Product Data PH3Z 13 SEER SINGLE -PACKAGED HEAT PUMP SYSTEM WITH R -22 REFRIGERANT SINGLE AND THREE PHASE 2-5 NOMINAL TONS ( )

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1 13 SEER SINGLE -PACKAGED HEAT PUMP SYSTEM WITH R -22 REFRIGERANT SINGLE AND THREE PHASE 2-5 NOMINAL TONS (024-0) Product Data Fig. 1 - Unit 664B Single -Packaged Heat Pump Units with: S easy installation design S corrosion -proof unit base S redesigned aerodynamic fan blade for reduced sound S sloped drain for improved indoor air quality S scroll compressors S front and side service access S louvered panel coil protection FEATURES/BENEFITS A05194 Compact, horizontal supply and return unit, combining easy installation and maintenance with efficient performance. EASY TO INSTALL The units are lightweight, compact single package units that are easy to handle. Every unit has an identical 32 by 51 -in. (813 by 1295 mm) footprint to make job site planning simple. The precise design uses less sheet metal and makes the units lighter than other units. The unit can be easily positioned on the job site with the hand -holds built into the unit basepan. Drop -in cartridge -style heaters are utilized to minimize installation time. REDESIGNED, AERODYNAMIC FAN BLADE DESIGN reduces overall sound by up to 3dBA; now as low as 76dBA. SERVICE ACCESS The units are designed to be serviced from both front and side. Routine maintenance tasks, such as coil cleaning, are sped up with the new multiple side panels design. CORROSION PROOF UNIT BASE The unit features a tough, high -tech, single-piece composite material unit base with an integrated drain. The composite material eliminates the potential problem of rust and premature replacement which are common with standard metal pans. Each unit base is sloped to eliminate standing water. This feature minimizes the amount of standing water inside the unit, which limits mold and mildew growth. DURABLE STEEL CABINET The watertight construction and corrosion -resistant finish of the unit will keep it looking like new for years. A specialized paint treatment process ensures quality protection against the elements. A compact, low -profile design utilizes a louvered coil enclosure for maximum protection against hail damage and vandalism. SCROLL COMPRESSORS Each unit comes standard with a high reliability design scroll compressor. Each scroll compressor is hermetically sealed against contamination to help promote longer life and dependable operation. All scroll compressors have internal high -pressure and overcurrent protection. COIL EFFICIENCY Indoor and outdoor coils are computer designed for optimum heat transfer and cooling efficiency. CHRONOTEMPt DEFROST SYSTEM The system provides time/ temperature -based defrost cycles to maintain unit efficiency. This highly reliable system checks for coil icing conditions at preset intervals and initiates a defrost cycle only if it is required. The defrost cycle ends as soon as defrosting is accomplished. Each defrost board is also equipped with 5 -minute compressor time -delay protection. ACCESSORY ELECTRIC HEATERS A variety of accessory electric heaters are available for the units. These heaters are comprised of a separate heater module mounted on the blower inlet and remote mounted controls located in the unit control box. Single point electrical connections are provided for powering both the heater and the unit. START COLLARS Start collars are provided with each unit to provide easy connection to the structure ductwork. DEPENDABLE COMPONENTS Direct -drive, multi -speed blower motor is standard on all models. Direct-drive, PSC outdoor-fan motors are designed to help reduce energy consumption and provide for cooling operation down to 40 F (4.4 C). Refrigerant system is designed to provide dependability. Liquid refrigerant strainers are used to promote clean, unrestricted operation. Each unit leaves the factory with a full refrigerant charge and is fully run tested. Refrigerant service connections make checking operating pressure easier. LIMITED WARRANTY Standard 5 -year limited warranty on all parts and 5 -year limited warranty on compressor. 1

2 MODEL NUMBER NOMENCLATURE N X A A AA Type of Unit --- Single Packaged Heat Pump System Electrical Supply N / P / N/A Series Variations Brand Name A --- Common Unit Nominal Cooling Capacity Tons Tons Tons Tons Tons Tons Heat Input Size (Btuh) N/A TABLE OF CONTENTS PAGE FEATURES/BENEFITS... 1 MODEL NUMBER NOMENCLATURE... 2 ARI CAPACITY RATINGS... 3 PHYSICAL DATA... 3 ACCESSORIES DIMENSIONAL DRAWINGS... 6 SELECTION PROCEDURE... 7 PERFORMANCE DATA TYPICAL WIRING SCHEMATICS CONTROLS APPLICATION DATA GUIDE SPECIFICATIONS

