28
COOLING PERFORMANCE DATA
1
ST
S
TAGE
*PG1548***41A*
MO
D
E
L
:
*
P
G
1
5
4
8
**
*4
1
A
*
EX
PAN
D
E
D
P
E
R
F
O
R
M
ANC
E
D
A
T
A
CO
O
L
ING
O
P
E
RAT
IO
N
De
si
g
n
S
u
b
co
o
li
ng
,
15
°F
+
3
@
t
h
e
liq
u
id
a
cc
es
s
fi
tt
in
g
c
o
n
n
ec
ti
on
A
H
R
I 9
5
t
es
t
c
on
d
it
io
n
s.
D
es
ig
n
S
u
p
er
h
ea
t 9
°F
+
3
@
t
h
e
co
m
p
re
ss
o
r
su
c
ti
o
n
a
cc
e
ss
f
it
ti
n
g
c
o
n
n
ec
ti
o
n
.
Ou
td
o
or
A
m
b
ie
n
t
T
em
p
er
at
u
re
65
75
8
5
95
105
1
15
En
te
ri
n
g
I
n
do
o
r
W
e
t B
u
lb
T
e
m
p
e
ra
tu
re
Ai
rf
lo
w
59
63
67
71
5
9
6
3
67
71
59
63
6
7
71
59
63
67
71
59
6
3
6
7
71
59
63
6
7
7
1
MB
h
3
5.
5
36
.3
38
.8
41
.4
3
4.
7
3
5.
4
37
.9
40
.5
33
.8
34
.6
3
7.
0
3
9.
5
33
.0
33
.7
36
.1
38
.5
31
.4
3
2.
1
3
4.
2
36
.6
29
.1
29
.7
31
.7
3
3.
9
S/
T
0
.9
6
0.
90
0.
74
0.
55
1
.0
0
0
.9
4
0.
76
0.
57
1.
00
0.
9
6
0
.7
8
0
.5
8
1.
00
1.
00
0.
81
0.
60
1.
00
1
.0
0
0
.8
4
0.
63
1.
00
1.
00
0.
8
4
0
.6
3
De
lta
T
25
24
21
17
2
6
2
5
21
17
25
25
2
1
17
25
25
22
17
23
2
4
2
1
17
22
22
2
0
1
6
123
8
K
W
2
.34
2.
39
2.
46
2.
54
2
.5
1
2
.5
6
2.
64
2.
72
2.
66
2.
7
2
2
.8
0
2
.89
2.
79
2.
85
2.
94
3.
03
2.
90
2
.9
6
3
.0
6
3.
16
3.
00
3.
06
3.
1
6
3
.2
6
AM
P
S
1
0.
6
10
.8
11
.0
11
.4
1
1.
2
1
1.
5
11
.8
12
.1
12
.0
12
.3
1
2.
6
1
3.
0
12
.7
13
.0
13
.3
13
.8
13
.4
1
3.
7
1
4.
1
14
.5
14
.1
14
.4
14
.8
1
5.
3
HI
P
R
22
7
24
5
2
58
2
70
25
5
27
5
29
0
3
02
2
90
31
2
33
0
34
4
33
1
35
6
37
6
3
92
3
72
40
0
42
3
44
1
4
11
4
42
46
7
48
7
LO
P
R
115
12
2
1
33
14
2
12
1
129
141
1
50
1
26
13
4
14
6
156
132
141
154
16
4
1
39
14
8
16
1
17
2
14
3
15
3
16
7
17
7
MB
h
3
4.
5
35
.2
37
.6
40
.2
3
3.
7
3
4.
4
36
.8
39
.3
32
.9
33
.6
3
5.
9
3
8.
4
32
.1
32
.8
35.
0
37
.4
30
.5
3
1.
1
3
3.
3
35
.5
28.
2
28
.8
30
.8
3
2.
9
S/
T
0
.9
2
0.
86
0.
70
0.
52
0
.9
5
0
.8
9
0.
73
0.
54
0.
98
0.
9
2
0
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5
0
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6
1.
00
0.
95
0.
77
0.
58
1.
00
0
.9
8
0
.8
0
0.
60
1.
00
0.
99
0.
8
1
0
.6
0
De
lta
T
26
25
22
18
2
7
2
6
22
18
27
26
2
2
18
27
26
23
18
25
2
6
2
2
18
24
24
2
1
1
7
110
0
K
W
2
.33
2.
37
2.
44
2.
52
2
.4
9
2
.5
4
2.
62
2.
70
2.
64
2.
6
9
2
.7
8
2
.86
2.
