ICP DAS USA | PFN-2052 | User manual | ICP DAS USA PFN-2052 User Manual

ICP DAS USA PFN-2052 User Manual
PFN-2000 Series User Manual
Version 1.30, Sep 2014
Service and usage information for
PFN-2042
PFN-2051
PFN-2052
PFN-2053
PFN-2055
PFN-2060
PFN-2019
Written by Raiden Lan
Warranty
All products manufactured by ICP DAS are under warranty regarding defective
materials for a period of one year, beginning from the date of delivery to the original
purchaser.
Warning
ICP DAS assumes no liability for any damage resulting from the use of this
product.ICP DAS reserves the right to change this manual at any time without notice.
The information furnished by ICP DAS is believed to be accurate and reliable.
However, no responsibility is assumed by ICP DAS for its use, not for any
infringements of patents or other rights of third parties resulting from its use.
Copyright
Copyright @ 2014 by ICP DAS Co., Ltd. All rights are reserved.
Trademark
The names used for identification only may be registered trademarks of their
respective companies.
Contact US
If you have any problem, please feel free to contact us.
You can count on us for quick response.
Email: service@icpdas.com
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Table of Contents
Table of Contents ...................................................................................3
1. Introduction ........................................................................................6
1.1. Product Information ...................................................................................... 7
1.2. Features ....................................................................................................... 8
1.3. Specification ................................................................................................. 9
1.3.1. System Specification .......................................................................... 9
1.3.2. I/O Specification ................................................................................11
1.3.2.1. PFN-2042................................................................................11
1.3.2.2. PFN-2051............................................................................... 12
1.3.2.3. PFN-2052............................................................................... 13
1.3.2.4. PFN-2053............................................................................... 14
1.3.2.5. PFN-2055............................................................................... 15
1.3.2.6. PFN-2060............................................................................... 17
1.3.2.7. PFN-2019............................................................................... 19
1.4. Internal I/O Structure .................................................................................. 20
1.4.1. PFN-2042 ......................................................................................... 20
1.4.2. PFN-2051 ......................................................................................... 21
1.4.3. PFN-2052 ......................................................................................... 21
1.4.4. PFN-2053 ......................................................................................... 22
1.4.5. PFN-2055 ......................................................................................... 22
1.4.6. PFN-2060 ......................................................................................... 23
1.4.7. PFN-2019 ......................................................................................... 24
1.5. Wiring Connection ...................................................................................... 25
1.5.1. PFN-2042 ......................................................................................... 25
1.5.2. PFN-2051 ......................................................................................... 25
1.5.3. PFN-2052 ......................................................................................... 26
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1.5.4. PFN-2053 ......................................................................................... 26
1.5.5. PFN-2055 ......................................................................................... 27
1.5.6. PFN-2060 ......................................................................................... 27
1.5.7. PFN-2019 ......................................................................................... 28
1.6. Overview .................................................................................................... 29
1.6.1. Front Panel....................................................................................... 29
1.6.2. Top Panel ......................................................................................... 32
1.7. Dimensions................................................................................................. 34
2. PROFINET .........................................................................................35
2.1. Device classes of PROFINET IO................................................................ 35
2.2. Device Description...................................................................................... 36
2.3. Conformance Classes (CC)........................................................................ 37