3 ARI* CAPACITIES UNIT (SERIES) NOMINAL TONS STANDARD CFM NET COOLING CAPACITIES AT 95 F (35 C) (Btuh) SEER NET HEATING CAPACITIES AT 47 F (8.3 C) (Btuh) HSPF HIGH HEAT COP AT 47 F (8.3 C) SOUND RATINGS** (dba) , , , , , , , , , , , , * Air Conditioning & Refrigeration Institute { Rated in accordance with U.S. Government DOE (Department of Energy) test procedures and/or ARI Standards 210/240. ** Tested in accordance with ARI Standard 270 (not listed in ARI). LEGEND dba A---weighted decibels HSPF Heating Seasonal Performance Factor SEER Seasonal Energy Efficiency Ratio COP Coefficient of Performance ISO 9001:2000 REGISTERED PHYSICAL DATA UNIT SIZE NOMINAL CAPACITY (ton) 2 2-1/ /2 4 5 OPERATING WEIGHT (lb) (kg) COMPRESSOR Scroll UltraTechScroll REFRIGERANT (R -22) Quantity (lb) (kg) REFRIGERANT METERING DEVICE AccuRater TXV Orifice ID (in.) Orifice OD (in.) CONDENSER COIL Copper Tubes, Aluminum Plate Fins Rows Fins/in Face Area (sq. ft.) CONDENSER FAN Propeller Nominal Cfm Diameter (in.) (mm) Motor HP (RPM) 1/8 (825) 1/8 (825) 1/4 (1100) 1/4 (1100) 1/4 (1100) 1/2 (1100) EVAPORATOR COIL Copper Tubes, Aluminum Plate Fins Rows Fins/in Face Area (sq. ft.) EVAPORATOR BLOWER Direct Drive Nominal Airflow (Cfm) Size (in.) (mm) 10x8 254x203 10x8 279x203 11x9 279x x9 279x x10 279x x10 279x254 Motor HP (RPM) 1/2 (1050) 1/2 (1050) 3/4 (1050) 3/4 (1050) 1 (1050) 1 (1050) CONNECTING DUCT SIZES Round Supply Air (in.) (mm) Return Air (in.) (mm) Return -Air Filters Throwaway (in.)* (mm) 24 x x x x x x 762 *Required filter sizes shown are based on the ARI (Air conditioning & Refrigeration Institute) rated airflow at a velocity of 300 ft/min for throwaway type or 450 ft/min for high capacity type. Recommended filters are 1---in. (25.4 mm) thick. 3

4 ACCESSORIES ACCESSORY MotorMaster II Low Ambient Control allows unit to run at outdoor temperatures down to 0 F ( C). Controls Upgrade Kit provides high and low pressure safety protection and protects the unit from operating in unsuitable conditions. Crankcase Heater provides anti -floodback protection for low load applications. Outdoor Thermostat Corporate Thermostat Refer to Price Pages for available accessories. Corporate Thermostat provides heating and cooling unit control. The thermostat provides system and fan switching. ACCESSORY ELECTRIC HEATER USAGE Electric Heaters ranging from 5.0 to 20.0 kw provide heat in the unit when required. Each package has a heater module that mounts on the blower inlet; mounting this module requires removal of the blower assembly and attachment of the module to the blower standoffs provided. Each package also includes an associated heater control package that must be mounted in the unit control box. Integral harnesses provided with both the heater module and control package allow connection of the two components via in -line plugs. Heaters are available both with and without circuit breakers and provide the ability to supply power to the entire unit from a single circuit. Outdoor Thermostat brings second stage of 2 -stage electric heater on line when the outdoor-air temperature falls below the set point. CATALOG ORDERING NO. NOMINAL CAPACITY (kw) USED WITH SIZES CIRCUIT BREAKER (YES/NO) STAGES ELECTRIC HEATERS (208/230 -SINGLE PHASE -Hz) CPHEATER096A / 5.0 No 1 X X X X CPHEATER097A / 5.0 Yes 1 X X CPHEATER098A / 7.5 No 2 X CPHEATER099A / 7.5 Yes 2 X X X X X CPHEATER101A / 10.0 Yes 2 X X X X X X CPHEATER102A / 15.0 Yes 2 X X X X CPHEATER103A / 20.0 Yes 2 X X X X ELECTRIC HEATERS (208/230 -THREE PHASE -Hz) CPHEATER115A No 2 X X X X X CPHEATER117A Yes 2 X X X X X CPHEATER119A Yes 2 X X X X CPHEATER120A Yes 2 X X X X = Approved combination MULTIPLICATION FACTORS HEATER kw RATING VOLTAGE DISTRIBUTION MULTIPLICATION FACTOR Example: 15.0 kw (at 240v) heater on 208v =15.0(.75multfactor) = capacity at 208v 4

