Voltage-Dependent Overcurrent Protection, Phases
Setting Values for All Stage Types
Method of measurement
Fundamental component
RMS value
–
Overcurrent threshold
value
For I
rated
= 1 A
0.030 A to 35.000 A
Increments of 0.001 A
For I
rated
= 5 A
0.15 A to 175.00 A
Increments of 0.01 A
Time delay
0.10 s to 60.00 s
Increments of 0.01 s
Setting Values for Inverse-Time Overcurrent Protection Stages
Method of measurement
Fundamental component
RMS value
–
Dropout ratio of undervoltage
68
1.01 to 1.20
Increments of 0.01
Undervoltage threshold value
68
0.300 V to 175.000 V
Increments of 0.001 V
Dropout
Disk emulation
Instantaneous
–
Time multiplier
0.05 to 15.00
Increments of 0.01
Setting Values for Definite-Time Overcurrent Protection Stages
Seal-in voltage
0.300 V to 175.000 V
Increments of 0.001 V
Phase-to-phase voltage
0.300 V to 175.000 V
Increments of 0.001 V
Negative-sequence voltage V2
0.300 V to 200.000 V
Increments of 0.001 V
Time delay
0.00 s to 60.00 s
Increments of 0.01 s
Duration of V-seal-in time
0.10 s to 60.00 s
Increments of 0.01 s
Dropout for Inverse-Time Overcurrent Protection Stages
The greater dropout differential (=
| pickup value – dropout value |
) of the following 2 criteria
applies:
Dropout
Current
95 % of 1.1 ⋅ threshold value
Voltage
68
105 % of threshold value
Minimum absolute dropout differential
Protection-class current transformer
15 mA sec. (I
rated
= 1 A) or
75 mA sec. (I
rated
= 5 A)
Instrument current transformer
0.5 mA sec. (I
rated
= 1 A) or
2.5 mA sec. (I
rated
= 5 A)
Voltage transformer
68
150 mV sec.
Reset of the Integration Timer for Inverse-Time Overcurrent Protection Stages
Instantaneous
With dropout
Disk emulation
Approx. < 0.90 ⋅ threshold value
11.16
68
The value is for the inverse-time overcurrent voltage-released stage.
Technical Data
11.16 Voltage-Dependent Overcurrent Protection, Phases
SIPROTEC 5, High-Voltage Bay Controller, Manual
1147
C53000-G5040-C015-9, Edition 11.2017
Summary of Contents for 6MD85
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