3. Basic Application .............................................................................38
3.1. Connect to Network, PC and PROFINET IO controller............................... 38
3.2. Network configuration................................................................................. 39
3.3. GSD Import ................................................................................................ 46
3.4. Project Setup.............................................................................................. 48
3.5. I/O Data Exchange ..................................................................................... 56
3.6. Module Parameter Settings ........................................................................ 58
4. MiniOS7 Utility Tool..........................................................................60
4.1. Installing the MiniOS7 Utility ....................................................................... 60
4.2. Using MiniOS7 Utility to get Ethernet settings and firmware version .......... 61
5. PFN_Tool Utility ................................................................................63
5.1. Installing the PFN_Tool Utility ..................................................................... 63
5.2. PFN_Tool Utility Functionalities .................................................................. 64
5.2.1. Module Search ................................................................................. 64
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5.2.2. Module Basic Configuration.............................................................. 65
5.2.3. Module Advanced Configuration....................................................... 67
6. Troubleshooting ...............................................................................69
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1. Introduction
PROFINET is an open Industrial Ethernet standard developed by the PROFIBUS
Organization (PI). Based on Ethernet versatility, PROFINET make vertical integration
of field level with Enterprise level easily. PROFINET is automation in real time, so it
can cover all requirements of the Automation Industry. PROFINET is fit for factory
automation, process automation, safety applications and motion control applications,
etc.
PROFINET contains 2 different solutions. They are PROFINET IO and PROFINET
CBA (Component Based Automation). PFN-2000 series modules are PROFINET IO
devices. The user can access and configure the modules easily by using the GSDML
file in any PROFINET Engineering tool, and exchange process data quickly with the
IO controller.
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1.1. Product Information
PFN-2000 provides a variety of digital/analog module choice, listed in the following
table.
Type
Model
Description
DC Digital Output
PFN-2042
Isolated 16-ch DO PROFINET I/O Module
DC Digital Input
PFN-2051
Isolated 16-ch DI PROFINET I/O Module
PFN-2052
Ch-to-ch Isolated 8-ch DI PROFINET I/O
Module
PFN-2053
16-ch Dry Contact DI PROFINET I/O Module
DC Digital Input
and Output
PFN-2055
Isolated 8-ch DI and 8-ch DO PROFINET I/O
Module
Power
Output
PFN-2060
Isolated 6-ch DI and 6-ch relay output
PROFINET I/O Module
PFN-2019
10-channel
Universal
PROFINET I/O Module
Relay
Analog Input
Analog
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Input
1.2.
Features
 Transfer protocol: PROFINET IO
 Supported Ethernet services: ICMP, IGMP, ARP, DHCP, TELNET,
TFTP, SNMP, VLAN Priority Tagging
 Supported PROFINET services: RTC, RTA, CL-RPC, DCP, LLDP,
I&M
 PROFINET Conformance Class B and RT Class 1
 Cyclic Time: 1ms (min)
 Generic GSDML File Provided
 Integrated 2-Port Switch
 Automatic MDI / MDI-X Crossover for Plug-and-play
 Provide LED indicators
 Robust, fan less design
 4 kV Contact ESD protection for any terminal
 Wide range of power input (+10 ~ +30 VDC) and operating
temperature (-25 ~ +75°C)
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1.3.
Specification
1.3.1. System Specification
Hardware
CPU
32-bit CPU Core
RAM/Flash/EEPROM
32 MB / 4 MB / 8 KB
Watchdog
CPU built-in
ESD Protection
4 kV class A
PROFINET Interface
Protocol
PROFINET IO Device
Conformance Classes
Class B
Services
RTC, RTA, CL-RPC, DCP, LLDP, I&M
Cycle Time
1 ms (min)
Ethernet Interface
Controller
10/100Base-TX Ethernet Controller
(Auto-negotiating, Auto_MDIX)
Connector
RJ-45 x 2 (LED indicators) , Integrated 2-Port
Switch
Services
ICMP, IGMP, ARP, DHCP, TELNET, TFTP,
SNMP, VLAN Priority Tagging
LED Display
Round LED
PWR LED, S1A LED, S1B LED, S2A LED, S2B
LED
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Power Requirements
Power supply
Unregulated +10 ~ +30 VDC
Protection
Power reverse polarity protection, Over-voltage
brown-out protection
Power Consumption
Digital I/O module - 4.5W
Analog I/O module - 5W
Mechanical
Dimensions (W x L x H)
Digital I/O module - 33 mm x 107 mm x 126 mm
Analog I/O module - 33 mm x 93 mm x 126 mm
Installation
DIN Rail or Wall mounting
Environment
Operating Temperature
-25 ˚C ~ +75 ˚C
Storage Temperature
-30 ˚C ~ +80 ˚C
Humidity
10~ 90 % RH, non-condensing
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1.3.2. I/O Specification
1.3.2.1. PFN-2042
Digital Output
Output Channels
16
Output Type
Sink, Open Collector
Load Voltage
+3.5 V DC ~ +50 V DC
Max. Load Current
700 mA/channel at 25 °C
