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User Manual
M-Bus Master / PROFIBUS DP Slave
Document code: MN67053_ENG
Revision 2.002
Pagina 1 di 37
Industrial Electronic Devices
User Manual
Revision 2.002
English
M-Bus Master / PROFIBUS DP
Slave - Converter
(New Order Code:
HD67053-B2-40, HD67053-B2-80,
HD67053-B2-160, HD67053-B2-250)
(Old Order Code:
HD67053M-40, HD67053M-80,
HD67053M-160, HD67053M-250)
HD67053-B2-xxx
For others M-Bus products see also the following link:
Converter M-Bus to
www.adfweb.com?Product=HD67021
www.adfweb.com?Product=HD67022
www.adfweb.com?Product=HD67030
for Website information:
www.adfweb.com?Product=HD67053
for Price information:
www.adfweb.com?Price=HD67053-B2-40
www.adfweb.com?Price=HD67053-B2-80
www.adfweb.com?Price=HD67053-B2-160
www.adfweb.com?Price=HD67053-B2-250
(RS232)
(RS485)
(Ethernet)
Analyzer / Scanner /Sniffer M-Bus
www.adfweb.com?Product=HD67031
Extender and Repeater, M-Bus
www.adfweb.com?Product=HD67032
Similiar
Products
Gateway M-Bus / Modbus RTU
www.adfweb.com?Product=HD67029M-232
www.adfweb.com?Product=HD67029M-485
(on RS232)
(on RS485)
Gateway M-Bus / Modbus TCP
www.adfweb.com?Product=HD67044
Benefits and Main Features:
Very easy to configure
Electrical isolation between PROFIBUS and M-Bus
Gateway M-Bus / CANopen
www.adfweb.com?Product=HD67051-B2
Gateway M-Bus Concentrator
www.adfweb.com?Product=HD67054M
Gateway M-Bus Slave / Modbus RTU master
www.adfweb.com?Product=HD67059M-232
Industrial temperature range:
Do you have an your customer protocol?
www.adfweb.com?Product=HD67003
-40°C / +85°C (-40°F / +185°F)
Do you need to choose a device? do you want help?
www.adfweb.com?Cmd=helpme
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User Manual
M-Bus Master / PROFIBUS DP Slave
Document code: MN67053_ENG
Revision 2.002
Pagina 2 di 37
Industrial Electronic Devices
INDEX:
INDEX
UPDATED DOCUMENTATION
REVISION LIST
WARNING
TRADEMARKS
SECURITY ALERT
EXAMPLE OF CONNECTION
CONNECTION SCHEME
CHARACTERISTICS
CONFIGURATION
POWER SUPPLY
FUNCTION MODES
LEDS
PROFIBUS
M-BUS
USB (ONLY FOR HD67053-B2-XXX SERIES)
RS232 (ONLY FOR HD67053M-XXX SERIES)
USE OF COMPOSITOR SW67053
NEW PROJECT / OPEN PROJECT
SET COMMUNICATION
M-BUS
FUNCTIONING OF ENABLE TX IN M-BUS
SINGLE SLAVE MODE FUNCTIONING
EXAMPLES
UPDATE DEVICE
MECHANICAL DIMENSIONS
ORDER CODES
ACCESSORIES
DISCLAIMER
OTHER REGULATIONS AND STANDARDS
WARRANTIES AND TECHNICAL SUPPORT
RETURN POLICY
PRODUCTS AND RELATED DOCUMENTS
UPDATED DOCUMENTATION:
Page
2
2
2
2
2
3
4
5
7
7
8
9
10
12
12
13
13
14
14
15
16
27
28
29
32
34
35
35
36
36
37
37
37
Dear customer, we thank you for your attention and we remind you that you
need to check that the following document is:
Updated
Related to the product you own
To obtain the most recently updated document, note the “document code” that
appears at the top right-hand corner of each page of this document.
With this “Document Code” go to web page www.adfweb.com/download/ and
search for the corresponding code on the page. Click on the proper “Document
Code” and download the updates.
To obtain the updated documentation for the product that you own, note the
“Document Code” (Abbreviated written “Doc. Code” on the label on the product)
and download the updated from our web site www.adfweb.com/download/
REVISION LIST:
Revision
1.051
1.060
2.000
2.001
2.002
Date
06/04/2011
09/06/2011
29/06/2012
03/09/2012
18/02/2013
Author
Fl
Fl
Fl
Fl
Nt
Chapter
All
All
All
All
All
Description
Revision
Software changed (v1.600)
New hardware version
Revision
Added new chapters
WARNING:
ADFweb.com reserves the right to change information in this manual about our
product without warning.
ADFweb.com is not responsible for any error this manual may contain.
TRADEMARKS:
All trademarks mentioned in this document belong to their respective owners.
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Industrial Electronic Devices
SECURITY ALERT:
GENERAL INFORMATION
To ensure safe operation, the device must be operated according to the instructions in the manual. When using the device are required for
each individual application, legal and safety regulation. The same applies also when using accessories.
INTENDED USE
Machines and systems must be designed so the faulty conditions do not lead to a dangerous situation for the operator (i.e. independent limit
switches, mechanical interlocks, etc.).
QUALIFIED PERSONNEL
The device can be used only by qualified personnel, strictly in accordance with the specifications.
Qualified personnel are persons who are familiar with the installation, assembly, commissioning and operation of this equipment and who
have appropriate qualifications for their job.
RESIDUAL RISKS
The device is state of the art and is safe. The instrument can represent a potential hazard if they are inappropriately installed and operated
by personnel untrained. These instructions refer to residual risks with the following symbol:
This symbol indicates that non-observance of the safety instructions is danger for people to serious injury or death and / or the
possibility of damage.
CE CONFORMITY
The declaration is made by us. You can send an email to [email protected] or give us a call if you need it.
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Industrial Electronic Devices
EXAMPLE OF CONNECTION:
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Industrial Electronic Devices
CONNECTION SCHEME:
Figure 1a: Connection scheme for HD67053-B2-xxx
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Industrial Electronic Devices
Figure 1b: Connection scheme for HD67053M-xxx
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Industrial Electronic Devices
CHARACTERISTICS:
The “HD67053-B2-xxx” (newer model) and “HD67053M-xxx” (older model) are Gateway M-Bus Master from/to PROFIBUS DP line.
