Chapter 9 Options
137
Ch
ap
ter 9
11 ACL-0120-EISCL-EM12
45
120
10.44
2.00%
0.12
120/92/8.5*20
12 ACL-0150-EISH-EM11B
55
150
14.8
2.00%
0.095 182/76/11*18
14 ACL-0200-EISH-E80UB
75
200
19.2
2.00%
0.07
182/96/11*18
15 ACL-0250-EISH-E65UB
110
250
22.1
2.00%
0.056 182/96/11*18
16 ACL-0290-EISH-E50UB
132
290
28.3
2.00%
0.048 214/100/11*18
17 ACL-0330-EISH-E50UB
160
330
28.3
2.00%
0.042 214/100/11*18
18 ACL-0390-EISH-E44UB
185
390
31.8
2.00%
0.036 243/112/12*20
19 ACL-0490-EISH-E35UB
220
490
43.6
2.00%
0.028 243/122/12*20
20 ACL-0530-EISH-E35UB
240
530
43.6
2.00%
0.026 243/122/12*20
21 ACL-0600-EISH-E25UB
280
600
52
2.00%
0.023 243/137/12*20
22 ACL-0660-EISH-E25UB
300
660
52
2.00%
0.021 243/137/12*20
23 ACL-0800-EISH-E25UB
380
800
68.5
2.00%
0.0175 260/175/12*20
24 ACL-1000-EISH-E14UB
450
1000
68.5
2.00%
0.014 260/175/12*20
9-3.AC output reactor
Whether to configure AC output reactor on the output side of the frequency inverter can be
determined according to the specific situation. The transmission line between the converter and the
motor should not be too long, the cable is too long, and the larger the distribution capacitance, it is
easy to produce the higher harmonic current.
When the connection wire from the inverter to the motor is longer, according to following form,
it is used to inhibit over-current caused due to the distributed capacitance. Meanwhile, it can also
inhibit the radio interference of the inverter.
Frequency Inverter
Power
(
kW
)
Rate Voltage
(
V
)
The minimum length of cable
length when selecting the output
reactor.
(
m
)
4
200
~
500
50
5.5
200
~
500
70
7.5
200
~
500
100
11
200
~
500
110
15
200
~
500
125
18.5
200
~
500
135
22
200
~
500
150
≥30
280
~
690
150
9-3-1.AC output reactor
Item
No.
Model
Power
rating
(kW)
Rated
current
(A)
N.W.
(kg)
Voltage
reduction
(V)
Inductance
(mH)
Installation
dimension
a/b/d(mm)
380V voltage series