Design Features Dimensional Data - WaterFurnace

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WaterFurnace SP1557 03/09 Premier Split Specification Catalog Design Features Dimensional Data Physical Data Performance Data Engineering Guide Specifications Geothermal Split Units • 1-1/2 thru 5 Tons

Transcript of Design Features Dimensional Data - WaterFurnace

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SP1557 03/09

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Design Features

Dimensional Data

Physical Data

Performance Data

Engineering Guide Specifications

Geothermal Split Units • 1-1/2thru5Tons

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

WaterFurnace Premier Splits are designed for indoor installations, and are connected to an indoor air handler (or fossil fuel furnace) via refrigerant lines and control wiring. Easily accessible controls and connections for refrigerant piping and water piping make this unit simple to install and service. Units are available in five sizes (1-1/2 through 5 tons) for use in a wide variety of ap-plications. Like the Premier packaged units, Premier split cabinets are fabricated with heavy gauge metal and are coated with durable polyester powder coat paint for long lasting beauty and protection. And because there is no outdoor fan like ordinary air conditioners or heat pumps, the unit is “whisper quiet”. All units feature Copeland Scroll compressors for the ultimate in reliable, efficient operation. The Premier split will provide exceptional performance and comfort for many years. Since its introduction, the WaterFurnace Premier family of products has earned and maintained a leadership position in the industry with an exceptional reputation for quality, efficiency, and reliable performance.

PREMIER Split Series units are performance-certified to ARI ISO 13256-1 standards, are ETL safety listed, and are Ener-gyStar® qualified.

As a leader in the industry, WaterFurnace is dedicated to innovation, quality and customer satisfaction. In fact, every unit built is exposed to a wide range of quality control procedures throughout the assembly process and is then subjected to a rigorous battery of computerized run tests to certify that it meets or exceeds performance standards for efficiency and safety, and will perform flawlessly at startup. As further affirmation of our quality standards, each unit carries our exclu-sive Quality Assurance emblem, signed by the final test technician.

WaterFurnace International’s corporate headquarters and manufacturing facility is located in Fort Wayne, IN. A scenic three-acre pond located in front of the building serves as our geothermal heating and cooling source to comfort-condition our 110,000 square feet of manufacturing and office space. As a pioneer, and now a leader in the industry, the team of WaterFurnace engineers, customer support staff and skilled assembly technicians is dedicated to providing the finest comfort systems available.

By choosing or specifying WaterFurnace PREMIER Series products, you can be assured that your customer is investing in an exceptional comfort system and peace of mind for many years to come.

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Table of Contents

ARI/ISO Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4

Model Nomenclature . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .4

Design Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .5

Physical Dimensions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .6

Physical Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .6

Electrical Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7

Operating Limits . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7

Matching Air Handlers . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .7

Reference Calculations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .8

Legend and Notes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .8

Performance Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9-13

Wiring Schematic . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .14

Engineering Guide Specifications. . . . . . . . . . . . . . . . . . . . . . . . . . .15

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

ARI/ISO Data

Model Nomenclature

FamilyP = Premier

Model TypeD = Split System

Sound KitA = NoneB = Blanket

Unit Capacity019 MBTUH022 MBTUH034 MBTUH046 MBTUH056 MBTUH

Coax OptionsC = CopperN = Cupronickel

Voltage1 = 208-230/60/1

P D034 1 1 C A

Hot Water Options0 = None1 = Hot Water Generation with Factory

Installed Pump (022-056 Only)

ARI/ASHRAE/ISO 13256-1 Performance Ratings

ARI/ASHRAE/ISO 13256-1English (IP) Units

Notes: Cooling capacities based upon 80.6°F DB, 66.2°F WB entering air temperature. Heating capacities based upon 68°F DB, 59°F WB entering air temperature. All ratings based upon operation at lower voltage of dual voltage rated models.

Rev. 08/04/08

ModelLiquidFlow(gpm)

Air Flow(cfm)

GroundWaterHeatPump GroundLoopHeatPumpCooling59°F Heating50°F Cooling77°F Heating32°F

Capacity Btuh

EER Btuh/W

Capacity Btuh COP Capacity

BtuhEER

Btuh/W Capacity Btuh COP

P019D 5.0 650 21,700 24.2 17,600 4.7 19,900 18.4 14,000 4.1P022D 6.0 700 23,800 23.4 20,200 4.6 22,500 19.3 15,400 4.0P034D 9.0 1200 36,700 20.0 31,400 4.5 34,500 17.3 23,800 3.9P046D 12.0 1600 47,000 17.8 43,600 4.3 44,100 16.6 33,200 3.7 P056D 14.0 1800 55,100 16.9 56,300 4.2 53,100 15.2 42,600 3.7

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Application Flexibility

• Safe, efficient operation in a wide range of liquid temper-atures (25° F to 110° F) and flow rates (as low as 1.5 GPM/ton in open loop applications when EWT > 50°F).

• Corner-located electrical box for field wiring from two sides.

• Loop pump power block for easy wiring.

Operating Efficiencies

• ARI Standard 13256-1 ratings for heating COPs, cool-ing EERs and low water flow requirements.