They allows the following characteristics:
Electrical isolation between PROFIBUS and M-Bus;
Mountable on 35mm DIN Rail;
Temperature range -40°C to +85°C.
At the Gateway can be connected up to 250 standard M-Bus devices. This number depends of the code expressed by the xxx number:
HD67053-B2-40, HD67053M-40 support up to 40 M-Bus devices;
HD67053-B2-80, HD67053M-80 support up to 80 M-Bus devices;
HD67053-B2-160, HD67053M-160 support up to 160 M-Bus devices;
HD67053-B2-250, HD67053M-250 support up to 250 M-Bus devices.
In the case of HD67053M-160 the device must be mounted on 35mm DIN rail which is horizontally mounted on a wall or cabinet backplate. To avoid obstructions to the airflow around the unit it is recommended to not cover the paths of air.
In the case of HD67053-B2-250 and HD67053M-250 the device must be mounted on 35mm DIN rail which is horizontally mounted on
a wall or cabinet back-plate. This unit have a fan in the top of the enclosure. To avoid obstructions to the airflow around the unit it is
recommended to not cover the paths of air. Take care to not cover the fan. It is recommended to put the device into a ventilated cabinet.
CONFIGURATION:
You need Compositor SW67053 software on your PC in order to perform the following:
Define the parameter of PROFIBUS and M-Bus lines;
Define the M-Bus devices on the line and select the desired values;
Create the GSD file to import on your PLC or other;
Update the device.
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Industrial Electronic Devices
POWER SUPPLY:
The devices can be powered at 15…21V AC and 18…35V DC. The consumption depends to the code of the device. For more details see the
two tables below.
VAC
VDC
Vmin
Vmax
Vmin
Vmax
15V
21V
18V
35V
Consumption at 24V DC:
Device
No Load [W/VA]
HD67053-B2-40, HD67053M-40
HD67053-B2-80, HD67053M-80
HD67053-B2-160, HD67053M-160
Full Load [W/VA]*
5
3.5
8
14
HD67053-B2-250, HD67053M-250
30
* This value is with all the Slave M-Bus devices of the code (40, 80, 160, 250) connected to the line
Caution: Not reverse the polarity power
HD67053-B2-xxx HD67053M-xxx
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Industrial Electronic Devices
FUNCTION MODES:
The device has got two functions mode depending of the position of the ‘Dip2 of Dip-Switch A’ of HD67053-B2-xxx or ‘Jumper1’ of
HD6753M-xxx:
The first, with ‘Dip2 of Dip-Switch A’ at “OFF” position (for HD67053-B2 series) or without any jumper inserted (for HD67053M
series), is used for the normal working of the device.
The second, with ‘Dip2 of Dip-Switch A’ at “ON” position (for HD67053-B2 series) or with the jumper inserted (for HD67053M series),
is used for upload the Project.
For the operations to follow for the updating (see ‘UPDATE DEVICE’ section).
According to the functioning mode, the LEDs will have specifics functions (see ‘LEDS’ section).
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Industrial Electronic Devices
LEDS:
HD67053-B2:
The HD67053-B2 device has got four LEDs that are used to give information of the functioning status.
The various meanings of the LEDs are described in the table below.
LED
Normal Mode
Boot Mode
1: Device State
Blinks slowly (~1Hz)
Blinks quickly
2: M-Bus Communication
Blinks quickly when a reply to a M-Bus
request arrives
Blinks quickly
3: Not used
/
Blinks quickly
4: PROFIBUS Communication
Blinks quickly when the PROFIBUS is at
Operational State
Blinks quickly
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Industrial Electronic Devices
HD67053M:
The HD67053M device has got four LEDs that are used to give information of the functioning status.
The various meanings of the LEDs are described in the table below.
LED
Normal Mode
Boot Mode
1: Device State
Blinks slowly (~1Hz)
Off
2: M-Bus communication
Changes his state when a Slave Modbus
has replied to the gateway request
Off
3: Device State
Off
Blinks quickly
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Industrial Electronic Devices
PROFIBUS:
The PROFIBUS uses a 9-pin D-SUB connector. The pin assignment is defined like
in the right figure.
Here some codes of cables:
Belden: p/n 183079A - Continuous Armor DataBus® ISA/SP-50 PROFIBUS
Cable;
M-BUS:
The M-Bus is a unpolarized bus.
A two wire standard telephone cable (JYStY N*2*0.8 mm) is used as the transmission medium for the M-Bus. The maximum distance
between a slave and the repeater is 350m; this length corresponds to a cable resistance of up 29Ω. This distance applies for the standard
configuration having Baud rates between 300 and 9600 Baud, and a maximum of 250 slaves. The maximum distance can be increased by
limiting the Baud rate and using fewer slaves, but the bus voltage in the space state must at no point in a segment fall below 12V, because
of the remote powering of the slaves. In the standard configuration the total cable length should not exceed 1000m, in order to meet the
requirement of a maximum cable capacitance of 180nF. (Taken from M-Bus specifics)
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Industrial Electronic Devices
USB (ONLY FOR HD67053-B2-XXX SERIES):
The USB connector (Connector3) of HD67053-B2-xxx is a Type-B Female. So the
cable must be a Type-B Male.
The USB port is used for programming the device.
RS232 (ONLY FOR HD67053M-XXX SERIES):
The connection from RS232 socket to a serial port (example one from a personal computer), must be made with a Null Modem cable (a
serial cable where the pins 2 and 3 are crossed). It is recommended that the RS232C Cable not exceed 15 meters.
The serial port is used for programming the device.
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Industrial Electronic Devices
USE OF COMPOSITOR SW67053:
To configure the Converter, use the available software that runs with
Windows, called SW67053. It is downloadable on the site
www.adfweb.com and its operation is described in this document.
(This manual is referenced to the last version of the software present
on our web site). The software works with MSWindows (MS 2000, XP,
Vista, Seven, 8; 32/64bit).
When launching the SW67053 the right window appears (Fig. 2).
Figure 2: Main window for SW67053
NEW PROJECT / OPEN PROJECT:
The “New Project” button creates the folder which contains the entire device configuration.
