Product Data. High --- Wall Duct --- Free Split systems INDUSTRY LEADING FEATURES / BENEFITS

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1 High --- Wall Duct --- Free plit systems PA13A / PW3CA Cooling izes PA13N / PW3CN Cooling izes PH13A / PW3HA HP izes PH13N / PW3HN HP izes Product Data INDUTRY LEADING FEATURE / BENEFIT AN INEXPENIVE AND CREATIVE OLUTION TO DEIGN PROBLEM. The PA(H)13 / PW3 series duct -free split systems are a matched combination of an outdoor condensing unit and an indoor fan coil unit connected only by refrigerant tubing and wires. The fan coil is mounted on the wall, near the ceiling. This selection of fan coils permits inexpensive and creative solutions to design problems such as: Add -ons to current space (an office or family room addition) pecial space requirements When changes in the load cannot be handled by the existing system. When adding air conditioning to spaces that are heated by hydronic or electric heat and have no ductwork. Historical renovations or any application where preserving the look of the original structure is essential. The ideal compliment to your ducted system when it is impractical or prohibitively expensive to use ductwork. These compact indoor fan coil units take up very little space in the room and do not obstruct windows. The fan coils are attractively styled to blend with most room decors. Advanced system components incorporate innovative technology to provide reliable cooling performance at low sound levels.

2 LOW OUND LEVEL When noise is a concern, the duct-free split systems are the answer. The indoor units are whisper quiet. There are no compressors indoors, either in the conditioned space or directly over it, and there is none of the noise usually generated by air being forced through ductwork. When sound ordinances and proximity to neighbors demand quiet operation, the PA(H)13 unit is the right choice: The advanced, horizontal airflow design distributes air more evenly over the coil. ECURE OPERATION If security is an issue, outdoor and indoor units are connected only by refrigerant piping and wiring to prevent intruders from crawling through ductwork. In addition, since PA(H)13 units can be installed close to an outside wall, coils are protected from vandals and severe weather. FAT INTALLATION This compact duct -free split system is simple to install. A mounting bracket is standard with the indoor units and only wire and piping need to be run between indoor and outdoor units. These units are fast and easy to install ensuring minimal disruption to customers in the home or workplace. This makes the PA13NA(N)/PW3CA(N), PH13A(N)/PW3HA(N) duct -free split systems the equipment of choice, especially in retrofit situations. IMPLE ERVICING AND MAINTENANCE Removing the top panel on outdoor units provides immediate access to the control compartment, providing a service technician access to check unit operation. In addition, the draw -thru design of the outdoor section means that dirt accumulates on the outside surface of the coil. Coils can be cleaned quickly from the inside using a pressure hose and detergent. On all indoor units, service and maintenance expense is reduced due to easy -to -use cleanable filters. In addition, these high wall systems have extensive self-diagnostics to assist in troubleshooting. BUILT -IN RELIABILITY Duct-free split system indoor and outdoor units are designed to provide years of trouble-free operation. The high wall indoor units include protection against freeze -up and high evaporator temperatures on heat pumps. The condensing units and heat pumps are also protected. There is a three minute time delay before the compressor will start. The compressor is also protected by the over-current protection. On size 18k and 24k heat pumps, there is high temperature protection. INDIVIDUAL ROOM COMFORT Maximum comfort is provided because each space can be controlled individually based on usage pattern. The air sweep feature provided permits optimal room air mixing to eliminate hot and cold spots for occupant comfort. In addition, year-round comfort can be provided with heat pumps. ECONOMICAL OPERATION The duct-free split system design allows individual room heating or cooling when required. There is no need to run large supply -air fans or chilled water pumps to handle a few spaces with unique load patterns. In addition, because air is moved only in the space required, no energy is wasted moving air through ducts. EAY -TO -UE CONTROL The high -wall units have microprocessor-based controls to provided the ultimate in comfort and efficiency. The user friendly wireless remote control provides the interface between user and the unit. ACCEORIE Customizing these duct-free split systems to your application is easily accomplished. Adding a condensate pump accessory to the high wall fan coil provides installation flexibility. AGENCY LITING All systems are listed with ARI (Air Conditioning & Refrigeration Institute), and ETL. 2

