Carrier 30RAP010-060 specifications

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Energy Management Module (Fig. 12) — This factory-installed option (FIOP) or field-installed accessory is used for the following types of temperature reset, demand limit, and/or ice features:

4 to 20 mA leaving fluid temperature reset (requires field-supplied 4 to 20 mA generator)

4 to 20 mA cooling set point reset (requires field- supplied 4 to 20 mA generator)

Discrete inputs for 2-step demand limit (requires field- supplied dry contacts capable of handling a 24 vac, 50 mA load)

4 to 20 mA demand limit (requires field-supplied 4 to 20 mA generator)

Discrete input for Ice Done switch (requires field- supplied dry contacts capable of handling a 24 vac, 50 mA load)

See Demand Limit and Temperature Reset sections on pages 41 and 37 for further details.

CAUTION

Care should be taken when interfacing with other manufac- turer’s control systems due to possible power supply differences, full wave bridge versus half wave rectification. The two different power supplies cannot be mixed. ComfortLink™ controls use half wave rectification. A signal isolation device should be utilized if a full wave bridge signal generating device is used.

Loss-of-Cooler Flow Protection — A proof-of- cooler flow device is factory installed in all chillers. It is recom- mended that proper operation of the switch be verified on a reg- ular basis.

Electronic Expansion Valves (EXV) — All units are equipped from the factory with EXVs. Each refrigeration cir- cuit is also supplied with a factory-installed liquid line filter drier and sight glass.

The EXV is set at the factory to maintain 9° F (5.0° C) suc- tion superheat leaving the cooler by metering the proper amount of refrigerant into the cooler. The superheat set point is adjustable, but should not be adjusted unless absolutely necessary.

The EXV is designed to limit the cooler saturated suction temperature to 50 F (12.8 C). This makes it possible for unit to start at high cooler fluid temperatures without overloading the compressor.

Capacity Control — The control system cycles com- pressors, digital scroll modulting solenoid (if equipped), and minimum load valve solenoids (if equipped) to maintain the user-configured leaving chilled fluid temperature set point. En- tering fluid temperature is used by the main base board (MBB) to determine the temperature drop across the cooler and is used in determining the optimum time to add or subtract capacity stages. The chilled fluid temperature set point can be automati- cally reset by the return fluid temperature, space, or outdoor-air temperature reset features. It can also be reset from an external 4 to 20-mA signal (requires energy management module FIOP or accessory).

The standard control has an automatic lead-lag feature built in which determines the wear factor (combination of starts and run hours) for each compressor. If all compressors are off and less than 30 minutes has elapsed since the last compressor was turned off, the wear factor is used to determine which

compressor to start next. If no compressors have been running for more than 30 minutes and the leaving fluid temperature is greater than the saturated condensing temperature, the wear factor is still used to determine which compressor to start next. If the leaving fluid temperature is less than the saturated con- densing temperature, then the control will start either compres- sor A1 or compressor B1 first, depending on the user-configu- rable circuit lead-lag value. For units with the minimum load control valve, the A circuit with the minimum load valve is al- ways the lead circuit. The A circuit is also always the lead for units with the digital compressor option. On units with the dig- ital scroll option, the A1 compressor operates continuously, providing close leaving chilled water control. For this reason, on/off cycling of the unit’s compressors is dramatically re- duced, which in turn reduces wear associated with compressor start/stop cycles.

The EXVs will provide a controlled start-up. During start- up, the low pressure logic will be bypassed for 21/2 minutes to allow for the transient changes during start-up. As additional stages of compression are required, the processor control will add them. See Table 19.

If a circuit is to be stopped, the compressor with the lowest wear factor will be shut off first except when a digital compres- sor is used. The digital compressor is always the last compres- sor to shut off.

The capacity control algorithm runs every 30 seconds. The algorithm attempts to maintain the Control Point at the desired set point. Each time it runs, the control reads the entering and leaving fluid temperatures. The control determines the rate at which conditions are changing and calculates 2 variables based on these conditions. Next, a capacity ratio is calculated using the 2 variables to determine whether or not to make any changes to the current stages of capacity. This ratio value ranges from –100 to +100%. If the next stage of capacity is a compressor, the control starts (stops) a compressor when the ratio reaches +100% (–100%). If installed, the minimum load valve solenoid will be energized with the first stage of capacity. Minimum load valve value is a fixed 30% in the total capacity calculation. The control will also use the minimum load valve solenoid as the last stage of capacity before turning off the last compressor. A delay of 90 seconds occurs after each capacity step change. Refer to Table 19.

