St: Short-Time Delay Short-Circuit Release (Short Time), S Tripping; Inst: Instantaneous Short-Circuit Release (Instantaneous), I-Tripping - Siemens SINOVA Manual

3wj air circuit breakers
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2.2.5.3

ST: Short-time delay short-circuit release (Short time), S tripping

With the electronic trip units, tripping caused by a short-circuit current I
t
.
sd
This enables selectivity with respect to short-circuit protection in switchgear with more than
one grading level.
Setting values for I
ETU350WJ, ETU360WJ
Setting values for t
ETU350WJ, ETU360WJ
1)
With the setting value t
instantaneous short-circuit protection with a variable response value that is lower than the
fixed response value I
Motor protection function
A special protection function for electromotive drives is activated with the Circuit Breaker
setting t
responding to the inrush peak of electric motors. At the same time, phase-failure protection is
activated and the time constant for the internal, arithmetic simulation of the warming and
cooling process is switched from plant protection to motor protection.
ETU350WJ and ETU360WJ:
When motor protection is active, the time-lag class is also set in such a way that, regardless of
the default setting t
means that it lies within the tolerance band of class 20 (6 < t
2.2.5.4

INST: Instantaneous short-circuit release (Instantaneous), I-tripping

Exceeding the setting value I
Setting values for I
ETU350WJ, ETU360WJ
3WJ Air Circuit breakers
Operating Instructions, 12/2022, L1V30828903001-01
sd
sd
The delay time 0.02 s is not a grading time.
In this setting, the motor protection function is activated.
= 0 s, the ETU350WJ and ETU360WJ electronic trip units can support
sd
.
i
=
(0.02 s). This prevents the short-time delay short-circuit release from
sd
= 10 s, the tripping time for overload protection is 11.2 s @ 7 x I
R
i
I
= (1.25 / 1.5 / 2 / 2.5 / 3 / 4 / 6 / 8 / 10 / 12) x I
sd
t
= 0 / 0.02(M)
/ 0.1 / 0.2 / 0.3 / 0.4 s
1)
sd
causes the Circuit Breaker to trip instantaneously.
i
I
≥ 20 x I
(fixed)
i
n
MAX = 50 kA
Description
2.2 Electronic components
can be delayed by
sd
n
≤ 20 s).
p
, which
R
51

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