3 MODEL NUMBER NOMENCLATURE INDOOR UNIT PW3 CAM Fan Coil Unit Variation Unit Type CAM --- Cooling Only CNM --- Cooling Onl HAM --- Heat Pump HNM --- Heat Pump Nominal Capacity /4 Ton Ton /2 Ton Tons PA Air ---Cooled Condenser PH Heat Pump OUTDOOR UNIT PA13 / PH13 AAM Unit Type AAM --- Cooling Only NAM --- Cooling Only 208/ HAM --- Heat Pump HNM --- Heat Pump 208/ Nominal Capacity /4 Ton Ton /2 Ton Tons Variation 3

4 TANDARD FEATURE AND ACCEORIE Ease Of Installation INDOOR UNIT Mounting Brackets Low Voltage Controls Comfort Features Microprocessor Controls Wireless Remote Control Automatic Air weep Air Direction Control Auto Restart Function Cold Blow Protection On Heat Pumps Auto Changeover On Heat Pumps Energy aving Features leep Mode top/tart Timer afety And Reliability 3MinuteTimeDelayForCompressor Over Current Protection For Compressor Indoor Coil Freeze Protection Indoor Coil High Temperature Protection On Heat Pumps Condenser High Temperature Protection On heat Pumps{ Accumulator On Heat Pumps Ease Of ervice And Maintenance Cleanable Filters Diagnostics Liquid Line Pressure Taps uction And Discharge Pressure Taps (izes 18 and 24K) Application Flexibility Condensate Pumps A Crankcase Heater A Wind Baffles F Warranty 6 ---Year Compressor Warranty Parts Warranty Compressor Extended Warranty Years 6 Thru 10 All Parts And Labor Years 2 Thru 5 All Parts And Labor Years 2 Thru 5, Compressor Years 6 Thru 10 { izes 18k & 24k Legend tandard A Accessory OOptional F Field Fabricated O O O A07892 Fig. 1 Condensate Pump Accessory On high wall fan coils, the condensate pump has a lift capability of 12 ft (3.6 m) on the discharge side with the pump mounted in the fan coil or 6 ft (1.8 m) on the suction side if the pump is remote mounted. The pump is recommended when adequate drain line pitch cannot be provided, or when the condensate must move up to exit. NOTE: An external 115v power source will be required to run the pump on unit sizes 9k and 12k. OUTDOOR UNIT CRANKCAE HEATER Available for units with rotary compressors. Heater clamps around compressor oil sump. Recommended for long line applications. AHRI* CAPACITY RATING OUTDOOR INDOOR TANDARD CFM HIGH HEAT ECTION ECTION COOLING BTUH EER Outdoor Indoor BTUH HPF PA13AAM09000 PW3CAM , N/A N/A PA13AAM12000 PW3CAM , N/A N/A PA13NAM18000 PW3CNM , N/A N/A PA13NAM24000 PW3CNM , N/A N/A PH13AAM09000 PW3HAM , , PH13AAM12000 PW3HAM , , PH13NAM18000 PW3HNM , , PH13NAM24000 PW3HNM , , *Air Conditioning, Heating & Refrigeration Institute Legend HPF --- Heating easonal Performance Factor EER --- easonal Energy Efficiency Ratio NOTE: 1. Ratings are net values reflecting the effects of circulating fan heat. Ratings are based on: Cooling tandard: 80_F (26.67_C) db, 67_F (19.44_C) wb air entering indoor unit and 95_F (35_C) db air entering outdoor unit. High Temperature Heating tandard: 70_F (21.11_C) db air entering indoor unit and 47_F (8.33_C) db, 43_F (6.11_C) wb air entering outdoor unit. 2. Ratings are based on 25 ft. (7.62 m) of interconnecting refrigerant lines. 3. All system ratings are based on fan coil units operating at high fan speed. Consult Physical Data tables for airflows at all available fan speeds. 4