• Optional desuperheater with internal pump generates hot water at considerable savings while improving over-all system efficiency.

• High-stability expansion valve delivers optimum refriger-ant flow over a wide range of conditions and provides bi-directional operation without troublesome check valves.

• Efficient scroll compressors operate quietly. • Oversized coaxial tube water-to-refrigerant heat ex-

changer operates at low liquid pressure drops. Convo-luted copper (or optional cupronickel) water tube func-tions efficiently at low-flow rates and provides increased durability.

Service Advantages

• Removable panels(three) provide quick access to all internal components.

• Easily accessible thermal expansion valve. • Brass, swivel-type water connections for quick connec-

tion, and elimination of wrenches and sealants during installation.

• Designed for front-access in tight applications.• High- and low-pressure service ports in refrigerant cir-

cuit.Optional DesuperheaterConnection

Refrigerant Lines

InsulatedAccess Panels

FrontAccess Panel

Insulated CoaxialHeat Exchanger

InsulatedAccess Panels

BrassService Valves

Thermal Expansion Valve

Liquid LineFilter Dryer

Brass SwivelWater Connections

MoldedHandle

Factory Quality

• Heavy-gauge steel cabinets are finshed with durable powder coat paint for long lasting beauty and service.

• All refrigerant brazing is performed in a nitrogen atmo-sphere.

• All units are deep evacuated to less than 150 microns prior to refrigerant charging.

• All joints are helium leak-tested to insure annual leak rate of less than 1/4 ounce.

• Coaxial heat exchanger, refrigerant suction lines, de-superheater coil, and all water pipes are fully insulated to reduce condensation problems in low temperature operation.

• Noise reduction features: isolation mounted compres-sors; insulated cabinet using 1/2-inch coated glass fiber.

• Safety features include high- and low-pressure refriger-ant controls to protect the compressor; hot water high-limit desuperheater pump shutdown.

Options & Accessories

• Optional desuperheater with internally mounted pump and water heater plumbing connector.

• Optional cupronickel coaxial heat exchanger.• Electronic auto-changeover thermostat with 2-stage

heat/1-stage cool and indicator LEDs.• Closed loop flow center.• Hose kits.• Additional accessory relay.• Sound blanket for compressor.

Design Features

Copeland Scroll Compressors

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Physical Dimensions

A DHW Out

DHW In

Suction line

Liquid Line

Source Water Out Source Water In

B

C

DE

FG

Water Suction LiquidModel A C D E F G Fittings Line*

P019D 19.1 22.5 26.2 11.00 8.00 5.25 2.25 1” Swivel 5/8

P022D 19.1 22.5 26.2 11.00 8.00 5.25 2.25 1” Swivel 5/8 3/8

P034D 19.1 22.5 26.2 11.00 8.00 5.25 2.25 1” Swivel 3/4 3/8

P046D 21.1 25.5 31.2 12.00 9.00 5.25 2.25 1” Swivel 7/8 3/8

P056D 21.1 25.5 31.2 12.00 9.00 5.25 2.25 1” Swivel

Line*

7/8 3/8

3/8

B

Dimensional Data

Notes: * Line set connections are braze type. All Dimensions are in inches.

Physical DataModel P019D P022D P034D P046D P056D

Compressor[1each] ScrollFactoryChargeR22,oz[kg] 51 [1.45] 63 [1.79] 77 [2.18] 91 [2.58] 141 [3.99]LiquidLineConnection-in[mm] 3/8” [9.53] 3/8”[9.53] 3/8” [9.53] 3/8” [9.53] 3/8” [9.53]SuctionLineConnection-in[mm] 5/8” [15.88] 5/8” [15.88] 3/4” [19.05] 3/4” [19.05] 7/8” [22.23]WaterConnectionsSize-Swivel-in[mm] 1” [25.4] 1” [25.4] 1” [25.4] 1” [25.4] 1” [25.4]HWGConnectionSize-Swivel-in[mm] 1” [25.4] 1” [25.4] 1” [25.4] 1” [25.4] 1” [25.4]Coax&PipingWaterVolume-gal[l] 0.34 [1.29] 0.37 [1.4] 0.59 [2.7] 0.99 [3.8] 1.35 [5.11]Weight-Packaged,lb[kg] 103 [46.7] 160 [72.6] 204 [92.5] 210 [95.3] 226 [102.5]

Rev. 04/4/05Notes: All units have TXV expansion devices. Line set connections are braze type.

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Electrical Data

Model RatedVoltage

VoltageMin./Max.

Compressor ExtPumpFLA

IntPumpFLA

TotalUnitFLA

Min.CircuitAmp.

Max.Fuse/HACRMCC RLA LRA

P019D 208-230/60/1 197/254 14.0 9.0 41.0 5.4 0.4 14.8 17.0 25P022D 208-230/60/1 197/254 15.0 9.6 44.9 5.4 0.4 15.4 17.8 25P034D 208-230/60/1 197/254 21.0 13.5 72.5 5.4 0.4 19.3 22.6 35P046D 208-230/60/1 197/254 28.0 17.9 104.0 5.4 0.4 23.7 28.2 45P056D 208-230/60/1 197/254 31.0 19.9 137.0 5.4 0.4 25.7 30.6 50

Rev. 4/4/05Notes: Always refer to unit nameplate data prior to installation. HACR circuit breaker in United States only. All fuses are class RK-5.

