 47
Post-installation check . . . . . . . . . . . . . . . . . . . . . 35
Cleaning
Exterior cleaning . . . . . . . . . . . . . . . . . . . . . . . . 123
Interior cleaning . . . . . . . . . . . . . . . . . . . . . . . . . 123
Commissioning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 75
Advanced settings . . . . . . . . . . . . . . . . . . . . . . . . 87
Configuring the measuring device . . . . . . . . . . . . . 76
Conductivity . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 138
Connecting cable . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36
Connecting the measuring device . . . . . . . . . . . . . . . . 41
Connection see Electrical connection
Connection examples, potential equalization . . . . . . . 44
Connection preparations . . . . . . . . . . . . . . . . . . . . . . 40
Connection tools . . . . . . . . . . . . . . . . . . . . . . . . . . . . 36
Context menu
Closing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 57
Explanation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 57
Opening . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 57
Current consumption . . . . . . . . . . . . . . . . . . . . . . . . 135
Cyclic data transmission . . . . . . . . . . . . . . . . . . . . . . 71
D
Declaration of Conformity . . . . . . . . . . . . . . . . . . . . . 11
Define access code . . . . . . . . . . . . . . . . . . . . . . . . 97, 98
Degree of protection . . . . . . . . . . . . . . . . . . . . . 47, 137
Design
Measuring device . . . . . . . . . . . . . . . . . . . . . . . . . 12
Designated use . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
Device components . . . . . . . . . . . . . . . . . . . . . . . . . . 12
Device description files . . . . . . . . . . . . . . . . . . . . . . . 70
Device documentation
Supplementary documentation . . . . . . . . . . . . . . . . 8
Device locking, status . . . . . . . . . . . . . . . . . . . . . . . 100
Device name
Sensor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
Transmitter . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
Device repair . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Device revision . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
Device type ID . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
Diagnostic behavior
Explanation . . . . . . . . . . . . . . . . . . . . . . . . . . . . 109
Symbols . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 109
Diagnostic information
Communication interface . . . . . . . . . . . . . . . . . . 113
Design, description . . . . . . . . . . . . . . . . . . . 109, 112
FieldCare . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 112
Light emitting diodes . . . . . . . . . . . . . . . . . . . . . 107
Local display . . . . . . . . . . . . . . . . . . . . . . . . . . . 108
Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 114
Remedial measures . . . . . . . . . . . . . . . . . . . . . . 114
Web browser . . . . . . . . . . . . . . . . . . . . . . . . . . . 111
Diagnostic list . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 117
Diagnostic message . . . . . . . . . . . . . . . . . . . . . . . . . 108
Diagnostics
Symbols . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 108
Diagnostics (Menu) . . . . . . . . . . . . . . . . . . . . . . . . . 166
DIP switch see Write protection switch
Direct access . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 59
Direct access code . . . . . . . . . . . . . . . . . . . . . . . . . . . 54
Disabling write protection . . . . . . . . . . . . . . . . . . . . . 97
Display
Current diagnostic event . . . . . . . . . . . . . . . . . . . 116
Previous diagnostic event . . . . . . . . . . . . . . . . . . 116
see Local display
Display area
For operational display . . . . . . . . . . . . . . . . . . . . . 52
In the navigation view . . . . . . . . . . . . . . . . . . . . . 54
Display values
For locking status . . . . . . . . . . . . . . . . . . . . . . . . 100
Disposal . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Document
Function . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Symbols used . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Document function . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
Documentation . . . . . . . . . . . . . . . . . . . . . . . . . . . . 160
Down pipe . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Drinking water approval . . . . . . . . . . . . . . . . . . . . . 158
E
ECC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 93
Electrical connection
Degree of protection . . . . . . . . . . . . . . . . . . . . . . . 47
Measuring device . . . . . . . . . . . . . . . . . . . . . . . . . 36
Operating tools
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Via Ethernet network . . . . . . . . . . . . . . . . . . 157
Via service interface (CDI-RJ45) . . . . . . . . 68, 157
