TECHNICAL GUIDE COMMERCIAL SPLIT-SYSTEM HEAT PUMP FOUR PIPE SYSTEM DESCRIPTION E*FB180 & 240 F*EH180 & & 20 NOMINAL TONS INDOOR UNIT
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1 D-1102 TECHNICAL GUIDE CMMERCIAL SPLIT-SYSTEM HEAT PUMP FUR PIPE SYSTEM E*FB180 & 240 F*EH180 & & 20 NMINAL TNS DESCRIPTIN Both the outdoor and indoor units are completely piped and wired at the factory and are shipped ready for immediate installation. nly the blower motor and drive package (F*EH240 NLY) interconnecting liquid and suction lines, sight glasses, control wiring, and the main power wiring are required to complete the installation. Every unit is dehydrated, evacuated, leak tested and pressure tested at 450 psig before being pressurized with a holding charge of Refrigerant- 22 for shipment and/or storage. To eliminate the costly cabinet deterioration problems usually associated with outdoor equipment, 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 parts that will be exposed to the weather are then coated with a "Desert Sand" powder paint to assure a quality finish for many years. This coating system has passed the 750-hour, salt spray test per ASTM Standard B117. UTDR UNIT Every unit includes two heavy-duty scroll compressors, two suction line accumulators, two 4- way reversing valves with a 24 volt solenoid, two outdoor fan motors with inherent protection, and a copper tube/aluminum fin coil that is positioned vertically for better drainage of the water that will condense on it during the heating cycle. They also include two filter driers, two expansion valves and distributors that are only used during the heating cycle plus a check valve to provide the proper flow of refrigerant through the unit during both the cooling and heating cycles. All controls are located in the front of the unit and are readily accessible for maintenance, adjustment and service. All wiring (Power and Control) can be made through the front of the unit. INDR UNIT Every unit includes a well-insulated cabinet, copper tube/aluminum fin coil with interlaced circuitry arrangement, one-inch throwaway filters, centrifugal blower with a fixed pitch sheave, and a blower motor with variable pitch sheave. FR DISTRIBUTIN USE NLY - NT T BE USED AT PINT F RETAIL SALE
2 TABLE F CNTENTS DESCRIPTIN UTDR UNIT INDR UNIT ACCESSRIES (FIELD INSTALLED) APPLICATIN FLEXIBILITY LIST F FIGURES Fig. # Pg. # 1 UTDR UNITS E*FB180 & HRIZNTAL AND VERTICAL PSITIN F*EH180 - BLWER PERFRMANCE CURVE F*EH240 - BLWER PERFRMANCE CURVE UNIT DIMENSINS - FEH180 & UNIT DIMENSINS - FEH180 & UNIT DIMENSINS - FEH UNIT DIMENSINS - FEH SUPPLY AIR PLENUM FEH KNCKUTS FR PWER & CNTRL WIRING FEH SUPPLY AIR PLENUM FEH ELECTRIC HEAT FEH180 & RETURN AIR GRILLE FEH BASE ACCESSRY FEH RETURN AIR GRILLE FEH BASE SECTIN FEH SUSPENSIN KIT FEH SUSPENSIN KIT FEH LIST F TABLES Tbl. # Pg. # 1 UNIT APPLICATIN DATA ARI RATINGS - CLING, HEATING, AND SUND CLING CAPACITIES E*FB180/F*EH CLING CAPACITIES - E*FB180/F*EH CLING CAPACITIES - E*FB240/F*EH CLING CAPACITIES -E*FB240/F*EH HEATING CAPACITIES - E*FB180/F*EH180 ( HEAT PUMP NLY) HEATING CAPACITIES -E*FB240/F*EH240 (HEAT PUMP NLY) ELECTRICAL HEAT ACCESSRY HEATING CAPACITY (F*EH180) ELECTRICAL HEAT ACCESSRY HEATING CAPACITY (F*EH240) F*EH180 - SUPPLY AIR PERFRMANCE F*EH240 - SUPPLY AIR PERFRMANCE PHYSICAL DATA - UTDR UNIT PHYSICAL DATA - INDR UNIT PHYSICAL DATA - HEATING UNIT BLWER MTR AND DRIVE DATA ELECTRICAL DATA - UTDR UNIT ELECTRICAL RATINGS INDR UNIT - HEAT PUMP NLY ELECTRICAL RATINGS INDR UNIT - HEAT PUMP WITH ELECTRIC HEAT UNIT CNNECTINS CENTER F GRAVITY CLEARANCES MINIMUM CLEARANCES BASIC UNIT SUSPENSIN WEIGHT (LBS.) FR FEH BASIC UNIT SUSPENSIN WEIGHT FR FEH240 (LBS) Unitary Products Group
