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1-25
1
1
60
80
80
60
40
100
120
140
35
25
15
4
5
5
-15
100
120
-5
-10
5
0
10
-5
120
40
60
80
100
120
40
60
80
100
15
20
25
-15
-20
Input coefficient (%)
Capacity coefficient (%
)
Input coefficient (%)
Capacity coefficient (%
)
Cooling capacity ratio (maximum capacity)
Heating capacity ratio (maximum capacity)
1-7. Capacity Correction Graph According to Temperature Condition
U-160PE2R8A / U-180PE2R8A / U-200PE2R8A / U-224PE2R8A (For 50 Hz)
Indoor air intake temp (WB)
22WB
19WB
16WB
22WB
19WB
16WB
Indoor air intake temp (WB)
Outdoor air intake temp (°C DB)
16
°C
20
°C
24
°C
Outdoor air intake temp (°C DB)
24
°C
20
°C
16
°C
1. The graphs "
" of the characteristics show the value under the following conditions.
Equivalent tubing length
: 7.5m
Difference of elevation
: 0m
Wind speed
: High
2. "
" marking indicates the maximum capacity / maximum power consumption under the JIS condition.
Maximum capacity indicates the maximum value in the parentheses of the specifications (cooling and heating capacity).
3. The characteristic of heating capacity excludes the decline of capacity when frosting (including defrost drive).
NOTE 1
Indoor air intake temp (
°C
WB)
Indoor air intake temp (
°C
WB)
0.88
0.88
0.88
0.88 0.88 0.88 0.88
0.86
0.88
0.83 0.83
0.82
0.82
0.83 0.83
-20
-15
-10
-9
-8
-7
-6
-5
-4
-3
-2
-1
1.0
7
0
1
2
6
5
4
3
0.91 0.95
0.85 0.89
To calculate the heating capacity with consideration for frosting / defrosting operation, multiply the heating
capacity found from the capacity graph by the correction coefficient from the table above.
Outdoor unit heating capacity correction coefficient during of frosting / defrosting
(RH approximately 85%)
Outdoor intake air
temperature
°C WB
Correction coefficient
ղ
Graph of capacity change characteristics resulting from tubing length and elevation difference
0
98
96
94
92
%
100
10
20
30
40
50
Elevation difference (m)
<Cooling>
Base capacity
change rate
Equivalent length (m)
(Performance correction coefficients by elevation difference of refrigerant tube length [performance change rate ÷ 100] is
calculated by the following line map.)
0
99
98
97
96
95
%
100
-30
-10
0
10
20
30
50
10
20
30
40
-20
-30
-10
0
10
20
30
-20
Elevation difference (m
)
Equivalent length (m)
<Heating>
Base capacity
change rate
*The positive side for the elevation difference indicates that the outdoor unit is installed at a higher position than the indoor units.
The negative side indicates the opposite.
0
20
40
60
80
100
120
140
U -180PE2R 8A
Pow
er consumption ratio (%
)
Capacity (W
)
R ated capacity ratio for cooling
R ated capacity ratio for h eating
U -200PE2R 8A
U -224PE2R 8A
R ated capacity ratio for cooling
R ated capacity ratio for h eating
1. The graphs "
" of the characteristics show the v alue under the f ollow ing conditions.
Eq uiva lent tub ing length
: 7. 5m
D if f erence of eleva tion
: 0m
W
ind speed
: High
2. "
" marki ng indicates the rated capacity / rated pow er consumption under the JI S condition.
"
" marki ng indicates the maximum capacity / maximum pow er consumption under the JI S condition.
3. The characteristic of heating capacity excludes the decline of capacity w hen f rosting (including def rost driv e).
N O TE 2
0
20
40
60
80
100
120
140
Pow
er consumption ratio (%
)
Capacity (W
)
0
20
40
60
80
100
120
140
Pow
er consumption ratio (%
)
Capacity (W
)
R ated capacity ratio for cooling
R ated capacity ratio for h eating
0
20
40
60
80
100
120
140
Pow
er consumption ratio (%
)
Capacity (W
)
0
20
40
60
80
100
120
140
Pow
er consumption ratio (%
)
Capacity (W
)
0
20
40
60
80
100
120
140
Pow
er consumption ratio (%
)
Capacity (W
)
3
124%
113%
136%
122%
135%
124%
0
20
40
60
80
100
120
140
U -160PE2R 8A
Pow
er consumption ratio (%
)
Capacity (W
)
R ated capacity ratio for cooling
R ated capacity ratio for h eating
0
20
40
60
80
100
120
140
Pow
er consumption ratio (%
)
Capacity (W
)
139%
131%
3
3
3
3
SM830262-00_大洋州向け シングル天埋_TD&SM.indb 2
18/01/26 13:2 :24
Содержание S-160PE1R5A
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