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ECSW3LABT 数据表(PDF) 2 Page - Littelfuse

部件名 ECSW3LABT
功能描述  Current Monitoring Relays and Transducers
PDF  3 Pages
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制造商  LITTELFUSE [Littelfuse]
网页  http://www.littelfuse.com
标志 LITTELFUSE - Littelfuse

ECSW3LABT 数据表(HTML) 2 Page - Littelfuse

  ECSW3LABT Datasheet HTML 1Page - Littelfuse ECSW3LABT Datasheet HTML 2Page - Littelfuse ECSW3LABT Datasheet HTML 3Page - Littelfuse  
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© 2016 Littelfuse Protection Relays & Controls
www.littelfuse.com/
Rev: 1-A-062716
Protection Relays
Current Monitoring Relays and Transducers
www.littelfuse.com/ecsw
ECSW SERIES
trip delay, the relay transfers to fault condition state. If the
current returns to normal levels (inside the window) during the
trip delay, the red LED goes OFF, the trip delay is reset, and the
output remains in the normal condition.
Reset: Remove input voltage or open latch switch. If zero
current detection is selected, the unit will reset as soon as zero
current is detected.
Operation With Zero Current Detection Enabled: If the
current decreases to zero within the trip delay period, then
zero current is viewed as an acceptable current level. The unit’s
output remains in its normal operating state. This allows the
monitored load to cycle ON and OFF without nuisance tripping
the ECSW. Zero current is defined as current flow of less than
250 milliamp-turns.
Note: When zero current detect is selected, the latching
operation of switch SW2 is canceled; the output will not latch
after a fault trip.
Notes on Operation
1. There is no hysteresis on the trip points. The overcurrent
and undercurrent trip points should be adjusted to provide
adequate protection against short cycling.
2. If the upper setpoint is set below the lower setpoint, both
red LED’s will glow indicating a setting error.
3. If zero current detection is selected (SW2 ON), and the
system is wired to disconnect the monitored load, the
system may short cycle. After the unit trips, the load de-
energizes, and zero current is detected. The ECSW resets,
and the load energizes again immediately and may be
short cycled.
4. The sensing delay on start up only occurs when input voltage
is applied. When zero current detection is selected, the trip
delay must be longer than the duration of the inrush current
or the unit will trip on the inrush current.
Typical Pump or Fan Protection Circuit Operation
Window Current Sensing: With the ECSW connected as
shown in the diagram, a load may be monitored and controlled
for over and undercurrent. The ECSW Series’ on board CT (CS)
may be placed on the line or load side of the contactor. The
ECSW selection switches are set for zero current sensing (see
Selector Switch SW2) and the output selection is normally de-
energized (see Selector Switch SW3). The input voltage (V) is
applied to the ECSW continually. As the control switch (FSW) is
closed, the input voltage (V) is applied to the motor contactor
coil (MCC), and the motor (M) energizes. As long as the current
remains below the overcurrent and above the undercurrent
trip points, the ECSW’s output contacts remain de-energized.
If the load current should rise above or fall below a trip point,
for the full trip delay, the normally open (NO) contact will
close, energizing the control relay (CR) coil. The CR normally
closed contact (CR1) opens and the MCC de-energizes and
CR latches on through its normally open contacts (CR2). Reset
is accomplished by momentarily opening the normally closed
reset switch (RSW).
Note: If the current falls to zero within the trip delay, the ECSW
remains de-energized. The sensing delay on startup occurs
when input voltage is applied therefore trip delay must be longer
than the duration of the motor’s inrush current. The external
latching relay CR2 is required in this system to prevent rapid
cycling. A timer can be added to provide an automatic reset.
Selector Switch
Not Used
Latched
Zero I
Output - Normally Energized
ON
OFF
SW1
SW2
SW3
Mode Selection Switches
SW1 = Latched or Auto reset selector
OFF - Automatic reset after a fault
ON - Output relay latches after a fault trips the unit
SW2 = Zero current detection (below 250 mA)
OFF - Zero current detection disabled
ON - Zero current detection enabled
SW3 = Output during normal operation
OFF - Output relay de-energized
ON - Output relay energized



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