3 INDR UNIT Every unit includes a well-insulated cabinet, copper tube/aluminum fin coil with interlaced circuitry arrangement, one-inch throwaway filters, centrifugal blower with a fixed pitch sheave, and a blower motor with variable pitch sheave. They also include two filter driers, two expansion valves and distributors that are only used during the cooling cycle, plus, a check valve to provide the proper flow of refrigerant through the unit during both the cooling and heating cycles. The controls include 208/230/460 volt transformer, blower motor contactor and relay, and a low voltage terminal block. The units are shipped in the vertical position ready for field installation. For horizontal installation, the blower module can be repositioned in the field as shown on page 3 for maximum flexibility. ACCESSRIES (FIELD INSTALLED) Three-Phase Electric Heaters are available in several capacities to provide maximum flexibility. The heater can be selected to precisely meet the supplemental heating requirement of the conditioned space. These heaters are designed for easy field-installation over the supply air opening(s) of the indoor unit. They have been tested by Underwriters Laboratories and will be shipped with a UL label. Every heater will be fully protected against excessive current and temperature by fuses and two high limit thermostats. Units with Electric Heat will require only one power supply for both the heating elements and the supply air blower motor, and the power wiring can be protected by either dual element/time delay fuses or an inverse time circuit breaker. NTE: n F*EH, a 2HB & 2HC model heater will be required. Supply Air Plenums and Return Air Grilles (expanded metal) are available for free-standing indoor units located in the conditioned space. Both accessories are finished to match the exterior of the basic unit, and both can be applied with either vertical or horizontal units. The supply air plenums are fully insulated and have double-deflection, adjustable grilles. Base Sections are available to raise vertical indoor units above the floor. utdoor air may be introduced through these bases by cutting an access opening for the outdoor air duct connection. These bases are finished to match the exterior of the basic unit. They may have to be insulated in the field for certain applications. Suspension Kit is available for indoor units installed horizontally. Thermostats with either manual or automatic changeover are available for precise control of the temperature within the conditioned space. The manual thermostat has a four-position selector switch - CL, FF, HEAT, and EMERGENCY HEAT, and three stages of control - one stage of cooling and two stages of heating. The automatic thermostat has a three-position selector switch - FF, AUTMATIC and EMER- GENCY HEAT, and four stages of control - two stages of cooling