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Installation Guide
20 | CFW-11
EN
GL
IS
H
APPENDIX 1 – TECHNICAL SPECIFICATIONS
Table A.1:
Technical specifications of the sizes A to D (200... 240 V / 380... 480 V)
M
o
de
l
Frame Size
Number of Power Phases
U
se w
it
h N
o
rm
al D
u
ty (
N
D
) C
yc
le
U
se w
it
h H
ea
vy D
u
ty (
H
D
) C
yc
le
Fuse [A] According to the
IEC European Standard
Fuse I²t [A²s] @ 25 ºc
Surrounding Air
Temperature [ºC (ºF)]
(1)
Dynamic Braking
Weight
[kg (lb)]
A
va
ila
b
ili
ty o
f O
p
tio
n K
its t
ha
t C
an b
e
In
te
g
ra
te
d i
nt
o t
he P
ro
d
uc
t (
re
fe
r t
o
th
e s
m
ar
t c
od
e i
n t
he u
se
r'
s m
an
ua
l
av
ai
la
b
le f
or d
ow
nl
oa
d o
n t
he w
eb
si
te
:
w
w
w
.w
eg
.n
et
)
R
ate
d
O
ut
p
ut
C
ur
en
t
[Arm
s]
O
ve
rl
o
ad
C
u
rr
en
t
[Arm
s]
Rated Carrier
Frequency [kHz]
Maximum Motor
(2)
[HP/kW]
Rated Input
Current [Arms]
D
is
si
p
at
ed
Powe
r
[W
]
R
ate
d
O
ut
p
ut
C
ur
re
nt
(1)
[Arm
s]
O
ve
rl
o
ad
C
u
rr
en
t
[Arm
s]
Rated Carrier
Frequency [kHz]
Maximum Motor
(2)
[HP/kW]
Rated Input
Current [Arms]
D
is
si
p
at
ed
Powe
r
[W
]
Cabinet
Enclosure
RFI Filter
Safety Stop
24 Vdc External
Control Power
Supply
1
m
in
3 s
S
ur
fac
e
M
ou
nti
ng
Fl
an
ge
M
ou
nti
ng
1 m
in
3 s
S
ur
fac
e
M
ou
nti
ng
Fl
an
ge
M
ou
nti
ng
IP2X/
Nema1
IP55
Models with 200... 240 V Power Supply
C
FW
11 0
0
06 B 2
A
(I
P
21/
N
em
a1)
an
d B
(IP5
5)
1ø
/ 3
ø
6.0
6.
60
9.
00
5
1.
5/
1.
1
12
.3
/6
.0
(3
)
13
0
25
5.0
7.
50
10
.0
5
1.
5/
1.
1
10.
3/
5.
0
(3
)
12
0
25
20
42
0
-10 ... 50 °C for inverters with degree of protection IP2X or NEMA1,
and -10 ºC...40 ºC for inverters with degree of protection IP55
Built-in
5.
7/
12
.6
17
/3
7.
5
N
em
a1
(c
on
d
ui
t k
it f
or
fr
ame
A - 1
04
13
63
5) a
nd
IP5
5
Ye
s
Ye
s
Ye
s
C
FW
11 0
00
6 S 2 O F
A
1ø
6.0
6.
60
9.
00
5
1.
5/
1.
1
12
.3
13
0
25
5.0
7.
50
10
.0
5
1.
5/
1.
1
10
.3
12
0
25
20
42
0
5.
7/
12
.6
17
/3
7.
5
B
ui
lt-
in
C
FW
11 0
0
07 T 2
3ø
7.
0
7.
7
10
.5
5
2/
1.
5
7.
0
14
0
25
5.
5
8.
25
11
.0
5
1.
5/
1.
1
5.
5
12
0
25
20
42
0
5.
7/
12
.6
17
/3
7.
5
Ye
s
C
FW
11 0
0
07 B 2
1ø
/ 3
ø
7.
0
7.
7
10
.5
5
2/
1.
5
14
.4
/7.
0
(3
)
14
0
25
7.
0
10
.5
14
.0
5
2/
1.
5
14
.4
/7.
0
(3
)
14
0
25
20
42
0
6.1
/1
3.
4
17
/3
7.
5
B
ui
lt-
in
C
FW
11 0
00
7 S 2 O F
A
1ø
7.
