SPLIT-SYSTEM AIR-COOLED CONDENSING UNITS DESCRIPTION FEATURES H2CA300, 360, 480 & THRU 50 NOMINAL TONS

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550.13-TG1Y(98) SPLIT-SYSTEM AIR-COOLED CONDENSING UNITS HCA300, 360, 80 & 600 5 THRU 50 NOMINAL TONS HCA80 DESCRIPTION These units are completely assembled, piped and wired at the factory to provide one-piece shipment and rigging. Each unit is pressurized with a holding charge of refrigerant- for storage and/or shipping. The compact design, clean styling, low silhouette, and quiet operation make these condensing units suitable for almost any outdoor location. On rooftops... because they weigh much less than a single package unit of similar capacity and are much easier to rig and support. At ground level... because their ample sub-cooling capacity allows them to be located three or more stories below the evaporator coil. Every condenser coil is pressurized with air to 35 psig and leak tested under water. After assembly, the unit is pressurized with a combination of refrigerant- and nitrogen to 50 psig for pressure testing and additional leak testing. During this pressure test, the operation of the high pressure control is checked. As the unit is being evacuated and dehydrated, the operation of the low pressure control is checked. Every compressor, condenser fan motor, crankcase heater, and electrical control circuit is checked to assure a trouble-free start-up and years of reliable operation. The condenser fan guards are vinyl-coated to provide additional rust protection and to enhance the appearance of the unit. Compressors are mounted on spring isolators in an enclosed compartment to reduce the transmission of vibration and sound. Vertical discharge condenser fans direct sound upward and away from any surrounding structures. All sheet metal parts are constructed of commercial grade (G90) galvanized steel. After fabrication, each part is thoroughly cleaned to remove any grease or dirt from its surfaces. The external parts are coated with a desert sand powder paint to assure a quality finish for many years. This UL approved coating system has passed the 750 hour, 0% salt spray test per ASTM Standard B117. All models include a 1-year limited warranty on the complete unit. An additional -year extended compressor warranty is available as an option on all models. A matching line of Evaporator Blower units is also offered to meet your precise capacity and air handling requirements. Refer to Form 550.13-TG for more information on this air side equipment. FEATURES Copeland Discus semi-hermetic compressors provide both high efficiency and reliability. Condenser coils are constructed of copper tubes and aluminum fins for durability and long lasting efficient operation. Crankcase heaters that will be de-energized when the compressor is operating. Both high and low pressure controls. Since these controls are self-contained, there are no capillary lines to be damaged. Solid state motor protection. The module also provides both low voltage and anti-short cycle protection. Class, -volt thermostat control circuit.