Cooling Heating(°F) (°C) (°F) (°C)

Air LimitsMin.AmbientAir 55 12.8 45 7.2

RatedAmbientAir 80 26.7 70 21.1

Max.AmbientAir 95 35.0 80 26.7

Min. Entering Air 60 15.6 50 10.0

RatedEnteringAirdb/wb 80.6/66.2 27/19 68 20.0

Max.EnteringAirdb/wb 95/100 35/37.7 80 26.7

Water LimitsMin.EnteringWater 50 10.0 25 -3.9

NormalEnteringWater 50-110 10-43.3 30-70 -1.1

Max.EnteringWater 110 43.3 90 32.2

Operating Limits

PremierSplit Model

Matching VariableSpeed Air Handler*

Matching"A" Coil*

MatchingTXV Kit*

P019D, P022D N1VSB1206A G2FD03617A 1TV0701A

P034D N1VSD2006A G2FD06024A 1TV0702A

P046D N1VSD2006A G2FD06024A 1TV0703A

P056D N1VSD2006A G2FD06024A 1TV0703A

Notes: *Matching equipment model numbers are York®

Matching Air Handlers

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

COOLING HEATINGEAT TC SC KW HR EAT HC KW HE

75/63 0.92 0.96 0.98 0.94 60 1.03 0.95 1.0680/67 1.00 1.00 1.00 1.00 70 1.00 1.00 1.0085/71 1.08 1.04 1.02 1.06 80 0.97 1.05 0.94

Entering Air Correction Factors

Reference Calculations

Legends and Notes

SCCFM x 1.08

SCTC

HEGPM x 500

HeatingCalculations: CoolingCalculations:

LWT = EWT -

LAT = EAT +

TH = HC + HW

LWT = EWT +

LAT (DB) = EAT (DB) -

LC = TC - SC

S/T =

HCCFM x 1.08

HRGPM x 500

CFM = airflow, cubic feet/minuteEWT = entering water temperature, FahrenheitGPM = water flow in gallons/minuteWPD = water pressure drop, PSI and feet of waterEAT = entering air temperature, Fahrenheit (dry bulb/wet bulb)HC = air heating capacity, MBTUHTC = total cooling capacity, MBTUHSC = sensible cooling capacity, MBTUHkW = total power unit input, kilowattsHR = total heat of rejection, MBTUH

HE = total heat of extraction, MBTUHHWC = desuperheater capacity, MBTUHEER = Energy Efficient Ratio = BTU output/Watt inputCOP = Coefficient of Performance = BTU output/BTU inputLWT = leaving water temperature, °FLAT = leaving air temperature, °FTH = total heating capacity, MBTUHLC = latent cooling capacity, MBTUHS/T = sensible to total cooling ratio

Notes: Desuperheater capacity based on 0.4 GPM flow per nominal unit ton at 90°F entering hot water temperature. Capaity data on pages 9-13 do not include water pumping watts and are based upon 15% (by volume) methanol antifreeze solution. Interpolation between EWT, GPM and CFM data is permissible. Extrapolation for heating data down to 25°F is permissible. Catalog illustrations cover the general appearance of products at time of publication. We reserve the right to make changes in design and construction at any time without notice.

ABBREVIATIONS AND DEFINITIONS:

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

P019D

Rev. 04/04/05Notes: Multiple flow rates (for EWT) are shown in tables. The lowest flow rate shown is used for geothermal open loop/ well water sys-tems with a minimum 50°F. The second flow rate shown is the minimum geothermal closed loop flow rate. The third flow rate shown is optimum for geothermal closed loop and the suggested flow rate for boiler tower applications.

EWT°F GPM

WPD HEATING-EAT70°F COOLING-EAT80/67°F

PSI FT AirflowCFM HC kW HE LAT COP HWC Airflow

CFM TC SC kW HR EER HWC

30

3.0 1.0 2.3 650 13.0 1.01 9.5 82.0 3.75 1.74.0 1.7 4.0 650 13.3 1.02 9.9 82.3 3.85 1.75.0 2.9 6.7 650 13.7 1.03 10.2 82.7 3.91 1.8

40

3.0 1.0 2.3 650 15.1 1.05 11.5 84.0 4.19 2.04.0 1.7 3.9 650 15.5 1.06 11.9 84.3 4.29 2.15.0 2.9 6.6 650 15.9 1.07 12.3 84.8 4.36 2.1

50

3.0 1.0 2.3 650 17.1 1.09 13.4 85.9 4.62 2.3 650 22.5 16.0 0.91 25.6 24.7 1.04.0 1.7 3.9 650 17.6 1.09 13.9 86.3 4.73 2.4 650 22.6 16.0 0.87 25.6 26.1 1.05.0 2.8 6.5 650 18.1 1.11 14.4 86.8 4.81 2.4 650 22.7 15.9 0.84 25.6 27.0 1.0