A device configuration can also be imported or exported:
To clone the configurations of a Programmable “M-Bus / PROFIBUS – Converter” in order to
configure another device in the same manner, it is necessary to maintain the folder and all
its contents;
To clone a project in order to obtain a different version of the project, it is sufficient to
duplicate the project folder with another name and open the new folder with the button
“Open Project”.
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Industrial Electronic Devices
SET COMMUNICATION:
This section define the fundamental communication parameters of two Buses, PROFIBUS and M-Bus.
By Pressing the “Set Communication” button from the main window for SW67053 (Fig. 2) the window
“Set Communication” appears (Fig. 3).
The window is divided in three sections, one for the PROFIBUS, one for the M-Bus and the last for selecting
the hardware used.
The means of the fields for PROFIBUS are:
In the field “ID Dev.” The ID for the PROFIBUS side is defined;
In the field “N Byte” insert number of input byte of PROFIBUS;
If the “Create a module for each variable” is checked in the GSD file will be created in many
modules as there are variables defined in the “M-Bus” section; otherwise it will created modules with
the maximum size of 64 byte;
If the field “Enable Tx in M-Bus” is checked it is possible to sent M-Bus frames by writing the
output bytes of PROFIBUS;
In the field “N Byte” insert the number of output byte of PROFIBUS;
If “Normal Mode” is checked the 244 bytes of PROFIBUS are used for storing the data of all M-Bus
slaves; otherwise if “Single Slave Mode” is checked, all 244 bytes are used for storing the data of a
single slave (see section “Single Slave Mode Functioning” at page 22 for more details).
The means of the fields for M-Bus are:
In the field “Baudrate” it is possible to select the baudrate of the M-Bus line;
In the field “Parity” it is possible to select the parity of the line;
In the field “Cyclic Delay” insert the time (expressed in seconds) between two scans;
In the field “Node State value when slave device is not present” it is possible to insert the
value to assign to the “Node State” when the Gateway doesn’t find the interrogated slave M-Bus.
Figure 3: “Set Communication” window
The means of the fields for Hardware are:
If the hardware in your possession is the HD67053M-xxx you have to select “HD67053M”; otherwise if the hardware in your possess
is the HD67053-B2-xxx you have to select “HD67053-B2”.
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Industrial Electronic Devices
M-BUS:
By Pressing the “M-Bus” button from the main window for
SW67053 (Fig. 2) the window “M-Bus Network” appears (Fig. 4).
SECTION NODES:
In the section “Nodes” it is possible to create the nodes of M-Bus
line. In order to create a new node it is necessary to select which
address use, selecting “Primary ID” or “Secondary ID”, to makes
the requests and then insert the “Primary Address” (from 1 to 250)
or the “Secondary Address” (from 0 to 99999999) of M-Bus device
in the field “ID Node M-Bus”. In the field “Description” it is
possible to write a short description of the node.
If the field “Node State” is checked the gateway reserve one byte
at the starting of PROFIBUS IN data array and saves the status of
the counter.
If the field “Identification Number” is checked the gateway
reserve four bytes at the starting of PROFIBUS IN data array and
saves the Secondary Address of the device.
In the field “Swap Identification Num.” it is possible to select
the swap mode of the Identification Number. If swap isn’t
necessary you have to select “None”; otherwise see the section
“Swap Identification” (page 23) of this document for select the
swap mode.
If the field “Convert BCD in Integer Identification Num.” is
checked the gateway converts the Identification Number that is
Figure 4: “M-Bus Network” window
normally expressed in BCD in a Integer Number and saves the
number in the reserved positions.
If the field “Send SND_NKE” is checked, the Gateway send the “SND_NKE” frame to start the communication.
In the field “Send Reset App.” Is checked the gateway send the “Application Reset” command to the slave.
In the field “Variables List” it is possible to select which type of variables definition to use. If is selected “By Type” it is necessary to fill all
fields, in the section Variables, with the correct values; otherwise if “By Position” is selected you can insert the progressive number of the
variable that you need (page 18 for more information).
After that, pressing the “ADD NODE” button, a new node appears in the left side of the window.
In order to modify a created node it is necessary to select the desired node, change the wrong items and then press the “MODIFY NODE”
button.
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Industrial Electronic Devices
SECTION VARIABLES (BY TYPE):
Selecting the desired node it is possible to add a variable. In order to create a new variable it is necessary to fill these items:
To use the created variable the field “Enable Variable”
must be checked. If you have created a variable but for the
moment it is unused it is possible to uncheck the field
“Enable Variable” without delete it;
In the field “Description” it is possible to write a
description of the variable (it isn’t a necessary information,
it helps the readability of the tree of network);
The field “Type of Data” is used to select the unit of
measure;
In the field “VIF ASCII String” insert the string of VIF. It
is possible to use this field only if the “Type of Data” is “VIF
is in ASCII”;
In the field “Function Field” it is necessary to select the
type of data;
The field “Dimension” is used to select the dimension of
the variable (8, 16, 24, 32, 32 real, 48, 64 bit);
In the field “Length(Variable Len)” insert the length of
the data in the case of the dimension is “Variable Length”;
In the field “Unit” if it is necessary it is possible to select
the unit of that variable. The Unit is used for indicates from
which device the data come;
If the field “Scale” is checked the software reserved a byte
in the PROFIBUS and in this field it write the Scale of
measure. If the scale is not necessary, you can unselect it;
In the field “Storage Number” if it is necessary it is possible to insert the value of storage counter of that variable. With this field the
slave can indicate and transmit various stored counter states or historical values, in the order in which they occur;
In the field “Tariff” if it is necessary it is possible to insert the value of the tariff of that variable. The Tariff is used for indicates from
which device the data come;
In the field “VIFE” it is possible to select a sub-type of “Type of Data”;
If the field “From BCD to Integer” is checked the Gateway converts the BCD value of variable in Integer format. This happens only if
the variable is in BCD format; if it isn’t nothing changes;
If the field “SWAP” is checked the byte of data of that variable are swapped. Example: from 0x01020304 to 0x04030201;
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Industrial Electronic Devices
If the field “Use Five Bytes for the Time Point” and the “Type of Data” is “Time Point” it is possible to read the information of Year,
Month, Day, Hour, Minutes on five consecutive positions of the array without decoding (if not selected the values are the same of the
reply of the slave device, so coded with a determinate structure (page 25 for more information)).
Having completed these fields, to add the variable the button “ADD VARIABLE” must be pressed.