550.13-TG1Y A filter-drier is shipped in the unit s compressor compartment for field installation in the liquid line near the evaporator coil. Two are provided on all 0 and 50 ton models. Suction, liquid and discharge line service valves. Each valve has a back-seating access port for pressure testing the system. Copper stub-outs are factory mounted on the suction and liquid line service valves to simplify the field piping connections. Multiple controls to provide stable system operation at ambient temperatures down to 0 F. Refer to page 11 for a typical condenser fan motor operating sequence. Some units will have more or fewer condenser fans, but the sequence of operation will be similar. Capacity reduction for more economical operation and more even temperature levels within the conditioned space. Part-winding-start on 08/30 volt units. A time delay relay reduces the inrush current at start-up by preventing both MODEL STAGES OF CAPACITY REDUCTION HCA300 100% - 50% HCA360 100% - 67% - 33% HCA80 100% - 75% - 50% - 5% HCA600 100% - 80% - 60% - 0% - 0% compressor motor windings from being energized at the same time. A 7/8" spud connection on the discharge header of the condenser coil to simplify the addition of hot gas bypass. Refer to Form 550.13-N6 for additional information. A timer in each compressor circuit providing anti-short-cycle protection and a bypass around the system s low pressure control during start-up. This prevents nuisance tripping at low ambient conditions. A low oil-pressure control with manual reset for additional compressor protection. A lockout circuit to prevent the unit from cycling on safety control. Non-recycling pumpdown. Without pumpdown, the expansion valve will overfeed each time the system starts up and shuts down. This excess refrigerant will accumulate in the crankcase of the compressor and will mix with the crankcase oil. If the ON cycles are short, the refrigerant will not have a chance to separate from the oil gradually. If the OFF cycles are short, the operation of the crankcase heater will be ineffective. After 10 or 15 short ON and OFF cycles in succession, there may be enough refrigerant mixed with the crankcase oil to cause the oil to foam when the compressor starts up and to be pumped out of the compressor. If the oil level drops below the suction intake to the oil pump, the oil pressure will drop and the oil failure switch will shut down the compressor. With pumpdown, a solenoid valve will close the liquid line when the cooling requirement has been satisfied to prevent any refrigerant from feeding through the expansion valve when the system shuts down. Since the compressor will continue to run until it is shut down by a low pressure cutout, the evaporator coil should be relatively dry when the liquid line solenoid valve reopens. Although the expansion valve will overfeed the evaporator coil when the system starts up, all of the refrigerant will evaporate before it reaches the compressor. TABLE OF CONTENTS Description... 1 Field-Installed Accessory...3 Features... 