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FABRIQUÉ AU CANADA MADEIN CANADA Standard features 3/8 inch inner grooved copper tubing up to 5 fan long units. Reduced refrigerant charge with high heat-transfer. Tube sheets with oversized holes and unique coil support system, helps friction free expansion and contraction of the tubes, thus minimizing tube wear. Choice of single circuit or multi-circuit applications. Variety of fan cycling options. Choice of fin spacing 8 FPI to 1 FPI. All weather fan motors with permanently lubricated sealed ball bearings and internal overload protection. 3 3/4 inch spun venturi fan orifices provides maximum fan efficiency and minimum noise level. Modular design and individual fan chambers eliminate wind milling effect. Oversized access doors for easy coil cleaning. Optional features Choice of copper or polyester coated aluminium fins / Backed phenolic coated coil. Horizontal air flow units. Variable speed motor controller. Multi-circuited coil / liquid sub cooling circuits. Choice of individual fan fusing and fan cycling on multi-fan units. Heated and insulated receiver with head pressure control valves (Call manufacturer).

Unit Nomenclature CONDENSER NOMENCLATURE C D V A - 1 4 4 10-8 UNIT VOLTAGE: : 40/1/0 5: 08-40/3/0 8: 00/3/0 9: 480/3/0 FIN PER INCH: 08, 09, 10, 11 &1 ROWS DEEP:, 3, 4, 5 & FAN IN LINE: 1,, 3, 4, 5 & FAN WIDE: 1 or MOTORS: A: 1.5 HP - 1140 RPM; B: 1 HP - 850 RPM; C: 0.5 HP - 1140 RPM FAN DISCHARGE: V: Vertical; H: Horizontal TUBE SIZE: D: 3/8; E: 1/ UNIT TYPE: C: Condenser; H: Heat reclaim Control Nomenclature FAN CYCLING CONTROL PANEL NOMENCLATURE KFC - 8 - X - 00 - ABC Options: N: No option A: Motor Fusing (One fuse per pair of motors for fans wide units) B: Individual motor fusing (One fuse per motor) C: Speed Controller - Temperature D: Speed Controller - Pressure E: Non-fused disconnect D: Fused disconnect Panel description: 00: No controls, only control box & terminal block 01: Contactor(s), no control 0: Ambient fan cycling (Contactors) & Thermostats 03: Pressure fan cycling (Contactors & Pressurestats) 04: Pressure fan cycling with dual circuits 05: Contactors, ambient fan cycling with pressure overide 07: Split Electrical. Contactors, pressure fan cycling 08: Contactors for individually wired motors. No control Control voltage: 0: No control; X: 4 Volts; 1: 1 Volt; : 40 Volts Unit voltage: : 40/1/0; 5: 08-40/3/0; 8: 00/3/0; 9: 480/3/0 KOOL-AIR FAN CYCLING CONTROL PANEL NOTE: One fan or one pair of fans (The first stage) must operate when the compressor(s) to which they are connected to is operating. Two fans wide unit, fan motors wired in pairs, unless stated otherwise. 3