RSLogix 5000 . . . . . . . . . . . . . . . . . . . . . . . . . . . 157
Web server . . . . . . . . . . . . . . . . . . . . . . . . . . 68, 157
Electromagnetic compatibility . . . . . . . . . . . . . . . . . 138
Enabling write protection . . . . . . . . . . . . . . . . . . . . . 97
Endress+Hauser services
Maintenance . . . . . . . . . . . . . . . . . . . . . . . . . . . 123
Repair . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Environment
Ambient temperature . . . . . . . . . . . . . . . . . . . . . . 21
Mechanical load . . . . . . . . . . . . . . . . . . . . . . . . . 138
Shock resistance . . . . . . . . . . . . . . . . . . . . . . . . . 138
Storage temperature . . . . . . . . . . . . . . . . . . . . . . 137
Vibration resistance . . . . . . . . . . . . . . . . . . . . . . 138
Error messages see Diagnostic messages
EtherNet/IP
Diagnostic information . . . . . . . . . . . . . . . . . . . . 113
EtherNet/IP certification . . . . . . . . . . . . . . . . . . . . . 159
Event history . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 117
Events list . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 117
Ex approval . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 158
Expert (Menu) . . . . . . . . . . . . . . . . . . . . . . . . . . . . 170
Extended order code
Sensor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
Transmitter . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
Exterior cleaning . . . . . . . . . . . . . . . . . . . . . . . . . . . 123
F
Field of application
Residual risks . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
FieldCare . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 68
Device description file . . . . . . . . . . . . . . . . . . . . . . 70
Establishing a connection . . . . . . . . . . . . . . . . . . . 68
Function . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 68
User interface . . . . . . . . . . . . . . . . . . . . . . . . . . . 69
Filtering the event logbook . . . . . . . . . . . . . . . . . . . 118
Firmware
Release date . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
Version . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
Firmware history . . . . . . . . . . . . . . . . . . . . . . . . . . . 122
Fitted electrodes . . . . . . . . . . . . . . . . . . . . . . . . . . . 155
Fix assembly . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 113
Flow direction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20
Flow limit . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 139
Function check . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 75
Functions see Parameter
G
Galvanic isolation . . . . . . . . . . . . . . . . . . . . . . . . . . 132
H
Hardware write protection . . . . . . . . . . . . . . . . . . . . . 98
Help text
Calling up . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
Close . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
Explanation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 60
182
HistoROM . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 94
I
I/O electronics module . . . . . . . . . . . . . . . . . . . . . 12, 43
Identifying the measuring device . . . . . . . . . . . . . . . . 13
Immersion in water . . . . . . . . . . . . . . . . . . . . . . . . . . 23
Incoming acceptance . . . . . . . . . . . . . . . . . . . . . . . . . 13
Information on the document . . . . . . . . . . . . . . . . . . . 6
Inlet runs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20
Input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 128
Input mask . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 55
Inspection
Installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35
Received goods . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
Inspection check
Connection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 47
Installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Installation conditions
Adapters . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
Buried applications . . . . . . . . . . . . . . . . . . . . . . . . 24
Down pipe . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Immersion in water . . . . . . . . . . . . . . . . . . . . . . . 23
Inlet and outlet runs . . . . . . . . . . . . . . . . . . . . . . . 20
Mounting location . . . . . . . . . . . . . . . . . . . . . . . . 19
Orientation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20
Partially filled pipe . . . . . . . . . . . . . . . . . . . . . . . . 19
System pressure . . . . . . . . . . . . . . . . . . . . . . . . . . 21
Vibrations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
Installation dimensions . . . . . . . . . . . . . . . . . . . . . . . 21
Interior cleaning . . . . . . . . . . . . . . . . . . . . . . . . . . . 123
K
Keypad lock
