DTMR3-TX
Doc. N°
MO-0377-ING
Copyright 2010
Data
01.04.2009
Rev.
0
Pag.
64
of
87
16.3
– Outputs Relay
The output relay are fully user programmable and controlled by any protection functions and by any
digital inputs.
0.R1
Programmable (R1)
Available in the main relay
0.R2
Programmable (R2)
0.R3
Programmable (R3)
0.R4
Programmable (R4)
0.R5
Programmable (R5)
0.R6
Programmable (R6)
1.R1
Programmable
Output Relays on
Expansion Board
1.R--
1.R14
2.R1
Programmable
Output Relays on
Expansion Board
2.R--
2.R14
16.4 -
“DO” Configuration
Any Output Relay can be programmed to be controlled (energized) by one or more of the following
functions or Digital Inputs:
SCDop
Scada open breaker command
SCDcl
Scada close breaker command
SCDop2
Scada open breaker 2 command (generic command)
SCDcl2
Scada close breaker 2 command (generic command)
SCDop3
Scada open breaker 3 command (generic command)
SCDcl3
Scada close breaker 3 command (generic command)
SCDop4
Scada open breaker 4 command (generic command)
SCDcl4
Scada close breaker 5 command (generic command)
1d>
R1d>
Start
first differential element
phase R
tR1d>
Trip
first differential element
phase R
S1d>
Start
first differential element
phase S
tS1d>
Trip
first differential element
phase S
T1d>
Start
first differential element
phase T
tT1d>
Trip
first differential element
phase T
2d>
R2d>
Start
second differenti element
phase R
tR2d>
Trip
second differential element
phase R
S2d>
Start
second differential element
phase S
tS2d>
Trip
second differential element
phase S
T2d>
Start
second differential element
phase T
tT2d>
Trip
second differential element
phase T
HLock
2HRL
Phase R
second harmonic lock
5HRL
Phase R
fifth harmonic lock
2HSL
Phase S
second harmonic lock
5HSL
Phase S
fifth harmonic lock
2HTL
Phase T
second harmonic lock
5HTL
Phase T
fifth harmonic lock
2HReduct
Second harmonic reduction level
5HReduct
Fifth harmonic reduction level
1I>
1I>
Start
first overcurrent element
side 1
t1I>
Trip
first overcurrent element
side 1
1I>>
1I>>
Start
first overcurrent element
side 2
t1I>>
Trip
first overcurrent element
side 2
2I>
2I>
Start
second overcurrent element
side 1
t2I>
Trip
second overcurrent element
side 1
2I>>
2I>>
Start
second overcurrent element
side 2
t2I>>
Trip
second overcurrent element
side 2