MINUTES LEFT FOR START — This value is displayed only in the network display tables (using Service Tool, ComfortVIEW™ or ComfortWORKS® software) and represents the amount of time to elapse before the unit will start its initialization routine. This value can be zero without the machine running in many situations. This can include being unoccupied, ENABLE/OFF/REMOTE CONTACT switch in the OFF position, CCN not allowing unit to start, Demand Limit in effect, no call for cooling due to no load, and alarm or alert conditions present. If the machine should be running and none of the above are true, a minimum off time (DELY, see below) may be in effect. The machine should start normally once the time limit has expired.

MINUTES OFF TIME (ConfigurationOPT2DELY) — This user-configurable time period is used by the control to determine how long unit operation is delayed after power is applied/restored to the unit. Typically, this time period is configured when multiple machines are located on a single site. For example, this gives the user the ability to prevent all the units from restarting at once after a power failure. A value of zero for this variable does not mean that the unit should be running.

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Contents Contents Controls, Start-Up, Operation, Service, and TroubleshootingSafety Considerations ContentsBasic Controls Usage GeneralUnit Sizes Unit Nominal Capacity TonsAccessory Navigator Display Module SET Inputs Outputs Configuration Time Operating Alarms Mode RUN Service TemperaturesScrolling Marquee Display Menu Structure TestStrt Run Status Mode and Sub-Mode DirectoryVers SUB-MODE Keypad Display SUB-ITEM Comment Entry ExpansionSUB-MODE Keypad Display Comment Entry Expansion Test Service Test Mode and Sub-Mode DirectoryOuts CmpaSet Points Mode and Sub-Mode Directory Temperature Mode and Sub-Mode DirectoryPressure Mode and Sub-Mode Directory Outputs Mode and Sub-Mode Directory Inputs Mode and Sub-Mode DirectorySUB-MODE Keypad Display Comment Entry Expansion EXV Configuration Mode and Sub-Mode DirectorySUB-MODE Keypad Display Comment Entry Expansion Unit OPT1OPT2 SUB-MODE Keypad Display CommentXXX XXX.X ΔF DST Time Clock Mode and Sub-Mode DirectoryDate Alarms Mode and Sub-Mode Directory Operating Mode and Sub-Mode DirectoryOperating Modes Mode Item Expansion DescriptionCarrier Comfort Network CCN Interface ControlsControl Module Communication Thermistor Designations CCN Communication Bus WiringStatus Inputs Output RelaysAUX AlmrCCB CHCA30-4963 A30-4962Typical Control Box for 30RAP035-060 A30-4964Typical Wiring Schematic, 30RAP018-030 Units Power Wiring A30-4966 Typical Wiring Schematic, 30RAP018-030 Units Control Wiring5283 Typical Wiring Schematic, 30RAP035-060 Units Power WiringA30-5284 Typical Wiring Schematic, 30RAP035-060 Units Control WiringA30-4968 A30-4967Page CEPL130351 30RAP Unit Size Control Capacity Steps Capacity % Deadband MultiplierOperating Envelope for R-410A Compressor A30-496930RAP Unit Size FAN Stages Cooling Set Point SelectA30-4970 Control Methods and Cooling Set Points Optional Factory-Installed Hydronic PackControl Occupancy Cooling SET Point Select Clsp Type State CCN→PM1E = YES Configuring and Operating Dual Chiller Con Rset Dual Chiller Configuration Master Chiller ExampleSUB-MODE Keypad Entry Display Item Expansion Comments PartNumber Rset Slave Complete Dual Chiller Configuration Slave Chiller ExampleMenu Configuration of 4 to 20 mA Cooling Set Point Control To 20 mA ResetConfiguring Return Temperature Reset Configuring Outdoor Air and Space Temperature ResetMode Keypad SUB Display RED LED Entry ModeOutdoor-Air Temperature Reset To 20-mA Demand Limiting Item Expansion Comment Entry Configuration Configuring Demand LimitPRE-START-UP System Check30RAP Minimum Cooler Flow Maximum Cooler Flow Size START-UP and OperationA30-4978 Operating Limitations Temperature Limits for Standard 30RAP UnitsOperation Sequence Unit Size 30RAElectronic Components ServiceEXV Steps Unit Size 30RAP