VertiCool Aurora Engineering Guide

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1 Engineering Guide Effective August 2016 Air-Cooled, Water-Cooled and Water Source Heat Pump

2 Contents Product Features... 3 Options... 4 Physical Data Air-Cooled Performance Data (a) (b) (c) Water-Cooled Performance Data (a) (c) (d) (e) Water Source Heat Pump Performance Data (a) (c) (d) (e) Blower Performance Data (a) (b) (c) Evaporator: Blower Performance Data (a) Condenser: Hot Water Coil Performance Data (a) (b) (c) (d) (e) (f) Chilled Water Coil Performance Data (a) (b) (c) (d) (e) (f) Steam Coil Performance Data (a) (b) (c) (d) Electrica Data (Cooling Only): Electrica Data (Cooling with Electric Heat): Electrica Data Compressor RLA Electrical Data: Evaporator Motor FLA: Electrica Data Condenser Motor FLA: Electric Heat FLA: Electrica Data (Air-Cooled (c) (d): Electrica Data (Air-Cooled (c) (d) (e) Electrica Data (Air-Cooled (c) (d) Electrica Data (Water-Cooled (c) (d) Electrica Data (Water-Cooled (c) (d) (e) Electrica Data (Water-Cooled (c) (d) Basic Model Configurations Unit Dimensions Cabinet Configurations and Unit Drawings Service Clearance (Plan View) Application Data Resources Basic Model Designation Subject to change without notice. 2

3 Product Features The Series of units are splittable, self-contained, floor mounted, single package units. They are available as air-cooled, water-cooled or as water source heat pump configurations. The units offer a variety of evaporator air flow patterns for application flexibility. Additionally, the units are available as standard configurations or they can be tailored for a specific application as a made-to-order unit. Individual sections can be utilized with other product series. Air-Cooled, Water-Cooled or Water Source Heat Pump Configurations R-410a Refrigerant, Factory Charged 12 thru 35 Ton Units are Splittable using Resealable Refrigerant Fittings Fits through 32 doorways ( 3-15 Ton Cabinets) ½ Fiberglass Lined Cabinet (Thermal/Acoustical, min. density of 2 Pounds) Access panels without use of tools Rugged cabinet construction Duct Flanges Factory Installed Drain Connections on Both Evaporator and Condensing Sections 304 Stainless Steel V Style Drain Pan in Evaporator Section.25 ESP Capability (1 ESP Option for Evaporator and Condensing Sections) Belt Driven Blowers (Evaporator and Condensing Sections) Pillow Block Bearings ( 12 & 15 Ton Condensers, Ton Evaporators) Ball Bearing Motors Premium Efficiency Motors (1 HP & Above) Resiliently Mounted Ball Bearings for Blowers Cast Iron Pulleys and Sheaves Variable Pitch Motor Sheaves All shafts, sheaves & pulleys keyed Adjustable Motor Mounts in Evaporator and Condensing Sections High (Manual Reset) and Low (Auto Reset) Refrigerant Pressure Safety Switches Loss of Air Safety Switch (when electric heat used) Scroll Compressors Adjustable Expansion Valve with External Equalizer (MOP Type) Sight Glass / Moisture Indicators Visible From Cabinet Exterior Filter Driers Accessibility to High and Low Side Schrader Access Fittings for Refrigerant Pressures While Unit Is Operational Draw Through Air Flow Configuration Interlaced Evaporator Coils Single Electrical Control Box 24 Volt Control Circuits Transformer with Built In Circuit Breaker Individual Contactor for each Stage of Electric Heat Individual Contactor for each Motor and Compressor Co-axial Counter Flow Heat Exchanger(s) on Water-Cooled Units Limited Warranty 1 Year on Parts and 5 Years on Compressors Functionally Run Tested at the Factory Subject to change without notice. 3

4 Options (Items in BOLD are factory installed): Powder Coated Cabinet Plenum w/ Discharge Grilles or Duct Flange Condensate Pump Electric Heat (Second Control Box Required, 55 kw & Over) Protective Coil Coatings SCR Controllers Air or Water Side Economizer Hot Water, Chilled Water and Steam Coils Variable Frequency Drive (Evaporator) Drain Pan Overflow Switch Head Pressure Control Valves Double Wall Construction (Solid or Perforated) or Acoustic Foam Package Hot Gas Bypass (Standard or Modulating) Low Ambient Operation (VFD or Flooded Condenser) Freezestat Non-Fused Disconnects Thermostats Marvel Microprocessor Controls Upgraded Motors / Drive Sets Compressor Anti-Short Cycle Timer Quench Valve w/ Suction Accumulator Suction Line Accumulator Oil Separator Liquid Receivers Hot Gas Reheat Condenser Filter Box Return Air Grilles Chilled Water and Hot Water Valves Smoke Detectors Firestats Dry Contacts CONTACT THE FACTORY FOR OTHER OPTIONAL FEATURES. Subject to change without notice. 4