5 DIMENION - INDOOR Model ize W in. (mm) H in. (mm) D in. (mm) Operating Weight lb (kg) 9K (815) (280) 7.68 (195) 17.6 (8) 12K (906) (286) 9.25 (235) 25.3 (11.5) 18K (1250) (325) 9.06 (230) 39.6 (18) 24K (1250) (325) 9.06 (230) 39.6 (18) A07336 DIMENION - OUTDOOR Air Flow L1 W L2 L3 H 35 Model ize W in. (mm) H in. (mm) L1 in. (mm) L2 in. (mm) L3 in. (mm) Operating Weight lb (kg) Cooling Only A07337 Operating Weight lb (kg) Heat Pumps 9K (780) (540) (549) (300) (276) 70.4 (32) 72.6 (33) 12K (760) (590) (530) (315) (290) 79.2 (36) 83.6 (38) 18K (840) (695) (560) (360) (335) (53) (53.5) 24K (889) (851) (588) (355) (333) (68) 151 (68.5) ERVICE VALVE LOCATION 9K 12K 18K 24K J K J K J K K J ervice Valve Locations 9K in. (mm) 12K in. (mm) 18K in. (mm) 24K in. (mm) J 3.46 (88) 3.19 (81) 3.46 (88) 4.02 (102) K 3.46 (88) 5.63 (143) 3.62 (92) 6.57 (167) A07376a 5

6 CLEARANCE - INDOOR 6" (0.15m) min. 5" (0.13m) min. 5" (0.13m) min. 6' (1.8m) CLEARANCE - OUTDOOR A Fig. 2 Indoor unit clearance A07891 Air-inlet E D B C Air-outlet A07894 UNIT 9k and 12k in. (mm) 18k and 24k in. (mm) A 24 (610) 24 (610) B 24 (610) 36 (914) C 24 (610) 24 (610) D 6 (152) 6 (152) E 12 (305) 12 (305) Fig. 3 Outdoor Unit Clearance 6

7 PHYICAL DATA Outdoor Unit PA13A(N)AM ystem Voltage 115 V 115 V 208/ /230 Nominal Capacity (Btuh) Operating Weight lb (kg) 70.4 (32) 79.2 (36) (53) (68) Refrigerant Type R---410A Metering Device Capillary Tube at Outdoor Charge lb (kg) 2.3 (1.0) 2.9 (1.3) 4.4 (2.0) 5.3 (2.4) Compressor Type Rotary Model EA82X1C---1FZDU1 EA108X1C---1FZDU1 PA150X2C---3KUU PA200X2C---3MUU Oil Charge (POE --- oz) Outdoor Fan Rpm Diameter (in).. No. of Blades Motor (watts / hp) 23 / / / / Outdoor Coil Face Area (sq. ft) No. Rows Fins per inch Circuits Refrigerant Lines Connection Type Flare Liquid (Mix Phase) (in) OD 1/4 1/4 1/4 3/8 Vapor Line (in) OD 3/8 1/2 1/2 5/8 Maximum Length* ft (m) 65 (20.0) 65 (20.0) 100 (30.4) 100 (30.4) MaxLift(FanCoilAbove)ft(m) 35 (10.7) 35 (10.7) 50 (12.2) 60 (18.3) Max Drop (Fan Coil Below)ft (m) 35 (10.7) 35 (10.7) 50 (12.2) 60 (18.3) Controls Control Voltage 13 VDC 13 VDC Pulse DC Pulse DC External Finish White White White White Outdoor Unit PH13A(N)AM ystem Voltage 115 V 115 V 208/ /230 Nominal Capacity (Btuh) Operating Weight lb(kg) 72.6 (33) 83.6 (38) (53.5) (68.5) Refrigerant Type R---410A Metering Device Capillary Tube at Outdoor Charge lb (kg) 2.4 (1.1) 3.0 (1.4) 4.5 (2.0) 5.3 (2.4) Compressor Type Rotary Model EA82X1C---1FZDU1 EA108X1C---1FZDU1 PA150X2C---3KUU PA200X2C---3MUU Oil Charge (POE --- oz) Outdoor Fan Rpm Diameter (in).. No. of Blades Motor (watts / hp) 23 / / / / Outdoor Coil Face Area (sq. ft) No. Rows Fins per inch Circuits Refrigerant Lines Connection Type Flare Liquid Line (in) OD 1/4 1/4 1/4 3/8 Vapor Line (in) OD 3/8 1/2 1/2 5/8 Maximum Length* ft (m) 65 (20.0) 65 (20.0) 100 (30.4) 100 (30.4) MaxLift(FanCoilAbove)ft(m) 35 (10.7) 35 (10.7) 50 (12.2) 60 (18.3) Max Drop (Fan Coil Below)ft (m) 35 (10.7) 35 (10.7) 50 (12.2) 60 (18.3) Controls Control Voltage 13 VDC 13 VDC Pulse DC Pulse DC Finish White White White White * Refer to Long Line Application section on page 21 7