and two stages of heating. Both thermostats have a two-position fan switch, AUT and N to provide intermittent or continuous blower operation. NTE: The automatic changeover thermostat must be used on units equipped with a field-supplied economizer. The first cooling stage of the automatic thermostat will only control the position of the reversing valve; the system will still operate with only one stage of cooling. The EMERGENCY HEAT position on the selector switch and the second stage of heating will only function on systems with an electric heat accessory. APPLICATIN FLEXIBILITY FIGURE 1 - UTDR UNITS E*FB180 & 240 The outdoor units are lightweight and can be installed on almost any roof. Unitary Products Group 3
4 Units can be lifted using nylon straps with hooks at the holes provided in the base rails, or they may be lifted with a forklift through the slotted openings in the base rails. A quality appearance and low sound levels make these units suitable for most ground level locations. Remember that during heat and defrost cycles, condensate will drip from the underside of the unit coils and that this condensate will freeze when the temperature of the outdoor air is below 32 F. A gravel bed or some other means of handling this condensate may have to be provided. The indoor units are built in a single cabinet with one condensate drain pan. These units can be installed in either the vertical or horizontal position for maximum flexibility. n vertical applications, the air velocity across the indoor coil keeps the condensate from dripping off the finned surface onto the filters. n horizontal applications, the unit must be installed with the condensate drain pan under the entire indoor coil. The Supply Air Plenum and the Return Air Grille accessories can be used on either arrangement. The Base accessory can only be used on the vertical arrangement. Certain blower positions are not recommended because the blower motor should not be mounted upside down. Models 180 and 240 This unit has two distinct modules; a blower module and a coil module. Although the unit is always shipped in the vertical position with a vertical air discharge as show in illustration (a); the blower module can be repositioned in the field as shown in illustrations (b) and (c) for maximum flexibilitiy. The Supply Air Plenum, Return Air Grille and Base Accessories can be applied on arrangement (a). The Return Air Grille and Base Accessories can be applied on arrangement (b). The Supply Air Plenum, Return Air Grille and Suspension Accessories can be applied on arrangement (c). FIGURE 2 - HRIZNTAL AND VERTICAL PSITIN 4 Unitary Products Group
5 TABLE 1: UNIT APPLICATIN DATA APPLICATIN LIMITATINS MINIMUM MAXIMUM Voltage Variation (208/ ) - Volts Voltage Variation ( ) - Volts Ambient Air on utdoor Coil (Cooling Cycle) - F Ambient Air on Indoor Coil (Cooling Cycle) - F Ambient Air on utdoor Coil (Heating Cycle) - F Ambient Air on Indoor Coil (Heating Cycle) - F Below 0 F, the control circuit will lock out the compressor and allow the electric accessory to cycle at its standby capacity. TABLE 2: ARI RATINGS - CLING, HEATING, AND SUND Heating Capacity 1 Model Cooling Capacity 1 Cond. Unit High utdoor Temperature (47 F) perature Low utdoor Tem- Sound 2 (17 F) Rated Airflow Rated ESP utdoor Unit Indoor Unit MBH 3 EER IPLV MBH 3 CP MBH 3 CP db CFM IWG E*FB180 F1EH E*FB240 F1EH Ratings are in accordance with ARI Standard Ratings are in accordance with ARI Standard Deduct 1 MBH when a unit operates at 208 volts. Unitary Products Group 5
