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GM1851-S08-R Datasheet(PDF) 7 Page - Unisonic Technologies

Part # GM1851-S08-R
Description  GROUND FAULT INTERRUPTER
PDF  10 Pages
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Manufacturer  UTC [Unisonic Technologies]
Direct Link  http://www.utc-ic.com
Logo UTC - Unisonic Technologies

GM1851-S08-R Datasheet(HTML) 7 Page - Unisonic Technologies

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GM1851
LINEAR INTEGRATED CIRCUIT
UNISONIC TECHNOLOGIES CO., LTD
7 of 10
www.unisonic.com.tw
QW-R122-007,B
UL943 specifies ≤25 ms average trip time under these conditions. Calculation of Ct based upon charging currents
due to normal fault only is as follows:
≤25 ms Specification
-3 ms GFI turn-on time (15k and 1μF)
-8 ms Potential loss of one half-cycle due to fault current sense of half-cycles only
-4 ms Time required to open a sluggish circuit breaker
≤10 ms Maximum integration time that could be allowed
8 ms Value of integration time that accommodates component tolerances and other variables
Ct=
1 × T
V
(5)
Where T=integration time
V=threshold voltage
I=average fault current into Ct
I =
120VAC(rms)
RB
×
RN
RG + RN
heavy fault
current generated
(swamps ITH)
portion of
fault current
shunted
around GFI
(6)
1 turn
1000 turns
1
2
0.91
××
current
division of
input sense
transformer
Ct charging
on half-
cycles only
rms to
average
conversion
×
therefore:
×
120
500
0.4
1.6+0.4
1
1000
××
1
2
0.91
×
× 0.0008
17.5
Ct =
Ct = 0.01μF
(7)
In practice, the actual value of C1 will have to be modified to include the effects of the neutral loop upon the net
charging current. The effect of neutral loop induced currents is difficult to quartile, but typically they sum with normal
fault currents, thus allowing a larger value of C1.
For UL943 requirements, 0.015μF has been found to be the best compromise between timing and noise.
For those GFI standards not requiring grounded neutral detection, a still larger value capacitor can be used and
better noise immunity obtained. The larger capacitor can be accommodated because RN and RG are not present,
allowing the full fault current, I, to enter the GFI.
In Figure 2, grounded neutral detection is accomplished by feeding the neutral coil with 120 Hz energy
continuously and allowing some of the energy to couple into the sense transformer during conditions of neutral fault.



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