5 ACCESSORIES (CONT) Balance Point Worksheet 70 Building heat Loss / Unit Integrated heating Capacity (x1000 BTU) Outdoor Air Temp (Deg. F) A

6 BASE UNIT DIMENSIONS A

7 SELECTION PROCEDURE I. DETERMINE COOLING AND HEATING REQUIREMENTS AT DESIGN CONDITIONS Given: REQUIRED COOLING CAPACITY (TC)... 28,000 BTUH SENSIBLE HEAT CAPACITY (SHC)... 20,500 BTUH REQUIRED HEATING CAPACITY... 28,550 BTUH OUTDOOR ENTERING -AIR TEMPERATURE.. 95 F (35 C) OUTDOOR -AIR WINTER DESIGN TEMPERATURE.. 20 F (-6.7 C) INDOOR -AIR WINTER DESIGN TEMPERATURE F (21.1 C) INDOOR ENTERING -AIR TEMPERATURE F (26.7 C) EDB, 67 F EWB (19.4 C) INDOOR -AIR QUANTITY CFM EXTERNAL STATIC PRESSURE IN. WC ELECTRICAL CHARACTERISTICS (V -PH -HZ) edb entering dry bulb ewb entering wet bulb II. SELECT UNIT BASED ON REQUIRED COOLING CAPACITY Enter Cooling Capacities table at condenser entering temperature of 95 F (35 C), indoor air entering at 1125 cfm and 67 F (19.4 C) ewb (entering wet bulb). The 030 unit will provide a total cooling capacity of 28,800 Btuh and a sensible heat capacity of 21,700 Btuh. For indoor-air temperature other than 80 F (26.7 C) edb (entering dry bulb), calculate sensible heat capacity correction, as required, using the formula found in Note 3 following the cooling capacities tables. NOTE: Unit ratings are net capacities. III. SELECT ELECTRIC HEAT Enter the 030 Heating Capacities table at 1125 cfm. At 70 F (21.1 C) return indoor air and 20 F (-6.7 C) air entering outdoor coil, the integrated heating capacity is 15,500 Btuh. (Select integrated heating capacity value since deductions for outdoor-coil frost and defrosting have already been made. No correction is required.) The required heating capacity is 28,550 Btuh. Therefore, 13,050 Btuh (28,550-15,500) additional electric heat is required. Determine additional electric heat capacity in kw. 13,050 Btuh 3414 Btuh/kW = 3.8 kw of heat required Enter the Accessory Electric Heater Usage table on page 4 for 208/240v. single-phase, 030 unit. The 5 -kw heater at 240v most closely satisfies the heating required. To calculate kw at 230v, multiply the heater kw by multiplication factor 0.92 found in the Multiplication Factors table on page 4. 5 kw x 0.92 = 4.6 kw 4.6 x 3414 = 15,704 Btuh To calculate kw at 208 v, see Multiplication Factors table on page 4. Total unit heating capacity is 31,204 Btuh (15, ,704). IV. DETERMINE FAN SPEED AND POWER REQUIREMENTS AT DESIGN CONDITIONS Before entering the air delivery tables, calculate the total static pressure required. From the given, the Accessory Electric Heat Pressure Drop table, Wet Coil Pressure Drop table, and the Filter Pressure Drop table, find: External static pressure 0.20 in. wc Filter 0.09 in. wc Electric heat 0.11 in. wc Wet coil 0.07 in. wc Total static pressure 0.47 in. wc Enter the table for Dry Coil Air Delivery Horizontal Discharge at 1125 cfm and 230v high speed. By interpolation, the standard motor will deliver 0.48 in. wc static pressure. This will adequately handle job requirements. 7

