![Goodman GSC13 SEER Technical Manual Download Page 9](http://html1.mh-extra.com/html/goodman/gsc13-seer/gsc13-seer_technical-manual_2243290009.webp)
9
COOLING PERFORMANCE DATA
GSC130181BB
EX
PA
N
D
E
D
P
E
R
F
O
R
M
A
N
C
E
D
A
T
A
C
O
OL
IN
G O
P
E
R
A
T
IO
N
MOD
E
L
:
G
S
C
130181 /
C
A
*F
182
4*
6B
*
O
u
tdoo
r Am
bi
e
n
t Te
m
p
e
ra
tur
e
65
75
8
5
95
105
1
1
5
E
n
te
ri
n
g
I
n
do
or
W
e
t B
u
lb
Te
m
p
e
ra
tur
e
ID
B
*
A
ir
fl
o
w
5
9
6
36
77
1
5
9
6
3
6
77
15
96
3
6
77
1
5
9
6
3
6
7
7
1
5
96
3
6
77
15
9
6
36
7
7
1
M
B
h
16.
7
17.
3
1
8
.9
-
1
6
.3
1
6
.9
18.
5
-
15
.9
1
6
.5
1
8
.1
-
15.
5
16.
1
17.
6
-
14
.7
1
5
.3
1
6
.7
-
1
3
.7
1
4
.2
1
5.
5
-
S
/T
0
.6
7
0
.5
6
0
.3
9
-
0
.6
9
0
.58
0.
40
-
0
.7
1
0
.5
9
0
.4
1
-
0.
73
0.
61
0.
42
-
0
.7
6
0
.6
4
0
.4
4
-
0.
77
0.
64
0
.4
4
-
D
e
lta
T
2
0
1
7
1
3
-
2
0
1
7
13
-
2
0
1
7
1
3
-
20
17
13
-
2
0
1
7
1
3
-
18
16
1
2
-
525
KW
1.
26
1.
29
1
.32
-
1
.3
5
1
.3
8
1
.4
2
-
1.
43
1
.4
6
1
.5
0
-
1
.5
0
1
.5
3
1
.5
7
-
1.
5
6
1
.5
9
1
.64
-
1
.6
1
1
.6
4
1
.6
9
-
A
M
P
S
4
.5
4
.6
4.
7
-
4.
8
5
.0
5
.1
-
5.
3
5
.4
5.
6
-
5
.6
5
.7
5
.9
-
6.
0
6
.1
6
.3
-
6.
3
6
.5
6.
7
-
H
I P
R
12
9
1
39
1
4
6
-
145
15
6
1
6
4
-
1
64
17
7
187
-
1
87
20
1
2
13
-
211
227
23
9
-
2
3
3
2
50
264
-
L
O
P
R
6
0
64
70
-
6
3
6
7
7
4
-
66
7
0
7
7
-
6
9
7
4
8
0
-
73
7
7
84
-
7
5
8
0
8
7
-
M
B
h
18.
1
18.
7
2
0
.5
-
1
7
.7
1
8
.3
20.
0
-
17
.2
1
7
.9
1
9
.6
-
16.
8
17.
4
19.
1
-
16
.0
1
6
.6
1
8
.1
-
1
4
.8
1
5
.3
1
6.
8
-
S
/T
0
.6
9
0
.5
8
0
.4
0
-
0
.7
2
0
.60
0.
42
-
0
.7
4
0
.6
1
0
.4
3
-
0.
76
0.
63
0.
44
-
0
.7
9
0
.6
6
0
.4
6
-
0.
80
0.
66
0
.4
6
-
D
e
lta
T
1
9
1
7
1
3
-
1
9
1
7
13
-
1
9
1
7
1
3
-
20
17
13
-
1
9
1
7
1
3
-
18
16
1
2
-
70
600
KW
1.
29
1.
32
1
.35
-
1
.3
8
1
.4
1
1
.4
5
-
1.
46
1
.4
9
1
.5
4
-
1
.5
3
1
.5
6
1
.6
1
-
1.
5
9
1
.6
3
1
.68
-
1
.6
5
1
.6
8
1
.7
3
-
A
M
P
S
4
.6
4
.7
4.
9
-
5.
0
5
.1
5
.3
-
5.
4
5
.5
5.
7
-
5
.8
5
.9
6
.1
-
6.
1
6
.3
6
.5
-
6.
5
6
.6
6.