5 Physical Data Tons CFM Evaporator Supply Air Std. ESP 0.25 Max. ESP (a) 1.0 Evaporator Blower Size Qty 1 Evaporator Motors Std. HP 1/3 1/3 3/4 1/ /2 Opt. HP 3/4 3/ /2 1-1/2 3 Rows 3 Evaporator Coil Face Area FPI 12 Type Pleated Throwaway Filter Qty 2 4 Dimensions 14 x 25 x 2 Efficiency MERV 8 Compressor Type Scroll Qty 1 2 CFM Condenser Air Std. ESP 0.25 Max. ESP (a) 1.0 Condenser Blower Size Qty 1 Condenser Motors Std. HP 1/2 3/4 1-1/ Opt. HP 1 1-1/ (d) Rows 4 Condenser Coil Face Area FPI 16 Water Cooled Cond.(f) Type Co-Axial Qty 1 2 Charge R-410a (Lbs-Ozs) (a) Air-Cooled (Charge per circuit) (g) Water-Cooled Water-Source HP Weight (Net Operating) (b) Air-Cooled Water-Cooled / Available Voltages (e) 208/ (a) Requires optional motor / drive upgrade. (b) Net operating weight is for basic unit only. Options will add weight. (c) Refrigerant circuit components will impact unit performance. (d) Pulley & Belt upgrade only. (e) 575 volt available. Consult factory. (f) Contact factory for geothermal applications. (g) R-410a Refrigerant charge is for base unit configuration. Addition of some options may alter refrigerant amount. Subject to change without notice. 5

6 Physical Data Tons (h) 35 (h) CFM ,000 12,000 14,000 Evaporator Supply Air Std. ESP Max. ESP (a) Evaporator Blower Size Qty 1 2 Evaporator Motors Std. HP Opt. HP 3 (d) (d) 15 Rows 3 4 Evaporator Coil Face Area FPI Type Pleated Throwaway Filter Qty Dimensions 14 x 25 x 2 12 x 20 x 2 20 x 15 x 2 20 x 25 x 2 Efficiency MERV 8 Compressor Type Scroll Qty 2 CFM Condenser Air Std. ESP 0.25 Max. ESP (a) 1.0 Condenser Blower Size Qty 2 3 Condenser Motors Std. HP / Opt. HP 5 7-1/2 (d) Rows 4 6 Condenser Coil Face Area FPI 16 Water Cooled Cond.(f) Type Co-Axial Qty 2 4 Charge R-410a (Lbs-Ozs) (a) Air-Cooled (Charge per circuit) (g) Water-Cooled Water-Source HP Weight (Net Operating) (b) Air-Cooled Water-Cooled / Available Voltages (e) 208/ (a) Requires optional motor / drive upgrade. (b) Net operating weight is for basic unit only. Options will add weight. (c) Refrigerant circuit components will impact unit performance. (d) Pulley & belt upgrade only. (e) 575 volt available. Contact factory. (f) Contact factory for geothermal applications. (g) R-410a Refrigerant charge is base unit configuration. Addition of some options may alter refrigerant amount. (h) Units always shipped split. Subject to change without notice. 6

7 Air-Cooled Performance Data (a) (b) (c) SINGLE DUAL Model Number CFM VA3G*ASHA 1200 VA4G*ASHA 1600 VA5G*ASHA 2000 VA6G*AHA 2400 VA8G*AHA 3200 VA10G*AHA 4000 Entering Air Entering Air Temperature ( F) Temp. ( F) DB WB Total Sensible Total Sensible Total Sensible (a) Capacities are gross values, not adjusted for motor heat. (b) Some refrigerant circuit components may impact on unit capacities. (c) Applications with ambient conditions 75 F and lower may require additional refrigerant circuit components. Consult factory for details. Subject to change without notice. 7

8 Air-Cooled Performance Data (a) (b) (c) DUAL Tons CFM VA12G*AHA 4800 VA15G*AHA 6000 VA20G*AHA 8000 VA25G*AHA VA30G*AHA VA35G*AHA Entering Air Temp. ( F) Entering Air Temperature ( F) DB WB Total Sensible Total Sensible Total Sensible (a) Capacities are gross values, not adjusted for motor heat. (b) Some refrigerant circuit components may impact on unit capacities. (c) Applications with ambient conditions 75 F and lower may require additional refrigerant circuit components. Consult factory for details. Subject to change without notice. 8