Disabling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Enabling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
L
Languages, operation options . . . . . . . . . . . . . . . . . 158
Line recorder . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 103
Local display . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 156
Editing view . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 55
Navigation view . . . . . . . . . . . . . . . . . . . . . . . . . . 53
see Diagnostic message see In alarm condition see Operational display
Low flow cut off . . . . . . . . . . . . . . . . . . . . . . . . . . . 132
M
Main electronics module . . . . . . . . . . . . . . . . . . . . . . 12
Maintenance tasks . . . . . . . . . . . . . . . . . . . . . . . . . 123
Replacing seals . . . . . . . . . . . . . . . . . . . . . . . . . . 123
Managing the device configuration . . . . . . . . . . . . . . 94
Manufacturer ID . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
Manufacturing date . . . . . . . . . . . . . . . . . . . . . . . 14, 15
Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 152
Maximum measured error . . . . . . . . . . . . . . . . . . . . 136
Measured variables
Calculated . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 128
Measured . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 128
see Process variables
Endress+Hauser
Proline Promag W 400 EtherNet/IP Index
Measuring and test equipment . . . . . . . . . . . . . . . . 123
Measuring device
Configuration . . . . . . . . . . . . . . . . . . . . . . . . . . . . 76
Conversion . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Design . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
Disposal . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 125
Integrating via HART protocol . . . . . . . . . . . . . . . . 70
Mounting the sensor . . . . . . . . . . . . . . . . . . . . . . 24
Mounting the ground cable/ground disks . . . . . 25
Mounting the seals . . . . . . . . . . . . . . . . . . . . . 25
Screw tightening torques . . . . . . . . . . . . . . . . . 25
Preparing for electrical connection . . . . . . . . . . . . 40
Preparing for mounting . . . . . . . . . . . . . . . . . . . . 24
Removing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Repair . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Switch-on . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 75
Measuring instrument approval . . . . . . . . . . . . . . . . 159
Measuring principle . . . . . . . . . . . . . . . . . . . . . . . . 128
Measuring range . . . . . . . . . . . . . . . . . . . . . . . . . . . 128
Measuring system . . . . . . . . . . . . . . . . . . . . . . . . . . 128
Measuring tube specification . . . . . . . . . . . . . . . . . . 151
Mechanical load . . . . . . . . . . . . . . . . . . . . . . . . . . . 138
Media . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
Medium temperature range . . . . . . . . . . . . . . . . . . . 138
Menu
Diagnostics . . . . . . . . . . . . . . . . . . . . . . . . 116, 166
Expert . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 170
Operation . . . . . . . . . . . . . . . . . . . . . . . . . . 100, 162
Setup . . . . . . . . . . . . . . . . . . . . . . . . . . . 76, 80, 163
Menus
For measuring device configuration . . . . . . . . . . . . 76
For specific settings . . . . . . . . . . . . . . . . . . . . . . . 87
Mounting dimensions see Installation dimensions
Mounting location . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Mounting preparations . . . . . . . . . . . . . . . . . . . . . . . 24
Mounting requirements
Installation dimensions . . . . . . . . . . . . . . . . . . . . 21
Mounting tools . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24
N
Nameplate
Sensor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
Transmitter . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
Navigation path (navigation view) . . . . . . . . . . . . . . . 53
Navigation view
In the submenu . . . . . . . . . . . . . . . . . . . . . . . . . . 53
In the wizard . . . . . . . . . . . . . . . . . . . . . . . . . . . . 53
Numeric editor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 55
O
Operable flow range . . . . . . . . . . . . . . . . . . . . . . . . 131
Operating elements . . . . . . . . . . . . . . . . . . . . . . 57, 109
Operating keys see Operating elements
Operating menu
Menus, submenus . . . . . . . . . . . . . . . . . . . . . . . . 50
Overview of menus with parameters . . . . . . . . . . 162
Structure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 50
Endress+Hauser
Submenus and user roles . . . . . . . . . . . . . . . . . . . 51
Operating philosophy . . . . . . . . . . . . . . . . . . . . . . . . 51
Operation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 100
Operation (Menu) . . . . . . . . . . . . . . . . . . . . . . . . . . 162
