23
COOLING PERFORMANCE DATA
ASX140361B* / C*
EXP
A
N
D
ED
PE
R
F
O
R
M
A
N
C
E D
A
T
A
C
O
O
L
IN
G
O
P
E
R
A
T
IO
N
MO
D
E
L
: A
S
X
14036
1B
*/
C
A
*F
3642*
6
C
*
O
u
tdoor
A
m
bi
e
n
t Te
m
p
e
r
a
tur
e
65
75
85
95
105
115
E
n
te
r
ing I
ndoor
W
e
t B
u
lb
Te
m
p
e
r
a
tur
e
ID
B
*
A
ir
fl
o
w
5
96
3
6
77
1
5
9
6
36
7
7
15
9
6
36
7
7
15
9
6
3
6
7
7
15
9
6
36
7
7
15
9
6
36
7
7
1
M
B
h
30.
4
31.
5
34.
5
-
29
.7
30.
8
3
3.
7
-
29.
0
30.
0
32.
9
-
28.
3
2
9.
3
32.
1
-
2
6
.9
27.
8
30.
5
-
24.
9
25.
8
28.
2
-
S
/T
0
.6
8
0
.5
7
0
.3
9
-
0.
7
1
0.
59
0
.41
-
0
.7
2
0
.6
1
0
.4
2
-
0.
75
0
.62
0.
43
-
0
.7
8
0
.6
5
0
.4
5
-
0.
78
0.
65
0.
45
-
D
e
lt
a T
1
8
1
6
1
2
-
1
8
16
12
-
1
8
1
6
1
2
-
19
16
12
-
1
8
1
6
1
2
-
17
15
11
-
1050
K
W
2.
17
2.
21
2.
28
-
2
.3
3
2
.3
8
2
.4
6
-
2.
48
2.
54
2.
62
-
2
.6
1
2
.6
7
2
.7
6
-
2
.73
2.
79
2.
88
-
2
.8
2
2
.8
9
2
.9
8
-
A
M
P
S
7.
6
7
.8
8.
0
-
8
.2
8
.4
8.
6
-
8.
9
9
.1
9.
4
-
9.
5
9
.7
10.
0
-
1
0
.1
10.
3
10.
7
-
10.
7
10.
9
11.
3
-
H
I P
R
218
235
248
-
2
45
264
279
-
279
300
317
-
318
3
4
2
361
-
3
57
384
406
-
395
425
449
-
L
O
P
R
103
109
119
-
1
08
115
126
-
113
120
131
-
118
1
2
6
137
-
1
24
132
144
-
128
136
149
-
M
B
h
32.
9
34.
1
37.
4
-
32
.2
33.
3
3
6.
5
-
31.
4
32.
5
35.
6
-
30.
6
3
1.
7
34.
8
-
2
9
.1
30.
2
33.
0
-
26.
9
27.
9
30.
6
-
S
/T
0
.7
1
0
.5
9
0
.4
1
-
0.
7
3
0.
61
0
.42
-
0
.7
5
0
.6
3
0
.4
3
-
0.
78
0
.65
0.
45
-
0
.8
0
0
.6
7
0
.4
7
-
0.
81
0.
68
0.
47
-
D
e
lt
a T
1
8
1
5
1
2
-
1
8
16
12
-
1
8
1
6
1
2
-
18
16
12
-
1
8
1
6
1
2
-
17
15
11
-
70
1200
K
W
2.
22
2.
27
2.
34
-
2
.3
9
2
.4
5
2
.5
3
-
2.
55
2.
60
2.
69
-
2
.6
8
2
.7
4
2
.8
3
-
2
.80
2.
86
2.
96
-
2
.9
0
2
.9
6
3
.0
6
-
A
M
P
S
7.
8
8
.0
8.
2
-
8
.4
8
.6
8.
9
-
9.
1
9
.3
9.
6
-
9.
7
1
0.
0
10.
3
-
1
0
.4
10.
6
11.
0
-
11.
0
11.
2
11.
