System Design
1. System Configuration
D-3
(2) Calculation of actual performance
Indoor units with up 130% of outdoor unit capacity can be connected.
* Up to 24 indoor units can be connected to an outdoor unit.
Multi-unit air conditioning system performance depends on ambient temperature, piping lengths and
mounting height differences, so each correction factor should be taken into account when selecting the
model type.
(1) Dependence of multi-unit air conditioning system performance on installation conditions
1) Indoor unit cooling capability =
(Outdoor unit rated cooling capacity)
Note 1
× (Indoor unit rated cooling capacity)
Note 3
÷ (Total rated cooling capacity of the indoor units)
Note 5
× (Correction factor for temperature and connected capacity, from performance characteristics)
Note 7
× (Correction factor for piping length)
Note 8
2) Indoor unit heating capability =
(Outdoor unit rated heating capacity)
Note 2
× (Indoor unit rated heating capacity)
Note 4
÷ (Total rated heating capacity of the indoor units)
Note 6
× (Correction factor for temperature and connected capacity, from the performance characteristics)
Note 7
× (Correction factor for piping length)
Note 8
Note 1. Outdoor unit rated total cooling capacity (see the outdoor unit specification table) is the cooling
capacity under JIS conditions (indoor side: 27°CDB,19°CWB , outdoor side: 35°CDB,-°CWB)
Note 2. Outdoor unit rated total heating capacity (see the outdoor unit specification table) is the
heating capacity under JIS conditions (indoor side: 20°CDB, -°CWB , outdoor side: 7°CDB,
6°CWB)
Note 3. Read the rated cooling capacity of the applicable indoor unit from the indoor unit specification table.
Note 4. Read the rated heating capacity of the applicable indoor unit from the indoor unit specification table.
Note 5. Read the rated cooling capacity of the applicable indoor unit from the indoor unit specification
table, and obtain the total for all units..
Note 6. Read the rated heating capacity of the applicable indoor unit from the indoor unit specification
table, and obtain the total for all units..
Note 7. Read the percentage data at the required temperature from the relevant capacity table in the
“Model Basic Data Table” for the outdoor unit, and divide by 100. (Contact your Sanyo
business representative for the Model Basic Data Table.)
*In the case of two outdoor units, calculate as follows:
Σ
(Correction factor for outdoor unit × rated capacity of outdoor unit)
Σ
(Rated capacity of outdoor unit)
Example) Connecting two units (A/C)
α
1
= Correction factor of outdoor unit 1, W
1
= Rated cooling capacity of outdoor unit 1
α
2
= Correction factor of outdoor unit 2, W
2
= Rated cooling capacity of outdoor unit 2
α
1
× W
1
+
α
2
× W
2
W
1
+ W
2
Note 8. Correction factor for piping length
Determine the effective length of refrigerant piping and the mounting height difference
between outdoor and indoor units (positive when the outdoor unit is higher, and negative
when the indoor unit is higher). Read the correction factor from the “Performance correction
for refrigerant piping length” for the outdoor unit, and divide by 100 for percentage.
System correction factor =
System correction factor =
Summary of Contents for ECO G SGP-EW120M2G2W
Page 3: ...A 1 System Configuration Contents 1 Type Configuration 1 Outdoor unit A 2 ...
Page 12: ...Outdoor Unit 3 External Dimensions B 8 ...
Page 13: ...Outdoor Unit 4 Wiring Diagram B 9 ...
Page 14: ...Outdoor Unit 5 Performance Characteristics B 10 Cooling Heating SGP EW120M2G2W ...
Page 15: ...Outdoor Unit 5 Performance Characteristics B 11 Cooling Heating SGP EW150M2G2W ...
Page 16: ...Outdoor Unit 5 Performance Characteristics B 12 Cooling Heating SGP EW190M2G2W ...
Page 17: ...Outdoor Unit 5 Performance Characteristics B 13 Cooling Heating SGP EW240M2G2W ...
Page 18: ...Outdoor Unit 6 Operating Sound Level Characteristics B 14 1 Standard Mode ...
Page 19: ...Outdoor Unit 6 Operating Sound Level Characteristics B 15 ...
Page 20: ...Outdoor Unit 6 Operating Sound Level Characteristics B 16 ...
Page 21: ...Outdoor Unit 6 Operating Sound Level Characteristics B 17 ...
Page 22: ...Outdoor Unit 6 Operating Sound Level Characteristics B 18 2 Quiet Mode ...
Page 23: ...Outdoor Unit 6 Operating Sound Level Characteristics B 19 ...
Page 24: ...Outdoor Unit 6 Operating Sound Level Characteristics B 20 ...
Page 25: ...Outdoor Unit 6 Operating Sound Level Characteristics B 21 ...
Page 28: ...Control Related 1 System Block Diagram C 2 ...
Page 29: ...Control Related 2 Remote Control Warning List C 3 ...
Page 30: ...Control Related 2 Remote Control Warning List C 4 ...
Page 31: ...Control Related 2 Remote Control Warning List C 5 ...
Page 76: ...Installation Work 1 Points regarding refrigerant pipe work E 3 APR P680BG ...
Page 77: ...Installation Work 1 Points regarding refrigerant pipe work E 4 APR P1350BG ...
Page 78: ...Installation Work 1 Points regarding refrigerant pipe work E 5 APR CHP680BG APR CHP1350BG ...
Page 86: ...Installation Work 2 Points regarding electrical work outdoor unit E 13 ...
Page 87: ...Installation Work 3 Outdoor unit installation work E 14 ...
Page 88: ...Installation Work 3 Outdoor unit installation work E 15 ...
Page 89: ...Installation Work 3 Outdoor unit installation work E 16 ...
Page 90: ...Installation Work 3 Outdoor unit installation work E 17 ...
Page 91: ...Installation Work 3 Outdoor unit installation work E 18 ...
Page 92: ...Installation Work 3 Outdoor unit installation work E 19 ...
Page 93: ...Installation Work 3 Outdoor unit installation work E 20 ...
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Page 96: ...Installation Work 3 Outdoor unit installation work E 23 ...
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Page 106: ...Installation Work 3 Outdoor unit installation work E 33 ...