0
7.
7
10
.5
5
2/
1.
5
14
.4
14
0
25
7.
0
10
.5
14
.0
5
2/
1.
5
14
.4
14
0
25
20
42
0
6.1
/1
3.
4
17
/3
7.
5
Ye
s
C
FW
11 0
01
0 T 2
3ø
10
11
.0
15
.0
5
3/
2.
2
10
.0
17
0
30
8.0
12
.0
16
.0
5
2/
1.
5
8.0
17
0
30
20
1000
5.
7/
12
.6
17
/3
7.
5
C
FW
11 0
01
0 S 2
1ø
10
11
.0
15
.0
5
3/
2.
2
20.
5
18
0
30
10
15
.0
20
.0
5
3/
2.
2
20.
5
14
0
25
20
42
0
6.1
/1
3.
4
17
/3
7.
5
C
FW
11 0
01
3 T 2
3ø
13
14
.3
19
.5
5
4/
3.0
13
.0
20
0
30
11
16.5
22.
0
5
3/
2.
2
11
.0
17
0
30
25
42
0
6.1
/1
3.
4
17
/3
7.
5
C
FW
11 0
01
6 T 2
3ø
16
17.
6
24
.0
5
5/
3.
7
16
.0
23
0
30
13
19
.5
26
.0
5
4/
3.0
13
.0
19
0
30
35
42
0
6.
3/
13
.9
17
/3
7.
5
C
FW
11 0
02
4 T 2
B
3ø
24
26
.4
36
.0
5
7.5
/5
.5
24
.0
31
0
50
20
30
.0
40
.0
5
6/4
.5
20
.0
25
0
40
40
1000
9.1
/2
0
17
/3
7.
5
N
em
a1
(c
on
d
ui
t k
it f
or
fr
ame
B - 1
04
13
63
8) a
nd
IP5
5
C
FW
11 0
02
8 T 2
3ø
28
30.
8
42.
0
5
10
/7.
5
28
.0
370
60
24
36
.0
48
.0
5
7.5
/5
.5
24
.0
29
0
40
50
1000
9.1
/2
0
17
/3
7.
5
C
FW
11 0
03
3 T 2
3ø
33.
5
36
.9
50.
3
5
12
.5
/9
.2
33.
5
43
0
60
28
42.
0
56
.0
5
10
/7.
5
28
.0
350
50
63
1000
9.1
/2
0
17
/3
7.
5
C
FW
11 0
04
5 T 2
C
3ø
45
49.
5
67.
5
5
15
/11
45
.0
59
0
90
36
54.
0
72.
0
5
12
.5
/9
.2
36
.0
450
70
80
275
0
15
.6
/3
4.
4
30
/6
6.
2
N
em
a1
(c
on
d
ui
t k
it f
or
fr
ame
C - 1
04
13
64
0) a
nd
IP5
5
C
FW
11 0
05
4 T 2
3ø
54
59
.4
81.
0
5
20/
15
54.
0
68
0
10
0
45
67.
5
90
.0
5
15
/11
45
.0
54
0
80
80
275
0
16
.0
/3
5.
3
30
/6
6.
2
C
FW
11 0
07
0 T 2
3ø
70
77.
0
10
5
5
25
/18
.5
70
.0
90
0
14
0
56
84.
0
11
2
5
20/
15
56
.0
68
0
10
0
10
0
275
0
17
.9
/3
9.
5
30
/6
6.
2
C
FW
11 0
08
6 T 2
D
3ø
86
94.
6
12
9
5
30
/2
2
86
.0
970
15
0
70
10
5
14
0
5
25
/18
.5
70
.0
74
0
11
0
12
5
315
0
29.
5/6
5.
1
49
/1
08
IP
21
(IP
21 k
it f
or f
ra
m
e D
-
10
52
52
77
) a
nd
IP
55
C
FW
11 0
10
5 T 2
3ø
10
5
11
6
15
8
5
40
/3
0
10
5.
0
12
0
0
18
0
86
12
9
17
2
5
30
/2
2
86
.0
920
14
0
12
5
315
0
31
.4
/6
9.
2
49
/1
08
Models with 380... 480 V Power Supply
C
FW
11 0
0
03 T 4
A
(I
P
21/
N
em
a1)
an
d B
(IP5
5)
3ø
3.
