Outdoor Units, 50Hz, R410A

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1 LG AIR CONDITIONERS Outdoor Units, 50Hz, R410A 20 Yoido-dong, Youngdungpo-gu, Yoido P.O.Box 355 Seoul , Korea Phone: Fax: /8 Approvals: EN ISO 9001 BS EN ISO 9001 ANSI/ASQC Q9001 P/No.: 3828A20429E For continual product development, LG reserves the right to change specifications without notice LG Electronics INC. Printed in Korea. November/2004 KS A 9001 LUU50-GA1

2 LG Airconditioners Product Data TABLE OF CONTENTS 1 Outdoor Units Introduction...3 MPS Inverter Single A(AUUW-B, AUUW-0 / R410A) MPS Inverter Single A-Synchro(AUUW-0 / R410A) MPS Variable Single A-Synchro(AUUH-0 / R410A) Single A Outdoor Units 1

3 2 Single A Outdoor Units Single Split R410A MPS Inverter

4 Introduction Introduction Models List Outdoor Units - R410A (AUUW-B, AUUW-0) Series Model name Power supply AUUW186B AUUW246B MPS Inverter Heat Pump AUUW306B AUUW366B 1Ø, V, 50Hz AUUW4860 AUUW6060 Indoor Unit Matching LG s system consist of one outdoor unit which can match with three different indoor units as individual system. The indoor units are ceiling cassette, ceiling concealed duct and ceiling & floor types. Outdoor unit Indoor unit Type Model name Ceiling Cassette ATNH186ELFB AUUW186B Ceiling & Floor AVNH186BLAB Ceiling Concealed Duct ABNH186HLAB Ceiling Cassette ATNH246FLFB AUUW246B Ceiling & Floor AVNH246BLAB Ceiling Concealed Duct ABNH246GLAB Ceiling Cassette ATNH306FLFB AUUW306B Ceiling & Floor AVNH306BLAB Ceiling Concealed Duct ABNH306GLAB AUUW366B Ceiling Cassette ATNH366DLFB Ceiling Concealed Duct ABNH366GLAB AUUW4860 Ceiling Cassette ATNH486DLFB Ceiling Concealed Duct ABNH486RLAB AUUW6060 Ceiling Cassette ATNH606DLFB Ceiling Concealed Duct ABNH606RLAB Single A Outdoor Units 3

5 Introduction Synchro Outdoor Unit R410A (AUUW-0) Synchro : Simultaneous Operation System One large room can be cooled or heated simultaneously by duo, trio or quartet indoor units according to the environmental needs Models List Series Model name Power supply MPS Inverter Heat Pump AUUW4860 AUUW6060 1Ø, V, 50Hz Table of Combination Possible indoor units: indoor unit series(atnh12-36****b, AVNH12-30****B, ABNH18-36****B) Possible combination of indoor units Synchro Duo Trio Quartet Outdoor units ODU ODU ODU IDU IDU IDU IDU IDU IDU IDU IDU IDU AUUW (PMUB11A) (PMUB23A) (PMUB23A) (PMUB111A) (PMUB1111A) AUUW (PMUB11A) (PMUB23A) (PMUB23A) (PMUB111A) (PMUB112A) (PMUB1111A) ODU : Outdoor unit, IDU : Indoor unit 4 Single A Outdoor Units

6 Introduction Synchro Outdoor Unit R410A (AUUH-0) Synchro : Simultaneous Operation System One large room can be cooled or heated simultaneously by duo, trio or quartet indoor units according to the environmental needs Models List Series Model name Power supply MPS Variable Heat Pump AUUH7280 AUUH Ø, V, 50Hz Table of Combination Possible indoor units: indoor unit series(atnh18-60****b, AVNH18-30****B, ABNH18-60****B) Possible combination of indoor units Synchro Duo Trio Outdoor units ODU ODU IDU IDU IDU IDU IDU AUUH (PMUB11A) (PMUB23A) (PMUB111A) (PMUB112A) (PMUB112A) (PMUB122A) AUUH (PMUB11A) (PMUB23A) (PMUB23A) (PMUB111A) (PMUB112A) (PMUB112A) (PMUB122A) (PMUB122A) Quartet Outdoor units ODU IDU IDU IDU IDU AUUH7280 AUUH (PMUB1111A) (PMUB1111A) ODU : Outdoor unit, IDU : Indoor unit Single A Outdoor Units 5

7 Introduction Model Number Nomenclature A U U W B Serial Number Electric Standard (Phase, Volts, Freq) 6:1Ø,220V~240V,50Hz 8:3Ø,380V~415V,50Hz Nominal Cooling Capacity in Btu/h 18 : 18,000 Btu/h 72 : 72,000 Btu/h 24 : 24,000 Btu/h 100 : 100,000 Btu/h 30 : 30,000 Btu/h 36 : 36,000 Btu/h 48 : 48,000 Btu/h 60 : 60,000 Btu/h Model Type W : Inverter Heat Pump H : Heat Pump Indicates that this is a R410A outdoor unit 6 Single A Outdoor Units

8 (R410A Outdoor Units) AUUW-B, AUUW-0 1 Contents 1. Features & Benefits Specifications Dimensional Drawings Wiring Diagrams Piping Diagrams Performance Data The Coefficient of Capacity Change Electric Characteristics Operation Range Sound Levels Installation Single A Outdoor Units 1-1

9 Single Split R410A MPS Inverter Features & Benefits 1. Features & Benefits MPS(Multi Power System) Inverter Control Energy saving with MPS inverter control The MPS inverter is a big energy saving technology which uses one high efficiency constant speed compressor and the DC inverter compressor. According to air-conditioning load, the operation is controlled precisely Precise inverter frequency control for inverter compressor enables to reduce capacity of individual control units. MPS Control - Load is low : Only Inverter Comp. - Load is high : Inverter Comp + Constant Comp Big Energy saving with using MPS DC inverter High E.E.R. DC Inverter Compressor Powerful DC Compressor Constant Speed Compressor + + Capacity Control small Inverter compressor operation I Inverter compressor operation Constant Compressor operation II Load Inverter compressor operation Constant Compressor operation Constant Compressor operation III large Operatig Range I I + II 18k grade 24k/30k/36k Grade I + II + III 48k/60k Grade + ( 18k means 18,000 Btu/h) + Compressor Application + Inverter only Inverter +Constant Inverter +Constant +Constant MPS Inverter systems use high COP DC Compressor that take charge of about 50% of total capacity and high COP constant speed compressors. - Minimum operation ( About 12~50% load operation ) : High COP DC Compressor covers 12~50% load, COP of system is higher than DC Inverter only system. - Standard operation ( About 50~90% load operation ) : High COP DC Compressor covers about 10~40% load and constant speed compressor covers 50% load, COP of system less inferior or equivalent to DC Inverter only system. - Maximum operation ( About 90~130% load operation ) : COP of DC Inverter compressor goes down according to frequency. In case of MPS system, DC Inverter compressor rotates between high COP frequency and constant speed compressor covers rest load. COP of system is higher than DC Inverter Single system. Seasonal EER of DC Inv MPS is the best. 1-2 Single A Outdoor Units

10 Single Split R410A MPS Inverter Features & Benefits Low Ambient Control If the outdoor temperature drops below certain temperature, liquid back to the compressor is prevented by reducing outdoor fan speed. It can prevent frosting of evaporator and keep cooling operation on. Heating Capacity Improved Using MPS technology, LG's air conditioning system achieved world's best wide range of operation which is from 12%~120% in cooling mode and from 12%~138% in heating mode to give quicker cooling and heating. Compared cooling capacity 120%~115% 112% Heating 100% 100% 100% Cooling 124% 110% 138%~133% 120% 1 - Standard heating capacity 120% - Max heating capacity 138% Before Now Befor Now STD Max Energy Saving Gold Fin - Outdoor Heat Exchanger fins are coated with anticorrosive & hydrophilic layers. It prevents the corrosion of heat exchanger. Fins remain as new even after long time of operation and maintain efficiency of heat exchanger constant. It also saves power & maintenance Cost Uncoated Aluminum Pitting Corrosion 10mm Gold fin 10mm Salt Spray Test Result : After 360 hours [ Test Standard: ASTM B-117, KS D 9502 ] Single A Outdoor Units 1-3