8 PERFORMANCE DATA 024 Temp F ( C) Outdoor Air Entering Condenser COOLING CAPACITY Evaporator Air --- CFM/BF 700 / / / 0.11 Evaporator Air Ewb F ( C) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) TC (24) SHC kw TC (29) SHC kw TC (35) SHC kw TC (41) SHC kw TC (46) SHC kw TC (52) SHC kw See page 16 for cooling notes. 024 Return Air F ( C) db CFM (Standard Air) ( ) 0 ( ) 10 ( ) HEATING CAPACITY 17 ( --- 8) Air Temperature Entering Outdoor Coil F ( C) 20 (---7) 700 TC kw TC (16) kw TC kw TC kw TC (21) kw TC kw TC kw TC (27) kw TC kw LEGEND Cap. Heating Capacity (1000 Btuh) (Includes Indoor---Fan Motor NOTES: 1. indicates integrated ratings Heat) 2. Integrated capacity is maximum (instantaneous) capacity less the effect db Dry Bulb of frost on the outdoor coil and the heat required to defrost it. kw Total Power Input (Includes Compressor Motor Power Input Outdoor---Fan Motor Input, and Indoor---Fan Motor Input) rh Relative Humidity 30 ( --- 1) 40 (4) 47 (8) 50 (10) (16) 8

9 PERFORMANCE DATA (CONT) 030 Temp F ( C) Outdoor Air Entering Condenser. COOLING CAPACITY Evaporator Air --- CFM/BF 875 / / / 0.10 Evaporator Air Ewb F ( C) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) TC (24) SHC kw TC (29) SHC kw TC (35) SHC kw TC (41) SHC kw TC (46) SHC kw TC (52) SHC kw See page 16 for cooling notes. 030 Return Air F ( C) db CFM (Standard Air) ( ) 0 ( ) 10 ( ) HEATING CAPACITY Air Temperature Entering Outdoor Coil F ( C) 17 (---8) 875 TC kw TC (16) kw TC kw TC kw TC (21) kw TC kw TC kw TC (27) kw TC kw LEGEND Cap. Heating Capacity (1000 Btuh) (Includes Indoor---Fan Motor NOTES: 1. indicates integrated ratings Heat) 2. Integrated capacity is maximum (instantaneous) capacity less the effect db Dry Bulb of frost on the outdoor coil and the heat required to defrost it. kw Total Power Input (Includes Compressor Motor Power Input Outdoor---Fan Motor Input, and Indoor---Fan Motor Input) rh Relative Humidity 20 ( --- 7) 30 ( --- 1) 40 (4) 47 (8) 50 (10) (16) 9

10 PERFORMANCE DATA (CONT) 036 Temp F ( C) Outdoor Air Entering Condenser COOLING CAPACITY Evaporator Air --- CFM/BF 1050 / / / 0.10 Evaporator Air Ewb F ( C) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) TC (24) SHC kw TC (29) SHC kw TC (35) SHC kw TC (41) SHC kw TC (46) SHC kw TC (52) SHC kw See page 16 for cooling notes. 036 Return Air F ( C) db CFM (Standard Air) ( ) 0 ( ) 10 ( ) HEATING CAPACITY Air Temperature Entering Outdoor Coil F ( C) ( --- 8) (---7) (---1) (4) 1050 TC kw TC (16) kw TC kw TC kw TC (21) kw TC kw TC kw TC (27) kw TC kw LEGEND Cap. Heating Capacity (1000 Btuh) (Includes Indoor---Fan Motor NOTES: 1. indicates integrated ratings Heat) 2. Integrated capacity is maximum (instantaneous) capacity less the effect db Dry Bulb of frost on the outdoor coil and the heat required to defrost it. kw Total Power Input (Includes Compressor Motor Power Input Outdoor---Fan Motor Input, and Indoor---Fan Motor Input) rh Relative Humidity 47 (8) 50 (10) (16) 10