60

3.0 1.0 2.2 650 19.7 1.14 15.9 88.3 5.09 2.6 650 21.8 15.9 1.0 25.2 21.9 1.64.0 1.7 3.8 650 20.4 1.14 16.4 88.8 5.21 2.7 650 22.0 15.9 1.0 25.2 23.1 1.65.0 2.8 6.4 650 20.9 1.16 17.0 89.3 5.29 2.8 650 22.0 15.9 0.9 25.3 23.9 1.6

70

3.0 0.9 2.1 650 22.3 1.18 18.3 90.7 5.56 2.9 650 21.1 15.8 1.10 24.8 19.2 2.14.0 1.6 3.7 650 23.1 1.19 19.0 91.4 5.69 3.0 650 21.3 15.8 1.05 24.8 20.2 2.15.0 2.7 6.2 650 23.7 1.20 19.6 91.9 5.77 3.1 650 21.4 15.8 1.03 25.0 20.9 2.1

80

3.0 0.9 2.1 650 24.9 1.24 20.7 93.1 5.90 3.2 650 19.9 15.0 1.2 24.1 16.5 2.94.0 1.6 3.6 650 25.8 1.25 21.5 93.9 6.03 3.4 650 20.1 15.0 1.2 24.1 17.4 2.85.0 2.6 6.0 650 26.4 1.27 22.1 94.5 6.11 3.4 650 20.3 15.1 1.2 24.3 17.9 2.7

90

3.0 0.9 2.1 650 27.5 1.30 23.1 95.5 6.23 3.5 650 18.7 14.2 1.35 23.3 13.8 3.64.0 1.5 3.5 650 28.5 1.31 24.0 96.4 6.36 3.7 650 18.9 14.2 1.30 23.4 14.6 3.45.0 2.5 5.8 650 29.2 1.33 24.7 97.0 6.44 3.7 650 19.2 14.4 1.28 23.6 15.0 3.2

100

3.0 0.9 2.0 650 17.5 13.7 1.5 22.8 11.6 3.94.0 1.5 3.3 650 17.8 13.7 1.5 22.9 12.3 3.85.0 2.4 5.5 650 18.1 13.9 1.5 23.1 12.6 3.7

110

3.0 0.8 1.8 650 16.4 13.2 1.74 22.3 9.4 4.24.0 1.4 3.2 650 16.7 13.2 1.68 22.4 9.9 4.25.0 2.3 5.3 650 17.0 13.4 1.67 22.7 10.2 4.2

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PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Rev. 04/04/05

EWT°F GPM

WPD HEATING-EAT70°F COOLING-EAT80/67°F

PSI FT AirflowCFM HC kW HE LAT COP HWC Airflow

CFM TC SC kW HR EER HWC

30

3.0 1.5 3.5 700 14.0 1.11 10.2 84.8 3.70 1.8

4.5 3.2 7.4 700 15.0 1.14 11.1 85.9 3.85 1.9

6.0 6.0 13.9 700 15.5 1.15 11.6 86.4 3.95 1.9

40

3.0 1.5 3.3 700 16.4 1.16 12.5 87.4 4.13 2.2

4.5 3.2 7.3 700 17.6 1.19 13.5 88.6 4.32 2.2

6.0 5.9 13.6 700 18.2 1.20 14.1 89.2 4.43 2.3

50

3.0 1.4 3.2 700 18.8 1.21 14.7 89.9 4.57 2.5 700 23.6 16.4 1.01 27.1 23.4 2.04.5 3.1 7.2 700 20.2 1.24 16.0 91.4 4.79 2.6 700 24.1 16.8 0.95 27.4 25.4 1.86.0 5.8 13.4 700 20.8 1.25 16.6 92.0 4.90 2.6 700 24.6 17.1 0.91 27.7 27.1 1.6

60

3.0 1.4 3.1 700 21.7 1.28 17.3 92.9 4.95 2.6 700 23.3 16.4 1.1 27.1 21.3 2.64.5 3.1 7.0 700 23.3 1.30 18.8 94.6 5.21 2.9 700 23.8 16.7 1.0 27.4 23.0 2.46.0 5.7 13.2 700 23.9 1.31 19.4 95.3 5.32 3.0 700 24.3 17.0 1.0 27.7 24.4 2.1

70

3.0 1.3 3.0 700 24.5 1.34 19.9 95.9 5.34 2.8 700 23.0 16.4 1.20 27.1 19.2 3.34.5 3.0 6.9 700 26.3 1.37 21.7 97.9 5.63 3.2 700 23.5 16.7 1.14 27.4 20.6 2.96.0 5.6 12.9 700 27.0 1.38 22.3 98.6 5.73 3.3 700 23.9 16.9 1.10 27.7 21.7 2.6

80

3.0 1.3 3.0 700 27.5 1.42 22.6 99.1 5.65 3.3 700 21.7 15.9 1.3 26.3 16.4 3.94.5 3.0 6.8 700 29.6 1.45 24.7 101.3 5.98 3.6 700 22.2 16.1 1.3 26.6 17.5 3.56.0 5.5 12.7 700 30.3 1.46 25.3 102.0 6.07 3.7 700 22.6 16.2 1.3 26.8 18.3 3.1