In order to modify a created variable it is necessary to select the desired variable, change the wrong items and then press the “MODIFY
VARIABLE” button.
SECTION VARIABLES (BY POSITION):
Selecting the desired node it is possible to add a variable. In order to create a new variable it is necessary to fill these items:
To use the created variable the field “Enable Variable”
must be checked. If you have created a variable but for the
moment it is unused it is possible to uncheck the field
“Enable Variable” without delete it;
In the field “Description” it is possible to write a
description of the variable (it isn’t a necessary information,
it helps the readability of the tree of network);
The field “Dimension” is used to select the dimension of
the variable (8, 16, 24, 32, 32 real, 48, 64 bit);
In the field “Length(Variable Len)” insert the length of
the data in the case of the dimension is “Variable Length”;
If the field “Scale” is checked the software reserved a byte
in the PROFIBUS and in this field it write the Scale of
measure. If the scale is not necessary, you can unselect it;
If the field “From BCD to Integer” is checked the Gateway
converts the BCD value of variable in Integer format. This
happens only if the variable is in BCD format; if it isn’t
nothing changes;
If the field “SWAP” is checked the byte of data of that
variable are swapped. Example: from 0x01020304 to
0x04030201;
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Industrial Electronic Devices
If the field “Use Five Bytes for the Time Point” and the “Type of Data” is “Time Point” it is possible to read the information of Year,
Month, Day, Hour, Minutes on five consecutive positions of the array without decoding (if not selected the values are the same of the
reply of the slave device, so coded with a determinate structure (page 25 for more information));
In the field “Position” insert the number of the variable that you want on PROFIBUS.
Example:
0x68 – Start Byte
0xBD – L Fied
0xBD – L Field
0x68 – Start Byte
0x08 – C Field
0x02 – A Field
0x72 – CI Field
0x71 – Identification Number (Byte
0x65 – Identification Number (Byte
0x45 – Identification Number (Byte
0x28 – Identification Number (Byte
0x4D – Manufacturer (Byte 2of2)
0x6A – Manufacturer (Byte 1of2)
0x81 – Version
0x04 – Medium
0x3E – Access Number
0x27 – Status
0x00 – Signature (Byte 2of2)
0x00 – Signature (Byte 1of2)
4of4)
3of4)
2of4)
1of4)
0x04
0x79
0x00
0x00
0x00
0x00
–
–
–
–
–
–
DIF
VIF
Data
Data
Data
Data
(Byte
(Byte
(Byte
(Byte
Identification
4of4)
3of4)
2of4)
1of4)
0x04
0x06
0x00
0x00
0x00
0x00
–
–
–
–
–
–
DIF
VIF
Data
Data
Data
Data
(Byte
(Byte
(Byte
(Byte
Energy
4of4)
3of4)
2of4)
1of4)
0x44 – DIF
0x06 – VIF
Energy
0x00 – Data (Byte 4Of4)
0x00 – Data (Byte 3Of4)
0x00 – Data (Byte 2Of4)
0x00 – Data (Byte 1Of4)
…
… Other Variables
…
0x55 – Check Sum
0x16 – Stop Byte
Identification Number (or Secondary Address) putted in
the reserved fields if “Identification Number” is
checked
Fixed Data Header
Status of the meter putted in the reserved field if “Node
State” is checked
First Variable ( 1 )
Second Variable ( 2 )
To be use in the “Position” field
Third Variable ( 3 )
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SECTION DELETE ITEMS:
If it is necessary to delete a node or a variable, you have to select
the node or the variable and then press the “DELETE ITEM”
button.
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Possible choices for the fields used to create a variable:
Type of Data:
|_Energy (Wh)
|_Energy (J)
|_Volume (m3)
|_Mass (Kg)
|_On Time
|_Operating Time
|_Power (W)
|_Power (J/h)
|_Volume Flow (m3/h)
|_Volume Flow Ext. (m3/min)
|_Volume Flow Ext. (m3/s)
|_Mass Flow (Kg/h)
|_Flow Temperature (°C)
|_Return Temperature (°C)
|_Temperature Difference (K)
|_External Temperature (°C)
|_Pressure (bar)
|_Averaging Duration
|_Actuality Duration
|_Type of data in VIFE
|_Time Point
|_VIF is in ASCII
|_Unit for H.C.A.
|_Fabrication No
|_(Enhaced) Identification
|_Bus Address
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Function Field:
|_Instantaneous Value
|_Minimum Value
|_Maximum Value
|_Value During Error State
Dimension (bit):
|_8
|_16
|_24
|_32
|_32 real
|_48
|_64
|_Variable Length
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VIFE:
|_ Not Selected
|_ Credit of the nominal local legal currency units
|_ Debit of the nominal local legal currency units
|_ Access Number (transmission count)
|_ Medium (as in fixed header)
|_ Manufacturer (as in fixed header)
|_ Parameter set identification
|_ Model/Version
|_ Hardware Version #
|_ Firmware Version #
|_ Software Version #
|_ Customer Location
|_ Customer
|_ Access Code User
|_ Access Code Operator
|_ Access Code System Operator
|_ Access Code Developer
|_ Password
|_ Error flags (binary)
|_ Error mask
|_ Digital Output (binary)
|_ Digital Input (binary)
|_ Baudrate [Baud]
|_ response delay time [bittimes]
|_ Retry
|_ First storage # for cyclic storage
|_ Last storage # for cyclic storage
|_ Size of storage block
|_ Storage interval [sec(s)..day(s)]
|_ Storage interval month(s)
|_ Storage interval year(s)
|_ Duration since last readout[sec(s)..day(s)]
|_ Start (date/time) of tariff
|_ Duration of tariff (nn=01..11:min to day)
|_ Period of tariff [sec(s) to day(s)]
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|_ Period of tariff months(s)
|_ Period of tariff year(s)