Selection of an air cooled condenser Kool-Air Inc. table of selection are based on the Total Heat Rejection factor: the THR. The THR is the quantity of heat removed from superheated gas to convert it in to sub cooled liquid. The THR is the sum of the Net Refrigerating Effect: the NRE (or net compressor capacity in BTU/H) and the Heat of Compression which is the heat gain by refrigerant during compression. For an open drive compressor the Heat of Compression = ( x BHP) For a hermetic or semi-hermetic compressor the Heat of Compression = (3413 x kw x 0.9) So THR = NEC (BTU/H) + ( x BHP) Or THR = NEC (BTU/H) + (3413 x kw x 0.9) If the BHP or kw are not available you can use the heat rejection factor in table A, A1 (should only be used with single stage compressor) When you have the THR find your altitude correction factor (all capacities are for sea level unit). See table B for altitude correction factor. Then find your refrigerant type correction factor (all capacities are for R-404A & R-507). See table C for refrigerant type correction factor. Multiply your THR by the altitude correction factor and by the refrigerant type corrector (if applicable) and then find your model in the condenser table with the right FTD (condensing temperature ambient temperature) Example: INFORMATION: Open compressor: 5 MBH (NEC x 1000), 1. BHP Refrigerant: R-404A Altitude: Sea level Saturated suction temperature (SST): 0 F Saturated condensing temperature (SCT): 110 F AMBIENT TEMPERATURE: 90 F FORMULA: FTD = SCT AMBIENT FTD = 100 F - 90 F FTD = 0 F THR = 5 000 + ( x 1.) or rejection factor table A1 THR = 5 000 + 53 975 THR = 78 975 BTU/H @ 0 FTD or 79 MBH @ 0 FTD Selection: CDVC-13409 Cap: 80 MBH @ 0 FTD 4 Multiple compressors The key for multiple compressor selection is to find the THR at 1 FTD of each compressor. All you need is: the type of compressors (for heat rejection factor) and their capacities (NRE), the refrigerant, the local design ambient temperature, the SST and the SCT. How to do it: STEP 1 For each compressor fill the following formula: NRE x Heat Reject. Factor Altitude Factor Refrigerant type Factor FTD = THR @ 1 FTD STEP Then make the sum of all THR @ 1 FTD divide it by 1000 for MBH and find in the table the right condenser (at 1 FTD capacity). STEP 3 Then you have to find the number of circuits for each compressor. Take in the selection table the capacity per circuit in BTU/H/FTD of your selected model. Convert it to your refrigerant