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This protocol supports data acquisition (as regards in the case of SOFTCONTROL and OMOS device devices, also data writing) from both the heat meters and control systems produced by OneSoft s.r.o. Prievidza.

The communication supports and was tested for these devices:

ELTRONIC, FC200 ST, FC200 WM, FC200 GS, MAXTRONIC, STEAMTRONIC B, STEAMTRONIC D, SOFTCONTROL, OMOS

Kotva
komunikacna_linka
komunikacna_linka
Communication line configuration

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  • Communication line category: Serial, SerialOverUDP Device Redundant.
  • Serial line parameters:
    • Baud rate (it depends on the device settings),
    • Parity (usually non none parity),
    • Handshaking depending on a the type of converter RS232/RS485. Set Transmit and Receive delay to cca approx. 60 ms for the converters that are controlled by RTS signal.

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ParameterMeaningUnitDefault value
Kotva
scan
scan
Scan Mode (read-only)
Configuration of passive mode (Scan only) in which no requests are sent, only responses processed.-NO
Kotva
wsmt
wsmt
Wait Timeout in Scan Mode
Delay The delay between reading data in Scan Mode.ss.mss0.5

Kotva
komunikacna_stanica
komunikacna_stanica
Communication station configuration

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  • Communication protocol: OneSoft Devices
  • Station address requires to set these parameters:
    • Device ID (from 0 up to 65535).
    • Data block size (see Table 2).
    • End of range for calculation the checksum „Checksum after: “ (see Table1).

Table 1

Device typeData block sizeChecksum after
ELTRONIC9391
FC200 ST9391
FC200 WM9290
MAXTRONIC9391
STEAMTRONIC B9390
STEAMTRONIC D9391
OMOS00
MAXTRONIC 0500

In the configuration dialog window of the station, you can choose a device in which you preset that presets the values from Table 1.

For SOFTCONTROL devices, the setting of data block size is different than block size for calculating the checksum depending on firmware in the particular application. We recommend you to ask a for technical documentation from a producer. At the end of the data block you can find the following information:

Blok kódu
languageesl
themeConfluence
/***********************************************************************/
 
 sprava[314] = 0x22 ; 
 sprava[315] = 0xcc ; // end of transmission
 
 }
 /***********************************************************************/
 /* number of transmitted bytes = 315 */
 /***********************************************************************/

From this information, it results that the value for "Data block size" and "Checksum after" is 316 (the number of transmitted bytes is in fact 315+1). 

OMOS devices do not need this parameter. You can set zero values. When configuring OMOS stations, remember that the device consists of several separate modules. Each module is configured as a separate station. See the parameter of station protocol "OMOS ICS module".

OMOS devices can be time-synchronized - the parameter "Synchronization period" on the tab "Time parameter" in station configuration should be enabled.

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Communication station - configuration dialog box - Protocol parameters tab.
These parameters influence some optional parameters of the protocol. You can set the following station parameters:

Table 2

ParameterMeaningUnitDefault value
Kotva
wbr
wbr
Wait Before Request
Delay that is used before each request.ms100
Kotva
wft
wft
Wait First Timeout
First delay before reading the response after sending the request.ms500
Kotva
wt
wt
Wait Timeout
Timeout between readings of response until it is completed.ms400
Kotva
rt
rt
Retry Timeout
Delay before resending of the request when no answer is received.ms1000
Kotva
mwr
mwr
Max Wait Retry
Number The number of repeated readings of response until it is completed.-8
Kotva
rc
rc
Retry Count
Maximum The maximum number of repeated requests.-3
Kotva
rqr
rqr
Request Repetition
Number The number of repeated request requests sent before reading the answer.-1
Kotva
omos
omos
OMOS Device
Communication with OMOS.YES/NONO
Kotva
oim
oim
OMOS ICS Module
ICS address of module of OMOS (module SYSTEM=0, other modules UK/TUV as per configuration).-0
Kotva
mx05
mx05
Maxtronic 05
Communication with MAXTRONIC 05.YES/NONO
Kotva
scd
scd
SoftControl Device
Communication with SOFTCONTROL.YES/NONO
Kotva
wrbb
wrbb
Begin of Write Block
Begin The beginning index of the data block for writing to SOFTCONTROL/OMOS (see note).-156
Kotva
wrbe
wrbe
End of Write Block
End The ending index of the data block for writing to SOFTCONTROL/OMOS (see note).-283

