Siemens WL Series Operating Instructions Manual page 143

Low voltage insulated case circuit breaker
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Messwerte anzeigen
Beispiel 1: Anzeige der Ströme
H a u p t m e n ü
M e ß f u n k t i o n
D i a g n o s e
P a r a m e t e r
P a r a m e t e r
I d e n t i f i k a t i o n
R ü c k s t e l l u n g e n
E i n s t e l l u n g e n
PAR
A
Beispiel 2: Anzeige der Frequenz
H a u p t m e n ü
M e ß f u n k t i o n
D i a g n o s e
P a r a m e t e r
P a r a m e t e r
I d e n t i f i k a t i o n
R ü c k s t e l l u n g e n
E i n s t e l l u n g e n
PAR
A
M e ß f u n k t i o n
I
=
a v g
U
=
a v g
a n z e i g
P
= +
ä n d e r n
S
=
Q
= +
c o s
=
0 . 9 1 8
W
= + 2 1 2 0 7
F r e q
=
5 0 . 0 2
PAR
TRIG
AB
A
(down 8x)
M e ß f u n k t i o n
U
=
a v g
P
= +
S
=
Q
= +
c o s
=
0 . 9 1 8
W
= + 2 1 2 0 7
F r e q
=
5 0 . 0 2
J
=
4 8 . 0
W L
PAR
A
M e ß f u n k t i o n
I
=
a v g
U
=
a v g
a n z e i g
P
= +
ä n d e r n
S
=
Q
= +
c o s
=
0 . 9 1 8
W
= + 2 1 2 0 7
F r e q
=
5 0 . 0 2
TRIG
PAR
AB
A
(down 8x)
M e ß f u n k t i o n
U
=
a v g
P
= +
S
=
Q
= +
c o s
=
0 . 9 1 8
W
= + 2 1 2 0 7
F r e q
=
5 0 . 0 2
J
=
4 8 . 0
W L
PAR
A
English part continued on Page
S t r o m
7 5 2
A
I
=
L
1
4 0 1
V
2 7 7
kW
I
=
L
2
3 0 2
k V A
1 2 0 k V A R
I
=
L
3
i n d
M W h
I
=
N
H z
PAR
TRIG
AB
A
(up 8x)
(down 7x)
S t r o m
4 0 1
V
I
=
g
kW
2 7 7
3 0 2
k V A
I
=
a v g
1 2 0 k V A R
i n d
I
=
a v g l
t
M W h
H z
U n b a l . =
° C
TRIG
PAR
AB
A
F r e q u e n z
7 5 2
A
f
=
r
e q
4 0 1
V
2 7 7
kW
I
=
T H D
3 0 2
k V A
1 2 0 k V A R
U
=
T H D
i n d
M W h
F o r m
F =
H z
C r e s t F =
TRIG
PAR
AB
A
(up 8x)
(down5x)
F r e q u e n z
4 0 1
V
H a r m o n i s c h e
k W
2 7 7
3 0 2
k V A
1 2 0 k V A R
i n d
M W h
H z
° C
TRIG
PAR
A
AB
9-55
I
7 6 5
A
I
=
L
1
m i
n
2 8 - J A N - 0 1
7 5 8
A
1 6 : 2 9 : 3 2 . 0 1
7 5 0
A
I
=
L
1
m a x
0 4 - J A N - 0 1
0
A
0 8 : 5 9 : 3 8 . 2 1
PAR
TRIG
AB
A
(up 7x)
5
A
7 5 2
A
7 5 2
A
1 0
%
TRIG
AB
F r e q
5 0 . 0 2
H z
f
r
e q m i
n =
2 8 - J A N - 0 1
1 0
%
1 6 : 2 9 : 3 2 . 0 1
1 0
%
f
r
e q m a x =
0 4 - J A N - 0 1
4 . 0
0 8 : 5 9 : 3 8 . 2 1
4 . 0
TRIG
PAR
AB
A
(up 5x)
TRIG
AB
L
1
7 0 6
A
7 8 8
A
TRIG
AB
5 0 . 0 2
H z
5 0 . 0 2
H z
TRIG
AB
9 – 43

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