Over-Voltage Protection
+60 V DC
Intra-module Isolation
3750 Vrms
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1.3.2.2. PFN-2051
Digital Input
Input Channels
16
Input Type
Dry Contact (Source), Wet Contact (Sink, Source)
On Voltage Level
Dry: Open
Wet: +10 V DC ~ +50 V DC
Off Voltage Level
Dry: Close to DI.GND
Wet: +4 V DC max.
Input Impedance
10 kOhm, 0.5 W
Photo-Isolation
3750 Vrms
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1.3.2.3. PFN-2052
Digital Input
Input Channels
8
Input Type
Wet Contact (Sink, Source)
On Voltage Level
+4 V DC ~ 30 V DC
Off Voltage Level
+1 V DC max.
Input Impedance
3 kOhm, 0.3 W
Photo-Isolation
3750 Vrms
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1.3.2.4. PFN-2053
Digital Input
Input Channels
16
Input Type
Dry Contact (Source)
On Voltage Level
Close to DI.GND
Off Voltage Level
Open
Input Impedance
3 kOhm, 0.3 W
Photo-Isolation
3750 Vrms
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1.3.2.5. PFN-2055
Digital Input
Input Channels
8
Input Type
Dry Contact (Source), Wet Contact (Sink, Source)
On Voltage Level
Dry: Close to DI.GND
Wet: +10 V DC ~ +50 V DC
Off Voltage Level
Dry: Open
Wet: +4 V DC max.
Input Impedance
10 kOhm, 0.5 W
Photo-Isolation
3750 Vrms
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Digital Output
Output Channels
8
Output Type
Sink, Open Collector
Output Voltage
+3.5
Max. Load Current
700 mA/channel at 25 °C
Direct drive power relay module
Over-Voltage Protection
+60 V DC
Intra-module Isolation
3750 Vrms
VDC
~ +50 V DC
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1.3.2.6. PFN-2060
Digital Input
Input Channels
6
Input Type
Dry Contact (Source), Wet Contact (Sink, Source)
On Voltage Level
Dry: Close to DI.GND
Wet: +10 V DC ~ +50 V DC
Off Voltage Level
Dry: Open
Wet: +4 V DC max.
Input Impedance
10 kOhm, 0.5 W
Photo-Isolation
3750 Vrms
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Digital Output
Output Channels
6
Output Type
Power Relay, Form A x 6
Contact Rating
AC: 125 V@0.6A
DC: 30V@2A, 110V@0.6A
Operating Time
3 ms
Release Time
2 ms
Total Switching Time
10 ms
Surge Strength
500 V AC (50/60 Hz)
Insulation resistance
1000 MW min. at 500 V DC
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1.3.2.7. PFN-2019
Analog Input
Channels
10 channel differential
Input Range
+/-15mV, +/-50mV, +/-100mV, +/-500mV, +/-1V, +/-2.5V, +/-5V,
+/-10V
+/-20mA, 0~20mA, 4~20mA (Jumper Selectable),
Thermocouple Type: J, K, T, E, R, S, B, N, C
Resolution
16 bit
Sample Rate
10 samples/second (1 channel)
Accuracy
+/- 0.1% of FSR
Open Wire
Detection
Yes
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1.4. Internal I/O Structure
1.4.1. PFN-2042
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1.4.2. PFN-2051
1.4.3. PFN-2052
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1.4.4. PFN-2053
1.4.5. PFN-2055
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1.4.6. PFN-2060
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1.4.7. PFN-2019
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1.5. Wiring Connection
1.5.1. PFN-2042
1.5.2. PFN-2051
1.5.3. PFN-2052
1.5.4.
PFN-2053
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1.5.5. PFN-2055
1.5.6.
PFN-2060
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1.5.7. PFN-2019
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1.6. Overview
Here is a brief overview of the components and its descriptions for module status.
1.6.1. Front Panel
The PFN-2000 front panel contains the I/O connector and LEDs.
Digital I/O module
Analog I/O module
 I/O Connector
Depending on the types of the PFN-2000 modules.
For more detailed information regarding the pin assignments of the I/O
Connector, please refer to “1.3.2. I/O Specification”
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 Status LED Indicators
Digital I/O module:
Name
LED Action
Description
ON
The power supply is OK.
OFF
The power supply is failed.
PWR
A=ON
Device is at Run mode.
B=OFF
A=ON
Device is at Bootloader mode.
B=ON
S1
A=ON
B=Flash
A=Flash
Device is at Run mode and the module
received the incorrect parameters.
Receive a Flash LED command.
B=Any
A=OFF
B=ON
Bootloader mode: Ethernet link established,
waiting for IP address acquired
A=OFF
Bootloader mode: waiting for Ethernet link
B=Flash
Run mode: waiting for Profinet connection
S2
A=ON
The connection is established.
B=OFF
A=Flash
B=OFF
Bootloader mode: IP address acquired,
waiting for telnet connection
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PFN-2019 module
Name
LED Action
Description
ON
The power supply is OK.
OFF
The power supply is failed.
PWR
Run mode: Hardware authentication error!
Flash
Bootloader mode: at Bootloader mode.
A=ON
Device is at Run mode.
B=OFF
S1
A=ON
B=Flash
A=ON
Flash(0.1Sec): Hardware authentication
error!
Flash(0.5Sec): Device is at Run mode and the
module received the incorrect parameters.
Device is at Bootloader mode.
B=ON
A=OFF
Bootloader mode: waiting for Ethernet link
B=Flash
Run mode: waiting for Profinet connection
A=ON
The connection is established.
B=OFF
S2
A=OFF
B=ON
A=Flash
B=OFF
Bootloader mode: Ethernet link established,
waiting for IP address acquired
Bootloader mode: IP address acquired, waiting for
telnet connection
 I/O LED Indicators
Depending on the types of the PFN-2000 modules.
For more detailed information, please refer to “1.3.2. I/O Specification”