90

3.0 1.3 3.0 700 30.5 1.50 25.4 102.3 5.96 3.7 700 20.4 15.3 1.50 25.5 13.6 4.64.5 2.9 6.7 700 32.9 1.52 27.7 104.8 6.33 3.9 700 20.8 15.5 1.44 25.7 14.5 4.16.0 5.4 12.5 700 33.6 1.54 28.3 105.5 6.41 4.0 700 21.2 15.5 1.41 26.0 15.0 3.6

100

3.0 1.3 3.0 700 19.1 14.8 1.7 24.9 11.5 5.2

4.5 2.9 6.6 700 19.5 15.0 1.6 25.1 12.2 4.7

6.0 5.3 12.2 700 19.8 15.0 1.6 25.4 12.6 4.1

110

3.0 1.3 3.0 700 17.9 14.4 1.90 24.4 9.4 5.9

4.5 2.8 6.5 700 18.2 14.5 1.85 24.5 9.9 5.2

6.0 5.2 12.0 700 18.5 14.5 1.84 24.8 10.1 4.6

P022D

Notes: Multiple flow rates (for EWT) are shown in tables. The lowest flow rate shown is used for geothermal open loop/ well water sys-tems with a minimum 50°F. The second flow rate shown is the minimum geothermal closed loop flow rate. The third flow rate shown is optimum for geothermal closed loop and the suggested flow rate for boiler tower applications.

11

PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Rev. 04/04/05

EWT°F GPM

WPD HEATING-EAT70°F COOLING-EAT80/67°F

PSI FT AirflowCFM HC kW HE LAT COP HWC Airflow

CFM TC SC kW HR EER HWC

30

5.0 2.9 6.6 1200 22.5 1.80 16.3 89.9 3.65 3.5 7.0 4.6 10.7 1200 23.7 1.85 17.4 91.0 3.76 3.6 9.0 7.4 17.0 1200 24.4 1.86 18.0 91.6 3.85 3.6

40

5.0 2.8 6.5 1200 26.1 1.88 19.7 93.2 4.06 4.0 7.0 4.5 10.5 1200 27.5 1.92 20.9 94.4 4.18 4.1 9.0 7.2 16.7 1200 28.3 1.94 21.7 95.1 4.27 4.1

50

5.0 2.7 6.3 1200 29.7 1.95 23.0 96.4 4.46 4.4 1200 38.5 28.1 1.75 44.4 22.0 3.77.0 4.4 10.3 1200 31.3 2.00 24.5 97.8 4.59 4.6 1200 38.5 28.3 1.66 44.1 23.2 3.59.0 7.1 16.3 1200 32.3 2.02 25.4 98.6 4.69 4.6 1200 38.3 28.1 1.62 43.8 23.7 3.2

60

5.0 2.7 6.3 1200 34.0 2.03 27.0 100.1 4.89 4.9 1200 37.5 27.6 1.9 44.0 20.0 4.47.0 4.4 10.2 1200 35.8 2.08 28.7 101.8 5.04 5.0 1200 37.6 27.9 1.8 43.7 20.9 4.29.0 7.0 16.2 1200 36.9 2.10 29.8 102.8 5.14 5.1 1200 37.5 27.9 1.8 43.5 21.4 3.9

70

5.0 2.7 6.2 1200 38.2 2.11 31.0 103.9 5.31 5.4 1200 36.5 27.0 2.04 43.5 17.9 5.27.0 4.4 10.1 1200 40.3 2.15 32.9 105.7 5.48 5.5 1200 36.7 27.5 1.96 43.4 18.7 4.99.0 7.0 16.1 1200 41.6 2.18 34.1 106.9 5.59 5.6 1200 36.7 27.7 1.92 43.3 19.1 4.6

80

5.0 2.7 6.2 1200 43.0 2.21 35.5 108.2 5.70 5.8 1200 34.2 25.2 2.3 42.0 15.3 5.97.0 4.4 10.1 1200 45.3 2.25 37.6 110.2 5.88 6.0 1200 34.4 25.8 2.2 41.9 15.9 5.69.0 6.9 16.0 1200 46.8 2.29 39.0 111.6 5.98 6.1 1200 34.5 26.1 2.2 41.9 16.3 5.3

90

5.0 2.7 6.2 1200 47.9 2.31 40.0 112.5 6.08 6.2 1200 31.9 23.4 2.51 40.5 12.7 6.77.0 4.3 10.0 1200 50.3 2.35 42.3 114.7 6.27 6.4 1200 32.1 24.1 2.44 40.5 13.2 6.49.0 6.9 15.9 1200 52.1 2.39 43.9 116.2 6.38 6.5 1200 32.4 24.6 2.40 40.6 13.5 6.0

100

5.0 2.6 5.9 1200 29.9 22.4 2.8 39.6 10.8 7.57.0 4.2 9.7 1200 30.2 23.3 2.8 39.6 11.2 7.19.0 6.7 15.4 1200 30.5 23.9 2.7 39.8 11.4 6.7

110

5.0 2.5 5.7 1200 28.0 21.5 3.15 38.7 8.9 8.27.0 4.044 9.3 1200 28.3 22.5 3.08 38.8 9.2 7.89.0 6.43 14.9 1200 28.7 23.2 3.05 39.1 9.4 7.4

P034D

Notes: Multiple flow rates (for EWT) are shown in tables. The lowest flow rate shown is used for geothermal open loop/ well water sys-tems with a minimum 50°F. The second flow rate shown is the minimum geothermal closed loop flow rate. The third flow rate shown is optimum for geothermal closed loop and the suggested flow rate for boiler tower applications.