type and altitude (if applicable) with table B and C. Divide the number you found in step 1 by this number and this is your number of circuits needed for your compressor. If the total of circuits required exceeds the quantity of circuits available you can select the next larger unit or you can let it this way knowing it will raise the condensing temperature a little which is not dramatic. Example: INFORMATION: Compressors: 1) hermetic, 100 000 BTU/H, F SST, 105 F SCT, R- Compressors: ) semi-hermetic, 5 000 BTU/H, 5 F SST, 110 F SCT, R-404A Compressors: 3) open, 45 000 BTU/H, 40 F SST, 105 F SCT, R-134a AMBIENT TEMPERATURE: 90 F

STEP 1 100 000 x 1.7 1.0 FTD = 80 BUT/H @ 1 FTD 5 000 x 1.31 0 FTD = 3 8 BTU/H @ 1 FTD 45 000 x 1.1 0.959 FTD = 19757 BTU/H @ 1 FTD STEP (80 + 38 + 19757) 1000 = 31.7 MBH @ 1 FTD Selection: CDVB-31 Cap: 3.3 MBH @ 1 FTD Circuits available: 5 Capacity/circuit: 1 BTU/H/FTD STEP 3 1 BTU/H/FTD x 1.0 (R-) = 33 BTU/H/FTD 1 BTU/H/FTD x 0.959 (R-134a) = 59 BTU/H/FTD 80 BUT/H 33 BTU/H = 13.11 ± 13 circuits for this compressor 38 BTU/H 1 BTU/H = 5.9 ± circuits for this compressor 19757 BTU/H 59 BTU/H = 33.14 ± 33 circuits for this compressor Table A1 Heat rejection factors for open compressors SATURATED SUCTION TEMP. F DEG SATURATED CONDENSING TEMPERATURES F DEG 90 100 105 110 10 1-40 1.43 1.47 1.50 1. 1.59 1.7-1.37 1.4 1.45 1.48 1.5 1.0-0 1.31 1.37 1.39 1.41 1.45 1.5-10 1.8 1.33 1.35 1.37 1.40 1.47 0 1.5 1.8 1. 1.3 1.35 1.41 10 1. 1.5 1.7 1.8 1.3 1.37 0 1.18 1.1 1. 1.3 1.8 1.3 5 1.1 1.0 1.1 1. 1. 1. 1.14 1.18 1.19 1.1 1.4 1.8 40 1.11 1. 1.1 1.18 1.0 1.3 Table B Altitude correction factors ALTITUDE (ft) FACTOR 1000 1.0 000 1.05 00 1.07 4000 1.10 5000 1.1 000 1. 7000 1.17 8000 1.0 T.H.R. x Altitude factor = Adjusted T.H.R. req d Table C Refrigerant type correction factors 13 + + 33 = 5 circuits total REFRIGERANT FACTOR SELECTION IS OK Table A Heat rejection factors for hermetic and semi-hermetic compressors R-1 0.99 R-134a 0.959 R- 1.0 R-50 0.99 R-407A,B 1 R-407C 1.0 T.H.R. (R-404A, R-507) x refrigerant type factor = Your refrigerant T.H.R. SATURATED SUCTION TEMP. F DEG SATURATED CONDENSING TEMPERATURES F DEG 90 100 105 110 10 1-40 1. 1.73 1.77 1.80.00.14-1.57 1. 1.5 1.8 1.80 1.93-0 1.49 1.53 1.5 1.58 1.3 1.78-10 1.4 1.4 1.48 1.50 1.57 1.4 0 1.3 1.40 1.4 1.44 1.50 1.5 10 1.3 1.34 1.3 1.38 1.43 1.49 0 1. 1.9 1.31 1.33 1.37 1.43 5 1.4 1.7 1.9 1.31 1.35 1.40 1. 1.5 1.7 1.8 1.3 1.37 40 1.8 1.1 1.3 1.4 1.7 1.31 45 1.1 1.19 1.1 1. 1.5 1.9 Table D Recommended connection sizes for multi-circuiting SIZE O.D. INCH MAXIMUM CAPACITY (MBH THR) R- R-404A INLET OUTLET INLET OUTLET 5/8 40 100 50 7/8 100 10 90 110 1 1/8 190 180 190 1 3/8 340 550 310 90 1 5/8 50 780 480 400 1/8 1100 1400 1000 710 5/8 1900 100 1800 1100 5