|_ dimensionless/ no VIF
|_ Volts
|_ Ampere
|_ Reset counter
|_ Comulation counter
|_ Control signal
|_ Day of week
|_ Week number
|_ Time point of day change
|_ State of parameter activation
|_ Special supplier information
|_ Duration since last comulation [hour(s)..year(s)]
|_ Operation time battery [hour(s)..year(s)]
|_ Date and time of battery change
|_ Energy MWh
|_ Energy GJ
|_ Volume
|_ Mass
|_ Volume 0,1 feet^3
|_ Volume 0,1 american gallon
|_ Volume 1 american gallon
|_ Volume flow 0,001 american gallon/min
|_ Volume flow 1 american gallon/min
|_ Volume flow 1 american gallon/h
|_ Power MW
|_ Power GJ/h
|_ Flow Temperature
|_ Return Temperature
|_ Temperature Difference
|_ External Temperature
|_ Cold/Warm Temperature Limit °F
|_ Cold/Worm Temperature Limit °C
|_ Cumul. Count max power
|_ per second
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|_ per minute
|_ per hour
|_ per day
|_ per week
|_ per month
|_ per year
|_ per revolution/measurement
|_ increment per input pulse on input channel
|_ increment per output pulse on output channel
|_ per liter
|_ per m^3
|_ per kg
|_ per K (Kelvin)
|_ per kWh
|_ per GJ
|_ per kW
|_ per (K*l)(Kelvin*liter)
|_ per V (Volt)
|_ per A (Ampere)
|_ multiplied by sek
|_ multiplied by sek/V
|_ multiplied by sek/A
|_ start date(/time) of
|_ VIF contains uncorrected unit instead of corrected unit
|_ Accumulation only if positive contributions
|_ Accumulation of abs value only if negative contributions
|_ upper/lower limit value
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|_ # of exceeds of lower/upper limit
|_ Date(/time) of begin/end of first/last lower/upper limit exceed
|_ Duration of limit exceed
|_ Duration of first/last
|_ Date(/time) of first/last begin/end
|_ Multiplicative orrection factor
|_ Additive correction constant * unit of VIF (offset)
|_ Moltiplicative correction factor: 10^3
|_ future value
|_ next VIFE’s and data of this block are manufacturer specific
|_ None
|_ Too many DIFE’s
|_ Storage number not implemented
|_ Unit number not implemented
|_ Tariff number not implemented
|_ Function not implemented
|_ Data class not implemented
|_ Data size not implemented
|_ Too many VIFE’s
|_ Illegal VIF-Group
|_ Illegal VIF-Exponent
|_ VIF/DIF mismatch
|_ Unimplemented action
|_ No data available (undefined value)
|_ Data overflow
|_ Data underflow
|_ Data error
|_ Premature end of record
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Swap Identification:
This field is used for select the Swap mode of Identification Number.
At the moment there are these possibilities:
None;
Type 1.
Examples:
- Identification Number (Secondary Address): 28456571; Convert BCD in Integer Identification Num. Not checked.
None
0x28
0x45
0x65
0x71
Type 1
0x65
0x71
0x28
0x45
- Identification Number (Secondary Address): 28456571; Convert BCD in Integer Identification Num. Checked.
None
0x01
0xB2
0x36
0x7B
Type 1
0x36
0x7B
0x01
0xB2
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To know the meaning of value read in the “Scale” byte position, you must follow this table (x = Value read in Scale location):
Description
Energy
Energy
Volume
Mass
On Time
Operating Time
Power
Power
Volume Flow
Volume Flow Ext.
Volume Flow Ext.
Mass Flow
Flow Temperature
Return Temperature
Temperature Difference
External Temperature
Pressure
Averaging Duration
Actuality Duration
Time Point
Unit for H.C.A.
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Range Coding
10 (x – 3)
Wh
10 (x)
J
(x – 6)
10
m3
(x – 3)
10
kg
x=0
Seconds
x=1
Minutes
x=2
Hours
x=3
Days
coded like On Time
10 (x – 3)
W
10 (x)
J/h
10 (x – 6)
m3/h
(x – 7)
3
10
m /min
(x – 9)
10
m3/s
(x – 3)
10
kg/h
10 (x – 3)
°C
(x – 3)
10
°C
10 (x – 3)
K
(x – 3)
10
°C
10 (x – 3)
bar
coded like On Time
coded like On Time
x=0
Date
x=1
Time&Date
Range
0.001 Wh to 10000
0.001 kJ to 10000
0.001 l to 10000
0.001 kg to 10000
Wh
kJ
l
kg
0.001 W to 10000 W
0.001 kJ/h to 10000 kJ/h
0.001 l/h to 10000 l/h
0.0001 l/min to 1000 l/min
0.001 ml/s to 10000 ml/s
0.001 kg/h to 10000 kg/h
0.001 °C to 1 °C
0.001 °C to 1 °C
1 mK to 1000 mK
0.001 °C to 1 °C
1 mbar to 1000 mbar
Data type G
Data type F
dimensionless
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Data type F:
7
2
15
2
23
2
31
2
6
2
14
2
22
2
30
2
5
2
13
2
21
2
29
2
4
2
12
2
0
22
28
2
3
2
11
2
19
2
27
2
2
2
0
21
18
2
26
2
1
2
9
2
17
2
25
2
0
2
8
2
16
2
24
2
Min (0 … 59);
Hour (0 … 23);
Day (1 … 31);
Month (1 … 12);
Year (0 … 99);
Time Invalid (0=Valid, 1=Invalid);
Summer Time (0=Standard Time, 1=Summer Time);
Reserved (0).
Data type G:
7
2
15
2
6
2
14
2
5
2
13
2
4
2
12
2
3
2
11
2
2
2
0
21
1
2
9
2
0
2
8
2
Day (1 … 31);
Month (1 … 12);
Year (0 … 99).
For example, if you have defined:
• Type of Data= Energy (J);
• Function Field=Instantaneous Value;
• Dimension = 32 bit;
• Scale field =checked.
At the PROFIBUS array you read 0x00, 0x04, 0x56, 0x78 and 0x06. The first 4 bytes are the 32bit of variable, the last is the scale.
Then you have to take the 0x045678 and following the table at page 24 of the manual do the operation:
284280 x10(6) J.
Now you have the correct value (the one that you read on the display of the meter, for example).
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FUNCTIONING OF ENABLE TX IN M-BUS:
When the field “Enable Tx in M-Bus” is checked from “Set Communication” it is necessary to follow these instructions for writing something
in M-Bus.