9 Water-Cooled Performance Data (a) (c) (d) (e) SINGLE DUAL Tons GPM PD (psi) (b) CFM VW3G*ASHA VW4G*ASHA VW5G*ASHA VW6G*AHA VW8G*AHA VW10G*AHA Entering Air Entering Water Temperature ( F) Temp. ( F) DB WB Total Sensible Total Sensible Total Sensible (a) Capacities are gross values, not adjusted for motor heat. (b) Pressure drop is for heat exchanger only and does not include piping, valves, fittings, etc. (c) Some refrigerant circuit components may impact on unit capacities. (d) Applications with water conditions 75 F and lower may require additional refrigerant circuit components. Consult factory for details. (e) Contact factory for geothermal applications. Subject to change without notice. 9

10 Water-Cooled Performance Data (a) (c) (d) (e) DUAL Tons GPM PD (psi) (b) CFM VW12G*AHA VW15G*AHA VW20G*AHA VW25G*AHA VW30G*AHA VW35G*AHA Entering Air Entering Water Temperature ( F) Temp. ( F) DB WB Total Sensible Total Sensible Total Sensible (a) Capacities are gross values, not adjusted for motor heat. (b) Pressure drop is for heat exchanger only and does not include piping, valves, fittings, etc. (c) Some refrigerant circuit components may impact on unit capacities. (d) Applications with water conditions 75 F and lower may require additional refrigerant circuit components. Consult factory for details. (e) Contact factory for geothermal applications. Subject to change without notice. 10

11 Water Source Heat Pump Performance Data (a) (c) (d) (e) Tons GPM PD (psi) (b) CFM Entering Air Temp. ( F) DB Heating Capacity (a) Capacities are gross values, not adjusted for motor heat. (b) Pressure drop is for heat exchanger only and does not include piping, valves, fittings, etc. (c) Some refrigerant circuit components may impact on unit capacities. (d) Values at 70 F Entering Water Temperature. (e) Contact factory for geothermal applications. Subject to change without notice. 11

12 Blower Performance Data (a) (b) (c) Evaporator: Tons CFM External Static Pressure (ESP) Max HP ESP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP (a) Can interpolate between values, but do not extrapolate outside values. Contact factory for values outside the data. (b) Blower performance of basic unit with 2, MERV 8 pleated throwaway filter and wet coil 80 / 67 / 95 and A air path. (c) Performance with nominal CFM. For other CFM or ESP, use the UCA Select software or contact the factory for your specific application. Subject to change without notice. 12

13 Blower Performance Data (a) (b) (c) Evaporator: Tons CFM External Static Pressure (ESP) Max HP ESP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP (a) Can interpolate between values, but do not extrapolate outside values. Contact factory for values outside the data. (b) Blower performance of basic unit with 2, MERV 8 pleated throwaway filter and wet coil 80 / 67 / 95 and A air path. (c) Performance with nominal CFM. For other CFM or ESP, use the UCA Select software or contact the factory for your specific application. Subject to change without notice. 13

14 Blower Performance Data (a) Condenser Tons CFM External Static Pressure (ESP) Max HP ESP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP (a) Can interpolate between values, but do not extrapolate outside values. Contact factory for values outside the data. Subject to change without notice. 14

15 Blower Performance Data (a) Condenser Tons CFM External Static Pressure (ESP) Max HP ESP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP RPM BHP HP (a) Can interpolate between values, but do not extrapolate outside values. Contact factory for values outside the data. Subject to change without notice. 15

16 Hot Water Coil Performance Data (a) (b) (c) (d) (e) (f) Tons CFM GPM PD Ft. H2O Capacity (MBH) (a) Hot Water Coil Valves are optional. (b) Valves are spring return, On / Off operation only. (c) Entering water at 180 F. Leaving water at approximately 160 F. (d) Entering air temperature 65 F. (e) For other operating conditions or fluid type, contact the factory for performance. (f) Hot Water Coil Valve Sizes: Tons Valve Size 3 3/4 4 3/4 5 3/ / / / / / / /2 Subject to change without notice. 16