11 Single Split R410A MPS Inverter Specifications 2. Specifications Nominal Capacity and Nominal Input For combination indoor units + outdoor units : Indoor Units Outdoor Units Nominal Capacity Cooling Btu/h (Min~Rating~Max) W Heating Btu/h W Nominal Input Cooling W (Min~Rating~Max) Heating W EER Btu/h.W(W/W) COP Btu/h.W(W/W) ATNH186ELFB ATNH246FLFB ATNH306FLFB ATNH366DLFB AUUW186B AUUW246B AUUW306B AUUW366B 4,600~18,000~21,600 4,600~24,000~28,800 4,600~28,000~33,600 5,000~36,000~48,000 1,348~5,275~6,329 1,348~7,034~8,440 1,348~8,205~9,847 1,465~10,549~14,067 4,800~20,300~24,840 4,800~27,600~32,000 4,800~32,200~38,640 5,500~41,400~53,000 1,407~5,949~7,280 1,407~8,089~9,376 1,407~9,437~11,324 1,612~12,130~15, ~1,640~2, ~2,190~2, ~2,550~2, ~3,280~4, ~1,650~2, ~2,210~3, ~2,600~4, ~3,340~5, (3.22) 10.96(3.21) 10.98(3.22) 10.98(3.22) 12.30(3.61) 12.49(3.66) 12.38(3.63) 12.40(3.63) Nominal Capacity and Nominal Input For combination indoor units + outdoor units : Indoor Units Outdoor Units Nominal Capacity Cooling Btu/h (Min~Rating~Max) W Heating Btu/h W Nominal Input Cooling W (Min~Rating~Max) Heating W EER Btu/h.W(W/W) COP Btu/h.W(W/W) ABNH186HLAB ABNH246HLAB ABNH306GLAB ABNH366GLAB AUUW186B AUUW246B AUUW306B AUUW366B 4,600~18,000~21,600 4,600~24,000~28,800 4,600~30,000~36,000 5,000~36,000~48,000 1,348~5,275~6,329 1,348~7,034~8,440 1,348~8,791~10,549 1,465~10,549~14,067 4,800~20,300~24,840 4,800~27,600~32,000 4,800~34,500~41,400 5,500~41,400~53,000 1,407~5,949~7,280 1,407~8,089~9,376 1,407~10,110~12,133 1,612~12,130~15, ~1,640~2, ~2,190~2, ~2,730~2, ~3,280~4, ~1,650~2, ~2,210~3, ~2,800~4, ~3,340~5, (3.22) 10.96(3.21) 10.99(3.22) 10.98(3.22) 12.30(3.61) 12.49(3.66) 12.32(3.61) 12.40(3.63) Nominal Capacity and Nominal Input For combination indoor units + outdoor units : Indoor Units Outdoor Units Nominal Capacity Cooling Btu/h (Min~Rating~Max) W Heating Btu/h W Nominal Input Cooling W (Min~Rating~Max) Heating W EER Btu/h.W(W/W) COP Btu/h.W(W/W) AVNH186BLAB AVNH246BLAB AVNH306BLAB AUUW186B AUUW246B AUUW306B 4,600~18,000~21,600 4,600~24,000~28,800 4,600~26,400~31,680 1,348~5,275~6,329 1,348~7,034~8,440 1,348~7,737~9,284 4,800~20,300~24,840 4,800~27,600~32,000 4,800~30,300~36,360 1,407~5,949~7,280 1,407~8,089~9,376 1,407~8,880~10, ~1,640~2, ~2,190~2, ~2,410~2, ~1,650~2, ~2,210~3, ~2,440~4, (3.22) 10.96(3.21) 10.95(3.21) 12.30(3.61) 12.49(3.66) 12.42(3.64) 1-4 Single A Outdoor Units

12 Single Split R410A MPS Inverter Specifications Technical Specification Outdoor Units AUUW186B AUUW246B AUUW306B AUUW366B Running Current Cooling/Heating A Starting Current Cooling/Heating A Power Supply Ø,V,Hz Power Factor % Compressor Type (Inverter) Model Quantity Motor Input W Oil Charge cc Oil Type Compressor Type (Constant) Model Quantity Motor Input W Oil Charge cc Oil Type Refrigerant charge Charge* g(oz) Type Control Coil Tube Size (OD) inch(mm) Fins per inch No. of Rows & Column/No. Fan motor Model Output W Capacitor µf/vac Fan Type No. Used / Diameter EA/inch(mm) Discharge Side / Top Air Circulation CMM(CFM) Noise Level(H/L) Sound Press,1m db(a)±1 Defrosting SVC Valve Liquid inch(mm) Gas inch(mm) Dimensions W*H*D inch(mm) Net Weight Outdoor kg(lbs) Power Supply Cable(Includes earth) No.* mm 2 Interunit Cable(Includes earth) No.* mm 2 Max. Piping Length/Elevation m Additional Refrigerant Charge (Over 7.5m) g/m Packing Dimension W*H*D inch(mm) Stuffing Quantity Without S/Parts 20/40ft 2.3~7.5/2.6~ ~13.2/3.3~ ~13.0/3.3~ ~20.9/4.6~ ,220~240,50 1,220~240,50 1,220~240,50 1,220~240,50 94~98 94~98 95~98 91~98 e-scroll e-scroll e-scroll e-scroll 5CS130X 5CS130X 5CS130X 5CS130X ,405 1,405 1,405 1, RB68A RB68A RB68A RB68A - Rotary Rotary Rotary - 5KS150EAB01 5KS205DAX 5JS315D ,290 1,760 2, ,130 - RB68A RB68A RB68A 1500(52.91) 1750(61.72) 2100(74.07) 3500(123.45) R410A R410A R410A R410A L.E.V L.E.V L.E.V L.E.V 0.276(7.0) 0.276(7.0) 0.276(7.0) 0.276(7.0) R,28C 2R,36C 2R,48C 2R,52C IC28640LG28S IC28640LG28Y IC9625LGSY x 2 IC28640LG28J x x x 2 6/370 6/ /370 6/370 Propeller Propeller Propeller Propeller 1/18.1(460) 1/18.1(460) 2/16.5(420) 2/18.1(460) Side Discharge Side Discharge Side Discharge Side Discharge 50(1766) 51(1801) 32(1130)*2 53(1872) *2 51/45 52/46 50/46 58/54 Invertion cycle Invertion cycle Invertion cycle Invertion cycle 1/4 (6.35) 1/4 (6.35) 1/4 (6.35) 1/4 (6.35) 1/2 (12.7) 1/2 (12.7) 5/8 (15.88) 5/8 (15.88) 34.3*25.8*12.6 (870*655*320) 34.3*31.5*12.6 (870*800*320) 34.3*40.9*12.6 (870*1038*320) 35.4*45.8*14.5 (900*1165*370) 52(115) 69(152) 80(176) 105(231) 3*2.5 3*2.5 3*2.5 3*5.0 4*0.75 4*0.75 4*0.75 4* /30 50/30 50/30 50/ *28.1*17.3(1020*715*440) 40.2*34.3*17.3(1020*870*440) 41.1*44.9*17.3(1045*1140*440) 41.7*48.0*18.3(1060*1220*465) 81/171 54/114 51/111 27/55 1 Notes: 1. Capacities are based on the following conditions: Cooling: - Indoor Temperature 27 C(80.6 F) DB /19 C(66.2 F) WB - Outdoor Temperature 35 C(95 F) DB /24 C(75.2 F) WB Heating: - Indoor Temperature 20 C(68 F) DB / 15 C(59 F) WB - Outdoor Temperature 7 C(44.6 F) DB / 6 C(42.8 F) WB Piping Length - Interconnecting Piping Length 7.5m(25ft) - Level Difference of Zero. 2. * : Full factory charge is shipped in the outdoor unit. The charge is determined based on 7.5m(25ft) of line. 3. Due to our policy of innovation some specifications may be changed without notification. Single A Outdoor Units 1-5

13 Single Split R410A MPS Inverter Specifications Nominal Capacity and Nominal Input For combination indoor units + outdoor units : Indoor Units Outdoor Units Nominal Capacity Cooling Btu/h (Min~Rating~Max) W Heating Btu/h W Nominal Input Cooling W (Min~Rating~Max) Heating W EER Btu/h.W(W/W) COP Btu/h.W(W/W) ATNH486DLFB ATNH606DLFB AUUW4860 AUUW ,657~48,000~55,200 21,766~56,000~64,400 5,468~14,067~16,178 6,379~16,412~18,874 21,455~55,200~63,480 25,031~64,400~70,840 6,288~16,178~18,604 7,336~18,874~20,761 2,155~4,898~5,500 2,566~5,832~6,500 2,219~5,044~5,700 2,910~6,613~7, Nominal Capacity and Nominal Input For combination indoor units + outdoor units : Indoor Units Outdoor Units Nominal Capacity Cooling Btu/h (Min~Rating~Max) W Heating Btu/h W Nominal Input Cooling W (Min~Rating~Max) Heating W EER Btu/h.W(W/W) COP Btu/h.W(W/W) ABNH486RLAB ABNH606RLAB AUUW4860 AUUW ,657~48,000~55,200 21,766~56,000~64,400 5,468~14,067~16,178 6,379~16,412~18,874 21,455~55,200~63,480 25,031~64,400~70,840 6,288~16,178~18,604 7,336~18,874~20,761 2,155~4,898~5,500 2,566~5,832~6,500 2,219~5,044~5,700 2,910~6,613~7, Single A Outdoor Units

