Carrier 50HE003-006, 50HJ004 Routine 3 OAT, DX Cooling Temperature Control Example

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50HE,HJ

SWith Y1 and Y2 energized Economizer maintains an SASP = SATLO2 + 3.

SIf SAT > SASP + 5 and economizer position >80%, economizer will go to minimum position for 3 minutes or until SAT > 68_F.

SIf compressor one is on then second stage of mechanical cooling will be energized; otherwise the first stage will be energized.

SIntegrator resets.

SEconomizer opens again and controls to SASP after stage one on for 90 seconds.

Routine 3 (OAT > 68)

SEconomizer is opened 100%.

SCompressors 1 and 2 are cycled based on Y1 and Y2 using minimum on and off times and watching the supply air temperature as compared to SATLO1 and SATLO2 set points.

If optional power exhaust is installed, as the outdoor-air damper opens and closes, the power exhaust fans will be energized and deenergized.

If field-installed accessory CO2 sensors are connected to the PremierLinkcontrol, a PID-controlled demand ventilation strategy will begin to operate. As the CO2 level in the zone increases above the CO2 set point, the minimum position of the damper will be increased proportionally. As the CO2 level decreases because of the increase in fresh air, the outdoor-air damper will be proportionally closed.

Heating - Units With Economi$er2 Premierlink Control and a Thermostat

When the thermostat calls for heating, terminal W1 is energized. The PremierLink control will move the economizer damper to the minimum position if there is a call for G and closed if there is a call for W1 without G. The IFC and heater contactor no. 1 (HC1) are energized. When the thermostat is satisfied and W1 is deenergized, the IFM stops after a 45-second time-off delay unless G is still maintained.

Cooling - Units With Economi$er2, Premierlink Control and a Room Sensor

When free cooling is not available, the compressors will be controlled by the PremierLink controller using a PID Error reduction calculation as indicated by Fig 49.

The PremierLink controller will use the following information to determine if free cooling is available:

SIndoor fan has been on for at least 30 seconds.

SThe SPT, SAT, and OAT inputs must have valid readings.

SOAT must be less than 75_F. S OAT must be less than SPT.

SEnthalpy must be LOW (may be jumpered if and enthalpy sensor is not available).

SEconomizer position is NOT forced.

 

 

TEMPERATURE CONTROL

TEMPERATURE

75

 

74

 

73

 

72

SET POINT

71

TEMPERATURE

70

 

SPACE

 

69

 

68

 

 

 

 

 

TIME

NOTE: PremierLink control performs smart staging of 2 stages of DX cooling and up to 3 stages of heat.

C06042

Fig. 49 ---DX Cooling Temperature

Control Example

 

 

TEMPERATURE CONTROL

TEMPERATURE

75

 

74

 

73

 

72

COOL SETPOINT

71

TEMPERATURE

70

HEAT SETPOINT

SPACE

69

 

68

 

 

 

 

 

TIME

 

 

C06043

Fig. 50 ---Economizer Temperature

Control Example

When free cooling is available, the outdoor-air damper is positioned through the use of a Proportional Integral (PID) control process to provide a calculated supply-air temperature into the zone. The supply air will maintain the space temperature between the heating and cooling set points as indicated in Fig. 50.

The PremierLink control will integrate the compressors stages with the economizer based on similar logic as the three routines listed in the previous section. The SASP will float up and down based on the error reduction calculations that compare space temperature and space set point.

When outside-air temperature conditions require the economizer to close for a compressor stage-up sequence, the economizer control integrator is reset to zero after the stage-up sequence is completed. This prevents the supply-air temperature from dropping too quickly and creating a freeze condition that would make the compressor turn off prematurely.

The high space set point is used for DX (direct expansion) cooling control, while the economizer space set point is a calculated value between the heating and cooling set points. The economizer set point will always be at least one degree below the cooling set point, allowing for a smooth transition from mechanical cooling with economizer assist, back to economizer cooling as the cooling set point is achieved. The compressors may be used for initial cooling then the PremierLink controller will modulate the economizer using an error reduction calculation to hold the space temperature between the heating and cooling set points. (See Fig. 50.)

