Carrier 48TCA04---A12 appendix Nom, Unbalanced 3-Phase Supply Voltage

Page 103

APPENDIX IV. ELECTRICAL DATA (cont.)

MCA/MOCP DETERMINATION NO C.O. OR UNPWRD C.O.

 

 

 

COMBUSTION

POWER

NO C.O. or UNPWRD C.O.

NO C.O. or UNPWRD C.O.

UNIT

NOM.

IFM

 

 

NO P.E.

 

 

w/ P.E. (pwrd fr/ unit)

 

FAN MOTOR

EXHAUST

 

 

 

 

 

V---Ph---Hz

TYPE

 

 

 

DISC. SIZE

 

 

 

DISC. SIZE

 

 

 

FLA

FLA

MCA

MOCP

 

 

MCA

 

MOCP

 

 

 

 

 

 

 

 

FLA

LRA

 

FLA

 

LRA

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

39.5

60

 

38

191

43.3

 

60

43

 

195

 

208/230---3---60

MED

0.48

3.8

41.8

60

 

41

228

45.6

 

60

45

 

232

48TC**08

 

HIGH

 

 

49.3

60

 

49

254

53.1

 

60

54

 

258

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

19.5

30

 

19

113

21.3

 

30

21

 

115

 

460---3---60

MED

0.25

1.8

20.3

30

 

20

132

22.1

 

30

22

 

134

 

 

HIGH

 

 

24.3

30

 

24

145

26.1

 

30

26

 

147

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

14.9

20

 

14

89

18.7

 

25

19

 

93

 

575---3---60

MED

0.24

3.8

15.3

20

 

15

104

19.1

 

25

19

 

108

 

 

HIGH

 

 

18.1

25

 

18

118

21.9

 

30

23

 

122

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

45.1

60

 

43

222

48.9

 

60

48

 

226

 

208/230---3---60

MED

0.48

3.8

45.1

60

 

43

233

48.9

 

60

48

 

237

48TC**09

 

HIGH

 

 

49.9

60

 

49

276

53.7

 

80

53

 

280

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

22.6

30

 

22

108

24.4

 

30

24

 

110

 

460---3---60

MED

0.25

1.8

22.6

30

 

22

114

24.4

 

30

24

 

116

 

 

HIGH

 

 

24.4

30

 

24

136

26.2

 

30

26

 

138

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

18.9

30

 

18

91

22.7

 

30

23

 

95

 

575---3---60

MED

0.24

3.8

18.5

30

 

18

95

22.3

 

30

22

 

99

 

 

HIGH

 

 

19.3

30

 

19

106

23.1

 

30

23

 

110

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

45.8

60

 

44

263

49.6

 

60

48

 

267

 

208/230---3---60

MED

0.48

3.8

50.6

60

 

50

306

54.4

 

80

54

 

310

48TC**12

 

HIGH

 

 

55.6

80

 

55

315

59.4

 

80

60

 

319

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

25.1

30

 

24

133

26.9

 

40

26

 

135

 

460---3---60

MED

0.25

1.8

26.9

40

 

26

155

28.7

 

45

28

 

157

 

 

HIGH

 

 

29.9

45

 

30

159

31.7

 

45

32

 

161

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

STD

 

 

18.5

30

 

18

95

22.3

 

30

22

 

99

 

575---3---60

MED

0.24

3.8

19.3

30

 

19

106

23.1

 

30

23

 

110

 

 

HIGH

 

 

22.1

30

 

22

120

25.9

 

30

26

 

124

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

48TC

1Fuse or breaker

LEGEND:

 

 

CO

---

Convenient outlet

DISC

---

Disconnect

FLA

---

Full load amps

IFM

---

Indoor fan motor

LRA

---

Locked rotor amps

MCA

---

Minimum circuit amps

MOCP

--- Maximum over current protection

PE

---

Power exhaust

UNPWRD CO

---

Unpowered convenient outlet

NOTES:

 

 

1.In compliance with NEC requirements for multimotor and combination load equipment (refer to NEC Articles 430 and 440), the overcurrent protective device for the unit shall be fuse or HACR breaker. Canadian units may be fuse or circuit breaker.