6
3.9
6
5.4
0
5
2/
1.
5
3.
6
13
0
25
3.
6
5.4
0
7.
20
5
2/
1.
5
3.
6
11
0
25
20
19
0
-10 ... 50 °C for inverters with degree of protection
IP2X or NEMA1, and -10 ºC...40 ºC for inverters
with degree of protection IP55
Built-in
5.
7/
12
.6
17
/3
7.
5
N
em
a1
(c
on
d
ui
t k
it f
or
fr
ame
A - 1
04
13
63
5) a
nd
IP5
5
Ye
s
Ye
s
Ye
s
C
FW
11 0
0
05 T 4
3ø
5.0
5.
50
7.
50
5
3/
2.
2
5.0
14
0
25
5.0
7.
50
10
.0
5
3/
2.
2
5.0
14
0
25
20
19
0
5.
9/
13
17
/3
7.
5
C
FW
11 0
0
07 T 4
3ø
7.
0
7.
7
10
.5
5
4/3
7.
0
18
0
30
5.
5
8.
25
11
.0
5
3/
2.
2
5.
5
14
0
25
20
19
0
5.
9/
13
17
/3
7.
5
C
FW
11 0
01
0 T 4
3ø
10
11
.0
15
.0
5
6/4
.5
10
.0
220
30
10
15
.0
20
.0
5
6/4
.5
10
.0
20
0
30
20
49
5
6.1
/1
3.
4
17
/3
7.
5
C
FW
11 0
01
3 T 4
3ø
13
.5
14
.9
20.
3
5
7.5
/5
.5
13
.5
28
0
40
11
16.5
22.
0
5
6/4
.5
11
.0
220
30
25
49
5
6.
3/
13
.9
17
/3
7.
5
C
FW
11 0
01
7 T 4
B
3ø
17
18
.7
25
.5
5
10
/7.
5
17.
0
36
0
50
13
.5
20.
3
27.
0
5
7.5
/5
.5
13
.5
270
40
35
49
5
9.1
/2
0
17
/3
7.
5
N
em
a1
(c
on
d
ui
t k
it f
or
fr
ame
B - 1
04
13
63
8) a
nd
IP5
5
C
FW
11 0
02
4 T 4
3ø
24
26
.4
36
.0
5
15
/11
24
.0
49
0
70
19
28
.5
38
.0
5
10
/7.
5
19
.0
36
0
50
40
50
0
9.
7/
21
.4
17
/3
7.
5
C
FW
11 0
03
1 T 4
3ø
31
34
.1
46.5
5
20/
15
31.
0
56
0
80
25
37.
5
50
.0
5
15
/11
25
.0
43
0
60
50
12
50
10
.4
/2
2.
9
17
/3
7.
5
C
FW
11 0
03
8 T 4
C
3ø
38
41
.8
57.
0
5
25
/18
.5
38
.0
71
0
11
0
33
49.
5
66
.0
5
20/
15
33
.0
59
0
90
63
12
50
16.
4/
36.
2
30
/6
6.
2
N
em
a1
(c
on
d
ui
t k
it f
or
fr
ame
C - 1
04
13
64
0) a
nd
IP5
5
C
FW
11 0
04
5 T 4
3ø
45
49.
5
67.
5
5
30
/2
2
45
.0
81
0
12
0
38
57.
0
76
.0
5
25
/18
.5
38
.0
650
10
0
80
21
0
0
19
.6
/4
3.
2
30
/6
6.
2
C
FW
11 0
05
8 T 4
3ø
58
.5
64.
4
87.
8
5
40
/3
0
58
.5
10
50
16
0
47
70
.5
94.
0
5
30
/2
2
47.
0
80
0
12
0
10
0
21
0
0
20.
5/
45.
2
30
/6
6.
2
C
FW
11 0
07
0 T 4
D
3ø
70
.5
77.
6
10
6
5
50
/37
70
.5
12
80
19
0
61
91.
5
12
2
5
40
/3
0
61.
0
10
50
16
0
10
0
21
0
0
31
.1
/6
8.
6
49
/1
08
IP
21
(IP
21 k
it f
or f
ra
m
e D
-
10
52
52
77
) a
nd
IP
55
C
FW
11 0
08
8 T 4
3ø
88
96.