8 PHYICAL DATA (CONT.) Indoor Unit PW3CA(N)M ystem Voltage / /230 Nominal Capacity (Btuh) ,000 Operating Weight lb(kg) 17.6(8) 25.3(11.5) 39.6(18) 39.6(18) Refrigerant Type R---410A Metering Device Capillary Tube at Outdoor Charge (lb) 2.3(1.0) 2.9(1.3) 4.4(2.0) 5.3(2.4) Indoor Fan Rpm/Cfm (High) 1250/ / / /750 Rpm/Cfm (Medium) 1000/ / / /660 Rpm/Cfm (Low) 800/ / / /585 Motor (Watts / hp) 20 / / / /.112 Blower Diameter Length (in) Indoor Coil Face Area (sq. ft) No. Rows Fins per inch Circuits Controls Integrated Microprocessor Remote Controller Wireless Fan Mode High/Medium/Low/Auto Dehumidification Mode leep Mode Diagnostics Timer Mode Freeze Protection Test Mode Auto Restart Auto weep Control Voltage 13 VDC 13 VDC Pulse DC Pulse DC Refrigerant Lines Connection Type Flare Liquid Line (in) OD 1/4 1/4 1/4 3/8 Vapor Line (in) OD 3/8 1/2 1/2 5/8 Maximum Length* ft (m) 65 (19.8) 65 (19.8) 100 (30.5) 100 (30.5) MaxLift(FanCoilAbove)ft(m) 35 (10.7) 35 (10.7) 50 (15.2) 60 (18.3) Max Drop (Fan Coil Below) ft (m) 35 (10.7) 35 (10.7) 50 (15.2) 60 (18.3) Condensate Drain ize (in).65 (OD).53 (ID).65 (OD).53 (ID).65 (OD).53 (ID).65 (OD).53 (ID) External Finish White White White White * Refer to Long Line Application section on page 21 8

9 PHYICAL DATA (CONT.) Indoor Unit PW3HA(N)M ystem Voltage / /230 Nominal Capacity (Btuh) Operating Weight lb (kg) 17.6 (8) 25.3 (11.5) 39.6 (18) 39.6 (18) Refrigerant Type R---410A Metering Device Capillary Tube at Outdoor Charge lb (kg) 2.35 (1.1) 3.0 (1.4) 4.5 (2.0) 5.3 (2.4) Indoor Fan Rpm/Cfm (High) 1250/ / / /750 Rpm/Cfm (Medium) 1000/ / / /660 Rpm/Cfm (Low) 800/ / / /585 Motor (Watts / hp) 20 / / / /.112 Blower Diameter Length (in) Indoor Coil Face Area (sq. ft) No. Rows Fins per inch Circuits Controls Integrated Microprocessor Remote Controller Wireless Fan Mode High/Medium/Low/Auto Auto Changeover Dehumidification Mode Demand Defrost leep Mode Diagnostics Timer Mode Freeze Protection Test Mode Auto Restart Auto weep Control Voltage 13 VDC 13 VDC Pulse DC Pulse DC Refrigerant Lines Connection Type Flare Liquid Line (in) OD 1/4 1/4 1/4 3/8 Vapor Line (in) OD 3/8 1/2 1/2 5/8 Maximum Length* ft (m) 65 (19.8) 65 (19.8) 100 (30.5) 100 (30.5) MaxLift(FanCoilAbove)ft(m) 35 (10.7) 35 (10.7) 50 (15.2) 60 (18.3) Max Drop (Fan Coil Below) ft (m) 35 (10.7) 35 (10.7) 50 (15.2) 60 (18.3) Condensate Drain ize (in).65 (OD).53 (ID).65 (OD).53 (ID).65 (OD).53 (ID).65 (OD).53 (ID) External Finish White White White White * Refer to Long Line Application section on page 21 9

