BE1-951
Application
8-15
SL-47:0,0
SL-62:0,0,0
SL-162:0,0,0
SL-79:1,VO8,/IN1,VO12,VO9
SL-81:0,0
SL-181:0,0
SL-281:0,0
SL-381:0,0
SL-481:0,0
SL-581:0,0
SL-BF:0,0,0
SL-GROUP:1,0,0,0,0,/0
SL-43:0
SL-143:0
SL-243:0
SL-343:0
SL-101:0
SL-VOA:0
SL-VO1:VO11
SL-VO2:79C
SL-VO3:0
SL-VO4:ALMMIN
SL-VO5:ALMMAJ
SL-VO6:0
SL-VO7:0
SL-VO8:VO11+IN3
SL-VO9:/IN2
SL-VO10:0
SL-VO11:50TPT+50TNT+50TQT+51PT+51NT+51QT
SL-VO12:51PPU+51NPU+51QPU
SL-VO13:0
SL-VO14:0
SL-VO15:0
OC-W-CTL LOGIC SCHEME
Logic scheme OC-W-CTL is intended for use on feeder breakers. This scheme provides overcurrent
protection, breaker failure protection, reclosing, and the control functions required for typical feeders in non-
directional overcurrent protection applications.
In OC-W-CTL, automatic reclosing uses a recluse initiate scheme and is initiated by a protective trip or by
an external recluse initiate (RI) contact.
The components of OC-W-CTL logic are summarized in Tables 8-9, 8-10, 8-11, and 8-12. A diagram of OC-
W-CTL logic is shown in Figure 8-5. Figure 8-6 shows a one-line drawing for the OC-W-CTL logic scheme.
Operation - Control
The virtual breaker control switch (101) is programmed to provide manual trip and close control of the
breaker. Manual breaker control can be achieved by using the front panel HMI or by entering ASCII
commands through the communication ports. Control functions of this logic scheme use both traditional
contact sensing inputs and virtual switches. Virtual switches that are not needed may simply go unused. The
contact sensing inputs can be freed up for other uses by utilizing the virtual switches for other control
functions.