1 Unit Cooling Capacities & Power Requirements... Ratings... System Cooling Capacities & Power Requirements...5 Unit Application Data... Unit Dimensions & Clearances...7 Physical Data... 3 Field Wiring...9 Electrical Data... 3 Condenser Fan Motor Operation...11 RATINGS* Condensing Evaporator Capacity, Unit Blower Unit MBH EER HCA300 L1EU360 91 8.7 HCA360 L1EU360 35 8.6 HCA80 L1EU80 95 8.7 HCA600 L1EU600 605 8.6 *Rated in accordance with ARI Standard 360. EER = Energy Efficiency Ratio at full load - the cooling capacity in Btu s per hour (Btuh) divided by the power input in watts, expressed in Btuh per watt (Btuh/watt). UNIT APPLICATION DATA Voltage Variation 1 Min. / Max. Ambient Air on Condenser Coil Min. / Max. Suction Pressure at Compressor and Corresponding Temp. at Saturation Min. / Max. 08/30-3-60 187 / 5 60-3-60 3 / 50 575-3-60 50 / 630 0 F / 115 F 57.5 psig / 90.0 psig 3.0 F / 53.5 F 1 Utilization range A in accordance with ARI Standard 110. These units can operate at an ambient temperature of 10 F providing the wet bulb temperature of the air entering the evaporator coil does not exceed 67 F. NOTE: Refer to the following forms for refrigerant piping limitations. 550.13-N3Y (300 & 360 units) 550.13-NY (80 & 600 units) Unitary Products Group

PHYSICAL DATA Compressor 1 Condenser Unit Weight Charge, " Fan (Propeller) Fan Motor 3 Coil (Copper Tube-Aluminum Fin) (Lbs.) Refrigerant- Model HCA Nom. No. Cap. Cap. of Pitch Face Tube Fins Oper. Pumpdown Holding Nom. (Stg s.) Qty. (Deg.) CFM HP RPM Rows Rows Area OD per Ship. Oper. (Lbs.- (Tons) Cyl. (Ft. Deep Wide (Lbs.) ) (In.) inch Oz.) (Lbs.) 300 5 3 16,500 38.8 60 160 150 15-0 3 15 360 30 6 3,000 5.0 67 1770 1580 6-0 8 80 System 1 0 3 30 16,050 3/ 1075 30.0 3 36 3/8 30 80 15-0 31 System 0 3 16,050 30.0 3 36 15-0 31 600 System 1 System 0 30 6 3 3 1,00 19,00 5.0 35.0 30 1 770 600 16-5 - 0 1 All compressors are Copeland Discus semi-hermetic. During low ambient conditions, one of the fan motors (two motors on the CA80 and CA600) will operate at 50 RPM. 3 These PSC motors are directly connected to the condenser fans and have inherent protection, ball bearings and a 8 frame. Their rotation is clockwise when viewing the shaft end of the motor. Based on a 115 F ambient temperature. 550.13-TG1Y 33 9 5 ELECTRICAL DATA Unit Model Designation HCA300 HCA360 HCA80 HCA600 Power Supply Compressor Qty. RLA LRA Power Supply Condenser Fan Motor A5 08/30-3-60 1 9 70 1 08/30-1-60 3/ 1 A6 60-3-60 1 7 35 60-1-60 3/ 1 A58 575-3-60 1 39.3 00 60-1-60 3/ 1 A5 08/30-3-60 1 105 565 08/30-1-60 3/ 3 1 A6 60-3-60 1 53 83 60-1-60 3/ 3 1 A58 575-3-60 1 0 30 60-1-60 3/ 3 1 A5 08/30-3-60 66 37 3 08/30-1-60 3/ each A6 60-3-60 33 187 60-1-60 3/ each each A58 575-3-60 7 135 60-1-60 3/ each each A5 08/30-3-60 1 66 37 3 1 105 565 08/30-1-60 3/ 5 A6 60-3-60 1 33 187 5 60-1-60 3/ 1 53 83 A58 575-3-60 1 7 135 60-1-60 5 3/ 1 0 30 1 Table entry is the full winding nameplate value 08/30v units are shipped wired for part winding start = 9 LRA per winding. Table entry is the full winding nameplate value 08/30v units are shipped wired for part winding start = 30 LRA per winding. 3 Table entry is the full winding nameplate value 08/30v units are shipped wired for part winding start = LRA per winding. A transformer is furnished to reduce the voltage from 575 to 60 volts. 5 Dual element time delay type fuses or HACR circuit breakers. 6 Refer to N.E.C. articles 0-11 &1 for more information regarding disconnect sizing. HP Qty. FLA (each)..5.3.5.3.5..5.3.5.3.5..5.3.5.3.5..5.3.5.3.5 Unit Ampacity (Amps) Max. Fuse Size 5 (Amps) Min.. Disconnect Size 6 (Amps) 130 00 150 66 110 100 55 90 60 18 50 150 75 15 100 71 90 60 173 5 00 88 110 100 71 90 100 7 300 50 115 150 150 90 15 100 Unitary Products Group 3