Low CFM Condensers 1/ HP, 1140 RPM Motors MODEL TOTAL HEAT REJECTION (MBH) R-404A, R-507 PER T.D. 1 F F 0 F 5 F F AVAILABLE CIRCUITS CAP. / CIRCUIT BTU/HR /FTD CONNECTION SIZE OD (IN) INLET OUTLET SUMMER REFRIGERANT CHARGE (Lbs) CDVC-1109.5 38 50 3 75 7 357 7/8 7/8 3.0 10 90 CDVC-111.8 4 5 70 84 7 400 7/8 7/8 3.0 10 98 CDVC-1131 3. 7 90 108 7 514 7/8 7/8 4.5 35 CDVC-1141 4.1 8 103 13 7 58 1 1/8 7/8.0 0 340 CDVC-11 5.7 8 114 143 171 13 438 1 1/8 7/8 5.9 0 475 CDVC-19.5 98 1 13 195 13 500 1 1/8 1 1/8 8.8 9 500 CDVC-131 7. 108 144 180 1 13 5 1 1/8 1 1/8 8.8 9 5 CDVC-1409 7.5 113 0 188 5 13 577 1 1/8 1 1/8 1 39 5 CDVC-141 8.1 1 1 03 43 13 3 1 3/8 1 1/8 1 39 550 CDVC-139 9.7 14 194 43 91 0 74 1 3/8 1 1/8 13 43 700 CDVC-1331 10.8 1 1 70 34 0 831 1 3/8 1 1/8 13 43 70 CDVC-13409 11. 18 4 80 33 7 8 1 3/8 1 1/8 18 0 750 CDVC-1341 1.0 180 40 0 7 93 1 3/8 1 1/8 18 0 75 NOTE: For R- multiply tabulated capacity by 1.0 For 50 HZ multiply capacity by 0.9 Summer charge is based on % of condenser volume with 100 F liquid. Multiply by 1.14 for R- Winter charge is based on 90% of condenser volume with -0 F liquid. Multiply by 1.10 for R- WINTER SHIPPING WEIGHT Lbs Heat reclaim units 1/ HP, 1140 RPM Motors MODEL TOTAL HEAT REJECTION (MBH) R-404A, R-507 PER T.D. 1 F F 35 F 40 F 45 F AVAILABLE CIRCUITS CAP. / CIRCUIT BTU/HR /FTD CONNECTION SIZE OD (IN) INLET OUTLET REFRIGERANT CHARGE (Lbs) HDHC-1109.5 75 88 100 113 93 1 3/8 1 3/8 1.0 90 HDHC-111.8 84 98 11 1 104 1 3/8 1 3/8 1.0 98 HDHC-1131 3. 108 1 144 1 0 180 1 3/8 1 3/8 1.5 35 HDHC-1141 4.1 13 144 14 185 7 1 3/8 1 3/8 1.9 340 HDHC-11 5.7 171 00 8 57 11 1 5/8 1 5/8 1.9 475 HDHC-19.5 195 8 0 93 40 13 1 5/8 1 5/8.8 500 HDHC-131 7. 1 5 88 34 40 180 1/8 1/8.8 5 HDHC-1409 7.5 5 3 0 338 7 78 1/8 1/8 3.9 5 HDHC-141 8.1 43 84 34 35 7 0 1/8 1/8 3.9 550 HDHC-139 9.7 91 340 388 437 40 43 1/8 1/8 4.1 700 HDHC-1331 10.8 34 378 43 48 40 70 1/8 1/8 4.1 70 HDHC-13409 11. 33 39 448 504 07 1/8 1/8 5.7 750 HDHC-1341 1.0 40 480 0 1/8 1/8 5.7 75 NOTE: For R- multiply tabulated capacity by 1.0 For 50 HZ multiply capacity by 0.9 Refrigerant charge is based on 90% vapor and 10% liquid Connection sizes are based on 10% liquid and 90% vapor SHIPPING WEIGHT Lbs