10 PERFORMANCE DATA Temp _F (_C) Air Entering Condenser (Edb) 55 (12.78) 65 (18.33) 75 (23.89) 85 (29.44) 95 (35) 105 (40.56) 115 (46.11) 125 (51.67) COOLING CAPACITIE PA(H)13AAM09000 / PW3C(H)AM09000 Air Entering Evaporator --- Cfm/BF 190/ / /0.05 Air Entering Evaporator --- Ewb _F (_C) 57 (13.89) 62 (16.67) 67 (19.44) 72 (22.22) 57 (13.89) 62 (16.67) 67 (19.44) 72 (22.22) 57 (13.89) 62 (16.67) 67 (19.44) 72 (22.22) TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB LEGEND BF --- Bypass Factor CMP --- Compressor Edb --- Entering Dry Bulb Ewb --- Entering Wet Bulb kw --- Total Power LDB --- Leaving Dry Bulb LWB --- Leaving Wet Bulb HG --- Gross ensible Capacity (1000 Btu/hour) TC --- Total Net Cooling Capacity (1000 Btu/hour) TCG --- Gross Cooling Capacity (1000 Btu/hour) NOTE: 1. Direct interpolation is permissible. Do not extrapolate. 2. The HG is based on 80_F (26.67_C) edb temperature of air entering indoor coil. Below 80_F (26.67_C) edb, subtract (corr factor x cfm) from HG. Above 80_F (26.67_C) edb, add (corr factor x cfm) to HG. Correction Factor = 1.10 x (1 --- BF) x (edb ). 10

11 PERFORMANCE DATA (CONT.) Temp _F (_C) Air Entering Condenser (Edb) 55 (12.78) 65 (18.33) 75 (23.89) 85 (29.44) 95 (35) 105 (40.56) 115 (46.11) 125 (51.67) COOLING CAPACITIE PA(H)13AAM12000 / PW3C(H)AM12000 Air Entering Evaporator --- Cfm/BF 339/ / /0.05 Air Entering Evaporator --- Ewb _F (_C) 57 (13.89) (16.67) (19.44) (22.22) (13.89) (16.67) (19.44) (22.22) (13.89) (16.67) (19.44) (22.22) TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB LEGEND BF --- Bypass Factor CMP --- Compressor Edb --- Entering Dry Bulb Ewb --- Entering Wet Bulb kw --- Total Power LDB --- Leaving Dry Bulb LWB --- Leaving Wet Bulb HG --- Gross ensible Capacity (1000 Btu/hour) TC --- Total Net Cooling Capacity (1000 Btu/hour) TCG --- Gross Cooling Capacity (1000 Btu/hour) NOTE: 1. Direct interpolation is permissible. Do not extrapolate. 2. The HG is based on 80_F (26.67_C) edb temperature of air entering indoor coil. Below 80_F (26.67_C) edb, subtract (corr factor x cfm) from HG. Above 80_F (26.67_C) edb, add (corr factor x cfm) to HG. Correction Factor = 1.10 x (1 --- BF) x (edb ). 11

12 PERFORMANCE DATA (CONT.) Temp _F (_C) Air Entering Condenser (Edb) 55 (12.78) 65 (18.33) 75 (23.89) 85 (29.44) 95 (35) 105 (40.56) 115 (46.11) 125 (51.67) COOLING CAPACITIE PA(H)13NAM18000 / PW3C(H)NM18000 Air Entering Evaporator --- Cfm/BF 502/ / /0.05 Air Entering Evaporator --- Ewb (_F) 57 (13.89) 62 (16.67) 67 (19.44) 72 (22.22) 57 (13.89) 62 (16.67) 67 (19.44) 72 (22.22) 57 (13.89) 62 (16.67) 67 (19.44) 72 (22.22) TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB LEGEND BF --- Bypass Factor CMP --- Compressor Edb --- Entering Dry Bulb Ewb --- Entering Wet Bulb kw --- Total Power LDB --- Leaving Dry Bulb LWB --- Leaving Wet Bulb HG --- Gross ensible Capacity (1000 Btu/hour) TC --- Total Net Cooling Capacity (1000 Btu/hour) TCG --- Gross Cooling Capacity (1000 Btu/hour) NOTE: 1. Direct interpolation is permissible. Do not extrapolate. 2. The HG is based on 80_F (26.67_C) edb temperature of air entering indoor coil. Below 80_F (26.67_C) edb, subtract (corr factor x cfm) from HG. Above 80_F (26.67_C) edb, add (corr factor x cfm) to HG. Correction Factor = 1.10 x (1 --- BF) x (edb ). 12