Operation options . . . . . . . . . . . . . . . . . . . . . . . . . . . 49
Operational display . . . . . . . . . . . . . . . . . . . . . . . . . . 52
Operational safety . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Order code . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14, 15
Orientation (vertical, horizontal) . . . . . . . . . . . . . . . . 20
Outlet runs . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20
Output . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 131
Output signal . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 131
Overview
Operating menu . . . . . . . . . . . . . . . . . . . . . . . . . 162
P
Packaging disposal . . . . . . . . . . . . . . . . . . . . . . . . . . 18
Parameter
Changing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 61
Enter a value . . . . . . . . . . . . . . . . . . . . . . . . . . . . 61
Parameter settings
Administration (Submenu) . . . . . . . . . . . . . . 94, 119
Communication (Submenu) . . . . . . . . . . . . . . . . . 82
Configuration backup display (Submenu) . . . . . . . 94
Data logging (Submenu) . . . . . . . . . . . . . . . . . . . 103
Device information (Submenu) . . . . . . . . . . . . . . 120
Diagnostics (Menu) . . . . . . . . . . . . . . . . . . . . . . 116
Display (Submenu) . . . . . . . . . . . . . . . . . . . . . . . . 91
Display (Wizard) . . . . . . . . . . . . . . . . . . . . . . . . . 83
Electrode cleaning circuit (Submenu) . . . . . . . . . . 93
Empty pipe detection (Wizard) . . . . . . . . . . . . . . . 86
Low flow cut off (Wizard) . . . . . . . . . . . . . . . . . . . 84
Operation (Submenu) . . . . . . . . . . . . . . . . . . . . . 102
Process variables (Submenu) . . . . . . . . . . . . . . . . 101
Sensor adjustment (Submenu) . . . . . . . . . . . . . . . 89
Setup (Menu) . . . . . . . . . . . . . . . . . . . . . . . . . . . . 80
Simulation (Submenu) . . . . . . . . . . . . . . . . . . . . . 96
System units (Submenu) . . . . . . . . . . . . . . . . . . . . 80
Totalizer (Submenu) . . . . . . . . . . . . . . . . . . . . . . 102
Totalizer 1 to 3 (Submenu) . . . . . . . . . . . . . . . . . . 89
Web server (Submenu) . . . . . . . . . . . . . . . . . . . . . 67
Partially filled pipe . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Performance characteristics . . . . . . . . . . . . . . . . . . . 135
Post-connection check (checklist) . . . . . . . . . . . . . . . 47
Post-installation check . . . . . . . . . . . . . . . . . . . . . . . 75
Post-installation check (checklist) . . . . . . . . . . . . . . . 35
Potential equalization . . . . . . . . . . . . . . . . . . . . . . . . 44
Power consumption . . . . . . . . . . . . . . . . . . . . . . . . . 134
Power supply failure . . . . . . . . . . . . . . . . . . . . . . . . 135
Pressure loss . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 139
Pressure tightness . . . . . . . . . . . . . . . . . . . . . . . . . . 139
Pressure-temperature ratings . . . . . . . . . . . . . . . . . 139
Process conditions
Conductivity . . . . . . . . . . . . . . . . . . . . . . . . . . . . 138
Flow limit . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 139
Medium temperature . . . . . . . . . . . . . . . . . . . . . 138
Pressure loss . . . . . . . . . . . . . . . . . . . . . . . . . . . 139
Pressure tightness . . . . . . . . . . . . . . . . . . . . . . . 139
Process connections . . . . . . . . . . . . . . . . . . . . . . . . 156
183
Index Proline Promag W 400 EtherNet/IP
Product safety . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
Protecting parameter settings . . . . . . . . . . . . . . . . . . 97
R
Read access . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Reading measured values . . . . . . . . . . . . . . . . . . . . 101
Reading out diagnostic information, EtherNet/IP . . . 113
Recalibration . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 123
Reference operating conditions . . . . . . . . . . . . . . . . 135
Registered trademarks . . . . . . . . . . . . . . . . . . . . . . . . . 8
Remedial measures
Calling up . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 110
Closing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 110
Remote operation . . . . . . . . . . . . . . . . . . . . . . . . . . 157
Remote version
Connecting the signal cables . . . . . . . . . . . . . . . . . 41
Repair . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Notes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Repair of a device . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Repeatability . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 137
Replacement
Device components . . . . . . . . . . . . . . . . . . . . . . . 124
Replacing seals . . . . . . . . . . . . . . . . . . . . . . . . . . . . 123
Requirements for personnel . . . . . . . . . . . . . . . . . . . . . 9