2.Unbalanced 3-Phase Supply Voltage

Never operate a motor where a phase imbalance in supply voltage is greater than 2%. Use the following formula to de- termine the percentage of voltage imbalance.

% Voltage Imbalance = 100 x

max voltage deviation from average voltage

 

average voltage

 

Example: Supply voltage is 230-3-60

AB = 224 v

BC = 231 v

AC = 226 v

(224 + 231 + 226)

681

Average Voltage =

 

=

 

3

3

=227

Determine maximum deviation from average voltage. (AB) 227 – 224 = 3 v

(BC) 231 – 227 = 4 v (AC) 227 – 226 = 1 v Maximum deviation is 4 v.

Determine percent of voltage imbalance.

 

4

% Voltage Imbalance

= 100 x

 

 

227

 

= 1.76%

 

This amount of phase imbalance is satisfactory as it is below the maximum allowable 2%.

IMPORTANT: If the supply voltage phase imbalance is more than 2%, contact your local electric utility company immediately.

103

Image 103
Contents Safety Considerations Table of ContentsWhat to do if you smell gas Unit Arrangement and AccessRoutine Maintenance GeneralSeasonal Maintenance Supply Fan Belt-Drive Supply FAN Blower SectionCooling Condenser Coil Maintenance and Cleaning RecommendationCondenser Coil One-Row Coil Periodic Clean Water RinseRoutine Cleaning of Coil Surfaces Remove Surface Loaded FibersEvaporator Coil Metering Devices Refrigerant System Pressure Access PortsCleaning the Evaporator Coil Evaporator CoilNo Charge To Use Cooling Charging ChartsPuronr R-410A Refrigerant Refrigerant ChargeSize Designation Nominal Tons Reference Cooling Charging ChartsCooling Charging Charts C08229 C08437 C08438 C08439 Problem Cause Remedy Cooling Service AnalysisCompressor Condenser-Fan AdjustmentTroubleshooting Cooling System Convenience OutletsUnit Connect Primary Transformer Smoke DetectorsSystem ControllerSmoke Detector Locations SensorFiop Smoke Detector Wiring and Response Completing Installation of Return Air Smoke SensorSensor and Controller Tests Sensor Alarm TestSensor Alarm Test Procedure Controller Alarm TestTo Configure the Dirty Sensor Test Operation Controller Alarm Test ProcedureDirty Controller Test Procedure Dirty Sensor Test ProcedureDetector Cleaning Troubleshooting Relief Device Protective DevicesGAS Heating System Compressor ProtectionLiquid Propane Supply Line Pressure Ranges Fuel Types and PressuresNatural Gas Supply Line Pressure Ranges Natural Gas Manifold Pressure RangesCombustion-Air Blower Flue Gas PassagewaysMain Burners Cleaning and AdjustmentCheck Unit Operation and Make Necessary Adjust- ments Burners and IgnitersBurner Ignition Limit SwitchLED Error Code Description Orifice ReplacementLED Indication Error Code Description Red LED-Status Orifice Sizes IGC ConnectionsCont. Altitude Compensation* A08-A12 Altitude Compensation* A04-A07LP Orifice Minimum heating entering air temperature Troubleshooting Heating SystemAltitude Compensation* A04-A06 Low NOx Units Problem Cause Remedy Heating Service AnalysisIGC IGC Board LED Alarm CodesPremierLink Controller Premierlinkt ControlPremierLink Wiring Schematic 55 Space Temperature Sensor Wiring PremierLink Sensor Usage Space Sensor Mode56 Internal Connections Thermostat ModeLctb Indoor CO2 Sensor 33ZCSENCO2 Connections PremierLink Filter Switch