Example of PROFIBUS IN array (data that a master PROFIBUS receive)
Byte 0
Byte 1
Byte 2
Byte 3
Byte 4
SO
RIS
Data …
…
…
Byte 5
…
Example of PROFIBUS OUT array (data that a master PROFIBUS send)
Byte 0
Byte 1
Byte 2
Byte 3
Byte 4
LEN
WRITE
Data to write…
…
…
Byte 6
… Data
Byte 5
…
Byte 6
Data to write
The field “SO” is the Operation State. It can assume four values:
$00: Idle;
$01: Writing;
$02: Writing executed, waiting reply;
$03: Now is possible to read the RIS.
The field “RIS” is the result of the writing operation. It can assume these values:
$00: Idle;
$FF: The slave hasn’t replied;
Any other value: The first byte of the reply of the slave (usually the slave reply with a single byte $E5).
In the field “LEN” you have to insert the length of the frame that you want to send.
The field “WRITE” can assume two values:
$00: Idle;
$01: Write;
Any other value is not considered.
From Byte 2 to Byte 2+N Byte-2 you have to insert the frame to send.
When the gateway starts the SO and RIS are in “Idle”. The PROFIBUS master has to set the LEN and all the “Data to Write”. Then it is
possible to set the “WRITE” from 0 to 1. When the gateway complete the operations it set the SO to $03 and the RIS with a value; in this
moment (SO is $03) it is possible to take the RIS like ‘correct’. Now the master PROFIBUS has to set the “WRITE” from 1 to 0 and the
gateway put in “Idle” the SO and RIS. Now it is possible to repeat the writing operation.
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SINGLE SLAVE MODE FUNCTIONING:
By checking the field “Single Slave Mode” it is possible to save 240 bytes of data for a single M-Bus Slave Device.
With this mode selected it isn’t possible to use the “Create a module for each variable”, so are created modules with the maximum size of 64
byte.
It is necessary to insert in the field “N Byte” under "Enable Tx in M-Bus" at least the value 4.
For having the data it is necessary that the Master PROFIBUS writes the first four bytes of his Output Data with the Primary or Secondary
Address of the slave which want to receive the data.
Example of PROFIBUS OUT array (data that a master PROFIBUS send) using the Primary Address of the Slave M-Bus
Byte 0
Byte 1
Byte 2
Byte 3
Byte 4
Byte 5
Byte 6
0x00
0x00
0x00
0x3A
Empty or
Empty or
Empty or
other values
other values
other values
Example of PROFIBUS OUT array (data that a master PROFIBUS send) using the Secondary Address of the Slave M-Bus
Byte 0
Byte 1
Byte 2
Byte 3
Byte 4
Byte 5
Byte 6
0x28
0x45
0x65
0x71
Empty or
Empty or
Empty or
other values
other values
other values
If the address is defined in the section M-Bus and the reply frame of the slave interrogated is received, the gateway puts the requested
address in the first four bytes, if the “Enable Tx in M-Bus“ is unchecked, or in the third, fouth, fifth and sixth if the field “Enable Tx in M-Bus“
is unchecked. Then follow the normal data of the selected slave.
Example of PROFIBUS IN array (data that a master PROFIBUS receive) using the Primary Address of the Slave M-Bus without “Enable Tx in
M-Bus” checked
Byte 0
Byte 1
Byte 2
Byte 3
Byte 4
Byte 5
Byte 6
0x00
0x00
0x00
0x3A
Data …
…
… Data
Example of PROFIBUS IN array (data that a master PROFIBUS receive) using the Secondary Address of the Slave M-Bus with “Enable Tx in
M-Bus” checked
Byte 0
Byte 1
Byte 2
Byte 3
Byte 4
Byte 5
Byte 6
Byte 7
Byte 8
SO
RIS
0x28
0x45
0x65
0x71
Data …
…
… Data
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EXAMPLES:
1)
In “Set Communication” the field “Create a module for each variable” and “Enable Tx in M-Bus” are unchecked, “N Byte” is 30, “Node State” and
“Identification Number” are unchecked.
There was defined these variables: Var.1: 32 bit, No Scale; Var.2: 48 bit, No Scale; Var.3: 16 bit, Si Scale; Var.4: 64 bit, Si scale.
The PROFIBUS array is the follow:
Byte 0
Var.1
Byte 10
Var.3
Byte 20
Var.4
Byte 1
Var.1
Byte 11
Var.3
Byte 21
Var.4 Scale
Byte 2
Var.1
Byte 12
Var.3 Scale
Byte 22
Byte 3
Var.1
Byte 13
Var.4
Byte 23
Byte 4
Var.2
Byte 14
Var.4
Byte 24
Byte 5
Var.2
Byte 15
Var.4
Byte 25
Byte 6
Var.2
Byte 16
Var.4
Byte 26
Byte 7
Var.2
Byte 17
Var.4
Byte 27
Byte 8
Var.2
Byte 18
Var.4
Byte 28
Byte 9
Var.2
Byte 19
Var.4
Byte 29
2)
In “Set Communication” the field “Create a module for each variable” is checked, “Enable Tx in M-Bus” is unchecked, “Node State” and
“Identification Number” are unchecked.
There was defined these variables: Var.1: 24 bit, No Scale; Var.2: 32 bit, Yes Scale; Var.3: 16 bit, No Scale; Var.4: 64 bit, Yes scale;
Var.5: 8 bit, Yes scale.
The PROFIBUS array is the follow:
Byte 0
Var.1
Byte 3
Var.2
Byte 8
Var.3
Byte 10
Var.4
Byte 19
Var.5
Byte 1
Var.1
Byte 4
Var.2
Byte 9
Var.3
Byte 11
Var.4
Byte 20
Var.5 Scale
Byte 2
Var.1
Byte 5
Var.2
Byte 6
Var.2
Byte 7
Var.2 Scale
Byte 12
Var.4
Byte 13
Var.4
Byte 14
Var.4
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Byte 15
Var.4
Byte 16
Var.4
Byte 17
Var.4
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Byte 18
Var.4 Scale
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3)
In “Set Communication” the field “Create a module for each variable” and “Enable Tx in M-Bus” are unchecked, “N Byte” is 30, “Node State” and
“Identification Number” are checked.
There was defined these variables: Var.1: 32 bit, No Scale; Var.2: 48 bit, No Scale; Var.3: 16 bit, Si Scale; Var.4: 64 bit, Si scale.