14 Single Split R410A MPS Inverter Specifications Technical Specification Outdoor Units AUUW4860 AUUW6060 Running Current Cooling/Heating A Starting Current Cooling/Heating A Power Supply Ø,V,Hz Power Factor % Compressor Type (Inverter) Model Quantity Motor Input W Oil Charge cc Oil Type Compressor Type (Constant) Model Quantity Motor Input W Oil Charge cc Oil Type Refrigerant charge Charge* g(oz) Type Control Coil Tube Size (OD) inch(mm) Fins per inch No. of Rows & Column/No. Fan motor Model Output W Capacitor µf/vac Fan Type No. Used / Diameter EA/inch(mm) Discharge Side / Top Air Circulation CMM(CFM) Noise Level(H/L) Sound Press,1m db(a)±1 Defrosting SVC Valve Liquid inch(mm) Gas inch(mm) Dimensions W*H*D inch(mm) Net Weight Outdoor kg(lbs) Power Supply Cable(Includes earth) No.* mm 2 Interunit Cable(Includes earth) No.* mm 2 Max. Piping Length/Elevation m Additional Refrigerant Charge (Over 30m) g/m Packing Dimension W*H*D inch(mm) Stuffing Quantity Without S/Parts 20/40ft 8.5~26.6/8.6~ ~31.3/10.1~ ,220~240,50 1,220~240,50 90 ~ ~ 97 e-scroll e-scroll 5CS130X 5CS130X 1 1 1,405 1, RB68A RB68A Rotary Rotary 5JS315D 5JS315D x x x x 2 RB68A RB68A 7100(250.4) 7100(250.4) R410A R410A L.E.V L.E.V 0.276(7.0) 0.276(7.0) R,53C x 2 2R,53C x 2 ARE676E01 ARE676E /370 10/370 Propeller Propeller 1/20.7(526) 1/20.7(526) Top Discharge Top Discharge 90(3179) 90(3179) 59/56 59/56 Invertion cycle Invertion cycle 3/8 (9.52) 3/8 (9.52) 3/4 (19.05) 3/4 (19.05) 31.7*59.3*27.1 (806*1,507*690) 31.7*59.3*27.1 (806*1,507*690) 142(312) 148(326) 3*5.0 3*5.0 4*1.25 (Includes earth) 4*1.25 (Includes earth) 70/30 70/ *60.4*29.7 (875*1,535*755) 34.4*60.4*29.7 (875*1,535*755) 20/42 20/42 1 Notes: 1. Capacities are based on the following conditions: Cooling: - Indoor Temperature 27 C(80.6 F) DB /19 C(66.2 F) WB - Outdoor Temperature 35 C(95 F) DB /24 C(75.2 F) WB Heating: - Indoor Temperature 20 C(68 F) DB / 15 C(59 F) WB - Outdoor Temperature 7 C(44.6 F) DB / 6 C(42.8 F) WB Piping Length - Interconnecting Piping Length 7.5m(25ft) - Level Difference of Zero. 2. * : Full factory charge is shipped in the outdoor unit. Chargeless for 30m of piping length. 3. Due to our policy of innovation some specifications may be changed without notification. Single A Outdoor Units 1-7

15 Single Split R410A MPS Inverter Dimensional Drawings 3. Dimensional Drawings AUUW186B/AUUW246B W Air discharge grille Model Dimensions AUUW186B AUUW246B W mm H mm D mm L1 mm L2 mm L3 mm L4 mm L5 mm L6 mm L7 mm L8 mm L9 mm L10 mm L11 mm mm Ø6.35 Ø6.35 mm Ø12.7 Ø Single A Outdoor Units

16 Single Split R410A MPS Inverter Dimensional Drawings AUUW306B 4-holes for anchor bolts (Unit: mm) Number Name Descripition 1 Liquid side service valve(mm) Ø Gas side service valve(mm) Ø Air discharge grill 4 Control Cover Single A Outdoor Units 1-9

17 Single Split R410A MPS Inverter Dimensional Drawings AUUW366B 4-hole for anchor bolts W H L2 L3 D L1 Control cover L4 L10 L11 Liquid side 3-way valve Gas side 3-way valve L5 L7 L6 L8 L9 Model Dimensions AUUW366B W mm 900 H mm 1,165 D mm 370 L1 mm 460 L2 mm 45 L3 mm 410 L4 mm 1,135 L5 mm 30 L6 mm 550 L7 mm 175 L8 mm 175 L9 mm 112 L10 mm 120 L11 mm 83 mm Ø6.35 mm Ø Single A Outdoor Units

18 Single Split R410A MPS Inverter Dimensional Drawings AUUW48/ (bolt hole) (bolt hole) Air outlet Air inlet Air inlet Service Panel Knockout hole (For the control wiring, the power supply, refrigerant connecting pipe) 220 Knockout hole (For the control wiring, the power supply, refrigerant connecting pipe) 63 (Unit : mm) Single A Outdoor Units 1-11

19 Single Split R410A MPS Inverter Wiring Diagrams 4. Wiring Diagrams AUUW186B INVERTER COMPRESSOR OUTDOOR WIRING DIAGRAM RD BL YL REACTOR OR LEV CN-LEV1 RD BL YL BK BK U V W CN-COIL1 CN-COIL2 MAIN PCB CN-FAN(A) BL BK BR YL FAN CN-JIG-PC CN-CENTRAL CN-COM CN-WRITER CN-TH2 CN-TH1 CN-TH3 (AIR/PIPE) (H/SINK) (SUC/DISP-I) CN-4WAY CN-PRESS 4WV 4WAY VALVE LOW PRESS SWITCH L N CN-GND1 CN-GND2 BR BL GN/YL BR BL BK BK BK 1(L) 2(N) 1(L) 2(N) 3 POWER SUPPLY TO INDOOR UNIT Notes: BL RD YL BLUE RED YELLOW BK OR GN/YL BLACK ORANGE GREEN/YELLOW BR WH BROWN WHITE FIELD WIRING 1-12 Single A Outdoor Units

20 Single Split R410A MPS Inverter Wiring Diagrams AUUW246B INVERTER COMPRESSOR OUTDOOR WIRING DIAGRAM RD BL YL REACTOR LEV CN-LEV1 RD BL YL U V W BK BK CN-COIL1 CN-COIL2 CN-FAN(A) OR BL BK BR YL FAN 1 CN-JIG-PC CN-CENTRAL CN-COM BR GN/YL L BL BR CN-WRITER N BL MAIN PCB CN-TH2 CN-TH1 CN-TH3 CN-TH4 (AIR/PIPE) (H/SINK) (SUC/DISP-I) (DISP-C) BK BR CN-4WAY CN-HEATER CN-P/ICE CN-PRESS CN-OIL/S RY-C/COMP BL GND-1 GND-2 4WV 4WAY VALVE SV SV CRANKCASE HEATER DEFROST (HEATING) BR BL RD OPTION LOW PRESS SWITCH OIL SEPERATOR OLP CONSTANT COMPRESSOR C R S 1(L) 2(N) 1(L) 2(N) 3 POWER SUPPLY TO INDOOR UNIT Notes: BL RD YL BLUE RED YELLOW BK OR GN/YL BLACK ORANGE GREEN/YELLOW BR WH BROWN WHITE FIELD WIRING Single A Outdoor Units 1-13

21 Single Split R410A MPS Inverter Wiring Diagrams AUUW306B INVERTER COMPRESSOR OUTDOOR WIRING DIAGRAM RD BL YL REACTOR LEV RD BL YL CN-LEV1 CN-CENTRAL CN-JIG-PC CN-COM BR GN/YL L CN-WRITER BL BR N V W BK MAIN PCB BK CN-FAN(A) CN-COIL1 CN-COIL2 CN-FAN(B) CN-TH2 CN-TH1 CN-TH3 CN-TH4 (AIR/PIPE) (H/SINK) (DISP-I/SUG) (DISP-C) BL BK BR OR BL BK BR YL OR BL BK BR YL CN-4WAY 4WV 4WAY VALVE CN-HEATER CN-P/ICE CN-PRESS CN-OIL/S RY-C/COMP BL GND-1 GND-2 SV FAN(A) FAN(B) CRANKCASE HEATER OPTION DEFROST (HEATING) LOW PRESS SWITCH SV OIL SEPERATOR CONSTANT COMPRESSOR BR C BL R RD S 1(L) 2(N) 1(L) 2(N) 3 POWER SUPPLY TO INDOOR UNIT Notes: BL RD YL BLUE RED YELLOW BK OR GN/YL BLACK ORANGE GREEN/YELLOW BR WH BROWN WHITE FIELD WIRING 1-14 Single A Outdoor Units

22 Single Split R410A MPS Inverter Wiring Diagrams AUUW366B INV-COMP WIRING DIAGRAM LEV CN-LEV1 CN-CENTRAL CN-JIG-PC RD BL YL RD U CN-WRITER V TH2 (AIR/PIPE) W TH1 (H/SINK) REACTOR BL YL BK BK CN-COIL1 CN-COIL2 MAIN PCB TH3 (I/SUC-DISP) TH4 (DISP-C) CN-FAN(A) CN-FAN(B) CN-4WAY CN-HEATER CN-OIL/S OR BL BK BR YL OR BL BK BR YL YL 4WV 4WAY VALVE FAN (A) FAN (B) OPTION CRANKCASE HEATER SV OIL SEPERATOR(INV) 1 CN-COM FUSE 250V,20A L N BK NOISE FILTER GND-2 GND-1 RELAY CN-PRESS WH BL LOW PRESSURE SWITCH CONS-COMP RD R S C GN/YL BR BL BL BR GN/YL BR BR T/B BL BR BR BL BR 1(L) 2(N) 1(L) 2(N) 3 Power Supply To Indoor Unit Notes: BL RD YL BLUE RED YELLOW BK OR GN/YL BLACK ORANGE GREEN/YELLOW BR WH BROWN WHITE FIELD WIRING Single A Outdoor Units 1-15