6
-
H
I P
R
225
242
256
-
2
53
272
287
-
287
309
327
-
327
3
5
2
372
-
3
68
396
419
-
407
438
462
-
L
O
P
R
106
113
123
-
1
12
119
130
-
116
124
135
-
122
1
3
0
142
-
1
28
136
149
-
132
141
154
-
M
B
h
33.
9
35.
1
38.
5
-
33
.1
34.
3
3
7.
6
-
32.
3
33.
5
36.
7
-
31.
5
3
2.
7
35.
8
-
3
0
.0
31.
1
34.
0
-
27.
8
28.
8
31.
5
-
S
/T
0
.7
4
0
.6
2
0
.4
3
-
0.
7
7
0.
64
0
.44
-
0
.7
9
0
.6
6
0
.4
6
-
0.
81
0
.68
0.
47
-
0
.8
4
0
.7
0
0
.4
9
-
0.
85
0.
71
0.
49
-
D
e
lt
a T
1
7
1
5
1
1
-
1
7
15
11
-
1
7
1
5
1
1
-
17
15
11
-
1
7
1
5
1
1
-
16
14
11
-
1350
K
W
2.
24
2.
29
2.
36
-
2
.4
1
2
.4
7
2
.5
5
-
2.
57
2.
63
2.
71
-
2
.7
0
2
.7
7
2
.8
6
-
2
.82
2.
89
2.
98
-
2
.9
2
2
.9
9
3
.0
9
-
A
M
P
S
7.
9
8
.0
8.
3
-
8
.5
8
.7
9.
0
-
9.
2
9
.4
9.
7
-
9.
8
1
0.
1
10.
4
-
1
0
.5
10.
7
11.
1
-
11.
1
11.
3
11.
7
-
H
I P
R
227
245
259
-
2
55
275
290
-
290
312
330
-
331
3
5
6
376
-
3
72
400
423
-
411
442
467
-
L
O
P
R
107
114
124
-
1
13
120
131
-
117
125
136
-
123
1
3
1
143
-
1
29
137
150
-
134
142
155
-
M
B
h
30.
9
31.
8
34.
4
37.
0
3
0
.2
31.
1
3
3.
6
36.
1
29.
5
30.
3
32.
8
35.
2
28.
7
29
.6
32.
0
34.
4
2
7.
3
28.
1
30.
4
32.
7
25.
3
26.
0
28.
2
3
0
.3
S
/T
0
.7
7
0
.6
9
0
.5
2
0
.3
4
0
.80
0
.7
2
0
.5
4
0
.3
5
0
.8
2
0
.7
4
0
.5
6
0
.36
0
.8
5
0.7
6
0.
58
0.
37
0
.88
0.
79
0.
60
0.
38
0.
89
0.
80
0.
60
0.
3
9
D
e
lt
a
T
2
1
1
91
6
1
12
12
0
1
61
1
2
12
0
1
61
1
2
1
20
16
11
21
19
16
11
20
18
15
1
0
1050
K
W
2.
18
2.
23
2.
30
2.
38
2.
3
5
2.
41
2
.48
2.
57
2.
50
2.
56
2.
64
2.
7
3
2.
64
2.7
0
2.
79
2.
88
2
.75
2.
81
2.
91
3.
01
2.
85
2.
91
3.
01
3.
1
1
A
M
P
S
7
.7
7
.8
8
.1
8
.4
8.3
8
.5
8
.7
9
.0
9
.0
9
.2
9
.5
9
.8
9
.6
9.
8
10.
1
10.
5
1
0.
2
10.
4
10.
8
11.
2
10.
8
11.
0
11.
4
1
1
.8
H
I P
R
221
238
251
262
2
4
8
267
281
294
282
303
320
334
321
34
5
365
380
3
6
1
388
410
428
399
429
453
4
7
3
L
O
P
R
104
110
120
128
1
1
0
117
127
135
114
121
132
141
120
12
7
139
148
1
2
5
133
146
155
130
138
151
1
6
0
M
B
h
33.
5
34.
5
37.
3
40.
0
3
2
.7
33.
7
3
6.
4
39.
1
31.
9
32.
9
35.
6
38.
2
31.
1
32
.1
34.
7
37.