77
2.
83
2.
92
3.
01
2.
88
2
.9
4
3
.0
3
3.
13
2.
98
3.
04
3.
1
4
3
.2
4
AM
P
S
1
0.
5
10
.7
11
.0
11
.3
1
1.
2
1
1.
4
11
.7
12
.0
11
.9
12
.2
1
2.
5
1
2.
9
12
.6
12
.9
13.
2
13
.7
13
.3
1
3.
6
1
4.
0
14
.4
14.
0
14
.2
14
.7
1
5.
1
HI
P
R
22
5
24
2
2
56
2
67
25
3
27
2
28
7
2
99
2
87
30
9
32
7
34
1
32
7
35
2
37
2
38
8
3
68
39
6
41
8
43
6
40
7
43
8
46
2
48
2
LO
P
R
114
12
1
1
32
14
0
12
0
128
139
1
48
1
25
13
3
14
5
154
131
139
15
2
16
2
1
37
14
6
15
9
17
0
14
2
15
1
16
5
17
6
MB
h
3
1.
8
32
.5
34
.7
37
.1
3
1.
1
3
1.
7
33
.9
36
.3
30
.3
31
.0
3
3.
1
3
5.
4
29
.6
30
.2
32
.3
34
.5
28
.1
2
8.
7
3
0.
7
32
.8
26
.0
26
.6
28
.4
3
0.
4
S/
T
0
.8
9
0.
83
0.
68
0.
51
0
.9
2
0
.8
6
0.
70
0.
52
0.
94
0.
8
8
0
.7
2
0
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4
0.
97
0.
91
0.
74
0.
55
1.
01
0
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5
0
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7
0.
58
1.
02
0.
95
0.
7
8
0
.5
8
De
lta
T
27
26
22
18
2
7
2
6
23
18
27
26
2
3
18
27
26
23
18
27
2
6
2
3
18
25
24
2
1
1
7
96
3
K
W
2.
28
2.
32
2.
39
2.
46
2
.44
2.
49
2.
56
2.
64
2.
58
2.
6
3
2
.71
2.
80
2.
71
2.
76
2.
85
2.
94
2.
81
2.
8
7
2
.96
3.
06
2.
90
2.
97
3.
0
6
3.
1
6
AM
P
S
1
0.
3
10
.5
10
.7
11
.0
1
0.
9
1
1.
1
11
.4
11
.8
11
.7
11
.9
1
2.
2
1
2.
6
12
.3
12
.6
12
.9
13
.3
13
.0
1
3.
2
1
3.
6
14
.1
13
.6
13
.9
14
.3
1
4.
8
HI
P
R
21
8
23
5
2
48
2
59
24
5
26
4
27
9
2
91
2
79
30
0
31
7
33
0
31
7
34
2
36
1
3
76
3
57
38
4
40
6
42
3
3
95
4
25
44
8
46
8
LO
P
R
110
11
7
1
28
13
6
11
6
124
135
1
44
1
21
12
9
14
1
150
127
135
148
15
7
1
33
14
2
15
5
16
5
13
8
14
7
16
0
17
0
MB
h
3
6.
1
36
.8
38
.6
41
.1
3
5.
3
3
6.
0
37
.7
40
.2
34
.4
35
.1
3
6.
8
3
9.
2
33
.6
34
.2
35
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38
.3
31
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3
2.
5
3
4.
1
36
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29
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30
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31
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3
3.
7
S/
T
1
.0
0
0.
98
0.
88
0.
71
1
.0
0
1
.0
0
0.
91
0.
74
1.
00
1.
0
0
0
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4
0
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6
1.
00
1.
00
0.
97
0.
78
1.
00
1
.0
0
1
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0
0.
81
1.
00
1.
00
1.
0
0
0
.8
2
De
lta
T
27
27
25
22
2
6
2
7
26
22
26
26
2
6
22
25
25
26
22
24
2
4
2
5
22
22
22
2
3
2
1
123
8
K
W
2
.36
2.
41
2.
48
2.
55
2
.5
3
2
.5
8
2.
66
2.
74
2.
68
2.
7
4
2
.8
2
2
.91
2.
81
2.
87
2.
96
3.
06
2.
93
2
.9
9
3
.0
8
3.
18
3.
02
3.
09
3.
1
9
3
.2
9
AM
P
S
1
0.
6
10
.8
11
.1
11
.5
1
1.
3
1
1.
5
11
.9
12
.2
12
.1
12
.4
1
2.
7
1
3.
1
12
.8
13
.1
13
.4
13
.9
13
.5
1
3.