23 Single Split R410A MPS Inverter Wiring Diagrams AUUW48/6060 INV-COMP(A) WIRING DIAGRAM RD BL YL REACTOR OR RD BL YL CN-FAN(A) BL BK BR YL FMo LEV CN-LEV1 CN-CENTRAL U PIPE LENGTH SW1 S/W_ADDRESSING CN-WRITER V TH2 W TH1 CN-COIL1 CN-COIL2 NUMBER PIN NUMBER PIN NUMBER PIN MAIN PCB ASSY TH3 TH4 TH5 CN-4WAY CN-C/COMP2 CN-HEATER CN-HEATER2 4WV POWER RELAY 4WAY VALVE BR BL OPTION CRANKCASE HEATER OPTION CRANKCASE HEATER_2 CONS-COMP(C) C R S BR BL CN-COM CN-JIG-PC (AIR/PIPE) NOISE FILTER (H/SINK) (SUC/DISP_A) BK (DISP_C)(DISP_B) CN-C/FAN CN-OIL/S CN-PRESS FM COOLING FAN SV OIL SEPERATOR LOW PRESSURE SWITCH FUSE 250V,20A GN/YL L BR N BL GND-2 BK BL BR GND-1 BK GN/YL RY-C/COMP BR T/B BR BL CONS-COMP(B) WH C BL R RD S BL T/B FMo INV CONS- TH 1(L) 2(N) Tm Power Supply 1Ø, V, 50Hz WIRING OF FIELD (CONNECTING WIRE) OUTDOOR FAN MOTOR INVERTER CONSTANT TYPE THERMISTOR 1(L) 2(N) 3 1(L)2(N) 3 A UNIT B UNIT C UNIT D UNIT SV T/B Tm RY 1(L)2(N) 3 1(L)2(N) 3 1(L)2(N) 3 SOLENOID VALVE TERMINAL BLOCK MAIN TERMINAL BLOCK RELAY PTCR NOTE BL:BLUE BK:BLACK BR:BROWN OR:ORANGE RD:RED WH:WHITE YL:YELLOW GN/YL:GREEN/YELLOW 3854A20354W LEV LINEAR EXPANSION VALVE FM HEAT SINK COOLING FAN MOTOR NUMBER PIN INDOOR NUMBER INDICATING SWITCH S/W_ADDRESSING AUTO ADDRESSING SWITCH 1-16 Single A Outdoor Units

24 Single Split R410A MPS Inverter Piping Diagram 5. Piping Diagram AUUW186B OUTDOOR UNIT Refrigerant Flow Cooling Heating Reversing Valve 1 Low Pressure S/W Accumulator Heat Exchanger Inverter Compressor Field Piping Gas (Ø 12.7mm) Liquid (Ø 6.35mm) L.E.V Drier AUUW246B OUTDOOR UNIT Refrigerant Flow Cooling Heating Reversing Valve Check Valve Oil Seperator Check Valve Accumulator r Constant Compressor Inverter Compressor Solenoid Valve Heat Exchanger Field Piping Gas (Ø 12.7mm) Liquid (Ø 6.35mm) L.E.V. Low Pressure S/W Drier Solenoid Valve Single A Outdoor Units 1-17

25 Single Split R410A MPS Inverter Piping Diagram AUUW306B OUTDOOR UNIT Refrigerant Flow Cooling Heating Reversing Valve Check Valve Oil Seperator Check Valve Accumulator Constant Compressor Inverter Compressor Solenoid Valve Heat Exchanger Field Piping Gas (Ø 15.88mm) Liquid (Ø 6.35mm) L.E.V. Low Pressure S/W Drier Solenoid Valve(2) AUUW366B OUTDOOR UNIT Reversing Valve Refrigerant Flow Cooling Heating Check Valve Oil Seperator Check Valve Accumulator Constant Compressor Inverter Compressor Solenoid Valve Heat Exchanger Low Pressure S/W Field Piping Gas (Ø 15.88mm) Liquid (Ø 6.35mm) Drier L.E.V. Receiver 1-18 Single A Outdoor Units

26 Single Split R410A MPS Inverter Piping Diagram AUUW48/6060 OUTDOOR UNIT Refrigerant Flow Cooling Heating Reversing Valve Heat Exchanger 1 Accumulator Check Valve Check Valve Constant Compressor 2 Check Valve Oil Seperator Fan Field Piping Gas (Ø 19.05mm) Liquid (Ø 9.52mm) Constant Compressor 1 Low Pressure S/W Inverter Compressor L.E.V. Solenoid Valve Drier Receiver Single A Outdoor Units 1-19

27 Single Split R410A MPS Inverter Performance Data 6. Performance Data AUUW186B + ATNH186ELFB / AVNH186BLAB / ABNH186HLAB Cooling Capacity Model ATNH186ELFB AFR 13 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model AVNH186BLAB AFR 13.5 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model ABNH186HLAB AFR 16.5 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero Single A Outdoor Units

28 Single Split R410A MPS Inverter Performance Data AUUW186B + ATNH186ELFB / AVNH186BLAB / ABNH186HLAB Heating Capacity Model ATNH186ELFB AFR 13 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model AVNH186BLAB AFR 13.5 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model ABNH186HLAB AFR 16.5 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero. Single A Outdoor Units 1-21

29 Single Split R410A MPS Inverter Performance Data AUUW246B + ATNH246FLFB / AVNH246BLAB / ABNH246HLAB Cooling Capacity Model ATNH246FLFB AFR 15 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model AVNH246BLAB AFR 15 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model ABNH246HLAB AFR 18 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero Single A Outdoor Units

30 Single Split R410A MPS Inverter Performance Data AUUW246B + ATNH246FLFB / AVNH246BLAB / ABNH246HLAB Heating Capacity Model ATNH246FLFB AFR 15 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model AVNH246BLAB AFR 15 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model ABNH246HLAB AFR 18 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero. Single A Outdoor Units 1-23

31 Single Split R410A MPS Inverter Performance Data AUUW306B + ATNH306FLFB / AVNH306BLAB / ABNH306GLAB Cooling Capacity Model ATNH306FLFB AFR 19 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model AVNH306BLAB AFR 18 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model ABNH306GLAB AFR 26.5 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero Single A Outdoor Units

32 Single Split R410A MPS Inverter Performance Data AUUW306B + ATNH306FLFB / AVNH306BLAB / ABNH306GLAB Heating Capacity Model ATNH306FLFB AFR 19 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model AVNH306BLAB AFR 18 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model ABNH306GLAB AFR 26.5 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero. - Outdoor air : 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB Single A Outdoor Units 1-25

33 Single Split R410A MPS Inverter Performance Data AUUW366B + ATNH366DLFB / ABNH366GLAB Cooling Capacity Model ATNH366DLFB AFR 25 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model ABNH366GLAB AFR 32 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero Single A Outdoor Units

34 Single Split R410A MPS Inverter Performance Data AUUW366B + ATNH366DLFB / ABNH366GLAB Heating Capacity Model ATNH366DLFB AFR 25 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model ABNH366GLAB AFR 32 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero. - Outdoor air : 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB Single A Outdoor Units 1-27

35 Single Split R410A MPS Inverter Performance Data AUUW ATNH486DLFB / ABNH486RLAB Cooling Capacity Model ATNH486DLFB AFR 30 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model ABNH486RLAB AFR 40 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero Single A Outdoor Units

36 Single Split R410A MPS Inverter Performance Data AUUW ATNH486DLFB / ABNH486RLAB Heating Capacity Model ATNH486DLFB AFR 30 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model ABNH486RLAB AFR 40 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero. - Outdoor air : 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB Single A Outdoor Units 1-29

37 Single Split R410A MPS Inverter Performance Data AUUW ATNH606DLFB / ABNH606RLAB Cooling Capacity Model ATNH606DLFB AFR 34 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Model ABNH606RLAB AFR 50 Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero Single A Outdoor Units

38 Single Split R410A MPS Inverter Performance Data AUUW ATNH606DLFB / ABNH606RLAB Heating Capacity Model ATNH606DLFB AFR 34 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Model ABNH606RLAB AFR 50 Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero. - Outdoor air : 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB Single A Outdoor Units 1-31

39 Single Split R410A MPS Inverter The Coefficient of Capacity Change 7. The Coefficient of Capacity Change Cooling k 30k/36k 24k 48k/60k Capacity(%) Total pipe length(m) Heating k 30k/36k 24k 48k/60k Capacity(%) Total pipe length(m) 70 Notes: * Equivalent pipe length = Actual pipe length + number of bend x 0.3 * Refer to the specification for the maximum pipe length of each model Single A Outdoor Units

40 Single Split R410A MPS Inverter Electric Characteristics 8. Electric Characteristics Models Power Supply Compressor OFM IFM Indoor Unit Outdoor Unit Hz, Volts Voltage range MCA MFA LRA RLA kw FLA kw FLA ATNH186ELFB AVNH186BLAB AUUW186B ABNH186HLAB ATNH246FLFB AVNH246BLAB AUUW246B ABNH246HLAB Min. ATNH306FLFB , 198V AVNH306BLAB AUUW306B *2 0.46* ~240 Max. ABNH306GLAB V ATNH366DLFB AUUW366B *2 0.73* ABNH366GLAB ATNH486DLFB AUUW ABNH486RLAB ATNH606DLFB AUUW ABNH606RLAB Symbols: MCA: Minimum Circuit Amperes (A) MFA : Maximum Fuse Amperes(A) MSC : Maximum Starting Current Amperes(A) RLA : Rated Load Amperes(A) OFM : Outdoor Fan Motor kw : Fan Motor Rated Output(kW) FLA : Full Load Amperes(A) Starting current The relationship between the starting time and starting current RLA MSC Starting time Note : 1. Voltage Range Units are suitable for use on electrical system where voltage supplied to unit terminals is not below or above listed range limits. 2. Maximum allowable voltage unbalance between phase is 2%. 3. Select wire size based on the MCA 4. MFA is used to select the circuit breaker and ground fault circuit interrupter(each leakage circuit breaker). 5. RLA is based on the following conditions. Indoor temperature : 27 DB / 19.0 WB Outdoor temperature : 35 DB Single A Outdoor Units 1-33

