16
F
R
CC
.
PC
.007.
B
8.02
A
pplication guidelines
Electrical data, connections and wiring
Three phase electrical
characteristics
T
he
M
CC
is
the
c
u
rrent
at
which
the
motor
protection
trips
u
nder
maxim
u
m
l
oad
and
l
ow
v
o
l
tage
conditions.
T
his
M
CC v
a
lu
e
is
the
maxim
u
m
at
which
the
compressor
can
be
operated
in
transient
conditions
and
o
u
t
o
f
the
app
l
ication
en
v
e
l
ope.
Abo
v
e
this
v
a
lu
e
,
the
interna
l
motor
protection
or
externa
l
e
l
ectronic
mod
ul
e
wi
ll
c
u
t
-
o
u
t
the
compressor
to
protect
the
motor.
L
ocked
Rotor
Amp
v
a
lu
e
is
the
higher
a
v
erage
c
u
rrent
as
meas
u
red
on
mechanica
lly
b
l
ocked
compressor
tested
u
nder
nomina
l v
o
l
tage.
T
he
L
RA
v
a
lu
e
can
be
u
sed
as
ro
u
gh
estimation
f
or
the
starting
c
u
rrent.
H
owe
v
er
in
most
cases
,
the
rea
l
starting
c
u
rrent
wi
ll
be
l
ower.
A
so
f
t
starter
can
be
app
l
ied
to
red
u
ce
starting
c
u
rrent.
MCC
(
M
aximum
C
ontinuous
C
urrent)
L
RA
(Locked
R
otor
A
mp)
C
ompressor
mode
l
L
RA
M
CC
Max.
operating
c
u
rrent
W
inding
resistance
A
A
A
Ω
Mo
to
r
v
o
l
tage
code
3
200
-
230
V /
3ph
/ 6
0
Hz
S
H
090
203
4
3
38
0.39
S
H1
05
2
6
7
46
4
5
0.27
S
H1
20
2
6
7
61
4
8
0.27
S
H14
0
30
4
64
5
6
0.2
4
S
H161
3
1
5
6
9
64
0.22
S
H1
8
4
35
1
75
7
1
0.22
S
H1
80
320
78
7
1
0.
1
9
S
H
2
4
0
4
85
1
05
1
03
0.
16
S
H
295
5
6
0
1
28
11
2
0.
1
3
S
H
300
5
6
0
1
32
1
25
0.
1
3
Mo
to
r
v
o
l
tage
code
4
380
-4
00
V
/
3ph
/
50
H
z
*
46
0
V /
3ph
/ 6
0h
Z
S
H
090
98
20
1
9
1
.
4
7
S
H1
05
14
2
25
22
1
.05
S
H1
20
14
2
29
2
4
1
.05
S
H14
0
14
7
30
28
0.92
S
H161
1
58
33
3
1
0.83
S
H1
8
4
1
97
38.
6
3
6
0.83
S
H1
80
1
70
38
3
4
0.8
S
H
2
4
0
2
1
5
5
1
4
9
0.
6
2
S
H
295
2
6
0
6
2
5
6
0.52
S
H
300
2
6
0
6
5
58
0.
4
8
S
H
380
320
79
72
0.
4
2
S
H4
85
41
3
90
89
0.23
Mo
to
r
v
o
l
tage
code
6
230
V
/
3ph
/
50
Hz
S
H
090
1
57
4
0
32
0.5
S
H1
05
223
4
3
38
0.35
S
H1
20
223
5
1
41
0.35
S
H14
0
23
6
53
4
9
0.3
1
S
H161
23
6
57
53
0.3
1
S
H1
8
4
23
6
57
5
6
0.3
1
Mo
to
r
v
o
l
tage
code
7
500
V
/
3ph
/
50
Hz
575
V
/
3
ph
/ 6
0
Hz
S
H
090
8
4
1
8
14
2.3
4
S
H1
05
1
03
22
1
7
1
.57
S
H1
20
1
03
2
4
1
9
1
.57
S
H14
0
1
22
2
6
22
1
.38
S
H161
1
3
6
29
2
4
1
.32
S
H1
8
4
1
35
35
28
1
.32
S
H1
80
1
35
30
28
1
.20
S
H
2
4
0
1
75
41
38
0.9
4
S
H
295
2
1
0
4
5
44
0.82
S
H
300
2
1
0
53
4
8
0.82
S
H
380
235
6
0
55
0.5
6
Mo
to
r
v
o
l
tage
code
9
380
V
/
3ph
/ 6
0
Hz
S
H
090
1
2
4
2
6
23
1
.05
S
H1
05
16
0
30
2
6
0.72
S
H1
20
16
0
35
29
0.72
S
H14
0
16
8
37
33
0.
6
2
S
H161
1
77
41
37
0.57
S
H1
8
4
239
5
1
41
0.57
S
H1
80
2
1
0
46
44
0.52
S
H
2
4
0
2
6
0
6
0
58
0.
4
2
S
H
295
3
1
0
72
6
9
0.3
6
S
H
300
3
1
0
85
72
0.3
6
S
H
380
3
6
0
90
85
0.2
4
S
H4
85
4
9
1
111
1
0
6
0.
16
*
380
-41
5
V/
3ph
/
50
Hz f
or
S
H
295
and
S
H4
85