The controller uses the following conditions to determine economizer cooling:

SEnthalpy is Low

SSAT reading is available S OAT reading is available

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Contents Installation Instructions Provide Unit Support Roof Curb Alternate Unit SupportRoof Curb Details Positioning Unit Leveling Tolerances50HE 50HJ50HJ004-007 Base Unit Dimensions 50HE003-006 Base Unit Dimensions Field Power Supply Heat Anticipator SettingsField Control Wiring Make Electrical ConnectionsPhysical Data 50HJ Hi-StaticPhysical Data 50HE Base Unit 50HEPower Wiring Connections Electrical Data-50HE None YES PH---Hz Min MaxActual kW B00006 008,009 23.4 30.1 40.8 Electrical Data-50HJ KW†006 11.8 414 508 007 10.6 16.0 008 13.8 20.0 Ton 004+005 19.9 24.3 55.2 76.3 86.9 168 34.9 173 002 13.6 A00 or 007008 Humi 009 18.4 111 518 632 018 17.0 16.4 23.9 012 10 ton18.7 133 518 632 17.0 16.4 24.6 019 34.0 32.7 45.0 A00 or Actual kW 01412.5 Disconnect Switch AssemblyHumidi-MizerAdaptive Dehumidification System Manual Outdoor DamperTypical Humidi-MiZer t Adaptive Dehumidification System Install the Supply Air Temperature SAT Sensor Outdoor Air Temperature Sensor OATInstall the Indoor Air Quality CO2 Sensor Enthalpy Sensors and ControlPremierLinkSensor Usage RequiredOr Equivalent Not UsedPremierLinktController Installed Return Air Enthalphy Sensor EconoMi$er IV Component LocationsHood Box Removal Supply Air Temperature SAT Sensor Supply Air Sensor Temperature Resistance ValuesOutdoor Air Lockout Sensor Economi$er IV Control ModesEconoMi$er IV Wiring Exhaust Set Point Adjustment Differential Enthalphy ControlIndoor Air Quality IAQ Sensor Input Minimum Position Control ThermostatsDamper Movement + TR Adjust Evaporator-Fan Speed Dehumidification of Fresh Air with DCV ControlBelt Drive Motors CO2Sensor Standard Settings Belt Drive Motor MountingEvaporator-Fan Motor Data Standard Motor Evaporator-Fan Motor Data High-Static MotorsEvaporator-Fan Motor Efficiency 600 900 1200 1400 1600 1800 2000 2200 2400 2600003,004,005 006 74/84 007 External Static Pressure in. wgRpm Bhp Watts 900 566 142 690 228 879957 522 1000 598 173 718 267 903Rpm Bhp Watts 1200 666 252 778 361 873 476 956 594 1300 701 809 418 902 540 983 6651400 737 355 842 481 932 610 875 551 962 689Rpm Bhp Watts 1500 790 353 897 471 991 600 1600 828 412 931 536 1022 6701700 866 478 966 608 1800 905 551 1001 6871462 2067 1472 1761 16001495 1858 1700 1463 1766 1520 1964 18002200 1063 929 1147 1089 1224 1256 1295 1431 2300 1104 1046 1185 1212 1260 13862400 1145 1174 1223 1346 1296 1526 2500 1185 1311 1262 1490Rpm Bhp Watts 1800 907 558 1006 708 1092 860 1900 945 638 1042 7962000 984 727 1078 892 2100 1024 823 1115 9972100 1024 823 1115 997 1195 1173 1268 1350 2200 1063 929 1152 1111 1230 12942300 1103 1044 1189 1234 1266 1425 2400 1143 1168 1227 1367Rpm Bhp Watts 900 554 134 681 1000 583 163 7071100 612 195 735 919Rpm Bhp Watts 1200 643 233 762 344 1300 674 2761400 706 324 1500 738 379Rpm Bhp Watts 1500 724 295 837 402 937 524 1028 660 1600 757 343 866 455 962 580719 1700 790 398 894 514 988 643External Sttic Pressure in. wg 1474 1797 17001490 1873 1800 1508 1957 19002400 1033 970 1115 1120 1192 1279 1264 1448 2500 1069 1084 1149 1239 1223 1403 1293 1576Rpm Bhp Watts 1500 1188 970 1261 1143 1600 1208 1033 12792400 1026 945 1115 1118 1195 1295 1268 1476 2500 1061 1053 1148 1233 1226 1416 1297 16042600 1097 1169 1181 1356 1257 1546 2700 1132 1294 1214 1487 1289 1684Internal Wiring Refrigerant Service PortsUnit Preparation Return-Air FiltersSafety Relief HeatingVentilation Continuous Fan Operating Sequence Cooling Units Without EconomizerDX Cooling Temperature Control Example Routine 3 OATSubcooling Mode Humidi-MiZer Normal Design Cooling OperationCleaning Evaporator CoilCondenser Coil One-Row CoilEvaporator Fan Belt Adjustment Condenser-Fan AdjustmentFan Motor Bearings Condensate DrainCooling Charging Chart Standard 50HJ005 Low Charge CoolingCooling Charging Chart Standard 50HJ007 50HE,HJ C06145 Replacement Parts Unit TroubleshootingEconomi$er IV Troubleshooting DCV Demand Controlled Ventilation and Power ExhaustEconomi$er IV Troubleshooting Completion DCV Minimum and Maximum PositionSupply-Air Input Cooling Service Analysis Subcooling Mode Liquid Reheat EconoMi$er IV Input/Output LogicEconoMi$er IV Functional View START-UP Checklist