13 PERFORMANCE DATA (CONT.) Temp _F (_C) Air Entering Condenser (Edb) 55 (12.78) 65 (18.33) 75 (23.89) 85 (29.44) 95 (35) 105 (40.56) 115 (46.11) 125 (51.67) COOLING CAPACITIE PA(H)13NAM24000 / PW3C(H)NM24000 Air Entering Evaporator --- Cfm/BF 584/ / /0.05 Air Entering Evaporator --- Ewb (_F) TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB TCG HG TC kw CMP LDB LWB LEGEND BF --- Bypass Factor CMP --- Compressor Edb --- Entering Dry Bulb Ewb --- Entering Wet Bulb kw --- Total Power LDB --- Leaving Dry Bulb LWB --- Leaving Wet Bulb HG --- Gross ensible Capacity (1000 Btu/hour) TC --- Total Net Cooling Capacity (1000 Btu/hour) TCG --- Gross Cooling Capacity (1000 Btu/hour) NOTE: 1. Direct interpolation is permissible. Do not extrapolate. 2. The HG is based on 80_F (26.67_C) edb temperature of air entering indoor coil. Below 80_F (26.67_C) edb, subtract (corr factor x cfm) from HG. Above 80_F (26.67_C) edb, add (corr factor x cfm) to HG. Correction Factor = 1.10 x (1 --- BF) x (edb ). 13

14 PERFORMANCE DATA (CONT.) Air Temperature Entering Indoor Unit _F (_C) 55 (12.78) 60 (15.56) 65 (18.33) 70 (21.11) 75 (23.89) 80 (26.67) Indoor Airflow (CFM) L --- M --- H Item INTANTANEOU AND INTEGRATED HEATING RATING PH13AAM09000 / PW3HAM09000 Air Temperature Entering Outdoor Coil --- DB/WB _F (_C) 57/53 (13.89/11.67) 47/43 (8.33/6.11) 37/33 (2.78/0.56) 27/23 ( /---5) 17/13 ( / ) Instant. Integrated Instant. Integrated Instant. Integrated Instant. Integrated Instant. Integrated Rating Rating Rating Rating Rating Rating Rating Rating Rating Rating Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Indicates Rating Condition (Integrated Capacity) Indicates Integrated Rating Cap --- Heating Capacity (100 Btuh), Includes indoor fan motor heat kw --- Total Power Input, includes compressor motor power input, outdoor fan motor power input, and indoor fan motor power input Note: Integrated Capacity is maximum (instantaneous ) capacity less the effect of frost on the outdoor coil and the heat to defrost it. 14

15 PERFORMANCE DATA (CONT.) Air Temperature Entering Indoor Unit _F (_C) 55 (12.78) 60 (15.56) 65 (18.33) 70 (21.11) 75 (23.89) 80 (26.67) Indoor Airflow (CFM) L --- M --- H Item INTANTANEOU AND INTEGRATED HEATING RATING PH13AAM12000 / PW3HAM12000 Air Temperature Entering Outdoor Coil --- DB/WB _F (_C) 57/53 (13.89/11.67) 47/43 (8.33/6.11) 37/33 (2.78/0.56) 27/23 ( /---5) 17/13 ( / ) Instant. Integrated Instant. Integrated Instant. Integrated Instant. Integrated Instant. Integrated Rating Rating Rating Rating Rating Rating Rating Rating Rating Rating Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Indicates Rating Condition (Integrated Capacity) Indicates Integrated Rating Cap --- Heating Capacity (100 Btuh), Includes indoor fan motor heat kw --- Total Power Input, includes compressor motor power input, outdoor fan motor power input, and indoor fan motor power input Note: Integrated Capacity is maximum (instantaneous ) capacity less the effect of frost on the outdoor coil and the heat to defrost it. 15

16 PERFORMANCE DATA (CONT.) Air Temperature Entering Indoor Unit _F (_C) 55 (12.78) 60 (15.56) 65 (18.33) 70 (21.11) 75 (23.89) 80 (26.67) Indoor Airflow (CFM) L --- M --- H Item INTANTANEOU AND INTEGRATED HEATING RATING PH13NAM18000 / PW3HNM18000 Air Temperature Entering Outdoor Coil --- DB/WB _F (_C) 57/53 (13.89/11.67) 47/43 (8.33/6.11) 37/33 (2.78/0.56) 27/23 ( /---5) 17/13 ( / ) Instant. Integrated Instant. Integrated Instant. Integrated Instant. Integrated Instant. Integrated Rating Rating Rating Rating Rating Rating Rating Rating Rating Rating Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Indicates Rating Condition (Integrated Capacity) Indicates Integrated Rating Cap --- Heating Capacity (100 Btuh), Includes indoor fan motor heat kw --- Total Power Input, includes compressor motor power input, outdoor fan motor power input, and indoor fan motor power input Note: Integrated Capacity is maximum (instantaneous ) capacity less the effect of frost on the outdoor coil and the heat to defrost it. 16