Return . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
S
Safety . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
Screw tightening torques . . . . . . . . . . . . . . . . . . . . . . 25
Sensor
Mounting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24
Sensor (Submenu) . . . . . . . . . . . . . . . . . . . . . . . . . . 172
Serial number . . . . . . . . . . . . . . . . . . . . . . . . . . . 14, 15
Setting the operating language . . . . . . . . . . . . . . . . . 75
Settings
Adapting the measuring device to the process
conditions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 102
Administration . . . . . . . . . . . . . . . . . . . . . . . . . . . 94
Advanced display configurations . . . . . . . . . . . . . . 91
Communication interface . . . . . . . . . . . . . . . . . . . 82
Device reset . . . . . . . . . . . . . . . . . . . . . . . . . . . . 119
Device tag . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 80
Electrode cleaning circuit (ECC) . . . . . . . . . . . . . . . 93
Empty pipe detection (EPD) . . . . . . . . . . . . . . . . . 86
Local display . . . . . . . . . . . . . . . . . . . . . . . . . . . . 83
Low flow cut off . . . . . . . . . . . . . . . . . . . . . . . . . . 84
Managing the device configuration . . . . . . . . . . . . 94
Operating language . . . . . . . . . . . . . . . . . . . . . . . 75
Resetting the totalizer . . . . . . . . . . . . . . . . . . . . 102
Sensor adjustment . . . . . . . . . . . . . . . . . . . . . . . . 89
Simulation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 96
System units . . . . . . . . . . . . . . . . . . . . . . . . . . . . 80
Totalizer . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 89
Totalizer reset . . . . . . . . . . . . . . . . . . . . . . . . . . 102
Setup (Menu) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 163
Shock resistance . . . . . . . . . . . . . . . . . . . . . . . . . . . 138
Showing data logging . . . . . . . . . . . . . . . . . . . . . . . 103
Signal on alarm . . . . . . . . . . . . . . . . . . . . . . . . . . . . 131
Software release . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
184
Spare part . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Spare parts . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 124
Special connection instructions . . . . . . . . . . . . . . . . . 46
Standards and guidelines . . . . . . . . . . . . . . . . . . . . . 159
Status area
For operational display . . . . . . . . . . . . . . . . . . . . . 52
In the navigation view . . . . . . . . . . . . . . . . . . . . . 54
Status signals . . . . . . . . . . . . . . . . . . . . . . . . . 108, 111
Storage conditions . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
Storage temperature . . . . . . . . . . . . . . . . . . . . . . . . . 17
Storage temperature range . . . . . . . . . . . . . . . . . . . 137
Structure
Operating menu . . . . . . . . . . . . . . . . . . . . . . . . . . 50
Submenu
Administration . . . . . . . . . . . . . . . . . . . . . . . 94, 119
Advanced setup . . . . . . . . . . . . . . . . . . . . . . . . . . 87
Communication . . . . . . . . . . . . . . . . . . . . . . . 75, 82
Configuration backup display . . . . . . . . . . . . . . . . 94
Data logging . . . . . . . . . . . . . . . . . . . . . . . . . . . 103
Device information . . . . . . . . . . . . . . . . . . . . . . . 120
Display . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 91
Electrode cleaning circuit . . . . . . . . . . . . . . . . . . . 93
Events list . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 117
Operation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 102
Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51
Process variables . . . . . . . . . . . . . . . . . . . . . . . . 101
Sensor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 172
Sensor adjustment . . . . . . . . . . . . . . . . . . . . . . . . 89
Simulation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 96
System . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 170
System units . . . . . . . . . . . . . . . . . . . . . . . . . . . . 80
Totalizer . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 102
Totalizer 1 to 3 . . . . . . . . . . . . . . . . . . . . . . . . . . . 89
Web server . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 67
Supply unit
Requirements . . . . . . . . . . . . . . . . . . . . . . . . . . . . 40
Supply voltage . . . . . . . . . . . . . . . . . . . . . . . . . . 40, 134
Surface roughness . . . . . . . . . . . . . . . . . . . . . . . . . . 156
Symbols
For communication . . . . . . . . . . . . . . . . . . . . . . . 52
For correction . . . . . . . . . . . . . . . . . . . . . . . . . . . . 55
For diagnostic behavior . . . . . . . . . . . . . . . . . . . . 52
For locking . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 52
