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21
Address Point
ID
Description
Low and High Scales
2
Units
2
Type R/W
Notes
+39 0x1112
V1/V12 Voltage THD
0-999.9
0.1%
UINT16
R
3
+40 0x1113
V2/V23 Voltage THD
0-999.9
0.1%
UINT16
R
3
+41 0x1114
V3/V31 Voltage THD
0-999.9
0.1%
UINT16
R
3
+42 0x1115
I1 Current THD
0-999.9
0.1%
UINT16
R
3
+43 0x1116
I2 Current THD
0-999.9
0.1%
UINT16
R
3
+44 0x1117
I3 Current THD
0-999.9
0.1%
UINT16
R
3
+45
kVAh (low)
0-9999
1kVAh
UINT16
R
6
+46
kVAh (high)
0-9999
10MVAh
UINT16
R
6
+47 0x1609
Present kW import sliding window demand
-Pmax-Pmax
U3
UINT16
R
+48 0x160B
Present kVA sliding window demand
-Pmax-Pmax
U3
UINT16
R
+49 0x1615
PF (import) at Max. kVA sliding window demand
0-1.000
0.001
UINT16
R
+50 0x111B
I1 Current TDD
0-100.0
0.1%
UINT16
R
3
+51 0x111C
I2 Current TDD
0-100.0
0.1%
UINT16
R
3
+52 0x111D
I3 Current TDD
0-100.0
0.1%
UINT16
R
3
NOTES:
1
When the 4LN3, 3LN3 or 3BLN3 wiring mode is selected, the voltages will be line-to-neutral; for any other wiring mode, they will be line-to-line voltages.
2
All analog registers except of harmonics are 1-second average values. For volts, amps and power scales and units, refer to Section 4 ”Data Scales and Units”. For analog data scaling
formulas and examples, see Section 2.6.1, “16-bit Scaled Integer Format”.
3
On a 3-s interval.
4
Positive readings of kvarh net.
5
Negative readings of kvarh net.
6
If you use these energy registers instead of 32-bit registers, limit the energy roll value to 8 digits (see Device Options Setup) to avoid overflow.