9
-
H
I P
R
13
3
1
43
1
5
1
-
149
16
0
1
6
9
-
1
69
18
2
193
-
1
93
20
8
2
19
-
217
234
24
7
-
2
4
0
2
58
273
-
L
O
P
R
6
2
66
72
-
6
5
7
0
7
6
-
68
7
2
7
9
-
7
1
7
6
8
3
-
75
8
0
87
-
7
7
8
2
9
0
-
M
B
h
18.
6
19.
3
2
1
.1
-
1
8
.2
1
8
.8
20.
7
-
17
.8
1
8
.4
2
0
.2
-
17.
3
18.
0
19.
7
-
16
.5
1
7
.1
1
8
.7
-
1
5
.2
1
5
.8
1
7.
3
-
S
/T
0
.7
3
0
.6
1
0
.4
2
-
0
.7
5
0
.63
0.
44
-
0
.7
7
0
.6
4
0
.4
5
-
0.
80
0.
67
0.
46
-
0
.8
3
0
.6
9
0
.4
8
-
0.
83
0.
70
0
.4
8
-
D
e
lta
T
1
8
1
6
1
2
-
1
9
1
6
12
-
1
9
1
6
1
2
-
19
16
12
-
1
9
1
6
1
2
-
17
15
1
1
-
675
KW
1.
30
1.
33
1
.36
-
1
.3
9
1
.4
2
1
.4
6
-
1.
47
1
.5
0
1
.5
5
-
1
.5
4
1
.5
8
1
.6
2
-
1.
6
1
1
.6
4
1
.69
-
1
.6
6
1
.6
9
1
.7
5
-
A
M
P
S
4
.7
4
.8
4.
9
-
5.
0
5
.1
5
.3
-
5.
4
5
.6
5.
8
-
5
.8
5
.9
6
.1
-
6.
2
6
.3
6
.5
-
6.
5
6
.7
6.
9
-
H
I P
R
13
4
1
44
1
5
2
-
150
16
2
1
7
1
-
1
71
18
4
194
-
1
95
21
0
2
22
-
219
236
24
9
-
2
4
2
2
61
275
-
L
O
P
R
6
3
67
73
-
6
6
7
0
7
7
-
69
7
3
8
0
-
7
2
7
7
8
4
-
76
8
0
88
-
7
8
8
3
9
1
-
M
B
h
17.
0
17.
5
1
8
.9
2
0
.3
1
6.
6
1
7.
1
18.
5
1
9
.8
1
6
.2
1
6.
7
1
8.
0
19.
4
15.
8
16.
3
17.
6
1
8
.9
1
5
.0
1
5.
4
1
6.
7
17.
9
1
3
.9
1
4
.3
1
5.
5
1
6.
6
S
/T
0
.7
6
0
.6
8
0
.5
1
0
.3
3
0
.7
9
0
.7
0
0
.5
3
0
.3
4
0
.8
1
0
.7
2
0
.5
5
0
.3
5
0
.8
3
0.
74
0.
56
0.
36
0.
8
6
0
.7
7
0
.59
0.
3
8
0.
87
0.
78
0
.5
9
0
.3
8
D
e
lta
T
2
3
2
11
71
2
2
3
2
1
1
71
22
32
1
1
71
2
2
3
21
17
1
2
23
2
1
17
12
21
20
1
6
1
1
525
KW
1.
27
1.
30
1
.33
1.
3
7
1
.3
6
1
.39
1.
43
1.
47
1.
44
1
.4
7
1
.5
1
1.
56
1.
51
1.
54
1.
59
1.
64
1.
5
7
1
.6
0
1
.65
1.
7
0
1.
62
1.
65
1
.7
0
1
.7
6
A
M
P
S
4
.5
4
.6
4.
8
5
.0
4.
9
5
.0
5
.2
5
.4
5.
3
5
.4
5.
6
5
.8
5
.7
5.
8
6
.06
.2
6
.0
6
.2
6
.46
.6
6
.46
.5
6
.77
.0
H
I P
R
13
0
1
40
1
4
8
1
5
4
146
15
7
1
6
6
1
7
3
1
66
17
9
189
19
7
1
89
20
4
2
1
5
2
24
213
229
24
2
2
5
2
2
3
5
2
53
267
27
9
L
O
P
R
6
1
65
70
75
6
4
6
8
74
79
67
7
1
7
7
82
70
74
81
8
7
73
7
8
85
91
76
81
8
8
9
4
M
B
h
18.
4
18.
9
2
0
.5
2
2
.0
1
8.