550.13-TG1Y UNIT COOLING CAPACITIES AND POWER REQUIREMENTS Model HCA 300 360 80 600 Suction Press. & Corresponding Temperature of Air on Condenser Coil, F Temp. @ Saturation 65 75 85 95 105 115 PSIG F MBH KW* MBH KW* MBH KW* MBH KW* MBH KW* MBH KW* 61.5 35 319 3. 97.9 76 6. 5 7.8 33 9.3 10 30.1 68.5 0 38. 3 6.0 301 7.7 77 9.3 53 30.9 8 3.5 76.0 5 375 5.5 350 7.3 35 9.0 99 30.8 73 3.6 3.3 8.0 50 06 6.8 376 8.7 39 30.5 3 3. 93 3.3 65 36. 61.5 35 397 9.5 37 31.0 37 3.7 3 3.3 96 36.0 70 37.6 68.5 0 3 30.7 06 3. 378 3. 351 36.1 33 37.9 95 39.8 76.0 5 69 31.8 39 33.8 10 36.0 381 37.9 35 39.8 318 1.6 8.0 50 508 33.1 76 35. 37. 13 39.5 381 1.5 3 3.3 61.5 35 50 1. 50 3.3 68 5.3 3 7. 399 9.5 366 51.7 68.5 0 591.8 550 5.1 513 7.3 7 9.6 37 5.0 399 5.6 76.0 5 66.6 603 7.0 56 9. 51 5.0 78 5.5 35 57.7 8.0 50 709 6.5 661 9.0 61 51.6 568 5. 53 57. 7 61.8 61.5 35 656 50.3 613 5.8 57 55.6 530 58. 88 61.0 5 63.5 68.5 0 715 5.5 670 55.1 6 58.3 578 61.0 533 6. 86 67.1 76.0 5 779 5. 79 57.7 679 60.9 631 6. 580 67.3 57 70.6 8.0 50 89 56.5 79 60.0 70 63. 685 66.9 631 70. 57 7. *These power requirements include the following condenser fan motor KW. Model HCA300 HCA360 HCA80 HCA600 KW.3 3.1.7 5.8 Unitary Products Group

SYSTEM COOLING CAPACITIES AND POWER REQUIREMENTS Air On Temperature of Air on Condenser Coil Evaporator 95 F 105 F 115 F Coil Total Power Sensible Capacity, MBH Total Power Sensible Capacity, MBH Total Power Sensible Capacity, MBH CFM WB Cap. Input Entering Dry Bulb, F Cap. Input Entering Dry Bulb, F Cap. Input Entering Dry Bulb, F F MBH KW 86 80 7 68 MBH KW 86 80 7 68 MBH KW 86 80 7 68 HCA300/LEU360 7 301 31.0 18 17 - - 8 33. 175 139 - - 6 35.8 167 13 - - 6,000 67 77 9.3 1 179 13-60 31.6 06 171 136-33.8 199 163 18-6* 5 7.7 5 10 175 139 38 9.8 38 0 167 13 31.9 195 159 1 7 316 3.0 08 16 - - 95 3.5 01 155 - - 73 37.0 19 16 - - 8,000 67 9 30.3 8 0 158-73 3.6 0 195 150-53 3.9 31 186 11-6 69 8.8 69 3 197 15 51 30.9 51 3 190 1 33 33.0 33 5 180 136 57 7 7. 7 7 36 191 31 9. 31 31 31 183 1 31.1 1 1 1 175 7 35 3.6 3 177 - - 303 35.1 169 - - 80 37.6 16 160 - - 10,000 67 300 30.9 81 5 170-80 33. 73 18 16-59 35.5 59 09 15-6 77 9.3 77 73 18 16 58 31.5 58 58 10 155 39 33.6 39 39 0 16 57 55 7.8 55 55 55 10 38 9.8 38 38 38 0 0 31.7 0 0 0 19 7 33 33.1 55 190 - - 308 35.6 6 181 - - - - - - - - 1,000 67 308 31. 308 6 181-86 33.7 86 38 17-6 36.0 6 30 165-6 85 9.8 85 85 38 173 65 3.0 65 65 9 165 3.1 157 57 63 8.3 63 63 63 9 30.3 1 5 3. 5 5 5 1 HCA360/LEU360 7 368 36.8 180 - - 37 39.3 1 17 - - 36.0 05 163 - - 7,00 67 337 35.0 59 17 175-319 37. 51 09 167-99 39.9 00 158-6* 308 33.3 96 5 1 170 91 35.5 88 6 0 16 75 37.9 75 37 195 153 7 387 37.9 53 198 - - 365 0.5 189 - - 339 3.1 35 181 - - 9,600 67 356 36. 301 6 19-336 38.5 9 37 18-313 0.9 8 9 17-6* 37 3.6 37 9 39 18 308 36.7 308 85 31 176 88 39.0 88 77 167 7 00 38.7 83 16 - - 376 1. 