High CFM Condensers 1 1/ HP, 1140 RPM Motors MODEL TOTAL HEAT REJECTION (MBH) R-404A, R-507 PER T.D. 1 F F 0 F 5 F F AVAILABLE CIRCUITS CAP. / CIRCUIT BTU/HR /FTD CONNECTION SIZE OD (IN) INLET OUTLET SUMMER REFRIGERANT CHARGE (Lbs) CDVA-1109 4.9 74 98 13 147 17 88 1 3/8 1 1/8 5 18 40 CDVA-111 5.8 87 11 145 174 17 341 1 3/8 1 1/8 5 18 470 CDVA-119.7 101 134 18 01 17 394 1 3/8 1 1/8 7 8 490 CDVA-1131 7.5 113 0 188 5 17 441 1 3/8 1 1/8 7 8 500 CDVA-11409 7.7 11 1 193 31 17 453 1 3/8 1 1/8 9 37 50 CDVA-1141 8.7 131 174 18 1 17 51 1 3/8 1 1/8 9 37 535 CDVA-109 10.0 0 00 50 0 17 588 1 5/8 1 3/8 9 3 755 CDVA-11 11. 174 3 90 348 17 8 1 5/8 1 3/8 9 38 75 CDVA-19 13.3 00 333 399 5 5 1 5/8 1 3/8 13 53 8 CDVA-131 14.9 4 98 373 447 5 87 1 5/8 1 3/8 13 53 8 CDVA-1409.7 3 314 393 471 35 449 1 5/8 1 3/8 17 71 870 CDVA-141 17. 58 344 4 51 35 491 1 5/8 1 3/8 17 71 900 CDVA-139 19.9 99 398 498 597 5 383 1/8 1 5/8 19 79 1095 CDVA-09 0.0 0 400 500 00 34 588 () 1 5/8 () 1 3/8 18 71 1375 CDVA-1331.5 338 450 53 75 5 433 1/8 1 5/8 19 79 110 CDVA-13409 3. 3 47 590 708 70 337 1/8 1 5/8 18 105 170 CDVA-1 3.1 347 4 578 93 34 79 () 1 5/8 () 1 3/8 18 71 1405 CDVA-1341 5.8 387 51 45 774 70 39 1/8 1 5/8 105 1310 CDVA-149. 399 53 5 798 5 51 1/8 1 5/8 105 10 CDVA-9. 399 53 5 798 5 511 () 1 5/8 () 1 3/8 107 1495 CDVA-1431.0 450 00 750 900 5 577 1/8 1 5/8 105 50 CDVA-31.0 450 00 750 900 5 577 () 1 5/8 () 1 3/8 107 35 CDVA-14409 31.4 471 8 785 94 70 449 1/8 1 5/8 34 140 1 CDVA-409 31.4 471 8 785 94 70 449 () 1 5/8 () 1 3/8 34 14 1 CDVA-1441 34.4 51 88 80 103 70 491 1/8 1 5/8 34 140 180 CDVA-41 34.4 51 88 80 103 70 491 () 1 5/8 () 1 3/8 34 14 CDVA-9 33.3 500 833 999 5 40 1/8 1/8 3 1 10 CDVA-31 34.8 5 9 870 1044 8 51 () 1/8 () 1 5/8 105 010 CDVA-31 37.5 53 750 938 1 5 71 1/8 1/8 3 1 170 CDVA-109 39.3 590 78 983 1179 70 51 1/8 1/8 43 174 70 CEVA-19 39.9 599 798 998 1197 5 77 () 1/8 () 1 5/8 7 9 80 CDVA-39 39.9 599 798 998 1197 104 384 () 1/8 () 1 5/8 39 8 145 CDVA-11 43.0 45 80 1075 190 70 14 1/8 1/8 43 174 335 CEVA-131 44.9 74 898 113 1347 5 83 1/8 1 5/8 7 9 740 CDVA-331 44.9 74 898 113 1347 104 43 () 1/8 () 1 5/8 39 8 00 CEVA-1409 47.0 705 940 1175 1410 70 71 1/8 1 5/8 95 389 95 CDVA-3409 47.0 705 940 1175 1410 140 33 () 1/8 () 1 5/8 5 11 35 CEVA-141 51.5 773 10 188 70 73 1/8 1 5/8 95 388 00 CDVA-341 51.5 773 10 188 140 38 () 1/8 () 1 5/8 5 11 400 CDVA-49 53. 798 104 13 9 104 51 () 1/8 () 1 5/8 5 09 750 CDVA-431 58.8 88 117 1470 174 104 55 () 1/8 () 1 5/8 5 09 835 CDVA-4409.7 941 1 8 1881 140 448 () 1/8 () 1 5/8 9 79 990 CDVA-441 8.7 1031 1374 1718 01 140 491 () 1/8 () 1 5/8 9 79 3100 CDVA-5310 9. 1044 139 1740 088 104 9 () 1/8 () 1/8 4 81 3910 CDVA-531 74. 