17 Chilled Water Coil Performance Data (a) (b) (c) (d) (e) (f) Tons CFM GPM PD Ft. H2O Total (MBH) Sensible (MBH) (a) Capacity based on 80 F DB / 67 F WB with 45 F EFT. (b) Chilled water entering at 45 F. (c) For other operating conditions or fluid type, contact the factory for performance. (d) Chilled Water Coil Valves are optional. (e) Valves are spring return, On / Off operation only. (f) Chilled Water Coil Valve Sizes: Tons Valve Size 3 3/4 4 3/4 5 3/ / / / / / / /2 Subject to change without notice. 17

18 Steam Coil Performance Data (a) (b) (c) (d) Tons CFM 2 psi Capacity (MBH) Condensate (lb. / hr.) LAT (a) Low pressure, less than 10 psig. (b) Entering air at 65 F. (c) For other operating pressures, air flows and entering air conditions contact factory. (d) Steam valves and components by others, field installed. Subject to change without notice. 18

19 Electrica Data The following sections provides the formulas and the data to calculate the Minimum Circuit Ampacity (MCA) and the Maximum Fuse Size (MOP) for your specific unit configuration. Please note that the UCA Select software can also be used to calculate the electrical data for the units. There are a variety of unit configurations. Please make sure to use the correct formulas per your configuration. It must be noted that the formulas refer to the largest motor amps. This typically is the compressor (RLA), but it can also be one of the blower motors (FLA). The data provided will cover the majority of available unit configurations. However, it should be noted that additional combinations may be available and the factory can be contacted for this data. Examples have also been provided for each configuration. RLA = Compressor Rated Load Amps FLA = Full Load Amps (Used for Blower Motors and Electric Heaters) MCA = Minimum Circuit Ampacity (Calculated value) MOP = Maximum Fuse Size (Calculated value) Cooling Only: Package Unit (Can be single or dual compressor) NOTE: Largest motor amps may not always be the compressor. MCA = (1.25 x largest motor amps) + the sum of the remaining motors MOP = (2.25 x largest motor amps) + the sum of remaining motors Condensing Section w/ Compressor(s) NOTE: Largest motor amps may not always be the compressor. MCA = (1.25 x largest motor amps) + the sum of the remaining motors MOP = (2.25 x largest motor amps) + the sum of remaining motors Evaporator Only Section MCA = (1.25 x Evap. Blower Motor Amps) MOP = (2.25 x Evap. Blower Motor Amps) Condenser Only Section w/o Compressor(s) MCA = (1.25 x Cond. Blower Motor Amps) MOP = (2.25 x Cond. Blower Motor Amps) Evaporator Section w/ Compressor(s) NOTE: Largest motor amps may not always be the compressor. MCA = (1.25 x largest motor amps) + the sum of the remaining motors MOP = (2.25 x largest motor amps) + the sum of remaining motors Subject to change without notice. 19

20 Electrica Data Examples Cooling Only: Package Unit NOTE: Largest motor amps may not always be the compressor. MCA = (1.25 x largest motor amps) + the sum of the remaining motors MOP = (2.25 x largest motor amps) + the sum of remaining motors Single Compressor RLA = 16.7 Dual Compressors RLA = 33.3 each Evap. Blower Motor FLA = 3 Evap. Blower Motor FLA = 13.6 Cond. Blower Motor FLA = 4 Cond. Blower Motor FLA = 20.6 MCA = (1.25 x 16.7) = 27.9 MCA = (1.25 x 33.3) = MOP = (2.25 x 16.7) = 44.6 MOP = (2.25 x 33.3) = Rounded Down to 40 Rounded Down to 140 Condensing Section w/ Compressor(s) NOTE: Largest motor amps may not always be the compressor. MCA = (1.25 x largest motor amps) + the sum of the remaining motors MOP = (2.25 x largest motor amps) + the sum of remaining motors Single Compressor RLA = 16.7 Dual Compressors RLA = 33.3 each Cond. Blower Motor FLA = 4 Cond. Blower Motor FLA = 20.6 MCA = (1.25 x 16.7) + 4 = 24.8 MCA = (1.25 x 33.3) = 95.5 MOP = (2.25 x 16.7) + 4 = 41.6 MOP = (2.25 x 33.3) = Rounded Down to 40 Rounded Down to 125 Evaporator Only Section MCA = (1.25 x Evap. Blower Motor Amps) MOP = (2.25 x Evap. Blower Motor Amps) Evap. Blower Motor FLA = 3 MCA = (1.25 x 3) = 3.8 MOP = (2.25 x 3) = 6.75 Rounded Down to 5 Condenser Only Section w/o Compressor(s) MCA = (1.25 x Cond. Blower Motor Amps) MOP = (2.25 x Cond. Blower Motor Amps) Cond. Blower Motor FLA = 20.6 MCA = (1.25 x 20.6) = 25.8 MOP = (2.25 x 20.6) = 46.4 Rounded Down to 45 Evaporator Section w/ Compressor(s) NOTE: Largest motor amps may not always be the compressor. MCA = (1.25 x largest motor amps) + the sum of the remaining motors MOP = (2.25 x largest motor amps) + the sum of remaining motors Single Compressor RLA = 16.7 Dual Compressors RLA = 33.3 each Evap. Blower Motor FLA = 3 Evap. Blower Motor FLA = 13.6 MCA = (1.25 x 16.7) + 3 = 23.8 MCA = (1.25 x 33.3) = 88.5 MOP = (2.25 x 16.7) + 3 = 40 MOP = (2.25 x 33.3) = Rounded Down to 120 Subject to change without notice. 20

