16
COOLING PERFORMANCE DATA
GPC1330H41AA
M
O
D
E
L
: G
P
C
1
330
H
4
1A
*
E
X
P
A
ND
ED
P
E
RF
O
R
M
A
N
C
E
D
A
T
A
C
O
OL
IN
G
OP
E
R
A
T
IO
N
D
e
s
ig
n
S
u
bc
oo
li
ng,
1
2
±
3
°
F
@
t
h
e
l
iqui
d
a
c
c
e
s
s
f
it
ti
ng c
onne
c
ti
o
n
A
H
R
I 9
5
t
e
s
t c
o
ndi
ti
o
n
s
.
D
e
s
ig
n
S
u
p
e
rh
e
a
t 8
±
3
°
F
@
t
h
e
c
o
m
p
re
ss
o
r su
ct
io
n
acc
e
s
s f
it
ti
n
g
c
o
n
n
e
ct
io
n
.
O
u
td
oo
r A
m
bi
e
n
t Te
m
p
e
ra
tur
e
6
5
75
8
5
95
10
5
115
E
n
te
ri
n
g
In
d
o
o
r W
e
t
B
u
lb
T
e
m
p
e
ra
tu
re
ID
B
*
A
ir
fl
o
w
5
96
36
77
15
9
6
3
6
77
15
9
6
36
7
7
15
9
6
3
6
7
7
1
5
96
36
77
1
5
9
6
36
77
1
M
B
h
2
9
.2
29.
8
31.
9
3
4
.1
2
8.
5
2
9.
2
3
1.
1
33.
3
2
7
.9
2
8
.5
3
0.
4
3
2
.5
27.
2
2
7
.8
2
9.
7
3
1.
7
2
5.
8
2
6
.4
28.
2
3
0
.1
2
3
.9
2
4.
4
2
6
.1
27.
9
S
/T
1
.0
0
0
.9
2
0
.7
5
0
.5
6
1
.0
0
0
.9
6
0
.7
8
0
.5
8
1
.0
0
1
.0
0
0
.8
0
0
.6
0
1
.0
0
1
.0
0
0
.8
3
0
.6
2
1
.0
0
1
.0
0
0
.8
6
0
.6
4
1
.0
0
1
.0
0
0
.8
6
0
.6
5
D
e
lt
a
T
2
32
11
91
52
2
2
2
1
91
52
2
2
21
9
1
52
1
2
2
1
9
1
5
2
02
11
91
5
1
9
1
91
81
4
11
8
0
K
W
2
.10
2.
14
2.
21
2.
27
2
.2
5
2
.3
0
2
.37
2.
44
2.
3
9
2
.4
4
2
.5
1
2
.59
2.
50
2.
56
2
.6
4
2
.7
2
2
.6
0
2.
66
2.
74
2.
8
3
2
.6
9
2
.7
5
2.
8
4
2.
93
A
M
P
S
8
.9
9
.1
9.
3
9
.6
9.
5
9
.7
1
0
.0
10.
3
1
0
.2
1
0
.4
1
0.
7
1
1
.0
10.
8
1
1
.0
1
1.
3
1
1.
7
1
1.
4
1
1
.6
12.
0
1
2
.3
1
2
.0
1
2.
2
1
2
.6
13.
0
H
I P
R
23
6
2
5
4
2
6
9
2
80
265
28
5
3
0
1
3
1
4
3
0
2
324
343
35
7
3
4
3
37
0
390
407
38
6
4
1
6
4
3
9
4
5
8
4
2
7
459
48
5
5
0
6
LO
P
R
11
4
1
2
1
1
3
2
1
40
120
12
8
1
3
9
1
4
8
1
2
5
133
145
15
4
1
3
1
13
9
152
162
13
7
1
4
6
1
5
9
1
7
0
1
4
2
151
16
5
1
7
6
M
B
h
2
8
.4
29.
0
31.
0
3
3
.1
2
7.
7
2
8.
3
3
0.
2
32.
3
2
7
.0
2
7
.6
2
9.
5
3
1
.6
26.
4
2
7
.0
28
.8
3
0
.8
2
5
.1
25
.6
27.
4
2
9
.2
2
3
.2
2
3.
7
2
5
.3
27.
1
S
/T
0
.9
40
.8
80
.7
20
.5
40
.9
7
0
.9
1
0
.7
40
.5
61
.0
0
0
.9
4
0
.7
6
0
.5
71
.0
0
0
.9
7
0.
7
9
0
.5
9
1
.0
0
1.
00
0.
82
0.
6
1
1
.0
0
1
.0
0
0.
8
2
0.
62
D
e
lt
a
T
2
32
21
91
62
4
2
3
2
01
62
4
2
32
0
1
62
3
2
3
20
16
22
2
2
2
0
1
6
20
21
1
8
1
5
80
10
5
0
K
W
2
.08
2.
13
2.
19
2.
25
2
.2
3
2
.2
8
2
.35
2.
42
2.
3
7
2
.4
2
2
.4
9
2
.57
2.
48
2.