8
1
4.
2
14
.6
14
.2
14
.5
14
.9
1
5.
4
HI
P
R
23
0
24
7
2
61
2
72
25
8
27
7
29
3
3
06
2
93
31
5
33
3
34
7
33
4
35
9
37
9
3
96
3
76
40
4
42
7
44
5
4
15
4
47
47
2
49
2
LO
P
R
116
12
3
1
35
14
3
12
2
130
142
1
51
1
27
13
5
14
8
157
134
142
155
16
5
1
40
14
9
16
3
17
3
14
5
15
4
16
8
17
9
MB
h
3
5.
1
35
.7
37
.4
39
.9
3
4.
3
3
4.
9
36
.6
39
.0
33
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34
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3
5.
7
3
8.
1
32
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33
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34
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37
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31
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3
1.
6
3
3.
1
35
.3
28
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29
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30
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3
2.
7
S/
T
0
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6
0.
93
0.
84
0.
68
1
.0
0
0
.9
6
0.
87
0.
71
1.
00
0.
9
9
0
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9
0
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2
1.
00
1.
00
0.
92
0.
75
1.
00
1
.0
0
0
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6
0.
78
1.
00
1.
00
0.
9
6
0
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8
De
lta
T
28
28
26
23
2
9
2
8
27
23
28
28
2
7
23
27
28
27
23
26
2
6
2
6
23
24
24
2
5
2
1
110
0
K
W
2
.34
2.
39
2.
46
2.
54
2
.5
1
2
.5
6
2.
64
2.
72
2.
66
2.
7
2
2
.8
0
2
.89
2.
79
2.
85
2.
94
3.
03
2.
90
2
.9
6
3
.0
6
3.
16
3.
00
3.
06
3.
1
6
3
.2
6
AM
P
S
1
0.
6
10
.8
11
.0
11
.4
1
1.
2
1
1.
5
11
.8
12
.1
12
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12
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1
2.
6
1
3.
0
12
.7
13
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13
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13
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13
.4
1
3.
7
1
4.
1
14
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14
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14
.4
14
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1
5.
3
HI
P
R
22
7
24
5
2
58
2
70
25
5
27
5
29
0
3
02
2
90
31
2
33
0
34
4
33
1
35
6
37
6
3
92
3
72
40
0
42
3
44
1
4
11
4
42
46
7
48
7
LO
P
R
115
12
2
1
33
14
2
12
1
129
141
1
50
1
26
13
4
14
6
156
132
141
154
16
4
1
39
14
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16
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17
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14
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15
3
16
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17
7
MB
h
3
2.
4
33
.0
34
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36
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3
1.
6
3
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2
33
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36
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30
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31
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3
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9
3
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1
30
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28
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2
3
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32
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2
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66
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84
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9
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De
lta
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29
28
27
23
2
9
2
9
27
23
29
29
2
7
23
29
29
27
24
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23
25
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96
3
K
W
2.
29
2.
34
2.
41
2.
48
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2.
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2.
58
2.
66
2.
60
2.
6
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2
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2.
82
2.
73
2.
78
2.
87
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96
2.
83
2.
8
9
2
.98
3.
08
2.
93
2.
99
3.
0
8
3.
1
8
AM
P
S
1
0.
3
10
.5
10
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11
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1
1.
0
1
1.
2
11
.5
11
.9
11
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12
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1
2.
3
1
2.
7
12
.4
12
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13
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13
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13
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1
3.
4
1
3.
7
14
.2
13
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14
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14
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1
4.
9
HI
P
R
22
1
23
7
2
51
2
61
24
8
26
6
28
1
2
93
2
82
30
3
32
0
33
4
32
1
34
5
36
4
3
80
3
61
38
8
41
0
42
8
3
99
4
29
45
3
47
2
LO
P
R
111
11
8
1
29
13
8
11
8
125
137
1
45
1
22
13
0
14
2
151
128
137
149
15
9
1
35
14
3
15
6
16
6
13
9
14
8
16
2
17
2
En
te
rin
g
In
d
oo
r
D
ry
B
u
lb
T
em
p
er
a
tu
re
N
O
T
E
:
S
ha
d
ed
a
re
a
is
A
H
R
I
R
at
in
g
C
o
nd
iti
o
ns
K
W
=
T
ot
al
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ys
te
m
p
ow
er
Hi
gh
a
n
d
lo
w
pr
e
ss
ur
es
a
re
m
ea
su
re
d
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t t
he
li
qu
id
a
nd
s
u
ct
io
n
ac
ce
ss
f
itt
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