The PROFIBUS array is the follow:
Byte 0
Status
Byte 10
Var.2
Byte 20
Var.4
Byte 1
Ident.Num1
Byte 11
Var.2
Byte 21
Var.4
Byte 2
Ident.Num2
Byte 12
Var.2
Byte 22
Var.4
Byte 3
Ident.Num3
Byte 13
Var.2
Byte 23
Var.4
Byte 4
Ident.Num4
Byte 14
Var.2
Byte 24
Var.4
Byte 5
Var.1
Byte 15
Var.3
Byte 25
Var.4
Byte 6
Var.1
Byte 16
Var.3
Byte 26
Var.4 Scale
Byte 7
Var.1
Byte 17
Var.3 Scale
Byte 27
Byte 8
Var.1
Byte 18
Var.4
Byte 28
Byte 9
Var.2
Byte 19
Var.4
Byte 29
4)
In “Set Communication” the field “Create a module for each variable” is checked, “Enable Tx in M-Bus” is unchecked, “Node State” and
“Identification Number” are checked.
There was defined these variables: Var.1: 24 bit, No Scale; Var.2: 32 bit, Yes Scale; Var.3: 16 bit, No Scale; Var.4: 64 bit, Yes scale;
Var.5: 8 bit, Yes scale.
The PROFIBUS array is the follow:
Byte 0
Status
Byte 1
Ident.Num1
Byte 5
Var.1
Byte 8
Var.2
Byte 13
Var.3
Byte 15
Var.4
Byte 24
Var.5
Byte 2
Ident.Num2
Byte 6
Var.1
Byte 9
Var.2
Byte 14
Var.3
Byte 16
Var.4
Byte 25
Var.5 Scale
Byte 3
Ident.Num3
Byte 7
Var.1
Byte 10
Var.2
Byte 4
Ident.Num4
Byte 11
Var.2
Byte 12
Var.2 Scale
Byte 17
Var.4
Byte 18
Var.4
Byte 19
Var.4
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Byte 20
Var.4
Byte 21
Var.4
Byte 22
Var.4
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Byte 23
Var.4 Scale
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5)
In “Set Communication” the field “Create a module for each variable” is unchecked, “Enable Tx in M-Bus” is checked, “N Byte” is 30, “Node State”
is unchecked and “Identification Number” is checked.
There was defined these variables: Var.1: 32 bit, No Scale; Var.2: 48 bit, No Scale; Var.3: 16 bit, Si Scale; Var.4: 64 bit, Si scale.
The PROFIBUS array is the follow:
Byte 0
SO
Byte 10
Var.2
Byte 20
Var.4
Byte 1
RIS
Byte 11
Var.2
Byte 21
Var.4
Byte 2
Ident.Num1
Byte 12
Var.2
Byte 22
Var.4
Byte 3
Ident.Num2
Byte 13
Var.2
Byte 23
Var.4
Byte 4
Ident.Num3
Byte 14
Var.2
Byte 24
Var.4
Byte 5
Ident.Num4
Byte 15
Var.2
Byte 25
Var.4
Byte 6
Var.1
Byte 16
Var.3
Byte 26
Var.4
Byte 7
Var.1
Byte 17
Var.3
Byte 27
Var.4 Scale
Byte 8
Var.1
Byte 18
Var.3 Scale
Byte 28
Byte 9
Var.1
Byte 19
Var.4
Byte 29
6)
In “Set Communication” the field “Create a module for each variable” and “Enable Tx in M-Bus” are checked, “Node State” is checked and
“Identification Number” is unchecked.
There was defined these variables: Var.1: 24 bit, No Scale; Var.2: 32 bit, Yes Scale; Var.3: 16 bit, No Scale; Var.4: 64 bit, Yes scale;
Var.5: 8 bit, Yes scale.
The PROFIBUS array is the follow:
Byte 0
SO
Byte 2
Status
Byte 3
Var.1
Byte 6
Var.2
Byte 11
Var.3
Byte 13
Var.4
Byte 22
Var.5
Byte 1
RIS
Byte 4
Var.1
Byte 7
Var.2
Byte 12
Var.3
Byte 14
Var.4
Byte 23
Var.5 Scale
Byte 5
Var.1
Byte 8
Var.2
Byte 9
Var.2
Byte 10
Var.2 Scale
Byte 15
Var.4
Byte 16
Var.4
Byte 17
Var.4
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Byte 18
Var.4
Byte 19
Var.4
Byte 20
Var.4
INFO: www.adfweb.com
Byte 21
Var.4 Scale
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UPDATE DEVICE:
By pressing the “Update Device” button it is possible to load the created Configuration into the device; and also the Firmware, if is
necessary.
In order to load the parameters or update the firmware in the device, follow these instructions:
Turn off the Device;
Connect the USB cable (HD67053-B2 series) or the RS232 Null Modem Cable
(HD67053M series) form your PC to the Gateway;
Put Dip2 of Dip-Switch A at “ON” position (HD67053-B2 series) or Insert the Boot
Jumper (HD67053M) (see “FUNCTION MODES” section);
Select the “COM port” and press the “Connect” button;
Turn on the device;
Check the BOOT Led. It must blink quickly (see “LEDS” section);
Press the “Next” button;
Select which operations you want to do.
Press the “Execute update firmware” button to start the upload;
When all the operations are “OK” turn off the device;
Put Dip2 of Dip-Switch A at “OFF” position or disconnect the Boot jumper;
Disconnect the USB or RS232 Cable;
Turn on the device.
At this point the configuration/firmware on the device is correctly update.
Figure 5: “Update Device” windows
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Note:
When you install a new version of the software it is better if the first time you do the update of the Firmware in the HD67053-B2xxx or HD67053M-xxx devices.
Note:
When you receive the device, for the first time, you have to update also the Firmware in the HD67053-B2-xxx or HD67053M-xxx
devices.
Warning:
If the Fig. 6 appears when you try to do the Update before require assistance try
these points:
Check if the serial COM port selected is the correct one;
Check if the USB or serial cable is connected between the PC and the device;
Try to repeat the operations for the updating;
If you are using a USBRS232 converter try with a native COM port or change the
converter (only for HD67053M series);
Try with another PC;
Try to restart the PC;
If you are using the program inside a Virtual Machine, try to use in the main
Operating System;
Figure 6: “Protection” window
If you are using Windows Seven or Vista, make sure that you have the administrator privileges;
Take attention at Firewall lock.