41 Single Split R410A MPS Inverter Operation Limits 9. Operation Limits Item Range Inlet air temperature (Cooling) Outdoor air temperature C D.B.( F) 46(114.8) -10(14) Standard operation 14(57.2) 24(75.2) Indoor air temperature C W.B.( F) Inlet air temperature (Heating) Outdoor air temperature C W.B.( F) 15.5(59.9) -15(5) Standard operation 14(57.2) 28(82.4) Indoor air temperature C D.B.( F) Power source voltage Voltage at starting Rating ±10% Min. 85% of rating 1-34 Single A Outdoor Units

42 Single Split R410A MPS Inverter Sound Levels 10. Sound Levels Overall 1m Microphone 1m Notes: - Sound measured at 1m away from the center of the unit. - Data is valid at free field condition. - Data is valid at nominal operation condition. - Reference accoustic pressure 0dB=20µPa. - Sound level will vary depending on a range of factors such as the construction(acoustic absorption coefficient) of particular room in which the equipment is installed. - The operating conditions are assumed to be standard(ks conditions). 1 Model AUUW186B AUUW246B AUUW306B 50Hz, V Sound Pressure Levels(dBA) Sound Pressure Level Model AUUW366B AUUW4860 AUUW Hz, V Sound Pressure Levels(dBA) AUUW186B AUUW246B AUUW306B Sound Pressure Level (db re 20µPa ) NC-70 NC-65 NC-60 NC-55 NC-50 NC-45 NC-40 NC-35 NC-30 Sound Pressure Level (db re 20µPa ) NC-70 NC-65 NC-60 NC-55 NC-50 NC-45 NC-40 NC-35 NC-30 Sound Pressure Level (db re 20µPa ) NC-70 NC-65 NC-60 NC-55 NC-50 NC-45 NC-40 NC-35 NC NC-25 NC NC Octave Band Center Frequency (Hz) NC NC-20 NC Octave Band Center Frequency (Hz) Octave Band Center Frequency (Hz) NC-25 NC-20 NC-15 AUUW366B AUUW48/ Sound Pressure Level (db re 20µPa ) NC-70 NC-65 NC-60 NC-55 NC-50 NC-45 NC-40 NC-35 NC-30 Sound Pressure Level (db re 20µPa ) NC-70 NC-65 NC-60 NC-55 NC-50 NC-45 NC-40 NC-35 NC NC-25 NC NC-25 NC Octave Band Center Frequency (Hz) NC Octave Band Center Frequency (Hz) NC-15 Single A Outdoor Units 1-35

43 Single Split R410A MPS Inverter Installation 11. Installation 11.1 Selection of the best location If a roof is built over the unit to prevent direct sunlight or rain exposure, make sure that heat radiation from the condenser is not restricted. Do not place animals and plants in the path of the warm air. Take the air conditioner weight into account and select a place where noise and vibration are minimum. Select a place so that the warm air and noise from the air conditioner do not disturb neighbors. Rooftop Installations : If the outdoor unit is installed on a roof structure, be sure to level the unit. Ensure the roof structure and anchoring method are adequate for the unit location. Consult local codes regarding rooftop mounting. Model : AUUW18-366B Ensure that the space around the back is more than 30cm and sides is more than 30cm. The front of the unit should have more than 70cm of space. More than 30cm Sunroof More than 30cm Sunroof More than 50cm (Service space) Fence or obstacles Fence or obstacles More than 30cm More than 30cm More than 50cm More than 50cm More than 70cm More than 70cm Model : AUUW48/6060 (1) Individual installation Basic Space required A space of at least 250 mm is nessary at the back for inlet air. Tacking servicing, a space of about 750 mm should be provided at the front. Rear B C D E A : 750 mm or more B : 250 mm or more C : Top discharge(open in principle) D : Front inlet(open in principle) E : Rear inlet(open in principle) Front service space A <Top View> <Side View> 1-36 Single A Outdoor Units

44 Single Split R410A MPS Inverter Installation When inlet air enters from right and left sides of unit A : 750 mm or more B : 250 mm or more C : 150 mm or more A B Rear B 1 C C Front A <Top View> <Side View> When unit is surrounded by walls A : 750 mm or more B : 250 mm or more B B B A When there is an obstructure above the unit A : 45 or more B : 200 mm or more C : 250 mm or more D : 1000 mm or more E : Air outlet guide (procured at the site) F : 250 mm or more A B D C E F Single A Outdoor Units 1-37

45 Single Split R410A MPS Inverter Installation (2) Collective installation and continuous installation Space required for collective installation and continuous installation : When installing several units, leave the space between each block as show below considering passage for air and people. A : (Open state) B : 750 mm or more C : 250 mm or more D : 250 mm or more Front Rear Rear Front 1-38 Single A Outdoor Units

46 Single Split R410A MPS Inverter Installation 11.2 Settlement of outdoor unit Anchor the outdoor unit with a bolt and nut(ø10mm) tightly and horizontally on a concrete or rigid mount. When installing on the wall, roof or rooftop, anchor the mounting base securely with a nail or wire assuming the influence of wind and earthquake. In the case when the vibration of the unit is conveyed to the hose, secure the unit with an anti-vibration rubber. Bolt Tubing connection 1 AUUW48/6060 Individual installation Installation foot 700± ±2 Example of collective installation 500± ± ± Lifting Method When carrying the unit suspended, pass the ropes under the unit and use the two suspension points each at the front and rear. Always lift the unit with ropes attached at four points so that impact is not applied to the unit. Attach the ropes to the unit at an angle of 40 or less. Use two ropes at least 7 m long. Caution: Be very careful to carry product. A 40 or less B Rope suspension part Do not have only one person carry product if it is more than 20 kg. PP bands are used to pack some products. Do not use them as a mean for transportation because they are dangerous. Do not touch heat exchanger fins with your bare hands. Otherwise you may get a cut in your hands. Tear plastic packaging bag and scrap it so that children cannot play with it. Otherwise plastic packaging bag may suffocate children to death. When carrying in outdoor unit, be sure to support it at four points. Carrying in and lifting with 3-point support may make outdoor unit unstable, resulting in a fall of it. Single A Outdoor Units 1-39

47 A Single Split R410A MPS Inverter Installation 11.4 Piping length and the elevation Capacity 18k Btu/h 24k Btu/h 30k Btu/h 36k Btu/h Pipe Size (Diameter:Ø) Gas Liquid Standard Max. Standard Max. 1/2" (12.7mm) 1/2" (12.7mm) 5/8" (15.88mm) 5/8" (15.88mm) 1/4" (6.35mm) 1/4" (6.35mm) 1/4" (6.35mm) 1/4" (6.35mm) Length (m) Elevation (m) *Additional refrigerant(g/m) k Btu/h 3/4" (19.05mm) 3/8" (9.52mm) (Chargeless 30m) 60k Btu/h 3/4" (19.05mm) 3/8" (9.52mm) (Chargeless 30m) Extra refrigerant = (Extended length - Rated length) x Additional refrigerant. Indoor unit Outdoor unit Outdoor unit A Oil trap A B Outdoor unit Indoor unit B Indoor unit B CAUTION Capacity is based on standard length and maximum allowance length is on the basis of reliability. Improper refrigerant charge may result in abnormal cycle. Oil trap should be installed every 10 meters Single A Outdoor Units

48 Single Split R410A MPS Inverter Installation 11.5 Wiring Connection 1. All wiring must comply with LOCAL REGULATIONS. 2. Select a power source that is capable of supplying the current as required by the air conditioner. 3. Feed the power source to the unit via a distribution switch board designed for this purpose. 4. The terminal screws inside the control box may be loose due to vibration during transport. Check the screws for loose connection. (Running the air conditioner with loose connection can overload and damage electrical components.) 5. Always ground the air conditioner with a grounding wire and connector to meet the LOCAL REGULATION. 1Phase Heat Pump Model. Terminals on the indoor unit 1(L) 2(N) Terminals on the outdoor unit 1(L) 2(N) 1(L) 2(N) 3 POWER INPUT The power cord connected to the outdoor unit should be complied with the following specifications (Rubber insulation, type H05RN-F approved by HAR or SAA). CAUTION The connecting cable connected to the indoor and outdoor unit should be complied with the following specifications (Rubber insulation, type H05RN-F approved by HAR or SAA). 8.5mm GN/YL Capacity 1 Phase 3 Phase 18, 24, 30k BTU/h 2.5mm 2-36, 48, 60k BTU/h 5.5mm 2-7.5mm GN/YL NORMAL CROSS-SECTIONAL AREA 0.75mm 2 (18K/24K/30K) 1.25mm 2 (36k/48k/60k) 20mm If the supply cord is damaged, it must be replaced by a special cord or assembly available from the manufacturer or its service agent. 20mm WARNING Make sure that the screws of the terminal are free from looseness. Single A Outdoor Units 1-41

49 1-42 Single A Outdoor Units Single Split R410A MPS Inverter

50 Synchro application R410A MPS Inverter - Synchro (R410A Outdoor Units) AUUW-0 Contents 2 1. Features & Benefits Specifications Combination Table Dimensional Drawings Wiring Diagrams Piping Diagrams Performance Data Capacity Coefficient Factor Electric Characteristics Operation Range Sound Levels Installation Accessories Single A Outdoor Units 2-1