1119 149 185 38 104 717 () 1/8 () 1/8 4 81 4010 CDVA-09 78.3 1175 1958 349 140 559 () 1/8 () 1/8 8 348 400 CEVA-310 83.5 3 170 088 505 104 803 () 5/8 () 1/8 18 53 4990 CDVA-1 85.8 187 171 145 574 140 13 () 1/8 () 1/8 8 348 4335 CEVA-31 89.5 1343 1790 38 85 104 81 () 5/8 () 1/8 18 53 51 CEVA-410 97. 144 195 440 98 140 97 () 5/8 () 1/8 4 80 80 CEVA-41 101.9 9 038 8 57 140 78 () 5/8 () 1/8 4 80 535 WINTER SHIPPING WEIGHT Lbs NOTE: For R- multiply tabulated capacity by 1.0 For 50 HZ multiply capacity by 0.9 Summer charge is based on % of condenser volume with 100 F liquid. Multiply by 1.14 for R- Winter charge is based on 90% of condenser volume with -0 F liquid. Multiply by 1.10 for R- 7

Low CFM Condensers 1 HP, 850 RPM Motors MODEL TOTAL HEAT REJECTION (MBH) R-404A, R-507 PER T.D. 1 F F 0 F 5 F F AVAILABLE CIRCUITS CAP. / CIRCUIT BTU/HR /FTD CONNECTION SIZE OD (IN) INLET OUTLET SUMMER REFRIGERANT CHARGE (Lbs) CDVB-1109 4.4 88 110 13 17 59 1 3/8 1 1/8 5 18 40 CDVB-111 5.1 77 10 18 3 17 0 1 3/8 1 1/8 5 18 470 CDVB-119 5.8 87 11 145 174 17 341 1 3/8 1 1/8 7 8 490 CDVB-1131.5 98 1 13 195 17 38 1 3/8 1 1/8 7 8 500 CDVB-11409.9 104 138 173 07 17 40 1 3/8 1 1/8 9 37 50 CDVB-1141 7. 108 144 180 1 17 44 1 3/8 1 1/8 9 37 535 CDVB-109 8.9 134 178 3 7 17 1 5/8 1 3/8 9 3 755 CDVB-11 10. 3 04 55 17 00 1 5/8 1 3/8 9 38 75 CDVB-19 11. 174 3 90 348 5 3 1 5/8 1 3/8 13 53 8 CDVB-131 13.0 195 0 35 390 5 50 1 5/8 1 3/8 13 53 8 CDVB-1409 13.4 01 8 335 40 35 383 1 5/8 1 3/8 17 71 870 CDVB-141 14.4 1 88 43 35 411 1 5/8 1 3/8 17 71 900 CDVB-139 17.8 7 35 445 534 5 34 1/8 1 5/8 19 79 1095 CDVB-09 17.8 7 35 445 534 34 () 1 5/8 () 1 3/8 18 71 1375 CDVB-1331 19.4 91 388 485 58 5 373 1/8 1 5/8 19 79 110 CDVB-13409 0.0 0 400 500 00 70 8 1/8 1 5/8 18 105 170 CDVB-1 0.5 8 410 513 34 03 () 1 5/8 () 1 3/8 18 71 1405 CDVB-1341 1.5 33 4 538 45 70 7 1/8 1 5/8 105 1310 CDVB-149 3.3 350 4 583 99 5 448 1/8 1 5/8 105 10 CDVB-9 3.3 350 4 583 99 5 448 () 1 5/8 () 1 3/8 107 1495 CDVB-1431 5.8 387 51 45 774 5 49 1/8 1 5/8 105 50 CDVB-31 5.8 387 51 45 774 5 49 () 1 5/8 () 1 3/8 107 35 CDVB-14409.7 401 534 8 801 70 381 1/8 1 5/8 34 140 1 CDVB-409 8.1 4 5 703 843 70 401 () 1 5/8 () 1 3/8 34 14 1 CDVB-1441 8. 49 57 7 858 70 409 1/8 1 5/8 34 140 180 CDVB-41 8.8 43 57 70 84 70 411 () 1 5/8 () 1 3/8 34 14 CDVB-9 9.0 435 580 75 870 5 558 1/8 1/8 3 1 10 CDVB-31.8 4 1 770 94 8 453 () 1/8 () 1 5/8 105 010 CDVB-31 3.3 485 4 808 99 5 1 1/8 1/8 3 1 170 CDVB-109 34. 519 9 85 1038 70 494 1/8 1/8 43 174 70 CEVB-19 34.8 5 9 870 1044 5 9 () 1/8 () 1 5/8 7 9 80 CDVB-39 34.8 5 9 870 1044 104 335 () 1/8 () 1 5/8 39 8 145 CDVB-11 35.8 537 71 895 1074 70 511 1/8 1/8 43 174 335 CEVB-131 38.8 58 77 970 114 5 74 1/8 1 5/8 7 9 740 CDVB-331 38.8 58 77 970 114 104 373 () 1/8 () 1 5/8 39 8 00 CEVB-1409 40. 