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1.6.2. Top Panel
The PFN-2000 top panel contains the Ethernet port, rotary switch and power
connector.
 Ethernet Ports
An Ethernet port is an opening on PFN-2000 network equipment that Ethernet
cables plug into. Ethernet ports accept cables with RJ-45 connectors.
Tips & Warnings
1. When users connect PFN-2000 and switch, users should not
connect LAN1 and LAN2 to switch at the same time, else it will
lead to abnormal network.
2. When users connect network devices by daisy chain topology,
users can connect these devices in series by LAN1 and LAN2.
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 Rotary Switch
Digital I/O module:
Position
Mode
Power ON Value
Safe Value
0
Run mode
Low
Retain
1
Run mode
Low
Low
2
Run mode
Low
High
3
Run mode
High
Retain
4
Run mode
High
Low
5
Run mode
High
High
6
Run mode
User Defined
User Defined
7
Run mode
Reserved
Reserved
8~F
Bootloader mode
N/A
N/A
PFN-2019 module:
Mode
Position
Run mode
0~7
Bootloader mode
8~F
 Power Connector
Pin Name
Function
+VS
10 ~ 30 VDC power input
GND
Ground connection
F.G.
Frame ground connection
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1.7. Dimensions
Digital I/O module:
PFN-2019 module:
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2. PROFINET
PROFINET contains 2 different solutions. They are PROFINET IO and PROFINET
CBA (Component Based Automation). PFN-2000 series modules are PROFINET IO
devices.
PROFINET IO is used for communication with decentral periphery like IOs, drives,
etc.
PROFINET CBA is a communication solution for autonomously acting partial units of
machines or plants.
2.1. Device classes of PROFINET IO
The following devices classes are defined to facilitate structuring of PROFINET IO
field devices.
 IO-Controller: This is typically a PLC on which the automation program runs
 IO-Supervisor: This can be a programming device (PG), personal computer (PC),
or human machine interface (HMI) device for commissioning or diagnostic
purposes.
 IO-Device: An IO-Device is a distributed I/O field device that is connected via
PROFINET IO. It can exchange data with multiple IO-Controllers.
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2.2. Device Description
The functionality of a PROFINET IO Device is always described in a GSD file. This file
contains all data that are relevant for engineering as well as for data exchange with
IO-Device.
PROFINET IO-Devices can be described using XML-based GSD. The description
language of the GSD file, i.e. GSDML (General Station Description Markup Language)
is based on international standards.
Every manufacturer of a PROFINET IO-Device must supply an associated GSD file
according to the GSDML specification. Users can access and configure PFN-2000
series modules by using the GSDML file in any PROFINET Engineering tool.
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2.3. Conformance Classes (CC)
PI has classified the scope of functions in PROFINET IO into 3 conformance classes
(CC-A, CC-B, CC-C). Users simply need to select a CC appropriate for system and do
not need to worry about any other details to ensure the interoperability in an
automation system with regard to the scope of functions and performance
parameters.
CC-A:
Use of the infrastructure of an existing Ethernet network including integration of basic
PROFINET functionality. All IT services can be used without restrictions. Examples of
typical applications are in building automation and process automation. Wireless
communication is only possible in this class.
CC-B:
In addition to the functions of CC-A, the scope of functions of CC-B supports easy and
user-friendly device replacement without the need for an engineering tool. Examples
of typical applications are in automation systems with a higher-level machine
controller that place relatively low demands for a deterministic data cycle.
CC-C:
In addition to the functions of CC-B, the scope of functions of CC-C supports
high-precision and deterministic data transmission, including for isochronous
applications. An example of a typical application is the field of motion control.
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3. Basic Application
If you are a new user, begin with this chapter, it includes a guided tour that provides a
basic overview of installing, configuring and using the PFN-2000.
In the following examples the S7-1200 PLC from Siemens is used to be a PROFINET
IO Controller. The configuration and communication is done by the program “Step 7
V11 SP2 (TIA PORTAL)” provided by Siemens.
3.1. Connect to Network, PC and PROFINET IO
controller
The PFN-2000 series modules are equipped with two RJ-45 Ethernet ports for
connection to an Ethernet switch, PC and PROFINET IO controller.
Tips & Warnings
1. When users connect PFN-2000 and switch, users should not
connect LAN1 and LAN2 to switch at the same time, else it will
lead to abnormal network.
2. When users connect network devices by daisy chain topology,
users can connect these devices in series by LAN1 and LAN2.
3.2. Network configuration
In this example, please follow the below configuration to configure the network.
PC:
IP: 192.168.6.210
Mask: 255.255.0.0
PLC:
Device name: plc1
IP: 192.168.6.211
Mask: 255.255.0.0
PFN-2000:
Device name: pfn-2000
IP: 192.168.6.212
Mask: 255.255.0.0
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Step 1: Set PC’s IP