12

PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Rev. 04/04/05

EWT°F GPM

WPD HEATING-EAT70°F COOLING-EAT80/67°F

PSI FT AirflowCFM HC kW HE LAT COP HWC Airflow

CFM TC SC kW HR EER HWC

30

6.0 2.3 5.2 1600 32.1 2.66 23.0 99.7 3.53 4.19.0 4.6 10.7 1600 33.5 2.70 24.2 101.0 3.63 4.112.0 7.4 17.1 1600 33.6 2.73 24.2 101.1 3.60 4.2

40

6.0 2.2 5.1 1600 37.0 2.76 27.6 104.2 3.91 4.69.0 4.5 10.5 1600 38.7 2.81 29.1 105.8 4.02 4.712.0 7.3 16.8 1600 39.2 2.84 29.5 106.3 4.02 4.8

50

6.0 2.2 5.0 1600 41.9 2.86 32.1 108.8 4.29 5.1 1600 48.3 36.1 2.57 57.0 18.8 4.09.0 4.5 10.3 1600 43.9 2.91 33.9 110.6 4.41 5.3 1600 48.5 36.6 2.45 56.8 19.8 3.712.0 7.1 16.4 1600 44.8 2.96 34.7 111.4 4.44 5.4 1600 48.9 36.4 2.37 57.0 20.6 3.5

60

6.0 2.1 4.9 1600 47.5 3.00 37.3 114.0 4.63 5.6 1600 47.4 36.1 2.8 57.0 17.1 5.59.0 4.3 10.0 1600 49.8 3.07 39.4 116.2 4.75 5.9 1600 47.8 36.5 2.7 56.9 18.0 5.012.0 6.9 16.0 1600 51.4 3.12 40.7 117.6 4.81 6.0 1600 48.1 36.3 2.6 57.0 18.7 4.4

70

6.0 2.1 4.8 1600 53.2 3.14 42.4 119.2 4.96 6.0 1600 46.6 36.1 3.04 57.0 15.4 7.09.0 4.2 9.7 1600 55.8 3.22 44.8 121.7 5.08 6.5 1600 47.1 36.4 2.91 57.0 16.2 6.212.0 6.7 15.5 1600 58.0 3.28 46.8 123.7 5.19 6.6 1600 47.4 36.3 2.82 57.0 16.8 5.4

80

6.0 2.0 4.6 1600 59.3 3.31 48.0 124.9 5.23 6.7 1600 44.5 35.3 3.3 55.9 13.5 8.59.0 4.0 9.3 1600 62.3 3.40 50.7 127.7 5.35 7.1 1600 45.1 35.5 3.2 56.0 14.2 7.512.0 6.5 14.9 1600 65.5 3.47 53.6 130.6 5.51 7.3 1600 45.3 35.5 3.1 55.9 14.7 6.4

90

6.0 1.9 4.4 1600 65.4 3.48 53.5 130.6 5.50 7.3 1600 42.4 34.6 3.64 54.8 11.6 10.19.0 3.9 8.9 1600 68.8 3.58 56.6 133.7 5.62 7.7 1600 43.1 34.5 3.51 55.1 12.3 8.712.0 6.2 14.3 1600 72.9 3.66 60.4 137.5 5.83 7.9 1600 43.2 34.6 3.41 54.8 12.7 7.4

100

6.0 1.8 4.3 1600 40.1 33.3 4.0 53.9 10.1 11.69.0 3.8 8.7 1600 40.9 33.1 3.9 54.2 10.6 10.012.0 6.0 14.0 1600 41.0 33.3 3.8 53.9 11.0 8.4

110

6.0 1.8 4.2 1600 37.8 32.1 4.46 53.0 8.5 13.19.0 3.681 8.5 1600 38.7 31.8 4.31 53.4 9.0 11.3

12.0 5.89 13.6 1600 38.7 32.1 4.20 53.0 9.2 9.4

P046D

Notes: Multiple flow rates (for EWT) are shown in tables. The lowest flow rate shown is used for geothermal open loop/ well water sys-tems with a minimum 50°F. The second flow rate shown is the minimum geothermal closed loop flow rate. The third flow rate shown is optimum for geothermal closed loop and the suggested flow rate for boiler tower applications.