17 PERFORMANCE DATA (CONT.) Air Temperature Entering Indoor Unit _F (_C) 55 (12.78) 60 (15.56) 65 (18.33) 70 (21.11) 75 (23.89) 80 (26.67) Indoor Airflow (CFM) L --- M --- H Item INTANTANEOU AND INTEGRATED HEATING RATING PH13NAM24000 / PW3HNM24000 Air Temperature Entering Outdoor Coil --- DB/WB _F (_C) 57/53 (13.89/11.67) 47/43 (8.33/6.11) 37/33 (2.78/0.56) 27/23 ( /---5) 17/13 ( / ) Instant. Integrated Instant. Integrated Instant. Integrated Instant. Integrated Instant. Integrated Rating Rating Rating Rating Rating Rating Rating Rating Rating Rating Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Cap kw Indicates Rating Condition (Integrated Capacity) Indicates Integrated Rating Cap --- Heating Capacity (100 Btuh), Includes indoor fan motor heat kw --- Total Power Input, includes compressor motor power input, outdoor fan motor power input, and indoor fan motor power input Note: Integrated Capacity is maximum (instantaneous ) capacity less the effect of frost on the outdoor coil and the heat to defrost it. 17

18 APPLICATION DATA UNIT ELECTION elect equipment to either match or be slightly less than anticipated peak load. This provides better humidity control, fewer unit cycles, and less part-load operation. For units used in spaces with high sensible loads, base equipment selection on unit sensible load, not on total anticipated load. Adjust for anticipated room wet bulb temperature to avoid undersizing equipment. UNIT MOUNTING (INDOOR) Unit leveling - For reliable operation, units should be level in all planes. Clearance - Provide adequate clearance for airflow as shown in Fig. 2. Unit location - elect a location which will provide the best air circulation for the room. These units should be positioned as high as possible on the wall for best air circulation. The unit return and discharge should not be obstructed by furniture, curtains, or anything which may cause unit short cycling or air recirculation. Place the unit in the middle of the selected wall (if possible). Use an outside wall, if available, to make piping easier, and place the unit so it faces the normal location of room occupants. UNIT MOUNTING (OUTDOOR) Unit leveling - For reliable operation, units should be level in all planes. Clearance - Minimum clearance, as shown in Fig. 3, must be provided for airflow. The condensing units are designed for free-blow application. Air inlets and outlets should not be restricted. Unit location - A location which is convenient to installation and not exposed to strong wind. If unit is exposed to strong winds it is recommended that a wind baffle be used. Contact your Payne representative for drawings. A location which can bear the weight of outdoor unit and where the outdoor unit can be mounted in a level position. Do not install the indoor or outdoor units in a location with special environmental conditions. For those applications, contact your Payne representative. MOUNTING TEMPLATE The fan coil units are furnished with mounting to mark the location of the wiring, and refrigeration line hole locations. UPPORT Adequate support must be provided to support the weight of all fan coils. Refer to the Physical Data section for fan coil weights, and the base unit dimensional drawings for the location of mounting brackets. YTEM OPERATING CONDITION Cooling operating range: Outdoor Unit Indoor Unit DB _F (_C) 125 (51.67) 85 (29.44) Maximum Heating operating range: Outdoor Unit Indoor Unit DB _F (_C) 75 (23.89) 80 (26.67) Maximum METERING DEVICE WB _F (_C) (22.22) WB _F (_C) 67 (19.44) --- DB _F (_C) 55 (12.78) 64 (17.78) DB _F (_C) 5 ( ) 55 (12.78) Minimum Minimum WB _F (_C) (11.11) WB _F (_C) 50% RH These units have capillary tube metering devices in the outdoor unit. DRAIN CONNECTION Install drains to meet local sanitation codes. If adequate gravity drainage cannot be provided, unit should be equipped with accessory condensate pump. High wall fan coil unit condensate pumps have a maximum lift of 10 (3.05 m) for 9k and 12k units and 25 (7.62 m) for 18k and 24k units. ee physical dimension tables for drain sizes. NOTE: High wall fan coil units have internal condensate traps. A trap is not required. Drain connections may be routed through alternate locations on mostfancoilsasshowninfig.4. Pipe cover Pipe holder 1 2 Right piping Right back piping ize 012 Only Fig. 4 Piping Locations 3 Pipe cover Left piping Left back piping A