Click “start->Settings->Network Connections”

Double click “Local Area Connection” icon

Click “Properties” button
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
Select “Internet Protocol(TCP/IP)” and click “Properties” button

Set “Internet Protocol Properties” and then click “OK” button.
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Step 2: Set PLC’s name and IP

Double Click TIA icon to start Step 7 V11

Click “Project view”

Search accessible devices
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
Select PLC and click “Online & diagnostics” button

Set IP and Mask
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
Set device name
Step 3: Set PFN-2000 module’s name and IP

Search accessible devices
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Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Select PFN-2000 module and click “Online & diagnostics” button

Set IP and Mask
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 45
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Set device name
3.3. GSD Import
In this example, please follow the step to import GSD file.
Step 1: Get GSD file
The GSD file can be obtained from companion CD or our FTP site:
CD: \fieldbus_cd\profinet\remote io\pfn-2000\gsd\
ftp://ftp.icpdas.com/pub/cd/fieldbus_cd/profinet/remote%20io/pfn-2000/gsd/
Step 2: Import GSD file

Double Click TIA icon to start Step 7 V11
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Page: 46
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Click “Project view”

Select “Menu->Options->Install general station description file (GSD)”
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 47
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Select and install GSD file
3.4. Project Setup
In this example, please follow the step to setup project.
Step 1: Create the project

Double Click TIA icon to start Step 7 V11
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 48
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Create the Project
Step 2: Project configuration

Add a PLC device
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 49
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Set the device name of PLC to “plc1”
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 50
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Set the IP and mask of PLC and add a new subnet

Add PFN-2000 module
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 51
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Select PROFINET interface

Set device name to “pfn-2000”
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 52
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Set the IP of PFN-2000 module

Select module type of PFN-2000 module
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 53
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com