03 804 1005 10 70 574 1/8 1 5/8 95 389 95 CDVB-3409 40. 03 804 1005 10 140 87 () 1/8 () 1 5/8 5 11 35 CEVB-141 43.0 45 80 1075 190 70 14 1/8 1 5/8 95 388 00 CDVB-341 43.0 45 80 1075 190 140 7 () 1/8 () 1 5/8 5 11 400 CDVB-49 4.5 98 9 113 1395 104 447 () 1/8 () 1 5/8 5 09 750 CDVB-431 51.7 77 1034 193 51 104 497 () 1/8 () 1 5/8 5 09 835 CDVB-4409 53.5 803 1070 1338 105 140 38 () 1/8 () 1 5/8 9 79 990 CDVB-441 57.4 81 1148 1435 17 140 410 () 1/8 () 1 5/8 9 79 3100 CDVB-5310 0.7 911 114 18 181 104 584 () 1/8 () 1/8 4 81 3910 CDVB-531 4. 99 19 1 1938 104 1 () 1/8 () 1/8 4 81 4010 CDVB-09 70.0 1050 1400 1750 100 140 500 () 1/8 () 1/8 8 348 400 CEVB-310 7.9 1094 1458 183 187 104 701 () 5/8 () 1/8 18 53 4990 CDVB-1 74.8 11 149 1870 44 140 534 () 1/8 () 1/8 8 348 4335 CEVB-31 77.5 113 50 1938 35 104 745 () 5/8 () 1/8 18 53 51 CEVB-410 83.0 145 10 075 490 140 593 () 5/8 () 1/8 4 80 80 CEVB-41 8.0 190 170 0 580 140 14 () 5/8 () 1/8 4 80 535 NOTE: For R- multiply tabulated capacity by 1.0 For 50 HZ multiply capacity by 0.9 Summer charge is based on % of condenser volume with 100 F liquid. Multiply by 1.14 for R- Winter charge is based on 90% of condenser volume with -0 F liquid. Multiply by 1.10 for R- 8 WINTER SHIPPING WEIGHT Lbs

Vertical units One Fan Wide MODEL LENGTH (L) WIDTH (W) HEIGHT (H) L L3 L4 W A B CDV(A,B)-11 57 48 44 51 - - 4 5 3 3/4 CDV(A,B)-1 111 48 44 105 - - 4 5 3 3/4 CDV(A,B)-13 48 44 9 105-4 5 3 3/4 CDV(A,B)-14 19 48 44 13 105-4 5 3 3/4 CDV(A,B)- 73 48 48 7 105 57 4 5 3 3/4 CEV(A,B)-1 37 48 48 31 105 111 4 5 3 3/4 CDVC-11* 43 38 34 37 - - 3 3 1/ 3 1/ CDVC-1* 83 38 34 77 - - 3 3 1/ 3 1/ CDVC-13* 13 38 34 77 40-3 3 1/ 3 1/ Two Fan Wide CDV(A,B)- 111 93 44 105 - - 87 5 3 3/4 CDV(A,B)-3 93 44 9 105-87 5 3 3/4 CDV(A,B)-4 19 93 44 13 105-87 5 3 3/4 CDV(A,B)-5 73 93 48 7 105 57 87 5 3 3/4 CEV(A,B)- 37 93 48 31 105 111 87 5 3 3/4 *NOTE: CDVC Units have 17 inches legs instead of inches for CDVA & CDVB 9

TYP. Horizontal Units Horizontal flow & heat reclaim units MODEL 10 LENGTH (L) WIDTH (W) HEIGHT (H) L L3 L4 M S E A B HDHC-11 50 1 38 1/8 41 1/ 19 HDHC-1 90 1 38 1/8 41 1/ 40 19 HDHC-13 1 1 38 1/8 41 1/ 40 19 CDH(A,B)-11 70 1/4 57 8 3 7 1/8 CDH(A,B)-1 14 1/4 111 57 8 3 7 1/8 CDH(A,B)-13 178 1/4 57 8 3 7 1/8 CDH(A,B)-14 3 1/4 19 57 8 3 7 1/8 CDH(A,B)- 8 1/4 73 57 3 3 7 1/8 CDH(A,B)-1 340 1/4 37 57 3 3 7 1/8 CDHC-11 55 1/ 17 4 43 0 3 5 1/ 4 1 1/ CDHC-1 95 1/ 17 4 83 40 43 0 3 5 1/ 4 1 1/ CDHC-13 135 1/ 17 4 13 40 43 0 3 5 1/ 4 1 1/