7 07 - - 39 3.9 65 198 - - 1,000 67 369 36.8 30 7 07-36 39.3 33 65 198-3 1.7 3 56 189-6 339 35.1 339 33 65 198 319 37. 319 319 56 189 97 39.7 97 97 7 181 57 31 33.5 31 31 31 55 93 35.6 93 93 93 6 75 37.9 75 75 75 37 7 10 39.3 310 3 - - 385 1.8 301 3 - - 356. 9 1-1,00 67 378 37. 377 99-35 39.7 35 90 1-39.3 39 8 03-6 37 35.6 37 37 88 11 36 37.8 36 36 80 01 303 0.3 303 303 70 19 57 30 3.0 30 30 30 78 300 36.1 300 300 300 68 81 38. 81 81 81 59 HCA360/LEU80 7 00 38.7 8 198 - - 376 1. 39 188 - - 350 3.9 30 179 - - 8,00 67 368 36.8 89 19-35 39. 8 33 18-3 1.7 75 173-6 337 35.0 336 86 36 186 317 37. 317 78 7 176 95 39.5 95 68 17 166 57 309 33. 309 309 80 30 90 35. 90 90 71 0 71 37.7 71 71 61 10 7 17 39.7 8 19 - - 390. 75 09 - - 363 5.0 65 198 - - 11,00 67 385 37.7 3 77 11-360 0.1 33 67 01-335.7 3 57 190-6 35 36.0 35 335 69 03 33 38.1 33 36 59 19 309 0.7 309 309 8 181 57 35 3.3 35 35 35 60 305 36.3 305 305 305 50 8 38.7 8 8 8 39 7 31 0.5 319 38 - - - - - - - - - - - - - - 1,000 67 397 38.5 388 308 8-371 0.8 371 98 18-3 3.5 3 87 07-6 366 36.6 366 366 97 17 3 38.9 3 3 87 07 319 1. 319 319 77 196 57 336 3.9 336 336 336 86 316 37.1 316 316 316 77 9 39. 9 9 9 66 67 0 38.9 0 339-377 1.3 377 39 3-38 3.9 38 318-16,800 6 373 37.0 373 373 36 31 38 39.3 38 38 316 1 33 1.8 33 33 305 11 57 33 35. 33 33 33 31 31 37.5 31 31 31 30 98 39.8 98 98 98 91 *Evaporator temperature is too low at lower entering wet bulb temperature. 550.13-TG1Y Nominal Rating All Sensible Capacity NOTE: These capacities are gross ratings. For net capacities, determine the KW requirement of the supply air blower motor per the published BLOWER PERFORMANCE data. Convert KW to MBH per the following equation and deduct this equivalent heat from the gross cooling ratings. The KW input ratings listed above include compressor KW and the following condenser fan motor KW: Blower Motor KW x 3.15 MBH = Blower Motor Heat (MBH) KW Model HCA300 HCA360 KW.3 3.1 Unitary Products Group 5

550.13-TG1Y SYSTEM COOLING CAPACITIES AND POWER REQUIREMENTS - Cont d. Air On Evaporator Coil CFM 9,600 1,800 16,000 19,00 1,000 16,000 0,000,000 Temperature of Air on Condenser Coil 95 F 105 F 115 F Total Cap. Power Input Sensible Capacity, MBH Entering Dry Bulb, F Total Cap. Power Input Sensible Capacity, MBH Entering Dry Bulb, F Total Cap. Power Input Sensible Capacity, MBH Entering Dry Bulb, F MBH KW 86 80 7 68 MBH KW 86 80 7 68 MBH KW 86 80 7 68 HCA80/LEU80 7 516 51.7 308 50 - - 86 55. 96 8 - - 55 59. 8 5 - - 67 71 9.3 356 99-5.5 36 87 0-17 56.1 335 76 17-6* 7 6.9 05 38 91 3 0 9.8 395 337 79 3 380 5.8 380 37 68 09 WB F 7 5 53.1 350 75 - - 509 56.6 338 6 - - 75 61.0 35 9 - - 67 98 50.8 15 30 65-68 5.1 03 38 5-37 57.9 391 315 39-6* 56 8.5 56 0 39 5 8 51.5 8 39 317 31 00 5.7 00 380 30 8 7 561 5.0 389 98 - - 55 57.6 377 86 - - 89 6.1 36 73 - - 67 516 51.7 68 377 86-83 55.0 55 36 73-50 58.9 50 351 60-6 73 9. 73 55 36 73 3 5. 3 351 60 13 55.8 13 13 338 7 57 3 6. 3 3 3 351 05 9.9 05 05 05 338 378 5.6 378 378 378 5 7 57 5.7 6 319 - - 537 58.3 1 307 - - 500 63.1 01 9 - - 67 59 5. 518 11 30-95 55.7 95 399 9-60 59.9 60 386 79-6 86 50. 