Compile and download to device
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 54
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 55
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
At this time, the S1A & S2A LEDs of PFN-2000 module should turn on, it means
the connection between PLC and PFN-2000 module is established.
3.5. I/O Data Exchange
In this example, please follow the step to exchange data.
Step 1: Confirm data address
In this example, the pfn-2055 module address is IB1 (input data address = 1) and QB1
(output data address = 1), please refer to section 3.4 Project Setup=> Step 2: Project
configuration=> Select module type of PFN-2000 module.
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 56
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
Step 2: Add a new watch table
Step 2: Input IB & QB address
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 57
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
Step 3: Get input data and set output data
3.6. Module Parameter Settings
The user can configure the module parameters to set the I/O settings of PFN-2000
modules by the PROFINET configuration tool. The module parameters are described
below.
Digital I/O module:
Module has no parameterization data.
PFN-2019 module:
 Byte Order –
1. Big Endian (Motorola format)
2. Little Endian (Intel format)
 Data Format –can be selected either engineer unit format or hexadecimal
format.
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Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com






1. Engineer-Unit
2. 2's Complement HEX
Filter Selection – can be selected either 60Hz rejection or 50Hz rejection.
1. 60HZ rejection
2. 50HZ rejection
CJC Enable – is a flag that determines PFN-2019 whether CJC (cold
junction compensation) will enable or not.
Wire Detection – is a flag that determines PFN-2019 whether wire detection
(just for thermocouple) will enable or not.
Channel Enable – is a flag that determines PFN-2019 whether current
channel will acquisition data or not.
Type Code – means the measurement type (voltage, current, temperature)
and range.
1. +/- 15mV (Code:0x00)
2. +/- 50mV (Code:0x01)
3. +/- 100mV (Code:0x02)
4. +/- 500mV (Code:0x03)
5. +/- 1.0V (Code:0x04)
6. +/- 2.5V (Code:0x05)
7. +/- 20mA (Code:0x06)
8. +4~+20mA (Code:0x07)
9. +/- 10.0V (Code:0x08)
10. +/- 5.0V (Code:0x09)
11. TC J-Type (Code:0x0E)
12. TC K-Type (Code:0x0F)
13. TC T-Type (Code:0x10)
14. TC E-Type (Code:0x11)
15. TC R-Type (Code:0x12)
16. TC S-Type (Code:0x13)
17. TC B-Type (Code:0x14)
18. TC N-Type (Code:0x15)
19. TC C-Type (Code:0x16)
20. 0~+20mA (Code:0x1A)
CJC Offset – is used to adjust CJC.
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 59
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
4. MiniOS7 Utility Tool
The MiniOS7 Utility is a useful tool that provides a quick and easy way to get Ethernet
settings and firmware version of PFN-2000 series modules.
4.1. Installing the MiniOS7 Utility
Step 1: Get the MiniOS7 Utility tool
The MiniOS7 Utility can be obtained from companion CD or our FTP site:
CD:\Napdos\minios7\utility\minios7_utility\
ftp://ftp.icpdas.com/pub/cd/8000cd/napdos/minios7/utility/minios7_utility/
Step 2: Follow the prompts to complete the installation
After the installation has been
completed, there will be a new
short-cut for MiniOS7 Utility on
the desktop.
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 60
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
4.2. Using MiniOS7 Utility to get Ethernet
settings and firmware version
Step 1: Run the MiniOS7 Utility
Double-click the MiniOS7 Utility shortcut on your desktop.
Step 2: Press “F12” or choose “Search” from the “Connection”
menu
After pressing F12 or choosing Search from Connection menu, that will
search all of the modules that provide by ICP DAS on your network.
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 61
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
Tips & Warnings
1. If you can’t find the module by searching the network. It means
the IP address of PFN-200 module is zero (default IP = 0.0.0.0).
At this time, please follow the section 3.2 “Network
configuration=> Step 3: Set PFN-2000 module’s name and IP”
to set module’s IP and then re-search the network again. Or,
wait for the PROFINET controller connect to PFN-2000 module
(S1A LED=ON & S2A LED=ON) and then re-search the
network again.
2. About scan result of MiniOS7 Utility, Alias=module name &
firmware version.
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 62
