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Normal
ove
rl
o
ad
110
%
for
1
min
u
te
Ad
ju
st
ab
le fr
eq
ue
nc
y dr
ive
Typi
cal Sh
aft
Outp
ut
[kW] at 40
0 V
P1
10
11
0
P1
32
132
P160
160
P200
200
P250
25
0
31
5
P400
400
P450
45
0
P5
00
500
P5
60
560
P6
30
630
P710
710
P8
00
80
0
P1
M0
1000
Typi
cal Sh
aft
Outp
ut
[H
P]
at 460
V
150
200
250
300
35
0
45
0
550
60
0
650
750
900
1000
120
0
1350
IP
00
D3
D3
D4
D4
D4
E2
E2
E2
F1/
F3
F1/
F3
F1/
F3
F1/
F3
F2
/F4
F2/
F4
IP 21 / Nema
1
D
1
D
1
D2
D2
D2
E1
E1
E1
F1/
F3
F1/
F3
F1/
F3
F1/
F3
F2
/F4
F2/
F4
IP
54 / Ne
ma 12
D1
D1
D2
D2
D2
E1
E1
E1
F1/
F3
F1/
F3
F1/
F3
F1/
F3
F2
/F4
F2/
F4
Ma
x.
in
pu
t c
u
rr
en
t
Co
nt
in
uo
us (
3 x
3
80–44
0
V)
[A]
20
4
251
304
381
46
3
59
0
733
78
7
857
964
10
90
1227
142
2
1675
Co
nt
in
uo
us (
3 x
4
41–48
0
V)
[A]
183
231
291
348
42
7
53
1
667
71
8
759
867
10
22
1129
134
4
1490
Max. p
re-fu
ses
1)
[A
]
30
0
350
400
500
63
0
70
0
900
90
0
1600
1600
20
00
2000
250
0
2500
En
vi
ro
nm
en
t:
Estim
ated po
wer
lo
ss at
400
V AC
at
r
at
ed m
ax.
lo
ad
[W]
4)
3234
37
82
4213
5119
58
93
679
0
8879
967
0
10647
12
338
13201
15436
18084
20358
Estim
ated po
wer
lo
ss at
460
V AC
at
r
at
ed m
ax.
lo
ad
[W]
4)
2947
36
65
406
3
4652
5634
60
82
8089
880
3
9414
11
006
12353
14041
17137
17752
W
ei
ght e
ncl
os
ure
IP00 [kg]
82
91
112
123
13
8
22
1
236
27
7
-
-
-
-
-
-
We
ig
ht
encl
osure
I
P 21
[kg
]
96
104
125
136
15
1
26
3
272
31
3
1004
1004
1004
1004
124
6
1246
W
ei
ght
en
cl
os
ure IP 54
[kg]
96
104
125
136
15
1
26
3
272
31
3
1299
1299
12
99
1299
154
1
1541
Eff
ici
ency
3)
0.
98
0.
98
0.
98
0.
98
0.
98
0.9
8
0.
98
0.9
8
0.9
8
0.
98
0.
98
0.9
8
0.
98
0.9
8
1)
For
ty
pe of fuse
see
se
ct
ion
Fuses
2)
Am
eri
ca
n
W
ire Gauge
3)
Me
asur
ed using
1
6
ft
[
5
m]
shi
eld
ed motor c
abl
es at rate
d
lo
ad
a
nd rat
ed fre
que
nc
y
4)
T
he
ty
pi
ca
l p
owe
r l
os
s i
s a
t n
orma
l lo
ad
co
nd
itio
ns
a
nd
ex
pe
ct
ed
to
b
e w
ith
in
+/
-15%
(to
le
ran
ce
rel
ate
s to v
arie
ty
in
v
olta
ge
and ca
bl
e
cond
iti
ons).
Va
lu
es
are
base
d
on a
ty
pic
al mot
or e
ffi
ci
en
cy
(
ef
f2
/e
ff3
borde
r l
ine
).
L
owe
r e
ffi
ci
en
cy
moto
rs wi
ll a
lso
add
to
the
po
we
r lo
ss
in
t
he
ad
ju
st
ab
le
f
req
ue
nc
y
dr
iv
e a
nd
v
ic
e v
er
sa
.
If t
he
switchi
ng fre
que
ncy is ra
is
ed fro
m
no
minal, the po
we
r losse
s
ma
y rise
signific
an
tly.
LCP an
d ty
pi
ca
l control card p
ow
er consumpti
on
s ar
e incl
uded
. Furt
her
opti
ons
and
custo
m
er
lo
ad
ma
y add
up to 3
0 W
to
th
e
losse
s. (Tho
ugh
typicall
y
onl
y 4 W
extra
fo
r
a
full
y lo
ad
ed
co
nt
ro
l card
o
r o
pti
ons fo
r
sl
ot
A or
slot
B, e
ach)
.
Althou
gh me
asure
m
en
ts
are
made
wi
th
stat
e-
of-
the
-a
rt e
qui
pment,
some
mea
sureme
nt inaccura
cy must
be
all
owed f
or (+/-
5%
).
VLT
®
AQUA Drive Design Guide
3 VLT AQUA Selection
MG.20.N5.22 - VLT
®
is a registered Danfoss trademark
3-9
3
Содержание vlt aqua
Страница 4: ...Contents VLT AQUA Drive Design Guide MG 20 N5 22 VLT is a registered Danfoss trademark...
Страница 168: ...5 How to Install VLT AQUA Drive Design Guide 5 50 MG 20 N5 22 VLT is a registered Danfoss trademark 5...
Страница 186: ...6 Application Examples VLT AQUA Drive Design Guide 6 10 MG 20 N5 22 VLT is a registered Danfoss trademark 6...