6 TABLE 3: CLING CAPACITIES E*FB180/F*EH180 Air n Evap. Coil CFM WB F Power Input kw 85 F Air on Condenser Coil 95 F Air on Condenser Coil 1 Capacity (MBH) at Entering Dry Bulb ( F) Capacity (MBH) at Entering Dry Bulb ( F) Power Input TT SEN TT SEN TT SEN TT SEN kw 2 TT SEN TT SEN TT SEN TT SEN Capacities shown are gross ratings. For net capacities, determine the kw requirement of the supply air blower motor per the Supply Air Performance tables. Convert kw to MBH by the following equation and deduct this equivalent heat from the gross cooling ratings: BLWER MTR HEAT (MBH) = BLWER MTR kw X Power input includes the compressors and condenser fan motors. 6 Unitary Products Group
7 TABLE 4: CLING CAPACITIES - E*FB180/F*EH180 Air n Evap. Coil CFM WB F Power Input kw F Air on Condenser Coil F Air on Condenser Coil 1 Capacity (MBH) at Entering Dry Bulb ( F) Power Capacity (MBH) at Entering Dry Bulb ( F) Input TT SEN TT SEN TT SEN TT SEN KW 2 TT SEN TT SEN TT SEN TT SEN Capacities shown are gross ratings. For net capacities, determine the kw requirement of the supply air blower motor per the Supply Air Performance tables. Convert the following equation and deduct this equivalent heat from the gross cooling ratings: BLWER MTR HEAT (MBH) = BLWER MTR kw X Power input includes the compressors and condenser fan motors. Unitary Products Group 7
8 TABLE 5: CLING CAPACITIES - E*FB240/F*EH240 CFM Air n Evap. Coil WB F Power Input KW 2 85 F Air on Condenser Coil 1 95 F Air on Condenser Coil 1 Capacity (MBH) at entering Dry Bulb ( F) Capacity (MBH) at Entering Dry Bulb ( F) Power Input KW 2 TT SEN TT SEN TT SEN TT SEN TT SEN TT SEN TT SEN TT SEN Capacities shown are gross ratings. For net capacities, determine the kw requirement of the supply air blower motor per the Supply Air Performance tables. Convert the following equation and deduct this equivalent heat from the gross cooling ratings: BLWER MTR HEAT (MBH) = BLWER MTR kw X Power input includes the compressors and condenser fan motors. 8 Unitary Products Group
9 TABLE 6: CLING CAPACITIES -E*FB240/F*EH240 Air n Evap. Coil CFM WB F Power Input kw F Air on Condenser Coil F Air on Condenser Coil 1 Capacity (MBH) at Entering Dry Bulb ( F) 1 Capacity (MBH) at Entering Dry Bulb ( F) Power Input KW 2 TT SEN TT SEN TT SEN TT SEN TT SEN TT SEN TT SEN TT SEN Capacities shown are gross ratings. For net capacities, determine the kw requirement of the supply air blower motor per the Supply Air Performance tables. Convert the following equation and deduct this equivalent heat from the gross cooling ratings: BLWER MTR HEAT (MBH) = BLWER MTR kw X Power input includes the compressors and condenser fan motors. Unitary Products Group 9
