80
9.5. QUANTITY ACCORDING TO THE DISTRIBUTION NETWORK
= Yes
= No
Quantities
1P-2W
1P-3W
3P-3W∆2
3P-3WO2
3P-3WY2
3P-3W∆3
3P-3WO3
3P-3WY3
3P-3W∆B
3P-4WY
3P-4WYB 3P-4WY2
3P-4W∆
3P-4WO
DC-2W DC-3W DC-4W
V
1
AC
RMS
V
2
AC
RMS
= V
1
(10)
V
3
AC
RMS
= V
1
V
1
DC
V
2
DC
V
3
DC
V
1
AC +
DC
RMS
V
2
AC +
DC
RMS
(1)
(10)
V
3
AC +
DC
RMS
(1)
U
12
AC
RMS
(1)
(10)
U
23
AC
RMS
(1)
(1)
(10)
U
31
AC
RMS
(1)
(1)
I
1
AC
RMS
I
2
AC
RMS
(2)
(1)
(1)
I
3
AC
RMS
(1)
(1)
I
N
AC
RMS
I
1
DC
I
2
DC
I
3
DC
I
N
DC
I
1
AC +
DC
RMS
(1)
I
2
AC +
DC
RMS
(2)
(1)
(1)
I
3
AC +
DC
RMS
(1)
I
N
AC +
DC
RMS
V
1-CF
V
2-CF
(1)
(10)
V
3-CF
(1)
I
1-CF
I
2-CF
(2)
(1)
(1)
I
3-CF
(1)
(1)
V
+
(*)
(10)
V
-
(*)
(4)
(4)
(10)
V
0
(*)
(4)
(4)
(10)
I
+
(*)
I
-
(*)
(4)
(4)
I
0
(*)
(4)
(4)
u
0
(*)
(4)
(4)
(4)
(3)
u
2
(*)
(4)
(4)
(4)
(3)
Summary of Contents for pel 102
Page 1: ...Power energy logger EN User s manual PEL 102 PEL 103 PEL 104 ...
Page 24: ...24 Aggregation period Date and time IP address scrolling Wi Fi address scrolling PEL104 ...
Page 36: ...36 Three phase 3 wire balanced 3P 3W b U12 U23 U31 f P Q S PF P Q S tan ϕ I1 I2 I3 ϕ I1 U12 ...
Page 38: ...38 Three phase 4 wire wye balanced 3P 4WYb I1 I2 I3 V1 V2 V3 VN U12 U23 U31 f P Q S tan ϕ ...
Page 39: ...39 DC 2 wire dC 2W DC 3 wire dC 3W P Q S PF ϕ I1 V1 P Q S tan ϕ P I V VN I1 I2 IN ...
Page 40: ...40 DC 4 wire dC 4W P I1 I2 I3 IN V1 V2 V3 VN V1 V2 VN ...
Page 48: ...48 Two phase 3 wire 1P 3W I1 I2 V1 V2 U12 VN P Q S P Q S ...
Page 51: ...51 P Q S ...
Page 85: ...85 ...