13

PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Rev. 04/04/05

EWT°F GPM

WPD HEATING-EAT70°F COOLING-EAT80/67°F

PSI FT AirflowCFM HC kW HE LAT COP HWC Airflow

CFM TC SC kW HR EER HWC

30

8.0 2.6 6.0 1800 42.1 3.63 29.7 109.0 3.40 4.111.0 4.8 11.1 1800 43.1 3.66 30.6 109.9 3.45 4.914.0 7.5 17.3 1800 44.4 3.68 31.9 111.2 3.54 5.0

40

8.0 2.6 5.9 1800 49.2 3.79 36.2 115.5 3.78 5.011.0 4.7 10.9 1800 50.5 3.83 37.4 116.7 3.85 5.514.0 7.4 17.0 1800 51.9 3.85 38.7 118.0 3.93 5.6

50

8.0 2.5 5.8 1800 56.2 3.96 42.7 122.0 4.16 5.9 1800 54.8 39.0 3.02 65.1 18.1 4.011.0 4.6 10.6 1800 57.8 4.00 44.1 123.5 4.24 6.1 1800 55.1 38.8 2.95 65.2 18.7 4.214.0 7.2 16.6 1800 59.3 4.02 45.6 124.9 4.32 6.2 1800 55.1 39.6 2.92 65.0 18.9 4.4

60

8.0 2.5 5.7 1800 64.5 4.18 50.2 129.7 4.50 6.0 1800 56.0 40.3 3.3 67.3 17.0 5.511.0 4.5 10.4 1800 66.4 4.22 52.0 131.5 4.59 6.7 1800 56.3 40.2 3.2 67.3 17.6 5.514.0 7.1 16.3 1800 68.0 4.26 53.5 133.0 4.67 6.8 1800 56.3 40.7 3.2 67.1 17.7 5.5

70

8.0 2.4 5.5 1800 72.8 4.40 57.7 137.4 4.85 6.0 1800 57.1 41.6 3.60 69.4 15.9 7.011.0 4.4 10.2 1800 75.1 4.45 59.9 139.5 4.94 7.3 1800 57.4 41.7 3.50 69.4 16.4 6.814.0 6.9 15.9 1800 76.7 4.49 61.4 141.0 5.01 7.4 1800 57.4 41.8 3.46 69.2 16.6 6.6

80

8.0 2.4 5.5 1800 81.8 4.69 65.8 145.7 5.10 7.1 1800 54.9 41.3 4.0 68.7 13.9 8.511.0 4.4 10.0 1800 84.6 4.74 68.4 148.3 5.21 7.9 1800 55.2 41.5 3.9 68.6 14.3 8.114.0 6.8 15.7 1800 86.1 4.79 69.8 149.8 5.26 8.0 1800 55.2 41.3 3.9 68.4 14.5 7.7

90

8.0 2.4 5.5 1800 90.8 4.97 73.9 154.1 5.35 8.1 1800 52.8 41.0 4.46 68.0 11.8 10.111.0 4.3 9.9 1800 94.0 5.04 76.8 157.1 5.47 8.4 1800 53.0 41.3 4.33 67.8 12.2 9.414.0 6.7 15.5 1800 95.6 5.09 78.2 158.5 5.50 8.6 1800 53.0 40.8 4.27 67.6 12.4 8.8

100

8.0 2.4 5.4 1800 50.1 39.8 5.0 67.1 10.2 11.611.0 4.2 9.7 1800 50.3 40.3 4.8 66.8 10.6 10.714.0 6.6 15.2 1800 50.3 39.5 4.8 66.5 10.7 9.9

110

8.0 2.3 5.3 1800 47.4 38.6 5.52 66.2 8.6 13.111.0 4.1 9.5 1800 47.5 39.2 5.35 65.8 8.9 12.114.0 6.5 15.0 1800 47.6 38.1 5.27 65.5 9.0 11.0

P056D

Notes: Multiple flow rates (for EWT) are shown in tables. The lowest flow rate shown is used for geothermal open loop/ well water sys-tems with a minimum 50°F. The second flow rate shown is the minimum geothermal closed loop flow rate. The third flow rate shown is optimum for geothermal closed loop and the suggested flow rate for boiler tower applications.

14

PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

24 VAC

Common C

R

Auxiliary Heat

Fan G

W2

Emergency Heat

W3

Air Handler andOptional

Auxiliary Heat

PS

C DA

Compressor

UnitPower Supply208-230/60/1

Cap

CC

T1

L1

T2

Tan

LoopPump

WhiteBlack

L2G

C

R

S

BlackRed

BlueF2

F2

NOTE 2

DHWPump

PinkBlue

BlueBlue

NOTE 1

F1 F1

HWL

Blue

DesuperHeater Option

Blue

Black Black

PB

2

1Red

Red

Red

Red

Common

Reversing Valve

Run Signal

Compressor

Fault Signal

TB

O

C

Y1

S

W1

L

X2

X1

R

17P535 A01COMPRESSOR

CONTROL MODULE

TESTPIN

HPHP

CCCG

LO

RC

LPLP

Y

HPHP

CCCG

LO

RC

LPLP

Y

CC

HP

GreenRed

Green

Red

Brown

Brown

Blk/Wht

Violet

Black

Black

YellowYellow

Orange

Orange

Pink

Green

RV

Black

24VAC

CS

LPBlue

Blue

CS

Black

Black

Current Switch

Factory low voltage wiring

LegendSwitch - High pressure

Switch - Low pressure

Relay coil

Field wire lug

Ground

Relay Contacts -N.O., N.C.