10 TABLE 7: HEATING CAPACITIES - E*FB180/F*EH180 (HEAT PUMP NLY) Air on Evap.Coil CFM Temperature of utdoor Air, F DB DB F MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw TABLE 8: HEATING CAPACITIES -E*FB240/F*EH240 (HEAT PUMP NLY) Air on Evap. Coil CFM Temperature of utdoor Air, F DB DB F MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw 2 MBH 1 kw These ratings are based on an outdoor relative humidity of 72%. They include an allowance for defrost but not for the supply air blower motor heat. Refer to the BLWER PERFRMANCE tables for the kw rating of the supply air blower motor at the design conditions. Convert this kw rating to MBH using the following equation and add this equivalent heat to the heating capacity: BLWER MTR HEAT (MBH) = BLWR MTR kw X Use the following to determine the CP at any operating condition: CP = Total MBH (including Motor Blower Heat) / [Total kw (including Blower Motor kw) x 3.413] 2. Power input includes the compressors and condenser fan motors. 10 Unitary Products Group
11 TABLE 9: ELECTRICAL HEAT ACCESSRY HEATING CAPACITY (F*EH180) Heater Model 2HB0450 Heater Ratings Power Supply Heating Capacity 2 Nominal Defrost Supplemental Standby KW Volts KW MBH KW MBH KW MBH KW MBH TABLE 10: ELECTRICAL HEAT ACCESSRY HEATING CAPACITY (F*EH240) 1 Heater Model 2HB0450 & 2HC0450 Heater Ratings Power Supply Heating Capacity 2 Nominal Defrost Supplemental Standby KW Volts KW MBH KW MBH KW MBH KW MBH 1025 & & & & & & & & The 2HB model will go on the drive side of the unit and the 2HC model will go on the opposite side. This will allow access into each heater via the access panel. 2. Capacity ratings do not include the heat generated by the supply air blower motor. Unitary Products Group 11
12 TABLE 11: F*EH180 - SUPPLY AIR PERFRMANCE 1 CFM RPM ESP 2 BHP 3 kw 4 ESP 2 BHP 3 kw 4 ESP 2 BHP 3 kw 4 ESP 2 BHP 3 kw Unit resistance is based on a wet evaporator coil, clean filters, and unit tested in horizontal configuration. 2. Available static pressure in IWG to overcome the resistance of the duct system and any accessories added to the unit. Refer to the respective tables for the resistance of these accessories and for additional motor and drive data. 3. Motors can be selected to operate into their service factor because they are located in the moving airstream, upstream of any heating device. 4. kw is based on 6% drive losses and a motor efficiency of 83.1%. Calculate kw by using the following formula: kw = (746 x BHP x drive losses) / (1000 x motor efficiency) External Static Pressure Inches WC" RPM 850 RPM 800 RPM 750 RPM 700 RPM 650 RPM 600 RPM FIGURE 3 - F*EH180 - BLWER PERFRMANCE CURVE 1 1. When selecting Motor Horsepower choose Selection to the right of the curve to assure adequate HP for proper Air Delivery. Horsepower rating values on airflow chart are approximate. To ensure correct BHP, please refer to chart provided in Table 11, FEH180 - Supply Air Performance. 12 Unitary Products Group
13 TABLE 12: F*EH240 - SUPPLY AIR PERFRMANCE 1 RPM CFM ESP 2 BHP 3 kw 4 ESP 2 BHP 3 kw 4 ESP 2 BHP 3 kw 4 ESP 2 BHP 3 kw 4 ESP 2 BHP 3 kw Unit resistance is based on a wet evaporator coil, clean filters, and unit tested in horizontal configuration. 2. Available static pressure in IWG to overcome the resistance of the duct system and any accessories added to the unit. 3. Motors can be selected to operate into their service factor because they are located in the moving airstream, upstream of any heating device. 