ABB SPAJ 160 C User Manual And Technical Description page 61

Capacitor protection relay
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Data
Memorized starting of stage ∆I
Memorized tripping of stage ∆I
Memorized external trip signal
Memorized reconnection inhibit signal
Memorized signal TS1
Memorized signal SS1
Memorized signal SS2
Memorized signal SS3
Memorized signal TS2
Memorized output ENA-signal
SETTING VALUES
Starting value for stage I
Time multiplier k for stage I
Starting value for stage I
Operating time for stage I
Starting value for stage I<
Operating time for stage I<
Setting of reconnection inhibit time t
Starting value for stage ∆I
Operating time for stage ∆I
Starting value for stage ∆I
for stage ∆I
Time multiplier k
∆2
Setting of unbalance compensation ∆I
Checksum of switchgroup SGF
Checksum of switchgroup SGB1
Checksum of switchgroup SGB2
Checksum of switchgroup SGB3
Checksum of switchgroup SGR1
Checksum of switchgroup SGR2
RECORDED AND MEMORIZED PARAMETERS
Filtered current in phase L1 at tripping
Filtered current in phase L2 at tripping
Filtered current in phase L3 at tripping
Compensated unbalance current ∆I
at tripping
Uncompensated unbalance current ∆I
at tripping
Duration of starting of stage I
Duration of starting of stage I
Duration of starting of stage ∆I
Duration of starting of stage ∆I
Duration of starting of stage I<
Code
>
O29
2
>
O30
2
O31
O32
O33
O34
O35
O36
O37
O38
>
S1
b
>
S2
b
>
S3
a
>
S4
a
S5
S6
S7
rec
>
S8
1
>
S9
1
>
S10
2
>
S11
2
S12
cs
S13
S14
S15
S16
S17
S18
V21 & V41 R
V22 & V42 R
V23 & V43 R
c
V24 & V44 R
V25 & V45 R
>
V26 & V46 R
a
>
V27 & V47 R
b
>
V28 & V48 R
1
>
V29 & V49 R
2
V30 & V50 R
Data flow Value range
direction
0 = ∆I
R
>-stage not started
2
1 = ∆I
>-stage started
2
0 = ∆I
R
>-stage not tripped
2
1 = ∆I
>-stage tripped
2
R
0 = signal not active
1 = signal active
R
0 = signal not active
1 = signal active
R
0 = signal not active
1 = signal active
R
0 = signal not active
1 = signal active
R
0 = signal not active
1 = signal active
R
0 = signal not active
1 = signal active
R
0 = signal not active
1 = signal active
R
0 = signal not active
1 = signal active
R,W(P)
0.30...1.50 x I
R,W(P)
0.2...2.0
R,W(P)
80...120% I
b
R,W(P)
0.50...100 min
R,W(P)
0.10...0.70 x I
R,W(P)
1.0...100 s
R,W(P)
0.50...100 min
1.0...100 % ∆I
R,W(P)
R,W(P)
1.0...300 s
2.0...80.0% ∆I
R,W(P)
R,W(P)
0.1...1.0
0.0...20.0% ∆I
R,W(P)
R,W(P)
0...255
R,W(P)
0...255
R,W(P)
0...255
R,W(P)
0...255
R,W(P)
0...255
R,W(P)
0...255
0...8.5 x I
n
0...8.5 x I
n
0...8.5 x I
n
0...232% x ∆I
0...212 % x ∆I
0...100 %
0...100 %
0...100 %
0...100 %
0...100 %
n
>
n
n
n
n
n
n
25

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