11 PERFORMANCE DATA (CONT) 042 Temp F ( C) Outdoor Air Entering Condenser COOLING CAPACITY Evaporator Air --- CFM/BF 1225 / / / 0.14 Evaporator Air Ewb F ( C) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) TC (24) SHC kw TC (29) SHC kw TC (35) SHC kw TC (41) SHC kw TC (46) SHC kw TC (52) SHC kw See page 16 for cooling notes. 042 Return Air F ( C) db CFM (Standard Air) ( ) 0 ( ) 10 ( ) HEATING CAPACITY Air Temperature Entering Outdoor Coil F ( C) ( --- 8) ( --- 7) (---1) (4) 1225 TC kw TC (16) kw TC kw TC kw TC (21) kw TC kw TC kw TC (27) kw TC kw LEGEND Cap. Heating Capacity (1000 Btuh) (Includes Indoor---Fan Motor NOTES: 1. indicates integrated ratings Heat) 2. Integrated capacity is maximum (instantaneous) capacity less the effect db Dry Bulb of frost on the outdoor coil and the heat required to defrost it. kw Total Power Input (Includes Compressor Motor Power Input Outdoor---Fan Motor Input, and Indoor---Fan Motor Input) rh Relative Humidity 47 (8) 50 (10) (16) 11

12 PERFORMANCE DATA (CONT) 048 High Capacity Temp F ( C) Outdoor Air Entering Condenser COOLING CAPACITY Evaporator Air --- CFM/BF 1400 / / / 0.09 Evaporator Air Ewb F ( C) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) TC (24) SHC kw TC (29) SHC kw TC (35) SHC kw TC (41) SHC kw TC (46) SHC kw TC (52) SHC kw See page 16 for cooling notes. 048 High Capacity Return Air F ( C) db CFM (Standard Air) ( ) 0 ( ) 10 ( ) HEATING CAPACITY Air Temperature Entering Outdoor Coil F ( C) (---8) ( --- 7) (---1) (4) 1400 TC kw TC (16) kw TC kw TC kw TC (21) kw TC kw TC kw TC (27) kw TC kw LEGEND Cap. Heating Capacity (1000 Btuh) (Includes Indoor---Fan Motor NOTES: 1. indicates integrated ratings Heat) 2. Integrated capacity is maximum (instantaneous) capacity less the effect db Dry Bulb of frost on the outdoor coil and the heat required to defrost it. kw Total Power Input (Includes Compressor Motor Power Input Outdoor---Fan Motor Input, and Indoor---Fan Motor Input) rh Relative Humidity 47 (8) 50 (10) (16) 12

13 PERFORMANCE DATA (CONT) 048 Low Capacity Temp F ( C) Outdoor Air Entering Condenser COOLING CAPACITY Evaporator Air --- CFM/BF 950 / / / 0.08 Evaporator Air Ewb F ( C) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) TC (24) SHC kw TC (29) SHC kw TC (35) SHC kw TC (41) SHC kw TC (46) SHC kw TC (52) SHC kw See page 16 for cooling notes. 048 Low Capacity Return Air F ( C) db CFM (Standard Air) ( ) 0 ( ) 10 ( ) HEATING CAPACITY Air Temperature Entering Outdoor Coil F ( C) ( --- 8) ( --- 7) (1) (4) 950 TC kw TC (16) kw TC kw TC kw TC (21) kw TC kw TC kw TC (27) kw TC kw LEGEND Cap. Heating Capacity (1000 Btuh) (Includes Indoor---Fan Motor NOTES: 1. indicates integrated ratings Heat) 2. Integrated capacity is maximum (instantaneous) capacity less the effect db Dry Bulb of frost on the outdoor coil and the heat required to defrost it. kw Total Power Input (Includes Compressor Motor Power Input Outdoor---Fan Motor Input, and Indoor---Fan Motor Input) rh Relative Humidity 47 (8) 50 (10) (16) 13