4. kw is based on 6% drive losses and a motor efficiency of 83.1%. Calculate kw by using the following formula: kw= (746 x BHP x drive losses)/(1000 x motor efficiency) External Static Pressure Inches WC" RPM 950RPM 900RPM 5 HP 850RPM 800RPM 4 HP 750RPM 700RPM 3 HP 650RPM 600RPM 2 HP Cubic Feet Per Minute (CFM) FIGURE 4 - F*EH240 - BLWER PERFRMANCE CURVE 1 1. When selecting Motor Horsepower choose Selection to the right of the curve to assure adequate HP for proper Air Delivery. Horsepower rating values on airflowchart are approximate. To ensure correct BHP, please refer to chart provided in Table 12, FAHP240 - Supply Air Performance, Unitary Products Group 13
14 TABLE 13: PHYSICAL DATA - UTDR UNIT DESCRIPTIN EFB180 UNIT MDEL EFB240 Compressor 1 Rating - (Qty) Tons (2) 7-1/2 (2) 10 Quantity 2 2 Fans Blades/Pitch ( ) 3/32 3/36 Nominal CFM Fan Motors 2 HP 1 1 RPM Rows Deep X Rows High 2 X 40 2 X 40 Finned Length - inches Coil Face Area - square feet Tube(Copper) D - inches 3/8 3/8 Fins(Aluminum) per inch Refrigerant - 22 (lbs - ozs) Holding Charge (sys1/sys2) 3 perating Charge (sys1/sys2) / / / / 19-0 Unit Weight (lbs) Shipping perating These compressors are fully hermetic. 2. The ball bearing, 48 frame, single phase condenser fan motors have internal protection and are directly connected to the condenser fans. Motor rotation is counter-clockwise when viewing the lead end, which is opposite the shaft end. 3. The amount of charge in the unit as shipped from the factory. 4. Total operating charge for the condensing unit, matching indoor unit, and 25 feet of interconnecting pipe. 14 Unitary Products Group
15 TABLE 14: PHYSICAL DATA - INDR UNIT DESCRIPTIN F1EH180 UNIT MDEL F1EH240 Rows Deep X Rows High 3 X 32 3 X 32 Finned Length - inches Coil Face Area - square feet Tube (Copper) D - inches 3/8 3/8 Fins (Aluminum) per inch Centrifugal Blower (Forward Curve) - Qty Diameter X Width - inches 18 X X HP 3 - Blower Motor RPM Quantity per unit 6 8 Filters (Throwaway) Size (in) 20 X 20 X 1 20 X 22 X 1 Total Face Area - square feet Unit Weight (lbs) Shipping perating Motor & Drive 5 HP kw kw Electric Heat 30 kw Accessory perating Weight (lbs.) 40 kw kw Supply Air Plenum Return Air Grille Base Refer to Blower Motor and Drive Data table for more information TABLE 15: PHYSICAL DATA - HEATING UNIT Description Nominal Heater Capacity 10 KW 20 KW 30 KW 50 KW % Nickel 59.2 % Chromium 16.0 Heater Elements Coil ID - inches 9/32 Watt Density - watts/sq. in Rows Deep Face Area - square feet 3.0 Unitary Products Group 15
16 TABLE 16: BLWER MTR AND DRIVE DATA Blower Motor Data 1 Drive Data Unit Model HP Model Number 2 Frame Size Voltage (3Phase -60Hz) Model Number Blower RPM Range Adjustable Motor Pulley Pitch Dia. (in.) Bore (in.) Fixed Blower Pulley Pitch Dia. (in.) Bore (in.) Qty. Belts 3 Pitch Length (in.) FEH /230/ / A57 FEH LR LR /460 1LD / / A55 (2) 1. All motors are 1750 RPM and have a 1.15 service factor (motors can operate to the limit of their service factor). 2. Three-phase motors will always be wired for a 460 volt power supply. Refer to the wiring diagram inside the motor terminal box when motor leads have to be reconnected for a 208 or 230 volt power supply. 3. Two matched belts. TABLE 17: ELECTRICAL DATA - UTDR UNIT Designation Compressors utdoor Fan Motors Minimum Minimum Maximum Model System 1 System 2 System1 System2 Circuit Fuse Disconnect Number Power Power Supply Supply FLA FLA Ampacity Size 1 RLA LRA RLA LRA Qty Qty (Ea.) (Ea.) Amps EFB180A25 208/ / EFB180A EFB240A25 208/ / EFB240A Maximum fuse or maximum circuit breaker (HACR type per NEC). 