In the case of HD67053-B2-xxx or HD67053M-xxx you have to use the software “SW67053”:
www.adfweb.com\download\filefold\SW67053.zip.
ADFweb.com Srl – IT31010 – Mareno – Treviso
INFO: www.adfweb.com
Phone +39.0438.30.91.31
User Manual
M-Bus Master / PROFIBUS DP Slave
Document code: MN67053_ENG
Revision 2.002
Pagina 34 di 37
Industrial Electronic Devices
MECHANICAL DIMENSIONS:
Figure 8: Mechanical dimensions scheme for HD67053M-40, HD67053M-80
Figure 10: Mechanical dimensions scheme for HD67053M-250
ADFweb.com Srl – IT31010 – Mareno – Treviso
Figure 9: Mechanical dimensions scheme for HD67053M-160
Figure 11: Mechanical dimensions scheme for HD67053-B2-xxx
INFO: www.adfweb.com
Phone +39.0438.30.91.31
User Manual
M-Bus Master / PROFIBUS DP Slave
Document code: MN67053_ENG
Revision 2.002
Pagina 35 di 37
Industrial Electronic Devices
ORDERING INFORMATIONS:
The ordering part number is formed by a valid combination of the following:
HD67053 – B 2 – xxx
Maximum number of slaves supported
40: up to 40 standard slaves (1.5mA consumption) connected to M-Bus
80: up to 80 standard slaves (1.5mA consumption) connected to M-Bus
160: up to 160 standard slaves (1.5mA consumption) connected to M-Bus
250: up to 250 standard slaves (1.5mA consumption) connected to M-Bus
Connectors Type
2: Fixed Screw Terminal
Enclosure Type
B: Modulbox 4M DIN Rail mounting
Device Family
HD67053: M-Bus Master / PROFIBUS DP Slave - Converter
Order Code:
HD67053-B2-40
-
M-Bus Master / PROFIBUS DP Slave – Converter (up to 40 slaves connected to M-Bus)
Order Code:
HD67053-B2-80
-
M-Bus Master / PROFIBUS DP Slave – Converter (up to 80 slaves connected to M-Bus)
Order Code:
HD67053-B2-160 -
M-Bus Master / PROFIBUS DP Slave – Converter (up to 160 slaves connected to M-Bus)
Order Code:
HD67053-B2-250 -
M-Bus Master / PROFIBUS DP Slave – Converter (up to 250 slaves connected to M-Bus)
ACCESSORIES:
Order Code:
APW040
-
Power Supply for M-Bus Master device that supports up to 40 Slaves
Order Code:
APW080
-
Power Supply for M-Bus Master device that supports up to 80 Slaves
Order Code:
APW160
-
Power Supply for M-Bus Master device that supports up to 160 Slaves
Order Code:
APW250
-
Power Supply for M-Bus Master device that supports up to 250 Slaves
ADFweb.com Srl – IT31010 – Mareno – Treviso
INFO: www.adfweb.com
Phone +39.0438.30.91.31
User Manual
M-Bus Master / PROFIBUS DP Slave
Document code: MN67053_ENG
Revision 2.002
Pagina 36 di 37
Industrial Electronic Devices
DISCLAIMER
All technical content within this document can be modified without notice. The content of the document content is a recurring audit.
For losses due to fire, earthquake, third party access or other accidents, or intentional or accidental abuse, misuse, or use under abnormal
conditions repairs are charged to the user. ADFweb.com S.r.l. will not be liable for accidental loss of use or inability to use this product, such
as loss of business income. ADFweb.com S.r.l. shall not be liable for consequences of improper use.
OTHER REGULATIONS AND STANDARDS
WEEE INFORMATION
Disposal of old electrical and electronic equipment (as in the European Union and other European countries with separate
collection systems).
This symbol on the product or on its packaging indicates that this product may not be treated as household rubbish. Instead, it
should be taken to an applicable collection point for the recycling of electrical and electronic equipment. If the product is disposed
correctly, you will help prevent potential negative environmental factors and human health, which could otherwise be caused by
inappropriate disposal. The recycling of materials will help to conserve natural resources. For more information about recycling this
product, please contact your local city office, your household waste disposal service or the shop where you purchased the product.
RESTRICTION OF HAZARDOUS SUBSTANCES DIRECTIVE
The device respects the 2002/95/EC Directive on the restriction of the use of certain hazardous substances in electrical
and electronic equipment (commonly referred to as Restriction of Hazardous Substances Directive or RoHS).
CE MARKING
The product conforms with the essential requirements of the applicable EC directives.
ADFweb.com Srl – IT31010 – Mareno – Treviso
INFO: www.adfweb.com
Phone +39.0438.30.91.31
User Manual
M-Bus Master / PROFIBUS DP Slave
Document code: MN67053_ENG
Revision 2.002
Pagina 37 di 37
Industrial Electronic Devices
WARRANTIES AND TECHNICAL SUPPORT:
For fast and easy technical support for your ADFweb.com SRL products, consult our internet support at www.adfweb.com.
Otherwise contact us at the address [email protected]
RETURN POLICY:
If while using your product you have any problem and you wish to exchange or repair it, please do the following:
1) Obtain a Product Return Number (PRN) from our internet support at www.adfweb.com. Together with the request, you need to provide detailed information
about the problem.
2) Send the product to the address provided with the PRN, having prepaid the shipping costs (shipment costs billed to us will not be accepted).
If the product is within the warranty of twelve months, it will be repaired or exchanged and returned within three weeks. If the product is no longer under warranty,
you will receive a repair estimate.
PRODUCTS AND RELATED DOCUMENTS:
Part
Description
URL
HD67031
Analyzer/Scanner/Sniffer M-Bus
www.adfweb.com?Product=HD67031
HD67119
Converter USB 2.0 to RS485 Isolated
www.adfweb.com?product=HD67119
HD67120
Converter Ethernet to RS232/RS485
www.adfweb.com?product=HD67120
HD67507
Gateway Modbus TCP Server to RTU Master
www.adfweb.com?product=HD67507
HD67510
Gateway Modbus TCP Client to RTU Slave
www.adfweb.com?product=HD67510
ADFweb.com Srl – IT31010 – Mareno – Treviso
INFO: www.adfweb.com
Phone +39.0438.30.91.31

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