54
2.
6
2
2
.7
0
2
.5
8
2.
64
2.
72
2.
8
1
2
.6
7
2
.7
3
2.
8
1
2.
91
A
M
P
S
8
.9
9
.0
9.
3
9
.6
9.
4
9
.6
9
.9
10.
2
1
0
.1
1
0
.3
1
0.
6
1
1
.0
10.
7
1
0
.9
11
.2
1
1
.6
1
1
.3
11
.5
11.
9
1
2
.3
1
1
.9
1
2.
1
1
2
.5
12.
9
H
I P
R
23
4
2
5
2
2
6
6
2
77
263
28
2
2
9
8
3
1
1
2
9
9
321
339
35
4
3
4
0
36
6
386
403
38
3
4
1
2
4
3
5
4
5
3
4
2
3
455
48
0
5
0
1
LO
P
R
11
2
1
2
0
1
3
1
1
39
119
12
6
1
3
8
1
4
7
1
2
3
131
143
15
3
1
3
0
13
8
151
160
13
6
1
4
5
1
5
8
1
6
8
1
4
1
150
16
3
1
7
4
M
B
h
2
6
.2
26.
7
28.
6
3
0
.5
2
5.
6
2
6.
1
2
7.
9
29.
8
2
5
.0
2
5
.5
2
7.
2
2
9
.1
24.
3
2
4
.9
2
6.
6
2
8.
4
2
3.
1
2
3
.6
25.
3
2
7
.0
2
1
.4
2
1.
9
2
3
.4
25.
0
S
/T
0
.9
1
0
.8
5
0
.6
9
0
.5
2
0
.9
4
0
.8
8
0
.7
2
0
.5
4
0
.9
6
0
.9
0
0
.7
4
0
.5
5
0
.9
9
0
.9
3
0
.7
6
0
.5
7
1
.0
3
0
.9
7
0
.7
9
0
.5
9
1
.0
4
0
.9
8
0
.7
9
0
.5
9
D
e
lt
a
T
2
42
32
01
62
4
2
3
2
01
62
4
2
32
0
1
62
4
2
3
2
0
1
6
2
42
32
01
6
2
2
2
11
91
5
9
2
0
K
W
2
.0
4
2
.0
8
2
.1
4
2
.2
0
2
.1
8
2
.2
3
2
.2
9
2
.3
7
2
.3
1
2
.3
6
2
.4
3
2
.5
1
2
.4
3
2
.4
8
2
.5
5
2
.6
3
2
.5
2
2
.5
8
2
.6
6
2
.7
4
2
.6
1
2
.6
6
2
.7
5
2
.8
3
A
M
P
S
8
.7
8
.8
9.
1
9
.3
9.
2
9
.4
9
.7
10.
0
9
.9
1
0
.1
1
0
.4
1
0
.7
10.
5
1
0
.7
1
1.
0
1
1.
3
1
1.
0
1
1
.3
11.
6
1
2
.0
1
1
.6
1
1.
8
1
2
.2
12.
6
H
I P
R
22
7
2
4
4
2
5
8
2
69
255
27
4
2
8
9
3
0
2
2
9
0
312
329
34
3
3
3
0
35
5
375
391
37
1
3
9
9
4
2
2
4
4
0
4
1
0
441
46
6
4
8
6
LO
P
R
10
9
1
1
6
1
2
7
1
35
115
12
3
1
3
4
1
4
3
1
2
0
127
139
14
8
1
2
6
13
4
146
156
13
2
1
4
0
1
5
3
1
6
3
1
3
6
145
15
8
1
6
9
N
O
T
E
:
S
h
a
d
e
d
a
re
a
r
e
fl
e
c
ts
A
R
I r
a
ti
n
g
c
o
n
d
it
io
n
s
M
B
h
2
9
.7
30.
3
31.
7
3
3
.9
2
9.
0
2
9.
6
3
1.
0
33.
1
2
8
.3
2
8
.9
3
0.
3
3
2
.3
27.
6
2
8
.2
2
9.
5
3
1.
5
2
6.
3
2
6
.8
28.
0
2
9
.9
2
4
.3
2
4.
8
2
6
.0
27.
7
S
/T
1
.0
0
1
.0
0
0
.9
0
0
.7
3
1
.0
0
1
.0
0
0
.9
3
0
.7
6
1
.0
0
1
.0
0
0
.9
6
0
.7
8
1
.0
0
1
.0
0
0
.9
9
0
.8
0
1
.0
0
1
.0
0
1
.0
0
0
.8
3
1
.0
0
1
.0
0
1
.0
0
0
.8
4
D
e
lt
a
T
2
32
42
21
92
3
2
3
2
31
92
2
2
32
3
2
02
2
2
2
2
3
2
0
2
02
12
21
9
1
9
1
92
01
8
11
8
0
K
W
2
.12
2.
16
2.
22
2.
29
2
.2
7
2
.3
2
2
.39
2.
46
2.
4
0
2
.4
5
2
.5
3
2
.61
2.
52
2.