19 REFRIGERANT LINE General refrigerant line sizing: 1. The PA(H)13, PW3C(H) units are shipped with a full charge of R410A refrigerant. All charges, line sizing, and capacities are based on runs of 25 ft (7.6 m). For runs over 25 ft (7.6 m), consult long -line section on this page for proper charge adjustments. 2. Refrigerant lines should not be buried in the ground. If it is necessary to bury the lines, not more than 36 -in (914 mm) should be buried. Provide a minimum 6 -in (152 mm) vertical rise to the service valves to prevent refrigerant migration. 3. Both lines must be insulated. Use a minimum of 1/2 -in. (12.7 mm) thick insulation. Closed -cell insulation is recommended in all long -line applications. 4. pecial consideration should be given to isolating interconnecting tubing from the building structure. Isolate the tubing so that vibration or noise is not transmitted into the structure. Long Line Applications, PA13A(N) Units: 1. A crankcase heater should be added for line lengths longer than 25 ft (7.62 m) to prevent the migration of refrigerant to the compressor during the OFF cycle. 2. A field fabricated wind baffle is recommended. 3. No change in line sizing is required. 4. Add refrigerant per table below. ADDITIONAL CHARGE TABLE Unit ize 9K cool only 9K hp 12K cool only 12K hp 18K cool only 18K hp 24K cool only 24K hp Total Line Length, ft Min. 10 Max ( ) none Additional Charge, oz. ft (m) > ( ) 0.1 oz per foot > ( ) 0.3 oz. per foot 5. Reduction in capacity due to long lines can be calculated from the chart below. CAPACITY LO Capacity,%Loss Line Length, ft Cooling: &12KBTU/Hmodels 0% 2% 5% 18 & 24 KBTU/H models 0% 2% 4% 7% Heating: 9&12KBTU/Hmodels 0% 7% 11% 18 & 24 KBTU/H models 0% 7% 11% 15% WIRING The main power is supplied to the outdoor unit. the field supplied connecting cable from the outdoor unit to indoor unit consists of four wires and provides the power for the indoor unit as well as the communication signal between the outdoor unit and indoor unit. For 9K and 12K units, all four wires are low voltage DC. For 18K and 24K, two wires are high voltage AC power, one is low voltage DC, and one is a ground wire. CONTROL YTEM The PW3C(H) units are equipped with a microprocessor control to operate the system and give optimum levels of comfort and operating efficiency. The main microprocessor is located in the control box of the fan coil unit (there is one in the outdoor unit too) with thermistors located in the fan coil inlet and on the indoor coil. These thermistors monitor the system operation and control the operating mode. To change the settings or the modes of operation, use the factory supplied wireless remote control. The PW3C(H) units have 5 operating modes: Fan Only Auto (heat pump models only) Heating (heat pump models only) Cooling Dehumidification (Dry) FAN ONLY - In Fan Only mode, the system filters and circulates the room air without changing the room air temperature. AUTO - In Auto mode, the system will automatically select one of the following operating modes: cooling, heating or fan only based on the difference between the room temperature and the set point temperature. HEATING - In the Heating mode, the system heats and filters room air. COOLING - In Cooling mode, the system cools, dries and filters room air. DEHUMIDIFICATION (DRY) - in Dehumidification (Dry) mode, the system dries, filters and slightly cools room temperature. This mode does not take place of a dehumidifier. In addition to the above modes that are selected by using the remote control, The unit can run in two other modes selected by the manual button: EMERGENCY RUN TET MODE EMERGENCY mode is used when the remote control is misplaced or the batteries in the remote control died. Pushing the manual button once will put the unit in Auto mode with a predetermined set point (76 _F/ 24.4 _C). TET mode is used when a technician needs to diagnose the unit for a malfunction. Pushing the manual button twice will put the unit in test mode. The unit will run continuously for 30 min regardless of the set point. For more details on the sequence of operation please refer to the service manual for those units. WIRELE REMOTE CONTROL 1. A wireless remote control is supplied for system operation of all high -wall units. 2. Each battery -operated wireless (infrared) remote control may be used to control more than one unit. 3. The wireless remote control has a range of 25 ft. (7.6 m). 19

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