For measured variable . . . . . . . . . . . . . . . . . . . . . 52
For measurement channel number . . . . . . . . . . . . 52
For menus . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 54
For parameters . . . . . . . . . . . . . . . . . . . . . . . . . . . 54
For status signal . . . . . . . . . . . . . . . . . . . . . . . . . . 52
For submenu . . . . . . . . . . . . . . . . . . . . . . . . . . . . 54
For wizard . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 54
In the status area of the local display . . . . . . . . . . . 52
In the text and numeric editor . . . . . . . . . . . . . . . . 55
System (Submenu) . . . . . . . . . . . . . . . . . . . . . . . . . 170
System design
Measuring system . . . . . . . . . . . . . . . . . . . . . . . 128
see Measuring device design
System file
Release date . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
Source . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
Endress+Hauser
Proline Promag W 400 EtherNet/IP
Version . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 70
System integration . . . . . . . . . . . . . . . . . . . . . . . . . . 70
System pressure . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21
T
Technical data, overview . . . . . . . . . . . . . . . . . . . . . 128
Temperature range
Ambient temperature range for display . . . . . . . . 156
Storage temperature . . . . . . . . . . . . . . . . . . . . . . . 17
Terminal assignment . . . . . . . . . . . . . . . . . . . 38, 41, 43
Terminals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 135
Text editor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 55
Tool tip see Help text
Tools
Electrical connection . . . . . . . . . . . . . . . . . . . . . . 36
For mounting . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24
Transport . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
Transmitter
Connecting the signal cables . . . . . . . . . . . . . . . . . 43
Turning the display module . . . . . . . . . . . . . . . . . 34
Turning the housing . . . . . . . . . . . . . . . . . . . . . . . 32
Transporting the measuring device . . . . . . . . . . . . . . 17
Troubleshooting
General . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 105
Turning the display module . . . . . . . . . . . . . . . . . . . . 34
Turning the electronics housing see Turning the transmitter housing
Turning the transmitter housing . . . . . . . . . . . . . . . . 32
U
Use of the measuring device
Borderline cases . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
Incorrect use . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
see Designated use
User roles . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51
V
Version data for the device . . . . . . . . . . . . . . . . . . . . 70
Vibration resistance . . . . . . . . . . . . . . . . . . . . . . . . 138
Vibrations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
W
W@M . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 123, 124
W@M Device Viewer . . . . . . . . . . . . . . . . . . . . 13, 124
Weight
Compact version . . . . . . . . . . . . . . . . . . . . . . . . . 139
Sensor remote version . . . . . . . . . . . . . . . . . . . . 146
Transport (notes) . . . . . . . . . . . . . . . . . . . . . . . . . 17
Wizard
Define access code . . . . . . . . . . . . . . . . . . . . . . . . 97
Display . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 83
Empty pipe detection . . . . . . . . . . . . . . . . . . . . . . 86
Low flow cut off . . . . . . . . . . . . . . . . . . . . . . . . . . 84
Workplace safety . . . . . . . . . . . . . . . . . . . . . . . . . . . 10
Write access . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 62
Write protection
Via access code . . . . . . . . . . . . . . . . . . . . . . . . . . . 97
Via write protection switch . . . . . . . . . . . . . . . . . . 98
Write protection switch . . . . . . . . . . . . . . . . . . . . . . . 98
Endress+Hauser
Index
185
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Key features
EtherNet/IP communication interface
Electromagnetic flow measurement principle
Suitable for liquids with conductivity ≥ 5 μS/cm
Compact and remote version options available
Local display for operational information
Empty Pipe Detection (EPD) functionality
Frequently asked questions
This flowmeter is designed to measure liquids with a minimum conductivity of 5 μS/cm.
In the event of very strong vibrations, the pipe and sensor must be supported and fixed. It is also advisable to mount the sensor and transmitter separately.
For elevated fluid temperature, ensure protection against contact to prevent burns.
Preferably install the sensor in an ascending pipe, and ensure a sufficient distance to the next pipe elbow: h ≥ 2 × DN.
Protect settings from unauthorized access with write protection via access code or via write protection switch.