51 Synchro application R410A MPS Inverter Features & Benefits 1. Features & Benefits Synchro application (Simultaneous operation) One large room can be cooled simultaneously by duo, trio or quartet indoor units according to the environmental needs. Enhanced comfort from distributed indoor units. Big energy saving with using MPS inverter technolgy. Only one circuit breaker is needed for versatile electric work. Simple refrigerant system due to the branch piping kit specially designed for this system. Individual control (Such as room temperature) is not available.] (Ex. Duo simultaneous operation) Branch kit(pmub11a) Circuit breaker AUUW6060 ATNH306FLFB ATNH306FLFB Only one remote control. Only one circuit breaker. (Ex. Trio simultaneous operation) Branch kit(pmub112a) Circuit breaker AUUW6060 ATNH246FLFB ATNH186ELFB ATNH186ELFB Only one remote control. Only one circuit breaker. (Ex. Quartet simultaneous operation) Branch kit(pmub1111a) Circuit breaker AUUW6060 ATNH126ELFB ATNH126ELFB ATNH126ELFB ATNH126ELFB Only one remote control. Only one circuit breaker. 2-2 Single A Outdoor Units

52 Synchro application R410A MPS Inverter Specifications 2. Specifications Nominal Capacity and Nominal Input For combination indoor units + outdoor units : Indoor Units Outdoor Units Nominal Capacity Cooling Btu/h (Min~Rating~Max) W Heating Btu/h W Nominal Input Cooling W (Min~Rating~Max) Heating W EER Btu/h.W(W/W) COP Btu/h.W(W/W) Technical Specification Outdoor Units AUUW4860 AUUW6060 Running Current Cooling/Heating A Starting Current Cooling/Heating A Power Supply Ø,V,Hz Power Factor % Compressor Type (Inverter) Model Quantity Ea Motor Input W Oil Charge cc Oil Type Compressor Type (Constant) Model Quantity Ea Motor Input W Oil Charge cc Oil Type Refrigerant charge Charge* g(oz) Type Control Coil Tube Size (OD) inch(mm) Fins per inch No. of Rows & Column/No. Fan motor Model Output W Capacitor µf/vac Fan Type No. Used / Diameter EA/inch(mm) Discharge Side / Top Air Circulation CMM(CFM) Noise Level(H/L) Sound Press,1m db(a)±1 Defrosting SVC Valve Liquid inch(mm) Gas inch(mm) Dimensions W*H*D inch(mm) Net Weight Outdoor kg(lbs) Power Supply Cable(Includes earth) No.* mm 2 Interunit Cable No.* mm 2 Max. Interunit Total Piping(Main+Total Branch) m Piping Length Main Piping m Total Branch Piping m Each Branch Piping m Max. Installation Indoor Unit~Outdoor Unit m Height Difference Indoor Unit~Indoor Unit m Packing Dimension W*H*D inch(mm) Stuffing Quantity With(Without) S/Parts 20/40ft ATNH/AVNH/ABNH12-306***B AUUW4860 Synchro application (simultaneous operation). Refer to combination table. ATNH/AVNH/ABNH12-366***B AUUW6060 Synchro application (simultaneous operation). Refer to combination table. 8.5~26.6/8.6~ ~31.3/10.1~ ,220~240,50 1,220~240,50 90 ~ ~ 97 e-scroll e-scroll 5CS130X 5CS130X 1 1 1,405 1, RB68A RB68A Rotary Rotary 5JS315D 5JS315D x x x x 2 RB68A RB68A 7100(250.4) 7100(250.4) R410A R410A L.E.V L.E.V 0.276(7.0) 0.276(7.0) R,53C x 2 2R,53C x 2 ARE676E01 ARE676E /370 10/370 Propeller Propeller 1/20.7(526) 1/20.7(526) Top Discharge Top Discharge 90(3179) 90(3179) 59/56 59/56 Invertion cycle Invertion cycle 3/8 (9.52) 3/8 (9.52) 3/4 (19.05) 3/4 (19.05) 31.7*59.3*27.1 (806*1,507*690) 31.7*59.3*27.1 (806*1,507*690) 142(312) 148(326) 3*5.0 3*5.0 4*1.25 (Includes earth) 4*1.25 (Includes earth) *60.4*29.7(875*1,535*755) 34.4*60.4*29.7(875*1,535*755) 20/42 20/42 Notes: 1. Capacities are based on the following conditions: Cooling: - Indoor Temperature 27 C(80.6 F) DB /19 C(66.2 F) WB Heating: - Indoor Temperature 20 C(68 F) DB / 15 C(59 F) WB - Outdoor Temperature 35 C(95 F) DB /24 C(75.2 F) WB - Outdoor Temperature 7 C(44.6 F) DB / 6 C(42.8 F) WB Piping Length - Interconnecting Piping Length 7.5m(25ft) - Level Difference of Zero. 2. * : Full factory charge is shipped in the outdoor unit. Chargeless for 30m of main piping length. 3. Due to our policy of innovation some specifications may be changed without notification. Single A Outdoor Units 2-3 2

53 Synchro application R410A MPS Inverter Combination Table 3. Combination Table 3.1 Possible combinations Possible combination of indoor units Synchro Duo Trio Quartet Outdoor units ODU ODU ODU IDU IDU IDU IDU IDU IDU IDU IDU IDU AUUW (PMUB11A) (PMUB23A) (PMUB23A) (PMUB111A) (PMUB1111A) AUUW (PMUB11A) (PMUB23A) (PMUB23A) (PMUB111A) (PMUB112A) (PMUB1111A) ODU : Outdoor unit, IDU : Indoor unit Notes : 1. Possible indoor units: indoor unit series(atnh12-36****b, AVNH12-30****B, ABNH18-36****B) 2. When different indoor models are used in combination, designate the remote controller that is equipped withthe most functions as the main unit(most functions available on cassette type indoor unit : ATNH model). But the duct type indoor unit as sub unit needs to be set the ESP value with remote controller contained in that unit. So after setting that, turn off the power and then detach the remote controller of sub unit. 3. Between units are the required Branch kits mentioned, that are necessary to install the combination. Indoor Classification 2 UNIT 3 UNIT 4 UNIT Model Name PMUB11A PMUB23A PMUB122A PMUB112A PMUB111A PMUB1111A Capacity Ratio(%) 50:50 (1:1) 40:60 (2:3) 20:40:40 (1:2:2) 25:25:50 (1:1:2) 33:33:33 (1:1:1) 25:25:25:25(1:1:1:1) Remark Unbalance type Unbalance type Unbalance type (Gas pipe) (I.D) (Liquid pipe) A B Ø19.05(3/4) Ø9.52(3/8) Ø12.7(1/2) Ø6.35(1/4) Ø9.52(3/8) Ø25.4(1) Ø12.7(1/2) Ø15.88(5/8) Ø9.52(3/8) Ø12.7(1/2) ( ):inch C D a b 2-4 Single A Outdoor Units

54 Synchro application R410A MPS Inverter Combination Table 3.2 Combination capacities AUUW4860 (Synchro-Duo, Trio, Quartet simultaneous operation) Cooling Simultaneous Operation Combination of Indoor Units (1000 Btu/h) Possiblity Total Min Cooling Capacity Rating Max Current (A) Input (W) Btu/h kw Btu/h kw Btu/h kw Min Rating Max Min Rating Max , , , ,897 4,312 4,959 Duo , , , ,155 4,751 5, , , , ,179 4,951 5,590 Trio , , , ,179 4,951 5,590 Quartet , , , ,155 4,751 5,500 Heating Simultaneous Operation Combination of Indoor Units (1000 Btu/h) Possiblity Total Min Heating Capacity Rating Max Current (A) Input (W) Btu/h kw Btu/h kw Btu/h kw Min Rating Max Min Rating Max , , , ,919 4,361 5,015 Duo , , , ,219 5,044 5, , , , ,236 5,081 5,820 Trio , , , ,236 5,081 5,820 Quartet , , , ,219 5,044 5,700 2 AUUW6060 (Synchro-Duo, Trio, Quartet simultaneous operation) Cooling Simultaneous Operation Combination of Indoor Units (1000 Btu/h) Possiblity Total Min Cooling Capacity Rating Max Current (A) Input (W) Btu/h kw Btu/h kw Btu/h kw Min Rating Max Min Rating Max , , , ,454 5,578 6,415 Duo , , , ,566 5,832 6, , , , ,566 5,832 6,620 Trio , , , ,454 5,578 6, , , , ,566 5,832 6,620 Quartet , , , ,086 4,740 5,451 Heating Simultaneous Operation Combination of Indoor Units (1000 Btu/h) Possiblity Total Min Heating Capacity Rating Max Current (A) Input (W) Btu/h kw Btu/h kw Btu/h kw Min Rating Max Min Rating Max , , , ,798 6,359 7,313 Duo , , , ,910 6,613 7, , , , ,910 6,613 7,490 Trio , , , ,798 6,359 7, , , , ,910 6,613 7,490 Quartet , , , ,247 5,106 5,872 Notes 1. Individual indoor capacities are not given because the combinations are for simultaneous operation. 2. Nominal cooling capacities are based on the following conditions: Indoor air temperature: 27 CDB, 19.0 CWB, outdoor temperature 35 CDB. Nominal heating capacities are based on the following conditions: Indoor air temperature : 20 CDB, outdoor temperature : 7 CDB, 6 CWB. Single A Outdoor Units 2-5

55 Synchro application R410A MPS Inverter Dimensional Drawings 4. Dimensional Drawings AUUW48/ (bolt hole) (bolt hole) 690 Air outlet Air inlet Air inlet Service Panel Knockout hole (For the control wiring, the power supply, refrigerant connecting pipe) 220 Knockout hole (For the control wiring, the power supply, refrigerant connecting pipe) 63 (Unit : mm) 2-6 Single A Outdoor Units