0
1
8.
5
20.
0
2
1
.5
1
7
.5
1
8.
0
1
9.
5
21.
0
17.
1
17.
6
19.
1
2
0
.5
1
6
.2
1
6.
7
1
8.
1
19.
4
1
5
.0
1
5
.5
1
6.
8
1
8.
0
S
/T
0
.7
9
0
.7
0
0
.5
3
0
.3
4
0
.8
2
0
.7
3
0
.5
5
0
.3
6
0
.8
4
0
.7
5
0
.5
7
0
.3
6
0
.8
6
0.
77
0.
58
0.
38
0.
9
0
0
.8
0
0
.61
0.
3
9
0.
90
0.
81
0
.6
1
0
.3
9
D
e
lta
T
2
2
2
01
71
2
2
2
2
1
1
71
22
22
1
1
71
2
2
3
21
17
1
2
22
2
1
17
12
21
19
1
6
1
1
75
600
KW
1.
30
1.
33
1
.36
1.
4
0
1
.3
9
1
.42
1.
46
1.
51
1.
47
1
.5
0
1
.5
5
1.
60
1.
55
1.
58
1.
63
1.
68
1.
6
1
1
.6
4
1
.69
1.
7
4
1.
66
1.
69
1
.7
5
1
.8
0
A
M
P
S
4
.7
4
.8
4.
9
5
.1
5.
0
5
.1
5
.3
5
.5
5.
4
5
.6
5.
8
6
.0
5
.8
5.
9
6
.16
.4
6
.2
6
.3
6
.56
.8
6
.56
.7
6
.97
.2
H
I P
R
13
4
1
44
1
5
2
1
5
9
151
16
2
1
7
1
1
7
8
1
71
18
4
195
20
3
1
95
21
0
2
2
2
2
31
219
236
24
9
2
6
0
2
4
2
2
61
275
28
7
L
O
P
R
6
3
67
73
77
6
6
7
0
77
82
69
7
3
8
0
85
72
77
84
8
9
76
8
0
88
93
78
83
9
1
9
7
M
B
h
18.
9
19.
5
2
1
.1
2
2
.6
1
8.
5
1
9.
0
20.
6
2
2
.1
1
8
.1
1
8.
6
2
0.
1
21.
6
17.
6
18.
1
19.
6
2
1
.1
1
6
.7
1
7.
2
1
8.
6
20.
0
1
5
.5
1
6
.0
1
7.
3
1
8.
5
S
/T
0
.8
3
0
.7
4
0
.5
6
0
.3
6
0
.8
6
0
.7
7
0
.5
8
0
.3
7
0
.8
8
0
.7
8
0
.5
9
0
.3
8
0
.9
1
0.
81
0.
61
0.
39
0.
9
4
0
.8
4
0
.64
0.
4
1
0.
95
0.
85
0
.6
4
0
.4
1
D
e
lta
T
2
1
2
01
61
1
2
2
2
0
1
61
12
22
0
1
61
1
2
2
20
16
1
1
21
2
0
16
11
20
18
1
5
1
0
675
KW
1.
31
1.
34
1
.37
1.
4
2
1
.4
0
1
.43
1.
47
1.
52
1.
48
1
.5
1
1
.5
6
1.
61
1.
56
1.
59
1.
64
1.
69
1.
6
2
1
.6
5
1
.70
1.
7
6
1.
67
1.
71
1
.7
6
1
.8
2
A
M
P
S
4
.7
4
.8
5.
0
5
.1
5.
1
5
.2
5
.4
5
.5
5.
5
5
.6
5.
8
6
.0
5
.9
6.
0
6
.26
.4
6
.2
6
.4
6
.66
.8
6
.66
.8
7
.07
.2
H
I P
R
13
5
1
46
1
5
4
1
6
1
152
16
4
1
7
3
1
8
0
1
73
18
6
196
20
5
1
97
21
2
2
2
4
2
33
222
238
25
2
2
6
3
2
4
5
2
63
278
29
0
L
O
P
R
6
3
67
73
78
6
7
7
1
77
83
69
7
4
8
1
86
73
77
85
9
0
76
8
1
89
94
79
84
9
2
9
8
*
E
n
te
ri
n
g
I
n
d
oor
D
ry
B
u
lb
T
e
m
per
a
tu
re
N
O
T
E
:
S
h
a
ded
a
rea i
s
A
C
C
A
(
T
V
A
) c
ond
iti
ons