58
2
.6
6
2
.7
4
2
.6
3
2.
68
2.
77
2.
8
6
2
.7
1
2
.7
7
2.
8
6
2.
95
A
M
P
S
9
.0
9
.2
9.
4
9
.7
9.
6
9
.8
1
0
.1
10.
4
1
0
.3
1
0
.5
1
0.
8
1
1
.1
10.
9
1
1
.1
1
1.
4
1
1.
8
1
1.
5
1
1
.7
12.
1
1
2
.4
1
2
.1
1
2.
3
1
2
.7
13.
1
H
I P
R
23
9
2
5
7
2
7
1
2
83
268
28
8
3
0
4
3
1
7
3
0
5
328
346
36
1
3
4
7
37
3
394
411
39
0
4
2
0
4
4
3
4
6
3
4
3
1
464
49
0
5
1
1
LO
P
R
11
5
1
2
2
1
3
3
1
42
121
12
9
1
4
1
1
5
0
1
2
6
134
146
15
6
1
3
2
14
1
154
164
13
9
1
4
7
1
6
1
1
7
1
1
4
3
153
16
7
1
7
7
M
B
h
2
8
.9
29.
4
30.
8
3
2
.9
2
8.
2
2
8.
7
3
0.
1
32.
1
2
7
.5
2
8
.0
2
9.
4
3
1
.3
26.
8
2
7
.4
2
8.
7
3
0.
6
2
5.
5
2
6
.0
27.
2
2
9
.0
2
3
.6
2
4.
1
2
5
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26.
9
S
/T
0
.9
9
0
.9
5
0
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6
0
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0
1
.0
0
0
.9
9
0
.8
9
0
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2
1
.0
0
1
.0
0
0
.9
1
0
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4
1
.0
0
1
.0
0
0
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4
0
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6
1
.0
0
1
.0
0
0
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8
0
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9
1
.0
0
1
.0
0
0
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9
0
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0
D
e
lt
a
T
2
52
42
32
02
5
2
5
2
32
02
4
2
52
3
2
02
4
2
4
2
4
2
0
2
22
32
32
0
2
1
2
12
21
9
85
10
5
0
K
W
2
.10
2.
14
2.
21
2.
27
2
.2
5
2
.3
0
2
.37
2.
44
2.
3
9
2
.4
4
2
.5
1
2
.59
2.
50
2.
56
2
.6
4
2
.7
2
2
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0
2.
66
2.
74
2.
8
3
2
.6
9
2
.7
5
2.
8
4
2.
93
A
M
P
S
8
.9
9
.1
9.
3
9
.6
9.
5
9
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1
0
.0
10.
3
1
0
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1
0
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1
0.
7
1
1
.0
10.
8
1
1
.0
1
1.
3
1
1.
7
1
1.
4
1
1
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12.
0
1
2
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1
2
.0
1
2.
2
1
2
.6
13.
0
H
I P
R
23
6
2
5
4
2
6
9
2
80
265
28
5
3
0
1
3
1
4
3
0
2
324
343
35
7
3
4
3
37
0
390
407
38
6
4
1
6
4
3
9
4
5
8
4
2
7
459
48
5
5
0
6
LO
P
R
11
4
1
2
1
1
3
2
1
40
120
12
8
1
3
9
1
4
8
1
2
5
133
145
15
4
1
3
1
13
9
152
162
13
7
1
4
6
1
5
9
1
7
0
1
4
2
151
16
5
1
7
6
M
B
h
2
6
.6
27.
1
28.
4
3
0
.3
2
6.
0
2
6.
5
2
7.
8
29.
6
2
5
.4
2
5
.9
2
7.
1
2
8
.9
24.
8
2
5
.3
2
6.
4
2
8.
2
2
3.
5
2
4
.0
25.
1
2
6
.8
2
1
.8
2
2.
2
2
3
.3
24.
8
S
/T
0
.9
5
0
.9
2
0
.8
3
0
.6
7
0
.9
8
0
.9
5
0
.8
6
0
.7
0
1
.0
0
0
.9
7
0
.8
8
0
.7
1
1
.0
0
1
.0
0
0
.9
1
0
.7
4
1
.0
0
1
.0
0
0
.9
4
0
.7
6
1
.0
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*
N
O
T
E
: S
h
ade
d
ar
e
a
i
s
A
H
R
I
R
a
tin
g
C
ond
it
io
n
s
ID
B
: E
n
te
ri
ng
I
n
doo
r D
ry
B
u
lb
T
e
m
p
e
rat
ur
e
K
W
=
T
o
ta
l s
y
st
e
m
pow
er
H
igh
a
nd l
o
w
pr
e
s
s
u
re
s ar
e
m
e
a
s
ur
ed
a
t
th
e
l
iqu
id
and
s
u
c
ti
on ac
c
e
s
s
f
it
ti
n
g
s
.
A
M
P
S
: U
n
it
a
m
ps
(
c
om
p
.+
ev
a
p
or
a
tor
+
c
ond
e
n
s
e
r
fa
n m
o
to
rs
)