86 86 396 89 5 53.1 5 5 8 76 56.1 371 63 57 7.9 381 16 50.5 16 16 16 368 387 53.6 387 387 387 355 HCA600/LEU600 with MCX600 Coil Section 7 63 63.6 37 30 - - 587 67.7 358 88 - - 550 7.3 33 7 - - 67 57 60.7 3 365 95-538 6.5 0 350 79-50 68.7 05 33 63-6* 53 57.8 97 7 357 87 93 61.3 8 1 31 70 63 65. 63 397 36 55 7 657 65. 33 - - 617 69.6 09 318 - - 576 7. 39 301 - - 67 60 6.5 505 13 3-567 66. 90 398 306-59 70.7 7 38 90-6 55 59.6 55 9 01 310 50 63. 50 78 386 95 85 67.0 85 6 369 78 57 508 57.0 508 508 8 390 76 60.1 76 76 66 373 63.6 357 7 678 66.5 71 360 - - 636 70.7 56 35 - - 593 75.7 0 330 - - 67 65 63.6 570 58 36-585 67.5 553 330-55 7.0 538 7 315-6 575 60.8 575 556 3 331 538 6.5 538 538 8 316 50 68. 50 50 11 99 57 59 58.1 59 59 59 8 96 61.5 96 96 96 1 6 65.0 6 6 6 396 7 69 67. 517 386 - - - - - - - - - - - - - - 67 60 6. 631 500 369-597 68.3 597 85 35-555 7.7 555 68 337-6 588 61.6 588 588 8 35 550 65.3 550 550 67 336 511 69. 511 511 50 319 57 539 58.8 539 539 539 6 506 6.3 506 506 506 7 70 65.8 70 70 70 31 *Evaporator temperature is too low at lower entering wet bulb temperature. All Sensible Capacity Nominal Rating NOTE: These capacities are gross ratings. For net capacities, determine the KW requirement of the supply air blower motor per the published BLOWER PERFORMANCE data. Convert KW to MBH per the following equation and deduct this equivalent heat from the gross cooling ratings. Blower Motor KW x 3.15 MBH = Blower Motor Heat (MBH) KW The KW input ratings listed above include compressor KW and the following condenser fan motor KW.: Model HCA80 HCA600 KW.7 5.8 6 Unitary Products Group

550.13-TG1Y UNIT DIMENSIONS CLEARANCES (inches) Top Front Right Side Left Side Rear 10 30 1 1* 1* NOTE: N.E.C. or local codes may require a clearance of three feet or more in front of the unit to allow for servicing of the electrical controls. Unitary Products Group 7

550.13-TG1Y UNIT DIMENSIONS - (Cont d.) MODEL HCA80 MODEL HCA600 CLEARANCES (inches) Top Front Right Side Left Side Rear 10 30 18 18* 1* NOTE: N.E.C. or local codes may require a clearance of three feet or more in front of the unit to allow for servicing of the electrical controls. 8 Unitary Products Group

FIELD WIRING 0 + )! 550.13-TG1Y 9-5 7 ; &! " $ # % #! $, 1 5 + - + 6 5 9 1 6 + 0-5 ),. 7 5 1 / * ;. 1 -, 9-5 7 ; &! " $ # % #! $ / 7, 7 /. / 7, 9 1-1. - 3 7 1 -,! 6 *! 6 * +, 6 + 7 6 5 - + 6 1 ) ) 6 * + : ; ; # 8 13 7 1, 1-5 - 1, 8 ) 8-5 " 8-8 ) ) 6 * 9-6 + 6 ) + 6 + ; ; / 6 0-5 6 ) 6 6 0 " % " 0 + )! $ 9-5 7 ; &! " $ # % #! $, 1 5 + - + 6 5 9 1 6 + 0-5 ),. 7 5 1 / * ;. 1 -, 9-5 7 ; &! " $ # % #! $ / 7, 7 /. / 7, 9 1-1. - 3 7 1 -, 6 *!! 6 * +, 6 + 7 6 5 - + 6 1 ) ) 6 * + : ; ; ;!! # 8 13 7 1, 1-5 - 1, 8 ) 8-5 " 8-8 ) ) 6 * 9-6 + 6 ) + 6 + ; ; / 6 0-5 6 ) 6 6 0 " % " 6 -. 1 5 6 5 6 ) / -! + - 5 5 9 1 - ) 6-9 16 0. 7-8 ) 6 + 1 Unitary Products Group 9

550.13-TG1Y FIELD WIRING - (Cont d.) 10 Unitary Products Group

