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2.8
SEL-421 Relay
Instruction Manual
Date Code 20171021
Installation
Shared Configuration Attributes
The recognition times listed in
are only valid when:
➤
The ac signal applied is at the same frequency as the power system.
➤
The signal is within the ac threshold pickup ranges defined in
Optoisolated (Use With AC or DC Signals) on page 1.15
.
➤
The signal contains no dc offset.
The SEL-421 samples the optoisolated inputs at 2 kHz (see
page 9.1 in the SEL-400 Series Relays Instruction Manual
).
Control Outputs
I/O control outputs from the relay include standard outputs, hybrid (high-current
interrupting) outputs, and high-speed, high-current interrupting outputs. High-
speed, high-current interrupting outputs are available only on the optional INT4,
INT5, or INT8 I/O interface boards. A metal oxide varistor (MOV) protects
against excess voltage transients for each contact. Each output is individually iso-
lated, except Form C outputs, which share a common connection between the NC
(normally closed) and NO (normally open) contacts.
The relay updates control outputs eight times per cycle. Updating of relay control
outputs does not occur when the relay is disabled. When the relay is reenabled,
the control outputs assume the state that reflects the present protection process-
ing.
Standard Control Outputs
NOTE:
You can use ac or dc circuits
with standard control outputs.
The standard control outputs are “dry” Form A contacts rated for tripping duty.
Ratings for standard outputs are 30 A make, 6 A continuous, and 0.5 A or less
break (depending on circuit voltage). Standard contact outputs have a maximum
voltage rating of 250 Vac/330 Vdc. Maximum break time is 6
s with a resistive
load. The maximum pickup time for the standard control outputs is 6 ms.
shows a representative connection for a Form A standard control out-
put on the main board I/O terminals.
See
for complete standard control output specifications.
Hybrid (High-Current Interrupting) Control Outputs
The hybrid (high-current interrupting) control outputs are polarity-dependent and
are capable of interrupting high-current, inductive loads. Hybrid control outputs
use an Insulated Gate Bipolar Junction Transistor (IGBT) in parallel with a
Figure 2.4
Standard Control Output Connection
OUT04
O7
O8
CAUTION
Equipment damage can result from
connecting ac circuits to Hybrid
(high-current interrupting) control
outputs. Do not connect ac circuits to
Hybrid control outputs. Use only dc
circuits with Hybrid control outputs.
Содержание SEL-421-4
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