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INVT Goodrive 35 Series - Reactors

INVT Goodrive 35 Series
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Goodrive35 inverters Appendix D
330
Model
Breaker (A)
Fuse (A)
The rated working
current of the
contactor(A)
GD35-022G-6-C1/D1/H1
105
63
50
GD35-030G-6-C1/D1/H1
105
63
50
GD35-037G-6-C1/D1/H1
114
100
63
GD35-045G-6-C1/D1/H1
138
100
80
GD35-055G-6-C1/D1/H1
186
125
95
GD35-075G-6-C1/D1/H1
270
200
135
GD35-090G-6-C1/D1/H1
270
200
135
GD35-110G-6-C1/D1/H1
315
200
170
GD35-132G-6-C1/D1/H1
420
250
230
GD35-160G-6-C1/D1/H1
480
315
280
GD35-185G-6-C1/D1/H1
480
315
280
GD35-200G-6-C1/D1/H1
630
400
315
GD35-220G-6-C1/D1/H1
720
400
380
GD35-250G-6-C1/D1/H1
720
400
380
GD35-280G-6-C1/D1/H1
870
630
450
GD35-315G-6-C1/D1/H1
1110
630
580
GD35-350G-6-C1/D1/H1
1110
630
580
GD35-400G-6-C1/D1/H1
1230
800
630
GD35-500G-6-C1/D1/H1
1500
1000
780
GD35-560G-6-C1/D1/H1
1740
1200
900
GD35-630G-6-C1/D1/H1
2010
1380
1035
Note: the specifications can be adjusted according to the actual working, but it can not be
less than the designated values.
D.6 Reactors
Transient high current in the input power circuit may cause damage to the rectifying parts. It
is appropriate to use AC reactor in the input side for the avoidance of high-voltage input of
the power supply and improvement of the power factors.
If the distance between the inverter and the motor is longer than 50m, frequent overcurrent
protection may occur to the inverter because of high leakage current caused by parasitic
capacitance effects from the long cables to the ground. In order to avoid the damage of the
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