14 PERFORMANCE DATA (CONT) 0 High Capacity Temp F ( C) Outdoor Air Entering Condenser COOLING CAPACITY Evaporator Air --- CFM/BF 1750 / / / 0.09 Evaporator Air Ewb F ( C) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) TC (24) SHC kw TC (29) SHC kw TC (35) SHC kw TC (41) SHC kw TC (46) SHC kw TC (52) SHC kw See page 16 for cooling notes. 0 High Capacity Return Air F ( C) db (16) 70 (21) 80 (27) HEATING CAPACITY CFM Air Temperature Entering Outdoor Coil F ( C) (Standard Air) ( ) 0 ( ) 10 (---12) 17 (---8) 20 (---7) 30 (1) 40 (4) 47 (8) 50 (10) (16) 1750 TC kw TC kw TC kw TC kw TC kw TC kw TC kw TC kw TC kw LEGEND Cap. Heating Capacity (1000 Btuh) (Includes Indoor---Fan Motor Heat) db Dry Bulb kw Total Power Input (Includes Compressor Motor Power Input Outdoor---Fan Motor Input, and Indoor---Fan Motor Input) rh Relative Humidity NOTES: 1. indicates integrated ratings 2. Integrated capacity is maximum (instantaneous) capacity less the effect of frost on the outdoor coil and the heat required to defrost it. 14

15 PERFORMANCE DATA (CONT) 0 Low Capacity Temp F ( C) Outdoor Air Entering Condenser COOLING CAPACITY Evaporator Air --- CFM/BF 1150 / / / 0.07 Evaporator Air Ewb F ( C) 57 (14) 62 (17) 63* (17) 67 (19) 72 (22) 57 (14) 62 (17) 63* (19) 67 (19) 72 (22) 57 (14) 62 (17) 63* (19) 67 (19) 72 (22) TC (24) SHC kw TC (29) SHC kw TC (35) SHC kw TC (41) SHC kw TC (46) SHC kw TC (52) SHC kw See page 16 for cooling notes. 0 Low Capacity Return Air F ( C) db (16) 70 (21) 80 (27) HEATING CAPACITY CFM Air Temperature Entering Outdoor Coil F ( C) (Standard Air) ( ) 0 ( ) 10 (---12) 17 (---8) 20 (---7) 30 (1) 40 (4) 47 (8) 50 (10) (16) 1150 TC kw TC kw TC kw TC kw TC kw TC kw TC kw TC kw TC kw LEGEND Cap. Heating Capacity (1000 Btuh) (Includes Indoor---Fan Motor Heat) db Dry Bulb kw Total Power Input (Includes Compressor Motor Power Input Outdoor---Fan Motor Input, and Indoor---Fan Motor Input) rh Relative Humidity NOTES: 1. indicates integrated ratings 2. Integrated capacity is maximum (instantaneous) capacity less the effect of frost on the outdoor coil and the heat required to defrost it. 15

16 PERFORMANCE DATA (CONT) LEGEND BF Bypass Factor edb Entering Dry---Bulb Ewb Entering Wet---Bulb kw Total Unit Power Input ldb Leaving Dry---Bulb lwb Leaving Wet---Bulb SHC Sensible Heat Capacity (1000 Btuh) TC Total Capacity (1000 Btuh) (net) *At 75_F (23.9_C) entering dry bulb (Tennessee Valley Authority [TVA] rating conditions); all other at 80_F (26.75_C) entering dry bulb. COOLING NOTES: 1. Ratings are net; they account for the effects of the evaporator---fan motor power and heat. 2. Direct interpolation is permissible. Do not extrapolate. 3. The following formulas may be used: t Wet---bulb temperature corresponding to enthalpy lwb = air leaving evaporator coil ( h lwb) h total capacity (Btuh) lwb = h ewb x cfm Where: h ewb = Enthalpy of air entering evaporator coil 4. The SHC is based on 80_F (26.75_C) edb temperature of air entering evaporator coil. Below 805F (26.75C) edb, subtract (corr factor x cfm) from SHC. Above 80_F (26.75_C) edb, add (corr factor x cfm) to SHC. Correction Factor = 1.10 x (1 + BF) x (edb + 80). Sensible capacity (Btuh) 1.10 x cfm t ldb = t edb -- UNIT SIZE WET COIL PRESSURE DROP (in. wc) STANDARD CFM (SCFM) UNIT SIZE FILTER SIZE in. (mm) 24 x 24 (610 x 610) 30 x 30 (762 x 762) FILTER PRESSURE DROP (in. wc) CFM ACCESSORY ELECTRIC HEAT PRESSURE DROP (in. wc) HEATER CFM kw