56 Synchro application R410A MPS Inverter Wiring Diagrams 5. Wiring Diagrams INV-COMP(A) WIRING DIAGRAM RD BL YL REACTOR OR RD BL YL CN-FAN(A) BL BK BR YL FMo LEV CN-LEV1 CN-CENTRAL U PIPE LENGTH SW1 S/W_ADDRESSING CN-WRITER V TH2 W TH1 CN-COIL1 CN-COIL2 NUMBER PIN NUMBER PIN NUMBER PIN MAIN PCB ASSY TH3 TH4 TH5 CN-4WAY CN-C/COMP2 CN-HEATER CN-HEATER2 4WV POWER RELAY 4WAY VALVE BR BL OPTION CRANKCASE HEATER OPTION CRANKCASE HEATER_2 CONS-COMP(C) C R S BR BL 2 CN-COM CN-JIG-PC (AIR/PIPE) NOISE FILTER (H/SINK) (SUC/DISP_A) BK (DISP_C)(DISP_B) CN-C/FAN CN-OIL/S CN-PRESS FM COOLING FAN SV OIL SEPERATOR LOW PRESSURE SWITCH FUSE 250V,20A GN/YL L BR N BL GND-2 BK BL BR GND-1 BK GN/YL RY-C/COMP BR T/B BR BL CONS-COMP(B) WH C BL R RD S BL T/B FMo INV CONS- TH 1(L) 2(N) Tm Power Supply 1Ø, V, 50Hz WIRING OF FIELD (CONNECTING WIRE) OUTDOOR FAN MOTOR INVERTER CONSTANT TYPE THERMISTOR 1(L) 2(N) 3 1(L)2(N) 3 A UNIT B UNIT C UNIT D UNIT SV T/B Tm RY 1(L)2(N) 3 1(L)2(N) 3 1(L)2(N) 3 SOLENOID VALVE TERMINAL BLOCK MAIN TERMINAL BLOCK RELAY PTCR NOTE BL:BLUE BK:BLACK BR:BROWN OR:ORANGE RD:RED WH:WHITE YL:YELLOW GN/YL:GREEN/YELLOW 3854A20354W LEV LINEAR EXPANSION VALVE FM HEAT SINK COOLING FAN MOTOR NUMBER PIN INDOOR NUMBER INDICATING SWITCH S/W_ADDRESSING AUTO ADDRESSING SWITCH Single A Outdoor Units 2-7

57 Synchro application R410A MPS Inverter Piping Diagrams 6. Piping Diagrams "Synchro" Duo - AUUW48/6060 INDOOR UNIT OUTDOOR UNIT Reversing Valve Heat Exchanger Heat Exchanger INDOOR UNIT Heat Exchanger Fan Gas Piping ØB Liquid Piping ØA Branch kit (Accessory) Service Valve Gas(Ø19.05) Accumulator Check Valve Low Pressure S/W Check Valve Constant Compressor 2 Constant Compressor 1 Inverter Compressor Check Valve L.E.V. Oil Seperator Solenoid Valve Fan Service Valve Liquid(Ø9.52) Drier Receiver Fan Gas Piping Ø B Branch kit (Accessory) Indoor Unit A B Refrigerant Flow Liquid Piping ØA (Btu/h) 18k (mm) 6.35 (mm) 12.7 Cooling Heating 24 k, 30k, 36k Note : 1.The pipes between the indoor units and the branch kits must have same dimensions as indoor unit connections. "Synchro" Trio - AUUW48/6060 INDOOR UNIT Heat Exchanger Reversing Valve OUTDOOR UNIT Heat Exchanger Fan Gas Piping ØB INDOOR UNIT Heat Exchanger Liquid Piping ØA Branch kit (Accessory) Accumulator Check Valve Check Valve Constant Compressor 2 Check Valve Oil Seperator Fan Fan Gas Piping ØB Service Valve Gas(Ø19.05) Constant Compressor 1 Low Pressure S/W Inverter Compressor Solenoid Valve L.E.V. INDOOR UNIT Heat Exchanger Liquid Piping ØA Service Valve Liquid(Ø9.52) Branch kit (Accessory) Drier Receiver Refrigerant Flow Indoor Unit (Btu/h) A (mm) B (mm) Cooling Heating Fan Gas Piping ØB Liquid Piping ØA 18k 24 k Note : 1.The pipes between the indoor units and the branch kits must have same dimensions as indoor unit connections. 2-8 Single A Outdoor Units

58 Synchro application R410A MPS Inverter Piping Diagrams "Synchro" Quartet - AUUW48/6060 INDOOR UNIT Heat Exchanger Thermist or INDOOR UNIT Heat Exchanger Thermist or INDOOR UNIT Heat Exchanger Fan Fan Gas Piping ØB Liquid Piping ØA Gas Piping ØB Liquid Piping ØA Branch kit (Accessory) Service Valve Gas(Ø19.05) Accumulator Check Valve Check Valve Constant Compressor 2 Constant Compressor 1 Reversing Valve Inverter Compressor Check Valve Oil Seperator Solenoid Valve OUTDOOR UNIT Heat Exchanger Fan 2 Low Pressure S/W L.E.V. Thermist or INDOOR UNIT Heat Exchanger Fan Gas Piping ØB Liquid Piping ØA Service Valve Liquid( Ø9.52) Branch kit (Accessory) Drier Receiver Refrigerant Flow Indoor Unit (Btu/h) A (mm) B (mm) Cooling Heating Thermist or Fan Gas Piping ØB Liquid Piping ØA 12k Note : 1.The pipes between the indoor units and the branch kits must have same dimensions as indoor unit connections. Single A Outdoor Units 2-9

59 Synchro application R410A MPS Inverter Performance Data 7. Performance Data Cooling Capacity AUUW4860 (Synchro application) Total Combination Capacity (1000 Btu/h) Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI AUUW6060(Synchro application) Total Combination Capacity (1000 Btu/h) Indoor Air Temperature Outdoor Air Temperature : CDB CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero Single A Outdoor Units

60 Synchro application R410A MPS Inverter Performance Data Heating Performance AUUW4860 (Synchro application) Total Combination Capacity (1000 Btu/h) Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI AUUW6060(Synchro application) Total Combination Capacity (1000 Btu/h) Indoor Air Temperature Outdoor Air Temperature : CWB CDB TC PI TC PI TC PI TC PI TC PI TC PI Symbol AFR : Air flow rate [m 3 /min] DB : Dry bulb temperature [ C] WB : Wet bulb temperature [ C] TC : Total capacity [kw] SHC : Sensible capacity [kw] PI : Power Input [kw] (Comp.+ indoor fan motor+outdoor fan motor) Notes 1. All capacites are net, evaporator fan motor heat is deducted. 2. Indicates nominal maximum capacity. 3. Direct interpolation is permissible. Do not extrapolate 4. Capacities are based on the following conditions: - Interconnecting Piping Length 7.5m - Level Difference of Zero. Single A Outdoor Units 2-11

61 Synchro application R410A MPS Inverter Capacity Coefficient Factor 8. Capacity Coefficient Factor(Reference) 8.1 Rate of Change in Capacity by the Main Piping Length Rate of Change in Cooling Capacity Main Piping Length(m) Rate of Change in Cooling Capacity % 99.6% 99.1% 98.7% 98.2% 97.8% 97.3% 96.9% 96.4% 96.0% Rate of Change in Heating Capacity Main Piping Length(m) Rate of Change in Heating Capacity % 99.9% 99.8% 98.7% 99.6% 99.4% 99.3% 99.2% 99.1% 99.0% Main Piping Length Rate of Change in Capacity 100.0% 95.0% Rate of Change in Capacity(%) 90.0% 85.0% 80.0% 75.0% 70.0% Main Piping Length(m) : Rate of Change in Cooling Capacity : Rate of Change in Heating Capacity * In both cases, the outdoor unit is above or below position for the indoor unit, the rate of change in capacity is the same Single A Outdoor Units

62 Synchro application R410A MPS Inverter Capacity Coefficient Factor 8.2 Rate of Change in Capacity by the Branch Piping Length 12k Btu/h(3.5 kw) models Piping Length Rate of Change in Capacity Cooling Heating % 100.0% % 98.3% % 96.5% 24k Btu/h(7.0 kw) models Piping Length Rate of Change in Capacity Cooling Heating % 100.0% % 99.2% % 98.4% 36k Btu/h(10.6 kw) models Piping Length Rate of Change in Capacity Cooling Heating % 100.0% % 98.8% % 97.6% 18k Btu/h(5.3 kw) models Piping Length Rate of Change in Capacity Cooling Heating % 100.0% % 99.5% % 99.0% 30k Btu/h(8.8 kw) models Piping Length Rate of Change in Capacity Cooling Heating % 100.0% % 99.1% % 98.2% 2 Rate of Change in Cooling Capacity(%) 12k Btu/h(3.5 kw) Models Rate of Change by Branch Piping Length 100.0% 99.0% 98.0% 97.0% 96.0% 95.0% 94.0% Branch Piping Length(m) : Cooling : Heating Rate of Change in Cooling Capacity(%) 18k Btu/h(5.3 kw) Models Rate of Change by Branch Piping Length 100.0% 99.5% 99.0% 98.5% 98.0% 97.5% 97.0% 96.5% 96.0% 95.5% 95.0% Branch Piping Length(m) : Cooling : Heating Single A Outdoor Units 2-13

