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K2CM-2L Datasheet(PDF) 13 Page - Omron Electronics LLC

Part # K2CM-2L
Description  Solid-state Relay Enables Choice of Three Operating Functions (Overcurrent, Openphase, and Reverse-phase)
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Manufacturer  OMRON [Omron Electronics LLC]
Direct Link  http://www.omron.com/index3.html
Logo OMRON - Omron Electronics LLC

K2CM-2L Datasheet(HTML) 13 Page - Omron Electronics LLC

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K2CM
13
■ Voltage Reverse-phase Detection Models
The operating characteristics listed in the table below are tested
using the circuit shown on the right. Decide the number of conductor
passes through the holes of the current transformer in accordance
with the operating current range of the Motor Protective Relay and by
referring to the current setting method described under Operation,
Setting, and Indication.
* Balance the currents between phases by adjusting variable resistor R1.
** If a current equal to 600% of the set current value cannot be attained by adjusting the voltage regulator, increase the number of conductor passes
through the holes of the current transformer.
Test item
Test procedure
Operating value
Operating time
Over-
current
Inverse type
1. Turn ON SW1.
2. Turn ON SW2 to operate auxiliary relay Y.
3. Gradually increase the current by adjusting the voltage
regulator. With inverse-type models, read the value of the
current when the overcurrent LED indicator blinks. With
instantaneous-type models, read the value when it lights
(continuously).*
4. Turn OFF SW1 and SW2.
1. Turn ON SW1 and SW2. Increase the current by adjusting
the voltage regulator to 600% of the set current value.
Turn OFF SW1 and SW2.**
2. Turn ON SW1.
3. Turn ON SW2 and read the position (i.e., time) of the
pointer of cycle counter CC when CC is stopped by the
operation of the K2CM. The read time is the operating time
for inverse-type models and the lock time of the instanta-
neous-type models.
4. Turn OFF the SW1 and SW2.
Instantaneous
type
1. Turn ON SW1 and SW2. Increase the current to 100% of
the set current value by adjusting the voltage regulator.
Then turn OFF SW1 and SW2.
2. Turn ON SW1 and SW2 again and wait 2 seconds mini-
mum.
3. Using the voltage regulator, abruptly increase the current
to 140% of the set current value. Confirm that the K2CM
performs the instantaneous operation.
4. Turn OFF SW1 and SW2.
Open-phase
1. Open (disconnect) any one of the input phases for the cur-
rent transformer.
2. Turn ON SW1 and SW2. Gradually increase the current by
adjusting the voltage regulator.
3. Confirm that the K2CM operates at a current no greater
than 85% of the set current value and that, at this current,
the trip indicator is orange and the open-phase LED indica-
tor lights.
4. Turn OFF SW1 and SW2.
1. Open (disconnect) any one of the input phases for the cur-
rent transformer.
2. Turn ON SW1 and SW2. Increase the currents of the other
two phases to 115% of the set current value by adjusting
the voltage regulator. Turn OFF SW1 and SW2 temporarily.
3. Turn ON SW1 and SW2 again. Read the position (i.e.,
time) of the pointer of cycle counter CC when CC is
stopped by the operation of the K2CM.
4. Turn OFF SW1 and SW2.
Reverse-phase
1. Change the phase sequence to reverse-phase by switch-
ing the U and W input terminals of the K2CM as shown by
the dotted lines.
2. Turn ON SW1 and SW2 and confirm that the K2CM oper-
ates.
3. Add a three-phase voltage regulator to the U, V, and W ter-
minal inputs.
4. Adjust the voltage regulator and confirm that the K2CM
operates at less than 80% of the rated supply voltage.
1. Put the voltage input in the reverse-phase state.
2. Turn ON SW1 and SW2 and read the position of the
pointer of cycle counter CC when CC is stopped.
3. Turn OFF SW2.
R1
R1
Ta Tc Tb UV
W
K2CM Motor Protective Relay
R2
3
φSD: Three-phase voltage regulator (5 to 15 A)
A:
AC ammeter (5 A)
V:
AC voltmeter (300 V)
CC:
Cycle counter
Y:
Auxiliary relay (15 A)
R1:
Variable resistor (50
Ω, 400 W + 400 W)
R2:
Fixed resistor (50
Ω, 400 W + 400 W)
SW1: Knife switch (3-phase)
SW2: Toggle switch
Y
UV
W
200 V
50/60 Hz
(3-phase)
100 VAC
50/60 Hz
SW1
SW2
CC
3
φSD
100 V
C
±
Minimum set time is 2 s.


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