
User’s Manual
Rev1.0
Date:15/07/2015 User’s Manual
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Byte 0-2: Final assembly number
Test of command:
Send command 19: FF FF FF FF FF 82 9A 1A AD 18 8C 13 03 01 02 03 2B ;
Receive command 19: FF FF FF FF FF 86 9A 1A AD 18 8C 13 05 00 00 01 02 03 29
7.1.15 Command 34: Write primary variable damping value
Command formate:
Write primary variable damping value. If the value is not acceptable, will revert with alarm
Request:
Byte 0-3: Damping value, IEEE754
Response:
Byte 0-3: Actual damping value, IEEE754
Test of command:
Send command 34: FF FF FF FF FF 82 9A 1A AD 18 8C 22 04 40 00 00 00 5D; Write primary
variable damping value
Receive command 34: FF FF FF FF FF 86 9A 1A AD 18 8C 22 06 00 00 40 00 00 00 5B
7.1.16 Command 35: Write primary variable range values
Command formate:
The upper and lower limits of primary variable are independent. The primary variable range unit
value that this command received has no effect on the primary variable unit value. The primary value
range value will be returned in the unit received.
Most device allows that the measurement range upper limit lower than lower limit ,to support the
device to reverse output.
Request:
Byte 0: Primary variable upper and lower range value unit code
Byte 1-4: Primary variable upper range limit, IEEE 754
Byte 5-8: Primary variable lower range limit, IEEE 754
Response:
Byte 0: Primary variable upper and lower range value unit code
Byte 1-4: Primary variable upper range limit, IEEE 754
Byte 5-8: Primary variable lower range limit, IEEE 754
Test of command:
Send command 35: FF FF FF FF FF 82 9A 1A AD 18 8C 23 09 13 40 00 00 00 40 00 00 00 02;
Write primary variable range values
Receive command 35: FF FF FF FF FF 86 9A 1A AD 18 8C 23 0B 00 00 13 00 00 00 00 00 00 00
00 04
7.1.17 Command 36: Write primary variable upper limit
value
Command formate:
Write the primary variable upper limit to current primary variable value. The change of primary
variable upper limit value has no effect on the primary variable lower limit.
Request:
NONE
Response: