
Chapter 7) 7SR158 Applications Guide
©2014 Siemens Protection Devices Limited
Chapter 7) Page 19 of 24
5.1.2
The Effects of Capacitance Current
The binary inputs have a low minimum operate current and may be set for instantaneous operation. Consideration
should be given to the likelihood of mal-operation due to capacitance current. Capacitance current can flow
through the BI for example if an earth fault occurs on the dc circuits associated with the relay. The binary inputs
will be less likely to mal-operate if they:
1
Have both the positive and negative switched (double-pole switched).
2
Do not have extensive external wiring associated with them e.g. if the wiring is confined to the
relay room.
Where a binary input is both used to influence a control function (e.g. provide a tripping function) and it is
considered to be susceptible to mal-operation the external circuitry can be modified to provide immunity to such
disturbances, see figure 1.2-2.
5.1.3
AC Rejection
The default pick-up time delay of 20ms provides immunity to ac current for dc applications e.g. induced from cross
site wiring.
Binary inputs can be configured for intentional operation from an ac power supply by setting pickup and drop-off
timers for each binary input; 0ms PU and 25ms DO. If wiring to AC operate binary inputs is required to have a
total length of more than 10 metres, screened twisted pair cable should be used.
If additional pickup or drop-off time delays are required by the scheme logic, this functionality can be achieved by
programmable logic within the device.
Example.
An AC operated Binary input is required to inhibit the 27/59-1 protection element with 100ms minimum pickup
delay and 200ms minimum drop-off delay.
1) Set Binary Input 1 for AC operation:
Содержание 7SR158 Argus
Страница 1: ...Answers for energy 7SR158 Argus Voltage and Frequency Relay Reyrolle Protection Devices ...
Страница 2: ......
Страница 4: ...7SR158 Argus Contents ...
Страница 10: ...Chapter 1 7SR158 Description of Operation Chapter 1 Page 6 of 38 2014 Siemens Protection Devices Limited ...
Страница 44: ...Chapter 2 7SR158 Technical Manual Chapter 2 Page 2 of 16 2013 Siemens Protection Devices Limited ...
Страница 46: ...Chapter 2 7SR158 Technical Manual Chapter 2 Page 4 of 16 2013 Siemens Protection Devices Limited ...
Страница 60: ...Chapter 3 7SR158 Performance Specification Chapter 3 Page 2 of 24 2013 Siemens Protection Devices Limited ...
Страница 62: ...Chapter 3 7SR158 Performance Specification Chapter 3 Page 4 of 24 2013 Siemens Protection Devices Limited ...
Страница 82: ...Chapter 3 7SR158 Performance Specification Chapter 3 Page 24 of 24 2013 Siemens Protection Devices Limited ...
Страница 84: ...Chapter 4 7SR158 Data Communications Chapter 4 Page 2 of 66 2013 Siemens Protection Devices Limited ...
Страница 88: ...Chapter 4 7SR158 Data Communications Chapter 4 Page 6 of 66 2013 Siemens Protection Devices Limited ...
Страница 102: ...Chapter 4 7SR158 Data Communications Chapter 4 Page 20 of 66 2013 Siemens Protection Devices Limited ...
Страница 114: ...Chapter 4 7SR158 Data Communications Chapter 4 Page 32 of 66 2013 Siemens Protection Devices Limited ...
Страница 138: ...Chapter 4 7SR158 Data Communications Chapter 4 Page 56 of 66 2013 Siemens Protection Devices Limited ...
Страница 140: ...Chapter 4 7SR158 Data Communications Chapter 4 Page 58 of 66 2013 Siemens Protection Devices Limited ...
Страница 150: ...Chapter 5 7SR158 Installation Guide Chapter 5 Page 2 of 14 2013 Siemens Protection Devices Limited ...
Страница 152: ...Chapter 5 7SR158 Installation Guide Chapter 5 Page 4 of 14 2013 Siemens Protection Devices Limited ...
Страница 164: ...Chapter 6 7SR158 Commissioning Maintenance Guide Chapter 6 Page 2 of 24 2013 Siemens Protection Devices Limited ...
Страница 188: ...Chapter 7 7SR158 Applications Guide Chapter 7 Page 2 of 24 2014 Siemens Protection Devices Limited ...
Страница 211: ......