21 Electrica Data Cooling with Electric Heat: Package Unit (Can be single or dual compressor) NOTE: Largest motor amps may not always be the compressor. Electric Heat < 50 kw On equipment with multiple modes of operation (i.e. cooling or heating), each mode shall be evaluated and whichever load condition provides the highest value shall be used. Use the larger of the following: MCA = (1.25 x largest motor amps) + the sum of the remaining motors or MCA = (Heater FLA + Evap. Motor FLA) x 1.25 MOP = (2.25 x largest motor amps) + the sum of the remaining motors or MOP = (Evap. Blower Motor x 2.25) + Heater Amps Electric Heat 50 kw Requires Two Power Supplies #1 Heater MCA = 1.00 x Heater FLA Heater MOP = MCA Rounded Up to Next Increment of 5 #2 Unit MCA = (1.25 x largest motor amps) + the sum of the remaining motors Unit MOP = (2.25 x largest motor amps) + the sum of the remaining motors Evaporator Only Section Electric Heat < 50 kw MCA = (Heater FLA + Evap. Motor FLA) x 1.25 MOP = (Evap. Blower Motor x 2.25) + Heater Amps Electric Heat 50 kw Requires Two Power Supplies #1 Heater MCA = 1.00 x Heater FLA Heater MOP = MCA Rounded Up to Next Increment of 5 #2 Evap. Section MCA = (1.25 x Evap. Blower Motor Amps) Evap. Section MOP = (2.25 x Evap. Blower Motor Amps) Evaporator Section w/ Compressor(s) -- Same as Package Unit above Condensing Section w/ Compressor(s) or Condenser Only Section w/o Compressor(s) -- Same as Cooling Only models Subject to change without notice. 21

22 Electrica Data Examples Cooling with Electric Heat: Single Package NOTE: Largest motor amps may not always be the compressor. Electric Heat < 50 kw Use the larger of the following: MCA = (1.25 x 15.6) = 28.1 or MCA = ( ) x 1.25 = 36.5 Use this value MOP = (2.25 x 15.6) = 43.7 Use this value Rounded Down to 40 or MOP = (3 x 2.25) = Electric Heat 50 kw Requires Two Power Supplies #1 Heater MCA = 1.00 x = Heater MOP = 160 #2 Unit MCA = (1.25 x 25) = 83.5 Unit MOP = (2.25 x 25) = Rounded Down to 105 Evaporator Only Section Electric Heat < 50 kw MCA = ( ) x 1.25 = 63.8 MOP = (5.5 x 2.25) = 57.9 MOP can t be lower than MCA Rounded Up to 65 Electric Heat 50 kw Requires Two Power Supplies #1 Heater MCA = 1.00 x = Heater MOP = 210 #2 Evap. Section MCA = (1.25 x 40.5) = 50.6 Evap. Section MOP = (2.25 x 40.5) = 90 Evaporator Section w/ Compressor(s) -- Same as Single Package above Subject to change without notice. 22

23 Electrica Data Compressor RLA Electrical Data: Tons Compressor (Qty) 208/ / ea. 5.8 ea. 3.8 ea ea. 7.1 ea. 5.1 ea ea. 7.8 ea. 5.8 ea ea 9.7 ea. 7.4 ea ea ea. 9.0 ea ea ea ea ea ea ea ea ea ea ea ea ea. Evaporator Motor FLA: HP Used In Tons 208/ (a) 208/ , 4 and , 4, 5, 6 and , 4, 5, 6 and , 4, 5, 6, 8 and , 4, 5, 6, 8, 10 and , 10 and , 10, 12, 15 and , 15, 20 and , 25, 30 and , 30 and and (a) Single phase motors may not be available in all tonnage sizes shown. Contact factory for specific unit capabilities. Subject to change without notice. 23