Typical Fan Cycling Control Wiring 1 & FANS WIDE UNITS Legend CONTACTOR DISCONNECT SWITCH (OPTIONAL) FUSE FUSE BLOCK (OPTIONAL) FAN MOTOR FANS WIDE UNITS MOTOR CONTACTOR COIL TEMPERATURE OR PRESSURE ACTUATED SWITCH TRANSFORMER Fan Motor Electrical Data One Fan Wide 08-40/1/0 MODEL CDVA-11 CDVA-1 CDVA-13 CDVA-14 CDVA- CEVA-1 CDVB-11 CDVB-1 CDVB-13 CDVB-14 CDVB- CEVB-1 CDVC-11 CDVC-1 CDVC-13 08-40/3/0 480/3/0 00/3/0 AMP. FUSE AMP. FUSE AMP. FUSE AMP. FUSE.9 5.8 8.7 1 18 4 3 4.4 8.8 13. 17..0.4. 5. 7.8 0 35 45 0 5 3 9 1 18.0 4.0.0 8.0 10.0 1.0 1.3. 3.9 0 0.3 4..9 9. 11.5 13.8 1. 3. 4.8.4 8.0 9. 0. 1. 1.8 4 3 48 0 7 17..4 35. 44.0 5.8 45 0 70 80 0 40 50 0 1 18 4 3 8.0 1.0 1.0 0.0 4.0 0 35 40 0 5 9. 13.8 18.4 3.0 7..4 9. 1.8 1.0 19. 0 0 5 Two Fan Wide CDVA- CDVA-3 CDVA-4 CDVA-5 CEVA- CDVB- CDVB-3 CDVB-4 CDVB-5 CEVB- 11

Specification Casing: Heavy gauge galvanized steel. All cabinet are modular with individual fan chambers. All models have side access panels for easy coil inspection and cleaning. Fan venturi: 0 inch dia. fans orifices have a 1 venturi and dia. fans orifices have a 3 3/4 spun venturi to provide maximum fan efficiency and minimum noise level. Fans: Direct driven have aluminium blades, steel hubs and are statically & dynamically balanced for smooth, vibration free operation. Coils: Heavy wall, copper tubes are mechanically expanded in self-spaced, full-collared aluminium corrugated plate fins for permanent bond and maximum heat transfer. Coils are pressure tested under water with 400 PSIG. They are dried with nitrogen and shipped pressurized. Fan guards & motor mounts: Are welded wire construction. Baked on powder epoxy coating provides corrosion protection. Fan motors: 1/ H.P. 1140 RPM, 1.0 H.P. 850 RPM and 1 1/ H.P. 1140 RPM motors have automatic reset, internal overload protection and have permanently lubricated, sealed ball bearings for long and dependable life. Motors are weather protected for year-round, outdoor condenser duty. Control Panel: Weather resistant electrical box have hinged access panel and is mounted on the same end as the headers for compact and easy installation. All ordered components i.e. contactors, fuses, fan cycling controls, terminal block, control transformer etc. are all mounted and wired inside the panel with weather resistant harnesses. REFRIGERATION KOOL-AIR INC. Québec, Canada Tel: (450) 3-5775 Fax: (450) 3-741 Email: kool-air@kool-air-inc.com Web site: www.kool-air-inc.com Due to Kool-Air policies to continuously improve the quality of its products, specifications are subject to change without notice.