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9
MEASUREMENT AND STATUS
Name
Modbus
address
CANopen®
Index/sub-
index
Profibus cyclic
IN/OUT
Acyclic DPV1
slot/index
Type Access
Measurement status
0x007D
0x5003 / 0x00
(M)
Module 1
(2 first bytes)
/
Uint
RO
Gross measurement
0x007E
0x5001 / 0x00
(M)
Module 1
(4 last bytes)
/
Long RO
Tare value
0x0080
0x5004 / 0x01
(M)
R 0x0470
/
Long RO
Net measurement
0x0082
0x5000 / 0x00
(M)
Module 2
(4 bytes starting
3
rd
byte)
/
Long RO
Factory calibrated points
0x0084
0x5002 / 0x00
(M)
Module 2
(4 last bytes)
/
Long RO
Preset Tare
0x0097
0x5004 / 0x02
(M)
R: 0x04C4
W: 0x04C5
0x03 / 0x08
Ulong RW
Defective measurement
debounced time
0x0A48
0x4509/0x06
R:0x0206
W:0x0207
0x06 / 0x0D
Uint
RW
Defective measurement alarm
activation time
0x0A49
0x4509/0x07
R:0x0208
W:0x0209
0x06 / 0x0E
Uint
RW
Sensor input control reference
0x0A44
0x5004 / 0x03
(M)
R : 0x044C
W: 0x044D
0x0A / 0x00
long RW
Sensor input control result
0x0A46
0x5004 / 0x04
(M)
R : 0x024E
0x0A / 0x01
Int
RO
Sensor input control result
max. tolerance
0x0A47
0x5004 / 0x05
R: 0x020A
W: 0x020B
0x0A / 0x02
Uint
RW
9.1
Measurement transmission
The
eNod4
transmits measurement after signal and data processing through different protocols available. The
accessible variables are:
9.1.1
Gross measurement
The
‘gross measurement’
stands for the digital value after measurement scaling. It is affected by all the
‘zero’
functions (power-up zero, zero tracking and zero requests).
9.1.2
Net measurement
The
‘net measurement’
stands for the digital value after measurement scaling and tare subtraction.
9.1.3
Tare value
The
‘tare value’
stores the calibrated value that is subtracted from the
‘gross measurement’
so as to give the
‘net
measurement’
.
9.1.4
Factory calibrated points
The
‘factory calibrated points”
contains the measurement value without the user calibration layer. It is directly linked
to the analog input voltage.
9.1.5
Preset Tare value
A previous calculated tare can be restored using this variable.