24 Electrica Data Condenser Motor FLA HP Used In Tons 208/ (a) 208/ and and , 4, 5 and , 4, 5, 6 and , 5, 6 and , 6, 8, 10 and , 10, 12, 15 and and and and (a) Single phase motors may not be available in all tonnage sizes shown. Contact factory for specific unit capabilities. Electric Heat FLA (Heaters nominally rated at 220 or 460 volts. Amps listed at 208 volts or 460 volts) Nom. kw Used In Tons 208/ / , 4, 5 and , 5, 6, 8 and , 6, 8, 10, 12 and , 8, 10, 12 and , 10,12, 15 and , 10, 12, 15, 20 and , 12, 15, 20, 25 and , 12, 15, 20, 25, 30 and , 15, 20, 25, 30 and , 15, 20, 25, 30 and , 20, 25, 30 and , 25, 30 and , 30 and and and Subject to change without notice. 24

25 Electrica Data Air-Cooled (c) (d) Tons 3 4 Voltage Compressor RLA 208/ / / / Evaporator Motor Condenser Motor Electrical Heat (a) (b) HP FLA HP FLA KW Amps MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. Subject to change without notice. 25

26 Electrica Data Air-Cooled (c) (d) (e) Tons 5 6 Voltage Compressor RLA 208/ / / ea ea ea. Evaporator Motor Condenser Motor Electrical Heat (a) (b) HP FLA HP FLA KW Amps MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. (e) All unit electrical capabilities not shown. Contact factory for specific unit combinations. Subject to change without notice. 26

27 Electrica Data Air-Cooled (c) (d) (e) Tons 8 10 Voltage Compressor RLA 208/ ea ea ea. 208/ ea ea ea. Evaporator Motor Condenser Motor Electrical Heat (a) (b) HP FLA HP FLA KW Amps MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. (e) All unit electrical capabilities not shown. Contact factory for specific unit combinations. Subject to change without notice. 27

28 Electrica Data Air-Cooled (c) (d) Tons Voltage Compressor RLA 208/ ea ea ea. 208/ ea ea ea. Evaporator Motor Condenser Motor Electrical Heat (a) (b) Unit Heater HP FLA HP FLA KW Amps MCA MOP MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. Subject to change without notice. 28

29 Electrica Data Air-Cooled (c) (d) Tons Voltage Compressor RLA 208/ ea ea ea. 208/ ea ea ea. Evaporator Motor Condenser Motor Electrical Heat (a) (b) Unit Heater HP FLA HP FLA KW Amps MCA MOP MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. Subject to change without notice. 29

30 Electrica Data Air-Cooled (c) (d) Tons Voltage Compressor RLA 208/ ea ea ea. 208/ ea ea ea. Evaporator Motor Condenser Motor Electrical Heat (a) (b) Unit Heater HP FLA HP FLA KW Amps MCA MOP MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. Subject to change without notice. 30

31 Electrica Data Water-Cooled (c) (d) Tons 3 4 Voltage Compressor RLA 208/ / / / Evaporator Motor Electrical Heat (a) (b) HP FLA KW Amps MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. Subject to change without notice. 31

32 Electrica Data Water-Cooled (c) (d) (e) Tons 5 6 Voltage Compressor RLA 208/ / / ea ea ea. Evaporator Motor Electrical Heat (a) (b) HP FLA KW Amps MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. (e) All unit electrical capabilities not shown. Contact factory for specific unit combinations. Subject to change without notice. 32

33 Electrica Data Water-Cooled (c) (d) (e) Tons 8 10 Voltage Compressor RLA 208/ ea ea ea. 208/ ea ea ea. Evaporator Motor Electrical Heat (a) (b) HP FLA KW Amps MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. (e) All unit electrical capabilities not shown. Contact factory for specific unit combinations. Subject to change without notice. 33

34 Electrica Data Water-Cooled (c) (d) Tons Voltage Compressor RLA 208/ ea ea ea. 208/ ea ea ea. Evaporator Motor Electrical Heat (a) (b) Unit Heater HP FLA KW Amps MCA MOP MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. Subject to change without notice. 34

35 Electrica Data Water-Cooled (c) (d) Tons Voltage Compressor RLA 208/ ea ea ea. 208/ ea ea ea. Evaporator Motor Electrical Heat (a) (b) Unit Heater HP FLA KW Amps MCA MOP MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. Subject to change without notice. 35