Kotva
pozn1
pozn1
Note related to the parameters "Begin of write block" and "End of write block":
These parameters are useful for SOFTCONTROL and OMOS in case of value writing.

SOFTCONTROL: The documentation shows the information in the data block of response as follows:

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It marks the beginning of the data block with writing possibility. In this case, the value is 156. The whole data block is written in usually marked with a different color in the documentation.

OMOS: The setting of "Begin of write block" is 50 for all module types. The value of "End of write block" is 111.

Kotva
merany_bod
merany_bod
I/O tag configuration

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I/O tags: Di, Ai, Ci, TiA, Ao, Co

In the configuration of the I/O tag address you must define the following parameters:

  • A position of the start of value start in a data block („Position:“). If regards I/O tags of Di type, you can also define a bit number (0 to 7 for single-byte values, 0 to 15 for double-byte and 0 to 31 for four-byte). The address is written as Position.Bit, e.g. "24.0" means that the position = 24, the bit number = 0.
  • Value type:
    • „BYTE“ – 1-byte unsigned,
    • „INT“ – 2-byte integer signed,
    • „LONG“ – 4-bytes integer signed,
    • „WORD“ – 2-byte word unsigned,
    • „ULONG“ – 4-byte word unsigned,
    • „FLOAT“ – 4-byte float,
    • „DOUBLE“ – 8-byte float (only for Maxtronic 05).

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You can configure one I/O tag of TiA type (a an actual time of a meter with minute accuracy) for each station. A time in the data block is always on the same position, therefore you need not configure the parameter "Position:" (it is not applicable for SOFTCONTROL).