2. Based on three, 75 C insulated copper conductors in conduit and ambient of 30 C. TABLE 18: ELECTRICAL RATINGS INDR UNIT - HEAT PUMP NLY Blower Motor HP Power Supply FLA Maximum fuse or maximum circuit breaker (HACR type per NEC). Minimum Circuit Ampacity FEH180A33 Maximum Fuse Size 1 Minimum Disconnect Amps FEH240A Unitary Products Group
17 TABLE 19: ELECTRICAL RATINGS INDR UNIT - HEAT PUMP WITH ELECTRIC HEAT 1 Blower Motor HP 3 5 Nominal Heater kw 10 KW 20 KW 30 KW 50 KW 20 KW 30 KW 40 KW 50 KW Power Supply Heater FLA FEH180A33 Minimum Circuit Ampacity Maximum Fuse Size 2 Minimum Disconnect Amps FEH240A Unit with an electric heat accessory will always be wired for a single power supply. 2. Maximum fuse or maximum circuit breaker (HACR type per NEC). Unitary Products Group 17
18 EXTERNAL PRESSURE GUAGE FITTINGS AIR UT AIR UT AIR IN C D C D A 44-9/32 A B 39-7/8 B CMPRESSR AND FAN MTR ACCESS All dimensions are in inches. They are subject to change without notice. Certified Dimensions will be provided upon request. 76-7/8 APPRXIMATE CENTER F GRAVITY BACK (CIL END) B 76-7/8 A 39-7/8 FIGURE 5 - UNIT DIMENSINS - FEH180 & 240 FRNT NTE: All dimensions are in inches. They are subject to change without notice. Certified dimensions will be provided upon request. TABLE 20: UNIT CNNECTINS Connection Entry Connection Size 15 Ton 20 Ton Suction Line A 1-1/8 ID 1-3/8 ID TABLE 22: CLEARANCES verhead (Top) (Piping and Access Panels) 30 Left Side 24 Right Side 24 Rear 24 Liquid Line B 5/8 ID 5/8 ID Bottom 2 0 Power Wiring C 2-1/8 K 2-1/8K Control Wiring D 7/8 K 7/8 K 1. Units must be installed outdoors. verhanging structures or shrubs should not obstruct condenser air discharge. 2. Adequate snow clearance must be provided if winter operation is expected. TABLE 21: CENTER F GRAVITY Unit A Dim. (in.) B 15 Ton Ton Unitary Products Group
19 * ) 6 1 ) ) H H = C A A J TABLE 23: MINIMUM CLEARANCES * ) 14, ) / - * Side with RETURN AIR opening 24" Side with SUPPLY AIR opening 24" 1 Side with PIPING CNNECTINS 61" 2 ) Side opposite PIPING CNNECTINS 26" ) 14, ) / - ) ) ) 2 4 ) ) ) J A H = J A ) EH, EI? D = H C A ) H H = C A A J I A H J = E > M A H F I EJ E I = H A J H A? > A? = K I A J D A > M A H J H I D J > A K J K F I E@ M FIGURE 6 - UNIT DIMENSINS - FEH180 & 240 Side with access for both Power & Control Wiring 26 3 Bottom verall dimension of the unit will vary if an electric heater, a supply air plenum or a base is used. 2. This dimension is required for removal of the coil. nly 26 is required for normal service. 3. If the coil has to be removed, this dimension is required to loosen screws that secure the coil to the unit frame. This dimension will also be required for blower motor access if the piping connections are made on the opposite side of the unit. 4. Allow enough clearance to trap the condensate drain line. FIGURE 7 - UNIT DIMENSINS - FEH180 Unitary Products Group 19