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
5. PFN_Tool Utility
5.1. Installing the PFN_Tool Utility
Step 1: Get the PFN_Tool Utility
The PFN_Tool Utility can be obtained from companion CD or our FTP site:
CD:\ fieldbus_cd\profinet\utility\
ftp://ftp.icpdas.com.tw/pub/cd/fieldbus_cd/profinet/utility/
Step 2: Follow the prompts to complete the installation
After the installation has been
completed, there will be a new
shortcut for PFN_Tool Utility on the
desktop.
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 63
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
5.2. PFN_Tool Utility Functionalities
5.2.1. Module Search
Step 1: Select Network Device
Select network device that connect with PFN-2000 modules, and press “Search Start”
button.
Step 2: Search results
Live List will show all of the PROFINET devices on the same network of network
device.
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 64
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
5.2.2. Module Basic Configuration
Step 1: Open Device Basic Configuration
Step 2: Set Device Name
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 65
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
Step 3: Set Network Parameters
The network parameter of PFN-2000 module must have the same domain and
different IP with PC.
EX: PC’s IP = 192.168.1.110
PFN-2000 module’s IP = 192.168.1.111
Tips & Warnings
1. When PROFINET controller connect to PFN-2000 module
(S1A LED=ON & S2A LED=ON), user can’t set device name
and network parameters.
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 66
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
5.2.3. Module Advanced Configuration
Step 1: Open Device Advanced Configuration
Step 2: Set Power On Value and Safe Value
User can set Power On Value and Safe
Value in the field, or set by channel button.
Channel OFF
Channel ON
PFN-2000 User Manual (Version 1.30, Sep/2014)
Page: 67
Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
Tips & Warnings
1. When rotary switch set to “6”, Power On Value and Safe Value
set in “Device Advanced Configuration” will be used.
Step 3: I/O test
User can use I/O test function to test DO
state and DI state.
Tips & Warnings
1.
When PROFINET controller connect to PFN-2000 module
(S1A LED=ON & S2A LED=ON), user can’t change DO state.
PFN-2000 User Manual (Version 1.30, Sep/2014)
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Copyright © 2014 ICP DAS Co., Ltd. All Rights Reserved. E-mail: service@icpdas.com
6. Troubleshooting
Item Trouble state
Solution
The power supply of PFN-2000 module has some
problems. Please check the wire connection of the
power and the voltage is between 10~30VDC.
1
'PWR' LED is always off.
2
That means the PFN-2000 module can’t connect
to the PROFINET IO controller. Please check the
'S2B' LED is always flash
wire connection and module configuration (include
and ‘S1A’ LED is always
network settings, device name) and project
on.
configuration of engineering tool that provide by
PROFINET IO controller’s manufacturer.
3
It means the PFN-2000 module is received the
error parameter. Please check the project
'S1B' LED is always flash
configuration of engineering tool that provide by
and ‘S1A’ LED is always
PROFINET IO controller’s manufacturer. The type
on.
of pfn-2000’s submodule may be not the same with
the field device in the project.
4
‘S1B’ LED is always on.
It means the PFN-2000 module is at Bootloader
mode. Please set the PFN-2000 module to Run
mode.
5
It means the IP address of PFN-2000 module is
zero (default IP = 0.0.0.0). At this time, please
follow the section 3.2. “Network configuration=>
Step 3: Set PFN-2000 module’s name and IP” or
Can’t find any PFN-2000
section 5.2.2 “Module Basic Configuration” to set
module by MiniOS7 Utility
module’s IP and then re-search the network again.
Or, wait for the PROFINET controller connect to
PFN-2000 module (S1A LED = ON & S2A LED =
ON) and then re-search the network again.
6
a. Please check the wire connection
b. Please set the PFN-2000 module to Run mode,
please refer to the section 1.6.2→Rotary Switch.
Can’t find any PFN-2000 c. Please check network card is ok, and
PFN-2000 module and network card have to in
module by PFN_Tool
the same network.
Utility
d. Please open the file“configure.ini” (C:\Program
Files\ICPDAS\PROFINET\PFN_Tool). In this
file, please set Static_Mac=Enable &
Mac_Addr= MAC address of network device.
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