36 Electrica Data Water-Cooled (c) (d) Tons Voltage Compressor RLA 208/ ea ea ea. 208/ ea ea ea. Evaporator Motor Electrical Heat (a) (b) Unit Heater HP FLA KW Amps MCA MOP MCA MOP (a) Electric heaters nominally rated at 220, 460 or 575 volts. Amps listed at 220, 460 or 575 volts. (b) Electric heaters listed being used for heat. (c) Use Copper Conductors Only. (d) Values listed are typical and may vary dependent upon components utilized. Subject to change without notice. 36

37 Basic Model Configurations Evaporator Intake Front Condenser Blower Evaporator Discharge Rear Condenser Discharge Rear BVA, BCVA, BVW and EVA (a) If no interconnect kit is ordered, unit will be supplied with lines capped and a holding charge only. Front Condenser Intake Rear Compressor VA Condenser Coil Evaporator Intake Front Evaporator Discharge Rear Liquid Line Discharge Line Condenser Blower Condenser Discharge Rear Front Front Condenser Intake Rear Compressor VAR BCVA Condenser Coil Evaporator Intake Front Evaporator Discharge Rear Liquid Line Front Suction Line Condenser Blower Front Condenser Discharge Rear Condenser Intake Rear VARC Compressor BVA Condenser Coil Evaporator Intake Front Evaporator Discharge Rear EVA EVA (a) Standard refrigerant tube location is out bottom of cabinet. Alternate tube location is outside corner post. (b) If electrical components are added, the control box will be mounted externally. Liquid Line Suction Line Condenser Blower Compressor Front BVA Condenser Discharge Rear Condenser Intake Rear Condenser Coil Subject to change without notice. 37

38 Unit Dimensions For specific unit dimensions, please visit our website at or click here if you are viewing this document electronically. Subject to change without notice. 38

39 Cabinet Configurations and Unit Drawings Basic Air Path A Evaporator Discharge: Top (Less the Plenum) Air-Cooled Air Path Configurations (2) (4) Basic Air Path B Evaporator Discharge: Top (Less the Plenum) Optional Air Path APT (5) Optional Air Path BPT (3) (5) Optional Plenum Optional Plenum Optional Air Path APF (5) Optional Air Path APR (5) Optional Air Path BPF (3) (5) Optional Air Path BPR (3) (5) Evaporator Intake Rear Evaporator Intake Front Condenser Discharge Rear Condenser Discharge Rear Front Condenser Intake Rear Front Condenser Intake Rear Reference Notes on Page 42 Basic Air Path C (1) Straight Through Evaporator Front Discharge Basic Air Path D (1) Straight Through Evaporator Rear Discharge Evaporator Discharge Front Evaporator Intake Rear Evaporator Intake Front Evaporator Discharge Rear Condenser Discharge Rear Condenser Discharge Rear Front Condenser Intake Rear Front Condenser Intake Rear Not to Scale Subject to change without notice. 39

40 Cabinet Configurations and Unit Drawings Basic Air Path A Evaporator Discharge: Top (Less the Plenum) Water-Cooled Air Path Configurations (2) (4) Basic Air Path B Evaporator Discharge: Top (Less the Plenum) Optional Air Path APT (5) Optional Air Path BPT (3) (5) Optional Plenum Optional Plenum Optional Air Path APF (5) Optional Air Path APR (5) Optional Air Path BPF (3) (5) Optional Air Path BPR (3) (5) Evaporator Intake Rear Evaporator Intake Front Front Front Reference Notes on Page 42 Basic Air Path C (1) Straight Through Evaporator Front Discharge Basic Air Path D (1) Straight Through Evaporator Rear Discharge Evaporator Discharge Front Evaporator Intake Rear Evaporator Intake Front Evaporator Discharge Rear Front Front Not to Scale Subject to change without notice. 40

41 Cabinet Configurations and Unit Drawings Air Side Economizer (1) Air Side Economizer (ASE) consists of dampers with operators on Return Air and Outside Air (OSA) sides, Enthalpy Sensor and Remote Mixed Air Temperature Sensor. Filter Evaporator Discharge Front OSA Damper Return Air Damper Condenser Air Discharge Front Condenser Air Inlet Right Side Jack stands and ASE field installed Rear View Notes: 1. Side access required. 2. Filter access available on each side of evaporator inlet. 3. Side or Rear access required. 4. Refer to unit drawings for specific inlet and discharge flange locations and dimensions. 5. The evaporator blower motor must be upgraded when ducting out of plenum. 6. Condenser filter box option includes 2, MERV 8 Pleated Throwaway Filters thru 12, 20 and 25 ton units with plenums flanged for ductwork will require a motor upgrade thru 35 ton units, when shipped split, will have the plenum factory installed on the evaporator section, otherwise plenum is shipped separate for field installation. Not to Scale For specific unit dimensions, please view them on our website at or click here if you are viewing this document electronically. Subject to change without notice. 41