TYPICAL CONDENSER FAN MOTOR 550.13-TG1Y The #3 condenser fan motor is controlled by both ambient temperature and system capacity. At full compressor, a control relay will keep it energized at any ambient temperature. At less than full compressor, an outdoor thermostat will lock it out below 75 F. The # condenser fan motor is controlled by compressor discharge pressure. When the pressure drops below 180 psig, the motor will be powered through a choke coil and its speed will drop from 1075 to 50 RPM. 3 1 COMPRESSOR COMPARTMENT The # condenser fan motor is controlled by both ambient temperature and system capacity. An outdoor thermostat will lock it out below 5 F. A control relay will lock it out when the compressor is operating at 1/3 capacity. The #1 condenser fan motor is controlled by ambient temperature. An outdoor thermostat will lock it out below 65 F. NOTE: All outdoor thermostats have a 10 F differential. The high pressure control has a 5 psi differential. Unitary Products Group 11

GUIDE SPECIFICATIONS MODELS H*CA 5 thru 50 Ton CONDENSING UNITS THE INSTALLER SHALL: Furnish YORK Champion air-cooled condensing units or equivalent in accordance with the performance schedule shown on the plans, and Install each unit as shown on the plans in accordance with: -The manufacturers recommendations and -All applicable national and local codes EACH UNIT SHALL BE: (UL) (CSA) approved. Completely assembled for one-piece shipping and rigging. Leak, pressure and functionally tested at the factory to assure a trouble-free start-up after installation. Covered by a 1-year limited parts warranty on the complete unit. In current production with published literature available to check performance, limitations, specifications, power requirements, dimensions, operation and appearance. EACH UNIT ENCLOSURE SHALL HAVE: A steel angle frame to provide the rigid support required for shipping, rigging and years of dependable operation. Exterior panels of 18-gauge, zinc-coated steel that have been finished by a powder paint process to provide a long-lasting, quality appearance. With removable panels for easy access to all internal components during maintenance, and service. THE DIMENSIONS OF EACH UNIT shall not exceed those specified on the plans. EACH COMPRESSOR shall be mounted on isolators to minimize the transmission of sound and vibration. ALL CONDENSER COILS SHALL: Be draw-thru Be constructed of copper tubes arranged in staggered rows and mechanically expanded into aluminum fins, and Have a separate circuit which will provide at least 19 F of liquid sub-cooling at the design conditions. THE CONDENSER FAN MOTOR(S) SHALL: Be directly connected to the condenser fan(s), Have permanently lubricated ball bearings, and Have inherent overload protection. SINGLE PHASE MOTORS shall be permanent split capacitor type. THE PROPELLER-TYPE CONDENSER FANS shall be arranged for vertical discharge of the condenser air. THE WIRING FOR EACH UNIT SHALL INCLUDE: A crankcase heater (one per compressor). All volt temperature control circuit. Both high and low pressure cutouts. Solid state compressor motor protection. Condenser fan motor controls to assure stable operation at ambient temperatures down to 0 F. THE REFRIGERANT PIPING of each system shall include: A filter-drier shipped separately for field installation. Unitary Products Group P.O. Box 159, York, Pennsylvania USA 1705-159 Subject to change without notice. Printed in U.S.A. Copyright by York International Corporation 1998. All Rights Reserved. Codes: EBY, EGY, EGYC 550.13-TG1Y Supersedes: 550.13-TG1Y (897) & 550.13-GS5Y (193)