17 PERFORMANCE DATA (CONT) DRY COIL AIR DELIVERY* HORIZONTAL DISCHARGE (Deduct 10% for 208 -Volt Operation) 230 VOLT HORIZONTAL DISCHARGE UNIT SIZE SPEED TAP AIR DELIVERY EXTERNAL STATIC PRESSURE (IN. WC) Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM Watts CFM *Air delivery values are based on operating voltage of 230v, wet coil, without filter or electric heater. Deduct filter and electric heater pressure drops to obtain static pressure available for ducting. NOTES: 1. Do not operate the unit at a cooling airflow that is less than 350 cfm for each 12,000 Btuh of rated cooling capacity. Evaporator coil frosting may occur atairflows below this point. 2. Dashes indicate portions of table that are beyond the blower motor capacity or are not recommended. 17

18 ELECTRICAL DATA UNIT NOMINAL V-PH-HZ VOLTAGE COMPRESSOR OFM IFM RANGE MIN MAX RLA LRA FLA FLA / See Legend below. 208/ / / / / / / / / / ELECTRIC HEAT POWER SUPPLY NOMINAL kw FLA MCA MOCP - / - - / / /25 3.8/5 18.1/ / /45 5.6/ / /57.7 / 7.5/ / / /80 - / - - / / /30 3.8/5 18.1/ / /50 5.6/ / /.9 /70 7.5/ / / /80 - / - - / / /25 3.8/5 10.4/ / /35 7.5/ / / /50 - / - - / / /40 3.8/5 18.1/ /55.4 / 5.6/ / / /70 7.5/ / / / / / / /110 15/ / / /150 - / - - / / /30 3.8/5 10.4/ / /40 7.5/ / / / 11.3/ / / /70 - / - - / / /50 3.8/5 18.1/ /57.8 / 5.6/ / / /80 7.5/ / / / / / / /110 15/ / / /150 - / - - / / /30 3.8/5 10.4/ / /40 7.5/ / / / 11.3/ / / /70 15/ / / /90 - / - - / /39.9 / 3.8/5 18.1/ / /70 5.6/ / / /80 7.5/ / / / / / / /125 15/ / / /150 - / - - / / /40 3.8/5 10.4/ / /45 7.5/ / /58.3 / 11.3/ / / /80 15/ / / /90 - / - - / /45.6 / 3.8/5 18.1/ / /80 5.6/ / / /90 7.5/ / / / / / / /125 15/ / / /150 - / - - / / /50 3.8/5 10.4/ / /50 7.5/ / /63.5 / / / / /80 15/ / / /100 LEGEND FLA Full Load Amps LRA Locked Rotor Amps MCA -- Minimum Circuit Amps MOCP Maximum Overcurrent Protection RLA Rated Load Amps NO TES: 1. In compliance with NEC (National Electrical Code) requirements for multimotor and combination load equipment (refer to NE C Articles 430 and 440), the overcurrent protective device for the unit shall be Power Supply fuse. The CGA (Canadian Gas Association) units may be fuse or circuit break er. o 2. Minimum wire size is based on C copper wire. I f other than o C wire is used, or if length exceeds wire length in table, determine siz e from NEC.. 3. Unbalanced 3-Phase Supply Voltage Never operate a motor where a phase imbalance in supply voltage is greater than 2%. Use the following formula to determine the percentage of voltage imbalance. % Voltage imbalance max voltage deviation from average voltage = 100 x average voltage * Heater capacity (kw) based on heater voltage of 208v & 240v. If power distribution voltage to unit varies from rated heater voltage, heater kw will vary accordingly. EXAMPLE: Supply voltage is AB = 228 v BC = 231 v AC = 227 v Average Voltage = = 3 = 229 Determine maximum deviation from average voltage. (AB) =1v (BC) =2v (AC) =2v Maximum deviation is 2 v. Determine percent of voltage imbalance. 2 % Voltage Imbalance = 100 x 229 = 0.8% This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%. IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric utility company immediately. 18

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