42 Service Clearance (Plan View) 30 See Note (a) if evaporator intake is not ducted A Air Path B Air Path See Note (a) if evaporator intake is not ducted C Air Path D Air Path Evaporator Only Control Box (b) See Note (a) if evaporator intake is not ducted Notes: (a) If evaporator is not ducted, maintain a 24 clearance from the wall for air intake. (b) Control box location may change or it could be located externally. Subject to change without notice. 42

43 Application Data Voltage 208 / Variation 187 / / / 632 Cooling (Air Entering Evaporator) DB (min./max.) 65 / 110 WB (min./max) 57 / 72 Note: Not all combinations may be valid Water-Cooled GPM / Ton (min./max.) 2.5 / 3.5 Leaving Water Temp (min./max) 60 / 115 Note: Not all combinations may be valid Miscellaneous Technical Data Water-Cooled Units Female Pipe Threads (FPT) Water Connection Sizes Tons Size 3-4 3/ / / /2 Condensate Drain Pipes: 1 IPS Subject to change without notice. 43

44 Resources Reference United CoolAir s Louver and Ducting Guidelines TechTip for proper selection and application of wall louvers. You can view it on our website at or click here if you are reading this document electronically. UCA Select software is available for UCA Distributor personnel use. This software will provide unit performance data for standard applications with a Submittal Data format and unit Dimensional Drawings. Unique applications outside the norm should be communicated to the factory for confirmation of suitability for the application. Subject to change without notice. 44

45 Basic Model Designation EXAMPLE: VA G AS 6 T 7 A 8 A 10 X VA, VW, VHW, E, B or BC VA Air-Cooled Air Conditioner VW Water-Cooled Air Conditioner VHW Water Source Heat Pump E Evaporator Section only as a prefix to any of the above BVA Air-Cooled Condensing Section BCVA Air-Cooled Condenser Section BVW Water-Cooled Condensing Section 2. R or RC Remote Condenser or Condensing Section Being Used R Remote Condenser Unit being used RC Remote Condensing Unit being used 3. 3, 4, 5, 6, 8, 10, 12, 15, 20, 25, 30, 35 Nominal Cooling Capacity in Tons 4. G Common to all 5. 1, 3, 4 or 5 Indicates Voltage V, 1 PH V, 3 PH 4 460V, 3 PH 5 575V, 3 PH 6. AS, A Quantity of Refrigerant Circuits AS Indicates 1 Circuit A Indicates 2 Circuits 7. H Unit Series H Cabinet Series 8. A Refrigerant Type A R-410a 9. 05, 10, 15, 20, 25, 30, 35, 40, 45, 50, 55, 60, , 120, 140, 160 Indicates kw Rating for Heaters 10. -A, -APF, -APT, -APR, -B, -BPF, -BPT, -BPR, -C, -D Indicates Air Path Configuration 11. X Special Configuration Not all combinations of Basic Model Designations are valid. Check with the factory for correct model identification.

46 Unique Solutions for All-Indoor HVAC Projects VertiCool Classic Vertical, 3-30 Ton Vertical, 3-35 Tons VariCool VAV, 9-70 Tons VariCool EZ-Fit VAV, Tons OmegaAir Vertical 100% Outside Air, 1-15 Tons Portable Cooling and Heating Units 3-30 Tons C13-Series Horizontal 2-10 Tons C-Series Horizontal 1-15 Tons Special Configuration Engineered to Order OmegaAir Horizontal, 100% Outside Air, 1-15 Tons Authorized Distributor: LIMITED WARRANTY United CoolAir Units are backed by a 1 year limited warranty on parts and a 5 year limited warranty on the compressor (labor not included). Maintenance items such as filters and belts are excluded under this limited warranty. FACTORY TESTED All units are functionally run tested before shipment to ensure a trouble-free start-up and unit commissioning. Industry proven components are used throughout to enhance system reliability and peace of mind. Scan to learn more about all of our products! 491 East Princess Street, York, PA Phone: Fax: uca@unitedcoolair.com web: Copyright by United CoolAir Corporation All rights reserved. Manufacturer reserves the right to make changes without notice.

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