63 Synchro application R410A MPS Inverter Capacity Coefficient Factor Rate of Change in Capacity(%) 24k Btu/h(7.0 kw) Models Rate of Change by Branch Piping Length 100.0% 99.5% 99.0% 98.5% 98.0% 97.5% 97.0% 96.5% 96.0% 95.5% 95.0% Branch Piping Length(m) : Cooling : Heating 30k Btu/h(8.8 kw) Models Rate of Change by Branch Piping Length Rate of Change in Capacity(%) 100.0% 99.5% 99.0% 98.5% 98.0% 97.5% 97.0% 96.5% 96.0% 95.5% 95.0% Branch Piping Length(m) : Cooling : Heating 36k Btu/h(10.6 kw) Models Rate of Change by Branch Piping Length Rate of Change in Capacity(%) 100.0% 99.5% 99.0% 98.5% 98.0% 97.5% 97.0% 96.5% 96.0% 95.5% 95.0% Branch Piping Length(m) : Cooling : Heating Method of calculating cooling / heating capacity : Total capacity from capacity tables x (Rate of Change in capacity by main piping length x Rate of Change in capacity by branch piping length) 2-14 Single A Outdoor Units

64 Synchro application R410A MPS Inverter Electric Characteristics 9. Electric Characteristics See chapter 1 for the electric characteristics of AUUW Operation Range See chapter Sound Levels for the operation range of AUUW See chapter 1 for the sound levels of AUUW Single A Outdoor Units 2-15

65 Synchro application R410A MPS Inverter Installation 12. Installation 12.1 Selection of the best location If an awning is built over the unit to prevent direct sunlight or rain exposure, make sure that heat radiation from the condenser is not restricted. Do not place animals and plants in the path of the warm air. Take the air conditioner weight into account and select a place where noise and vibration are minimum. Select a place so that the warm air and noise from the air conditioner do not disturb neighbors. Rooftop Installations : If the outdoor unit is installed on a roof structure, be sure to level the unit. Ensure the roof structure and anchoring method are adequate for the unit location. Consult local codes regarding rooftop mounting. Model : AUUW48/6060 (1) Individual installation Basic Space required A space of at least 250 mm is nessary at the back for inlet air. Tacking servicing, a space of about 750 mm should be provided at the front. Rear B C Front service space A D E A : 750 mm or more B : 250 mm or more C : Top discharge(open in principle) D : Front inlet(open in principle) E : Rear inlet(open in principle) <Top View> <Side View> 2-16 Single A Outdoor Units

66 Synchro application R410A MPS Inverter Installation When inlet air enters from right and left sides of unit A : 750 mm or more B : 250 mm or more C : 150 mm or more A B Rear C Front B A C 2 <Top View> <Side View> When unit is surrounded by walls A : 750 mm or more B : 250 mm or more B B B A When there is an obstructure above the unit A : 45 or more B : 200 mm or more C : 250 mm or more D : 1000 mm or more E : Air outlet guide (procured at the site) F : 250 mm or more A B D C E F Single A Outdoor Units 2-17

67 Synchro application R410A MPS Inverter Installation (2) Collective installation and continuous installation Space required for collective installation and continuous installation : When installing several units, leave the space between each block as show below considering passage for air and people. A : (Open state) B : 750 mm or more C : 250 mm or more D : 250 mm or more Front Rear Rear Front 2-18 Single A Outdoor Units

68 Synchro application R410A MPS Inverter Installation 12.2 Settlement of outdoor unit Anchor the outdoor unit with a bolt and nut(ø10mm) tightly and horizontally on a concrete or rigid mount. When installing on the wall, roof or rooftop, anchor the mounting base securely with a nail or wire assuming the influence of wind and earthquake. In the case when the vibration of the unit is conveyed to the hose, secure the unit with an anti-vibration rubber. Individual installation 500 Installation foot 700± ±2 Example of collective installation 500± ± ± Lifting Method When carrying the unit suspended, pass the ropes under the unit and use the two suspension points each at the front and rear. Always lift the unit with ropes attached at four points so that impact is not applied to the unit. Attach the ropes to the unit at an angle of 40 or less. Use two ropes at least 7 m long. Caution: Be very careful to carry product. A 40 or less B Rope suspension part Do not have only one person carry product if it is more than 20 kg. PP bands are used to pack some products. Do not use them as a mean for transportation because they are dangerous. Do not touch heat exchanger fins with your bare hands. Otherwise you may get a cut in your hands. Tear plastic packaging bag and scrap it so that children cannot play with it. Otherwise plastic packaging bag may suffocate children to death. When carrying in outdoor unit, be sure to support it at four points. Carrying in and lifting with 3-point support may make outdoor unit unstable, resulting in a fall of it. Single A Outdoor Units 2-19

69 Synchro application R410A MPS Inverter Installation 12.4 Piping length and the elevation Install the branch pipe so that pipe length and difference between high and low will not exceed below SPEC. h1 L2 L3 L4 L5 b Branch h2 Pipe Length(m) Total(Main+Branch) Main Pipe(L1) Branch Pipe----Total Each In out (h1) In-In (h2) L1+L2/L3/L4/L5 Indoor-Indoor_(b) Spec Main (L1) When installing the branch pipe, direction and angle of installation is not limited. Take care so that burrs and foreign material may not enter into the cutting surface when connecting. Connect a gas pipe of Ø19.05 by using the socket in the indoor unit and connect remaining those by cutting or direct insertion to the diameter of pipe. Don t use the liquid pipe by too bending or twisting Refrigerant Additional Charging Method There is not additional charging of refrigerant by main pipe of 30m below. For additional charging method, see below table. Synchro Duo Trio Quartet Refrigerant=(L1-30) 0.05+(L2+L3-20) 0.03 Refrigerant=(L1-30) 0.05+(L2+L3+L4-20) 0.03 Refrigerant=(L1-30) 0.05+(L2+L3+L4+L5-20) 0.03 (L1=Main Pipe, L2~L5 : Branch Pipe) Note: If total additional charge value after calculation comes out to be negative, then do not consider additional charge. CAUTION: Rated performance for refrigerant line length of:7.5m Capacity is based on standard length and maximum allowance length is on the basis of reliability. Improper refrigerant charge may result in abnormal cycle. Oil trap should be installed every 10 meters Single A Outdoor Units

70 20mm 20mm Synchro application R410A MPS Inverter Installation 12.6 Wiring Connection 1. All wiring must comply with LOCAL REGULATIONS. 2. Select a power source that is capable of supplying the current as required by the air conditioner. 3. Feed the power source to the unit via a distribution switch board designed for this purpose. 4. The terminal screws inside the control box may be loose due to vibration during transport. Check the screws for loose connection. (Running the air conditioner with loose connection can overload and damage electrical components.) 5. Always ground the air conditioner with a grounding wire and connector to meet the LOCAL REGULATION. Power Input Terminal Block (Outdoor Unit) 2 Terminal Block (Indoor Unit) CAUTION The power cord connected to the outdoor unit should be complied with the following specifications (Rubber insulation, type H05RN-F approved by HAR or SAA). The connecting cable connected to the indoor and outdoor unit should be complied with the following specifications (Rubber insulation, type H05RN-F approved by HAR or SAA). GN/YL NORMAL CROSS-SECTIONAL AREA 5.5mm 2 GN/YL NORMAL CROSS-SECTIONAL AREA 1.25mm 2 If the supply cord is damaged, it must be replaced by a special cord or assembly available from the manufacturer of its service agent. WARNING: Make sure that the screws of the terminal are free from looseness. Single A Outdoor Units 2-21

71 Synchro application R410A MPS Inverter Accessories 13. Accessories 13.1 Optional accessories Name of accessory Model No. Indoor classification Capacity Ratio(%) Remark Branch Kit PMUB11A 50:50(1:1) "Synchro" Duo PMUB23A 40:60(2:3) Unbalance type PMUB111A 33:33:33(1:1:1) "Synchro" Trio PMUB112A 25:25:50(1:1:2) Unbalance type PMUB1111A "Synchro" Quartet 25:25:25:25(1:1:1:1) 2-22 Single A Outdoor Units

72 Synchro application R410A MPS Variable - Synchro (R410A Outdoor Units) AUUH-0 Contents 1. Features & Benefits Specifications Combination Table Dimensional Drawings Wiring Diagrams Piping Diagrams Performance Data Capacity Coefficient Factor Electric Characteristics Operation Range Sound Levels Installation Accessories Single A Outdoor Units 3-1

73 Synchro application R410A MPS Variable Features & Benefits 1. Features & Benefits Synchro application (Simultaneous operation) One large room can be cooled simultaneously by duo, trio or quartet indoor units according to the environmental needs. Enhanced comfort from distributed indoor units. Big energy saving with using MPS Variable technolgy. Only one circuit breaker is needed for versatile electric work. Simple refrigerant system due to the branch piping kit specially designed for this system. Individual control (Such as room temperature) is not available.] (Ex. Duo simultaneous operation) Branch kit(pmub11a) Circuit breaker AUUH10080 ATNH486DLFB ATNH486DLFB Only one remote control. Only one circuit breaker. (Ex. Trio simultaneous operation) Branch kit(pmub112a) Circuit breaker AUUH10080 ATNH366DLFB ATNH306FLFB ATNH306FLFB Only one remote control. Only one circuit breaker. (Ex. Quartet simultaneous operation) Branch kit(pmub1111a) Circuit breaker AUUH10080 ATNH246FLFB ATNH246FLFB ATNH246FLFB ATNH246FLFB Only one remote control. Only one circuit breaker. 3-2 Single A Outdoor Units

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