Polarized connector

Notes:Factory line voltage wiringField low voltage wiringField line voltage wiringOptional block

Quick connect terminal

Screw terminal -field connection

L1

132

P

1 - Blue DSH pump wire is supplied with desuperheater option but not connected at factory. To enable DSH pump for operation, Blue wires must be connected as shown.

2 - Residential units are supplied with loop-pump power-block.Attach loop-pump leads to power block.

Capacitor

CC -HP -LP -RV -TB -

Compressor contactorHigh pressure switchLow pressure switchReversing valve coilTerminal board

CCM - Compressor Control Module

APR- Auxillary Power RelayHWL- Hot Water Limit Switch DSH- Desuperheater Pump RelayCS - Current Switch

REV 08/08/08

97P621-13 8/8/08

Premier Split - 208-230/60/1

15

PREMIER SPLIT SYSTEM SPECIFICATION CATALOG

Engineering Guide SpecsGeneral

The geothermal heating/cooling units shall be reverse cycle Split system configuration designed for use with DX heating and cooling coils. Units shall be ARI/ISO Standard 13256-1 performance certified and listed by a nation-ally recognized safety-testing laboratory or agency, such as ETL Testing Laboratory. Each unit shall be computer run-tested at the factory. Each unit shall be mounted on a pallet and stretch-wrapped. The geothermal units shall be designed to operate with entering liquid temperatures between 25°F and 110°F.

Casing & Cabinet

The cabinet shall be fabricated from heavy-gauge steel and finished with corrosion-resistant powder coating. The interior shall be insulated with 1/2-inch thick, multi-density, coated glass fiber. Three compressor compartment access panels shall be removable. The internal component layout shall provide for service access from the front side for restricted installations.

Refrigerant Circuit

All units shall contain a sealed refrigerant circuit includ-ing a hermetic motor-compressor, thermostatic expansion valve, reversing valve, coaxial tube water-to-refrigerant heat exchanger, optional desuperheater coil, and service ports.

Compressors shall be high-efficiency compliant scroll designed for heat pump duty and mounted on rubber vi-bration isolators. Compressor motors shall be single-phase PSC with overload protection.

The coaxial water-to-refrigerant heat exchanger shall be designed for low water pressure drop and constructed of a convoluted copper (optional cupronickel) inner tube and a steel outer tube. The thermostatic expansion valve shall provide proper superheat over the entire liquid tem-perature range with minimal “hunting.”

The water-to-refrigerant heat exchanger, optional desuperheater coil and refrigerant suction lines shall be insulated to prevent condensation at low liquid tempera-tures.

Electrical

The control shall provide operational sequencing, high and low pressure switch monitoring, water limit switch and, lockout mode control, and hot water and loop pump control.

A terminal block with screw terminals will be provided for field control wiring. All units shall have knockouts for entrance of low and line voltage wiring.

Piping

Supply and return water connections (and optional desuperheater connections) shall be 1-inch FPT brass swivel fittings which provide a union and eliminate the need for pipe wrenches and sealants when making field connections. All water piping shall be insulated to prevent condensation at low liquid temperatures.

Options & AccessoriesDesuperheater

An optional heat reclaiming desuperheater coil of vented double-wall copper construction suitable for potable water shall be provided. The coil and hot water circulating pump shall be factory mounted inside the unit. A drain fit-ting for the DHW tank connection and a high temperature limit pump shut-off switch shall be provided.

Cupronickel Heat Exchanger

An optional CuNi coaxial heat exchanger shall be fac-tory installed in lieu of the standard copper construction.

Thermostat (field installed)

A multi-stage auto-changeover electronic digital ther-mostat shall be provided. The thermostat shall offer two heating and one cooling stages with precise temperature control. An OFF-HEAT-AUTO-COOL-EMERG system switch, OFF-AUTO fan switch, and indicating LEDs shall be provided. The thermostat shall read out in °F or °C. An optional remote outdoor sensor shall be available.

Earth Loop Flow Center (field installed)

A self-contained module shall provide all liquid flow, fill and connection requirements for ground source closed loop systems up to 20 GPM.

Accessory Relay (field installed)

An additional low-voltage accessory control relay shall be provided. This SPDT relay shall be capable of opera-tion with any thermostat signal (Y1, O, L). The relay shall be located on a factory-provided mount in the unit low-voltage control wiring compartment.

Product: Premier Split

Type: Geothermal Split Units

Size: 1.5 - 5 Ton

Document: Specification CatalogSP1557 03/09

Manufactured by

WaterFurnace International, Inc.

9000 Conservation Way

Fort Wayne, IN 46809

www.waterfurnace.com

WaterFurnace International, Inc., 9000 Conservation Way, Fort Wayne, IN 46809-9794. WaterFurnace has a policy of continual product research and development and reserves

the right to change design and specifications without notice. © 2009 WaterFurnace International Inc.