EXV StepsElectronic Expansion Valve Details A30-4971Unit Torque Specification Compressor Replacement Refer to FigCooler A30-4972Check Refrigerant Feed Components Oil ChargeLWT A30-4973A30-4974 Unit Cutout CUT-IN Factory Settings, High-Pressure Switch FixedCheck Unit Safeties Thermistor Well Temp Voltage Resistance Drop 100,260 143 Drop 86K Thermistor vs Resistance DTTA30-499 A30-4975A30-4976 AccsyP50 Fault History Last 8 faults P51 Software version A30-4977 Mode Nominal Voltage Control Input Start JumperTB1-TB2 TB13A-TB2Fault Codes PID Parameters Description ModeMotormaster V Program Parameters for Operating Modes Replacement Replacement Part Module MaintenanceReplacement Modules Troubleshooting 30RAP Unit Cutout CUT-IN Size Advanced Scroll Temperature Protection LabelSymptoms Cause Remedy TroubleshootingT051 Alarm and Alert CodesT110 T153 T197 CCN Alert GENERATED?CSB EMMCompressor Stuck on Failure Alarms Page SUB-MODE Display Item Description Comment Appendix a Display TablesView RUNVers Appendix a Display TablesStrt Pressures Mode and Sub-Mode Directory Cool SUB-MODE Display Item Description Range CommentHead FRZGEN.O SUB-MODE Display Item Description Comment HP.B HP.AEXV.B EXV.ARset Bcst Date SUB-MODE Display Item Description Comment TimeDST HOL.LHD.19 HD.30 SCH.L SUB-MODE Display Item Description Comment SCH.NPER.1 PER.2PER.8 PER.6PER.7 Hist CrntRcrn CCN Display Tables Aunit General Unit Parameters Appendix B CCN TablesCCN Display Tables Circaan Circuit a Analog Parameters Description Value Units Point Name ForcibleCCN Display Tables Circban Circuit B Analog Parameters Appendix B CCN TablesCCN Configuration Tables OPTIONS1 Options 1 Configuration CCN Configuration Tables Unit Unit ConfigurationDescription Value Default Units Point Name CCN Display Tables Options Unit ParametersCCN Configuration Tables Schedovr Timed Override Setup CCN Configuration Tables OPTIONS2 Options 2 ConfigurationCCN Configuration Tables Mmconf Motormaster Configuration CCN Configuration Tables Display Marquee Display SetupCCN Service Tables Service Description Value Point Name Description Value Units Point NameDescription Version Value CCN Maintenance Tables AlarmsCCN Maintenance Tables PM-PUMP CCN Maintenance Tables Runtest CCN Maintenance Tables Dualchil Setting Appendix C Factory Settings for Pump and Manual StartersOptional BACnet Communications Wiring Appendix D Optional Bacnet Communications WiringTable a SW3 Protocol Switch Settings For MS/TP Appendix D Optional Bacnet Communications WiringTable B Baud Selection Table DS8 DS7 DS6 DS5 DS4 DS3Specification Recommmendation Table C MS/TP Wiring RecommendationsAWG CL2PCMP Wiring Specifications Recommended Vendors and Part NumbersRmcorp LED Status Table E LED Status IndicatorsRUN LED Error LED Status Table G Network Points List Control Mode108 109 30RAP Maintenance Interval Requirements Appendix E Maintenance Summary and LOG SheetsWeekly Quarterly30RAP Weekly Maintenance Log Appendix E Maintenance Summary and LOG SheetsPSI 30RAP Monthly Maintenance LogUnit Section Action Entry 113 30RAP Seasonal Shutdown LogCopyright 2010 Carrier Corporation Remove and use for Job File Project Information START-UP Checklist for 30RAP Liquid ChillerII. Preliminary Equipment Check Design InformationStart and Operate Machine. Complete the Following III. Unit Start-UpDual Chiller Control Only Record Software Versions Mode RUN StatusOPTIONS1 Options Configuration Unit Configuration SettingsSubmode Item Expansion Display Entry OPT1CCN CCN Network Configuration OPTIONS2 Options ConfigurationHP.A Head Pressure Cmp. Delta Configuration HP.B Head Pressure Cmp. Delta ConfigurationEXV.B Circuit B EXV Configuration EXV.A Circuit a EXV ConfigurationMM Motormaster Configuration Settings EXV.BSlct Setpoint and Ramp Load Configuration Rset Reset Configuration SettingsSetpoint Entry Expansion SUB-MODE Keypad Display Comment
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30RAP010-060 specifications

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