8
13
2
5
60
/4
5
88
.0
14
80
220
73
11
0
14
6
5
50
/37
73
.0
11
70
18
0
12
5
315
0
32
.6
/7
1.
8
49
/1
08
(1)
S
te
ad
y s
ta
te r
at
ed c
ur
re
nt i
n t
he f
ol
lo
w
in
g c
on
d
iti
on
s: e
nt
er - I
nd
ic
at
ed s
w
itc
hi
ng f
re
q
ue
nc
y. F
or o
p
er
at
io
n w
ith s
w
itc
hi
ng f
re
q
ue
nc
ie
s o
f 1
0 k
H
z, i
t i
s n
ec
es
sa
ry a d
er
at
in
g o
f t
he r
at
ed o
ut
p
ut c
ur
re
nt.
E
nt
er - A
m
b
ie
nt t
em
p
er
at
ur
e a
ro
un
d t
he i
nv
er
te
r: -
10 °
C t
o 5
0 °
C f
or i
nv
er
te
rs w
ith
d
eg
re
e o
f p
ro
te
ct
io
n I
P
2X
/N
em
a1 a
nd -
10 º
C t
o 4
0 º
C f
or i
nv
er
te
rs w
ith d
eg
re
e o
f p
ro
te
ct
io
n I
P
55
. I
n o
rd
er t
o o
p
er
at
e t
he i
nv
er
te
r i
n e
nv
iro
nm
en
ts w
ith a h
ig
he
r a
m
b
ie
nt t
em
p
er
at
ur
e a
ro
un
d t
he i
nv
er
te
r, r
ef
er t
o t
he u
se
r's m
an
ua
l a
va
ila
b
le f
or d
ow
nl
oa
d o
n:
w
w
w
.w
eg
.n
et
. E
nt
er - A
ir
re
la
tiv
e h
um
id
ity
: 5 % t
o 9
5 % n
on
-c
on
d
en
si
ng
. E
nt
er - A
lti
tu
d
e: 1
0
0
0 m
; a
b
ov
e 1
0
0
0 m u
p t
o 4
0
0
0 m
, o
ut
p
ut c
ur
re
nt d
er
at
in
g o
f 1
% f
or e
ac
h 1
0
0 m a
b
ov
e 1
0
0
0 m
. - F
ro
m 2
0
0
0 m t
o 4
0
0
0 m - 1
% d
er
at
in
g o
f t
he m
ax
im
um v
ol
ta
ge (
24
0 V f
or m
od
el
s 2
20
...
24
0 V a
nd 4
80 V f
or m
od
el
s
38
0...
48
0 V
) f
or e
ac
h 1
0
0 m a
b
ov
e 2
0
0
0 m
. E
nt
er
- N
ot
e t
ha
t t
he d
er
at
in
g s
p
ec
ifi
ed i
n t
he i
te
m
s a
b
ov
e a
ls
o a
p
p
ly t
o t
he d
yn
am
ic b
ra
ki
ng I
G
B
T (
ef
fe
ct
iv
e b
ra
ki
ng c
ur
re
nt (
Ie
ffe
ct
iv
e) c
ol
um
n)
. E
nt
er
- E
nv
iro
nm
en
t w
ith p
ol
lu
tio
n d
eg
re
e 2 (
as p
er E
N
50
17
8 a
nd U
L 5
08
C
).
(2
)
T
he m
ot
or o
ut
p
ut
s a
re o
nl
y r
ef
er
en
ce v
al
ue
s f
or W
E
G 4
-p
ol
e m
ot
or
s o
f 2
20 V o
r 4
40 V
. T
he p
ro
p
er s
iz
in
g o
f t
he i
nv
er
te
r m
us
t b
e d
on
e a
cc
or
d
in
g t
o t
he r
at
ed c
ur
re
nt
s o
f t
he m
ot
or
s u
se
d.
(3
)
O
n t
he m
od
el
s w
ith s
in
gl
e-
p
ha
se o
r t
hr
ee
-p
ha
se p
ow
er s
up
p
ly
, t
he i
np
ut c
ur
re
nt i
s p
re
se
nt
ed f
or b
ot
h c
as
es
. T
he i
np
ut c
ur
re
nt f
or s
in
gl
e-
p
ha
se p
ow
er s
up
p
ly i
s p
re
se
nt
ed f
irs
t.