Table 3

ELTRONIC
ValueTech. unitsPositionValue typeMultiply coefficient
Analog value 1 
9INT10
Analog value 2 
11INT10
Analog value 3 
13INT10
Analog value 4 
15INT10
El. power M1kW (MW)17INT100
El. power M2kW (MW)19INT100
El. work M1kWh (MWh)25LONG10
El. work M2kWh (MWh)29LONG10
Running time M1min33LONG 
Running time M2min37LONG 
Date of reset M1 
41LONG 
Date of reset M2 
45LONG 
Phys. size of analog value A1 
49INT 
Phys. size of analog value A2 
51INT 
Phys. size of analog value A3 
53INT 
Phys. size of analog value A4 
55INT 
Real The current time of interval M1min57INT 
Real The current time of interval M2min63INT 
Dimension The dimension of quantity M1 (MWh,kWh,MW,kW) 
61INT 
Dimension The dimension of quantity M2 (MWh,kWh,MW,kW) 
63INT 
Set 1/4 hour max. M1 
69INT10
Set 1/4 hour max. M2 
71INT10
Actual 1/4 hour work M1 
73INT10
Actual 1/4 hour work M2 
75INT10
FC200 ST
ValueTech. unitsPositionValue typeMultiply coefficient
Steam temperature°C9INT10
Condensing temperature°C11INT10
Steam pressure abs.kPa13INT 
Mass flow rate - steamt,kg / hour17INT 
Mass flow rate - condensatet,kg / hour19INT 
Heat rate - steamMW, kW21INT 
Heat rate - condensateMW, kW23INT 
Heat steamMWh, kWh25LONG100
Heat condensateMWh, kWh29LONG100
Running time - circuit 1min33LONG 
Running time - circuit 2min37LONG 
Date of reset - circuit 1 
41LONG 
Date of reset - circuit 2 
45LONG 
Steam quantityt, kg49LONG100
Condensate quantitym3, lit.53LONG100
Heat under limit of saturation - steamkWh, MWh69LONG100
Differential pressure - steamkPa73INT100
Differential pressure - condensatekPa75INT100
Lower limit of manometer - steamkPa77INT 
Lower limit of manometer - condensatekPa79INT 
Superheating - steam°C83INT10
FC200 WM
ValueTech. unitPositionValue typeMultiply coefficient
Temperature Output°C9INT10
Temperature Reverse°C11INT10
Method of flow measurement O - 3 
13INT 
Flowm3,l / hour17INT10
Heat rateMW, kW21INT100
Quantity of heatMWh, kWh25LONG100
Running timemin33LONG 
Water quantitym3, l49LONG100
Size 0 - m3/t, 1 - l/kg 
61INT 
Delta PkPa73INT100
Water enthalpy - outputkJ / kg83INT 
Water enthalpy - reversekJ / kg85INT 
MAXTRONIC
ValueTech. unitPositionValue typeMultiply coefficient
Temperature - output M.1°C9INT10
Temperature - reverse M.1°C11INT10
Temperature - output M.2°C13INT10
Temperature - reverse M.2°C15INT10
Flow M.1m3 / hour17INT10
Flow M.2m3 / hour19INT10
Temperature power M.1MW21INT100
Temperature power M.2MW23INT100
Quantity of heat M.1MWh25LONG100
Quantity of heat M.2MWh29LONG100
Running time M1min33LONG 
Running time M2min37LONG 
Max. 1/4 hour power M1MW49INT100
K factor M1imp / m351INT 
Actual 1/4 hour power M1MW53INT100
K factor M2imp / m355INT 
Water quantity M1m373LONG100
Water quantity M2m377LONG100
STEAMTRONIC B
ValueTech. unitPositionValue typeMultiply coefficient
Steam temperature°C9INT10
Temperature condensate°C11INT10
Steam pressurekPa13INT 
Steam flowt / hour17INT100
Flow - condensatem3 / hour19INT100
Heat rate - steamMW21INT100
Heat rate - condensateMW23INT100
Total heat - steamMWh25LONG100
Quantity of heat - condensateMWh29LONG100
Running time of devicemin33LONG 
Total heat T<saturMWh37LONG100
Amount of steamton49LONG100
Quantity of condensatem353LONG100
Interval heatMWh69LONG100
Lower limit of manometerkPa77INT 
Higher limit of manometerkPa79INT 
STEAMTRONIC D
ValueTech. unitPositionValue typeMultiply coefficient
Steam temperature M.1°C9INT10
Temperature of condensate M.2°C11INT10
Steam pressure M.2kPa13INT 
Flow M.1kg,t / hour17INT100
Flow M.2l,m3 / hour19INT100
Temperature - output M.1kW, MW21INT100
Temperature - output M.2kW, MW23INT100
Quantity of heat M.1kWh, MWh25LONG100
Quantity of heat M.2kWh, MWh29LONG100
Running time M1min33LONG 
Quantity of heat under limit of densitykWh, MWh37LONG100
Amount of steam M1kg, t49LONG100
Quantity of condensatel, m353LONG100
Time when T < Tdens.min57LONG 
Measuring steam 0 - t/MW, 1 - kg/kW 
61INT 
Measuring condensate 0 -m3/MW, 1 –l/kW 
63INT 
Lower value on manometerkPa77INT 
Higher value on manometerkPa79INT 
Superheat of steam°C83INT10

Note: I/O tags whose values are multiplied by the coefficient in a meter must be converted to the technical units (I/O tag configuration, tab "Conversion") by a linear conversion according to Table 4:

Table 4

Multiply coefficientLinear conversion – coeff. ALinear conversion – coeff. B
100.10
1000.010

Warning: I/O tags of Ci type that are modified by linear conversion will lost lose the accuracy on decimal positions (value will be approximated to integer numbers). We recommend you to use Ai type.

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