2
2
9.
6
30.
5
33.
0
35.
4
27.
4
28.
2
30.
5
3
2
.8
S
/T
0
.8
0
0
.7
2
0
.5
4
0
.3
5
0
.83
0
.7
4
0
.5
6
0
.3
6
0
.8
5
0
.7
6
0
.5
8
0
.37
0
.8
8
0.7
9
0.
60
0.
38
0
.91
0.
82
0.
62
0.
40
0.
92
0.
83
0.
62
0.
4
0
D
e
lt
a
T
2
1
1
91
6
1
12
11
9
1
61
1
2
11
9
1
61
1
2
1
19
16
11
21
19
16
11
19
18
15
1
0
75
1200
K
W
2.
24
2.
29
2.
36
2.
44
2.
4
1
2.
47
2
.55
2.
63
2.
57
2.
63
2.
71
2.
8
0
2.
71
2.7
7
2.
86
2.
96
2
.82
2.
89
2.
98
3.
09
2.
92
2.
99
3.
09
3.
2
0
A
M
P
S
7.
9
8
.0
8.
3
8
.6
8
.5
8
.7
9.
0
9
.3
9.
2
9
.4
9.
7
10.
1
9
.8
10
.1
10.
4
10.
8
1
0.
5
10.
7
11.
1
11.
5
11.
1
11.
3
11.
7
1
2
.2
H
I P
R
228
245
259
270
2
5
5
275
290
303
290
312
330
344
331
35
6
376
392
3
7
2
400
423
441
411
442
467
4
8
7
L
O
P
R
107
114
124
132
1
1
3
120
131
140
117
125
136
145
123
13
1
143
152
1
2
9
137
150
160
134
142
155
1
6
5
M
B
h
34.
5
35.
5
38.
4
41.
2
3
3
.7
34.
7
3
7.
5
40.
3
32.
9
33.
8
36.
6
39.
3
32.
1
33
.0
35.
7
38.
4
3
0.
5
31.
4
34.
0
36.
4
28.
2
29.
1
31.
5
3
3
.8
S
/T
0
.8
4
0
.7
5
0
.5
7
0
.3
7
0
.87
0
.7
8
0
.5
9
0
.3
8
0
.9
0
0
.8
0
0
.6
1
0
.39
0
.9
2
0.8
3
0.
63
0.
40
0
.96
0.
86
0.
65
0.
42
0.
97
0.
87
0.
65
0.
4
2
D
e
lt
a
T
2
0
1
81
5
1
02
01
8
1
51
0
2
01
8
1
51
0
2
0
19
15
11
20
18
15
10
19
17
14
1
0
1350
K
W
2.
26
2.
30
2.
38
2.
46
2.
4
3
2.
49
2
.57
2.
65
2.
59
2.
65
2.
74
2.
8
3
2.
73
2.7
9
2.
88
2.
98
2
.85
2.
91
3.
01
3.
11
2.
95
3.
01
3.
12
3.
2
2
A
M
P
S
7.
9
8
.1
8.
4
8
.7
8
.6
8
.8
9.
0
9
.4
9.
3
9
.5
9.
8
10.
2
9
.9
10
.2
10.
5
10.
9
1
0.
6
10.
8
11.
2
11.
6
11.
2
11.
5
11.
8
1
2
.3
H
I P
R
230
247
261
272
2
5
8
277
293
306
293
316
333
348
334
35
9
380
396
3
7
6
404
427
445
415
447
472
4
9
2
L
O
P
R
108
115
125
134
1
1
4
121
132
141
119
126
138
147
124
13
2
145
154
1
3
0
139
152
161
135
144
157
1
6
7
*
E
nt
er
ing I
n
d
oor
D
ry
B
u
lb
T
e
m
per
at
ur
e
N
O
T
E
: S
haded ar
ea
is
A
C
C
A
(
T
V
A
) c
ondi
ti
ons
K
W
=
T
ot
al
syst
e
m
p
o
w
e
r
A
M
P
S
=
o
u
td
o
o
r u
n
it
a
m
p
s
(
c
o
m
p
.+
fa
n
)