20 20-3/4 AIR UT 7/8 KNCKUTS FR PWER AND CNTRL WIRING ALL DIMENSINS ARE IN INCHES. THEY ARE SUBJECT T CHANGE WITHUT NTICE. CERTIFIED DIMENSINS WILL BE PRVIDED UPN REQUEST. 16 AIR UT 5/8 18 5/ /8 2-7/ /2 26-1/8 12-7/16 59 { LESS BTTM PANEL 8-1/2 AIR IN 5-11/16 Ø 2" 29-1/2 2-5/16 Ø 1-3/8" 4 AIR IN 9-1/2 8-1/2 2-7/8 2-7/8 EVAPRATR CIL SECTIN 89-1/ /8 2-7/8 5/8 PANEL Ø 1-3/8" 29-1/2 5/8 BTTM PANEL CLEARANCES 24" on one side for piping connection and access to blower motor. 1" on the opposite side of the unit. 1" on the rear of the unit. ACCESSRIES Electric Heaters - Add 14-1/4" to unit height when using 10, 20, or 30 kw heater. Plenum - Add 24-5/8" to overall unit height when used. Base - Add 23-3/8" to overall unit height when used. FIGURE 8 - UNIT DIMENSINS - FEH Unitary Products Group
21 1 19-7/8 19-1/ /8 1-3/4 2-1/2 55-3/4 60-3/4 1-1/8 31 FIGURE 9 - SUPPLY AIR PLENUM FEH /2 KNCKUT FR PWER WIRING WHEN ELECTRIC HEATER IS USED 19-1/ /2 1-1/2 KBC180 - KNCKUTS FR PWER & CNTRL WIRING FIGURE 10 - KNCKUTS FR PWER & CNTRL WIRING FEH180 FIGURE 11 - SUPPLY AIR PLENUM FEH240 Unitary Products Group 21
22 C 3/4 1 D HEATER ELEMENT CHAMBER WIRING HARNESS LCATIN This opening in the bottom of the heater control box is used for the wiring harness that connects the heater accessory to the basic unit. It is provided with a squeeze connector for securing the wiring harness, and its location corresponds to the location of the 1-23/32 inch knockout in the top panel of the basic unit. A L 1/2 H E B K G CNTRL BX ACCESS PANEL F ACCESS PENING FR PWER SUPPLY WIRING M 10KW THRU 30KW - Add a 1-1/4 inch conduit fitting to the 1-23/32 inch hole for wire sizes up through #1 AWG. Remove the knockout ring and add a 1-1/2 inch conduit fitting to the 1-31/32 inch hole for wire sizes up through #0 AWG. 50 KW - Add a 1-1/4 inch conduit fitting to the 1-23/32 inch hole for wire sizes up through #1\ AWG. Remove the knockout ring and add a two-inches conduit fitting to the 2-1/2" hole for wire sizes up through #000 AWG. Used on FEH180 only. NTE: n FEH 240 a 2HB and 2HC Heater will be required. (FEH 240 has a 2 outlet supply air plenum.) HEATER MDEL NM. HEATER DIMENSINS (INCHES) kw A B C D E F G H K L M 2HB/2HC , HB/2HC , /4 25-1/4 14-1/ /2 5-1/2 1-1/2 1-1/2 22-1/4 19-1/4 2HB , HB , /8 26-3/8 21-3/4 2-3/8 5-1/4 3/4 6-3/4 2-1/4 2-1/2 22-1/4 19-1/4 FIGURE 12 - ELECTRIC HEAT FEH180 & /4 31 5/8 FIGURE 13 - RETURN AIR GRILLE FEH180 FIGURE 15 - RETURN AIR GRILLE FEH240 BASE /4 31-5/8 FIGURE 14 - BASE ACCESSRY FEH180 FIGURE 16 - BASE SECTIN FEH Unitary Products Group
23 SUSPENSIN CHANNEL HANGER RDS (FIELD SUPPLIED) 55" C ELECTRIC HEATER ACCESSRY (40 Lb.) 5" A 58-11/16" 3 BLWER SECTIN D 1-1/2 CIL SECTIN B SUPPLY AIR PLENUM ACCESSRY (100 Lb.) FIGURE 17 - SUSPENSIN KIT FEH180 TABLE 24: BASIC UNIT SUSPENSIN WEIGHT (LBS.) FR FEH180 SUSPENSIN PINT W/3 HP W/ HEATER ACCESSRY W/ PLENUM ACCESSRY W/ HEATER & PLENUM ACCES- SRY A B C D TTAL WEIGHT Unitary Products Group 23
24 55" D 43-3/4" ELECTRIC HEAT ACCESS (40lbs. each) 5" A E 43-3/4" 3 B F C BLWER SECTIN EVAP. CIL SECTIN HEATING CIL HANGER RDS (FIELD SUPPLIED) FIGURE 18 - SUSPENSIN KIT FEH240 SUSPENSIN CHANNEL TABLE 25: BASIC UNIT SUSPENSIN WEIGHT FR FEH240 (LBS) SUSPENSIN PINT W/ 5HP MTR A 142 B 132 C 152 D 162 E 127 F 127 TTAL WEIGHT 847 Subject to change without notice. Printed in the U.S.A D-1102 Copyright by Unitary Products Group All rights reserved. Supersedes: C-0602 Unitary 5005 Norman Products York K Group Drive 73069
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