Connection Recommended Cables RTU-MP Control SystemColor Code Recommendations RTU-MP Multi-Protocol Control Board RTU-MP System Control Wiring Diagram Outputs RTU-MP Controller Inputs and OutputsRTU-MP T-55 Sensor Connections Space Temperature SPT SensorsIAQ Sensor SEN J4-2 COM J4-3 24 VAC Power Exhaust output Connecting Discrete InputsCommunication Wiring Protocols RTU-MP Troubleshooting LEDs on the RTU-MP show the status of certain functions LEDsTroubleshooting Alarms BACnet MS/TP AlarmsRTU-MP Driver Code Name Meaning Basic Protocol TroubleshootingModbus Manufacture DateEconoMi$er IV Component Locations Economizer SystemsEconoMi$er IV Wiring EconoMi$er IV Input/Output Logic EconoMi$erOutdoor Dry Bulb Changeover Supply Air Temperature SAT SensorOutdoor Air Lockout Sensor EconoMi$er IV Control ModesOutdoor Enthalpy Changeover Return Air Temperature or Enthalpy Sensor Mounting LocationIndoor Air Quality IAQ Sensor Input Exhaust Setpoint AdjustmentMinimum Position Control Demand Control Ventilation DCV Damper MovementThermostats Occupancy ControlDifferential Enthalpy CO2 Sensor ConfigurationEconoMi$er IV Sensor Usage EconoMi$er IV PreparationWiring Diagrams 48TC Typical Unit Wiring Diagram Power A06, 208/230-3-60 48TC Unit Wiring Diagram Control A06 START-UP, General PRE-START-UPVentilation Continuous Fan CoolingMain Burners HeatingPerform System Check-Out Field Service TestSTART-UP, Premierlink Controls START-UP, RTU-MP ControlConfiguration Input 1 Function InputsInput Space Sensor TypeCooling, Unit With EconoMi$er Operating SequencesBase Unit Controls Cooling, Units Without Economizer Heating, Units Without EconomizerPremierLink Control Heating With EconoMi$er48TC Available Cooling Stages OAT ≤ SPT 48TC 48TC Scheduling Loadshed Command Gas and Electric Heat UnitsRTU-MP Sequence of Operation Linkage ModesBAS On/Off Always Occupied Default OccupancyLocal Schedule BACnet ScheduleEconomizer Power ExhaustIndoor Air Quality Demand Limit Fastener Torque ValuesTorque Values Position Number Appendix I. Model Number SignificanceModel Number Nomenclature Serial Number FormatPhysical Data Cooling Tons Appendix II. Physical Data48TC*A08 48TC*A09 48TC*A12 Physical Data CoolingPhysical Data Heating LOW General Fan Performance Notes Appendix III. FAN PerformanceTon Vertical Supply Ton Horizontal SupplyCFM RPM BHP Medium Static Option High Static Option 48TC**05 48TC**05 Phase Ton Horizontal Supply1486 48TC**05 Phase Ton Vertical Supply1493 15061482 48TC**0648TC**06 Phase Ton Vertical Supply 48TC**06 Phase Ton Horizontal Supply48TC**07 Phase Ton Horizontal Supply1122 1162 11071124 1103 11431093 1133 4971099 11161273 5791263 1247Unit MOTOR/DRIVE Motor Pulley Turns Open Combo Pulley AdjustmentType Appendix IV. Electrical DataIFM Range RLA LRAFLA Appendix IV. Electrical DataFull IFM RangeEFF at RLA LRAType DISC. Size Combustion PowerNOM IFM No P.E FAN Motor ExhaustNOM Unbalanced 3-Phase Supply VoltageWiring Diagrams Appendix V. Wiring Diagram List48TC*A04 Outdoor Circuiting Appendix VI. Motormaster Sensor LocationsCatalog No 48TC---2SM 48TC*A09/12 Outdoor CircuitingPreliminary Information Unit START-UP Checklist

48TCA04---A12 specifications

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