Emerson 3000/ITR Standard Scroll Compressor Replacement, Mechanical Failure, Electrical Failure

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Component Operation and Maintenance

7.5.2Standard Scroll Compressor Replacement

Infrequently a fault in the motor insulation may result in a motor burn, but burnouts rarely occur in a properly installed system. Of those that do, most are the effects of mechanical or lubrication fail- ures, resulting in the burnout as a secondary consequence.

If problems that can cause compressor failures are detected and corrected early, a large percentage can be prevented. Periodic maintenance inspections by alert service personnel on the lookout for abnormal operation can be a major factor in reducing maintenance costs. It is easier and far less costly to take the steps necessary to ensure proper system operation than it is to allow a compressor to fail and require replacement.

When troubleshooting a compressor, check all electrical components for proper operation.

1.Check all fuses and circuit breakers.

2.Check Hi-Lo Pressure switch operation.

3.If a compressor failure has occurred, determine whether it is an electrical or mechanical failure.

Mechanical Failure

A mechanical compressor failure will be not be indicated by a burned odor. The motor will attempt to run. If you have determined that a mechanical failure has occurred, the compressor must be replaced.

If a burnout occurs, correct the problem that caused the burnout and clean the system. It is important to note that successive burnouts of the same system are usually caused by improper cleaning.

Electrical Failure

An electrical failure will be indicated by a distinct pungent odor. If a severe burnout has occurred, the oil will be black and acidic.

In the event that there is an electrical failure and a complete burnout of the refrigeration compressor motor, the proper procedures must be performed in order to clean the system to remove any acids that would cause a future failure.

For clean-out warnings and procedures, see Copeland Application Engineering Bulletin 24-1105 “Principles of Cleaning Refrigeration Systems” or Carlyle Service Guide, Literature # 020-611.

! WARNING

Risk of explosive discharge from high-pressure refrigerant. Can cause injury or death.

This unit contains fluids and gases under high pressure. Relieve pressure before working with piping. Do not loosen any refrigeration or electrical connections before relieving pressure.

! CAUTION

Risk of contact with hot substances or surfaces. Can cause injury.

Avoid touching or contacting the gas and oils with exposed skin. Severe burns will result. Use long rubber gloves in handling contaminated parts. Use extreme caution and wear protective gloves and arm protection when working on or near hot compressors, discharge lines, humidifiers and reheats.

NOTE

Release of refrigerant to the atmosphere is harmful to the environment and is unlawful. Refrigerant must be recycled or discarded in accordance with federal, state, and local regulations.

NOTICE

Damage to a replacement compressor caused by improper system cleaning constitutes abuse under the terms of the warranty, and the warranty will be void.

NOTICE

Risk of improper scroll compressor installation. Could cause poor performance and compressor damage.

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Contents Operation & Maintenance Manual 50 & 60Hz Page Table of Contents Component Operation and Maintenance Standard AlarmsFigures Tables Important Safety Instructions Page Compressorized Systems System DescriptionsIntroduction Glycool Chilled Glycol Cooling SystemsStartup Procedure StartupStartup Features Operation with Icom ControlLarge and Small Displays Liebert Icom Display Components and Functions Escape Key Down Arrow KeyKeyboard icons and functions Icon Key Name FunctionNavigating Through the Liebert iCOM Display Control Interface-Three Main Menus Sensor Reading Next Maintenance Evaporator Fan SpeedTime Most Recent Alarms Percent System or Unit Cooling On/Off DateAfter highlighting the Password command line, press Accessing Menus and Settings Viewing DataEntering the Password Password is factory-set atAccessing Submenus Accessing Submenus on Small DisplaysAccessing Submenus on Large Displays Status Menu Unit 1 View User Menu Service Menu UnitStatus Menu System View Advanced Menu UnitChanging Operational Settings ServiceContacts Changing Liebert iCOM’s Display Settings Highlight the setting to be changed by pressing EnterLiebert iCOM Service Menu Icons and Legend Graphical Data RecordNetwork Sample Liebert iCOM network configurations Wiring for Unit-to-Unit Communications-U2UWiring a Liebert iCOM U2U Network Small Displays Liebert iCOM U2U Ethernet NetworkLarge Displays Wall-Mount Large DisplayCombining Large and Small Displays on a U2U Network U2U network setup diagram Display Service/Network Liebert iCom Display MenuLiebert iCOM Display Components and Functions Liebert iCOM wiring-Unit as shipped 194273 194273 P65 P64 P61 P63 P67 P66Entering Network Setup Information Control board U2U network setup screenService Menu Unit # Viewing Multiple Units with a Networked Large DisplayAdvanced Menu Unit # Unit/Fan Control Start Stop Single Unit FunctionsOperation Remote On / Off Display On / OffLoss of Power Alarm Fan Alarm / Fan Protection SettingsAutorestart Pump Down-Air Cooled with Condenser Only Units High Pressure AlarmDigital Scroll High Temperature Compressor TimingControl Types Proportional ControlPI Control Intelligent Control Chilled Water Only Change Filter Standard AlarmsAlarm Descriptions Compressor OverloadHumidifier Problem Infrared Humidifiers High TemperatureHigh Temperature and Low Temperature Simultaneously High Head PressureLoss of Air Flow Loss of PowerLow Temperature Low HumidityOptional Alarms Set Alarms-User MenusSystem Testing Component Operation and MaintenanceHigh-Temp Sensor Fan Safety SwitchControl Transformer and Fuses Smoke DetectorZone leak detection kit installation scenarios Remote ShutdownDistance From Unit, feet m Fan Impellers and Bearings FiltersBlower Package BeltSuction Pressure Refrigeration SystemAir Distribution Suction pressures R407cSuperheat AdjustmentDischarge Pressure Thermostatic Expansion Valve OperationAir Cooled Condenser Outdoor fan/condenser configuration Water/Glycol Cooled Condensers Coaxial CondenserControl Method Motorized Ball Valve-Digital Scroll CompressorControl StartupAdjusting Collar Nut Valve spring guideDrycooler Settings Aquastat settings-two-fan through four-fan drycoolersCooling Type Glycool Glycol Flow Control Before Replacing or Returning a Compressor Compressor ReplacementCompressor Oil Compressor Functional CheckStandard Scroll Compressor Replacement Mechanical FailureElectrical Failure Digital Scroll Compressor Replacement Procedure Glycol Solution MaintenanceInfrared Humidifier Cleaning the PanHumidifier Removing the PanAutoflush Operation Autoflush Infrared Humidifier Cleaning SystemChanging Humidifier Lamps Humidifier LampsAutoflush Controls Steam Generating HumidifierControls Part Capacity Number Voltage Lb/hr kg/hr Replacing the CanisterHumidifier canister part numbers 200-460Circuit Board Adjustments Drain Tempering FeatureChilled water troubleshooting TroubleshootingBlower troubleshooting Symptom Possible Cause Check or RemedyCompressor and refrigeration system troubleshooting Compressor and refrigeration system troubleshooting Infrared humidifier troubleshooting Dehumidification troubleshootingGlycol pump troubleshooting See 7.5.1 Compressor FunctionalSteam generating humidifier troubleshooting Reheat troubleshooting Monthly Maintenance Inspection Checklist Semiannual Maintenance Inspection Checklist Semiannual Maintenance Inspection Checklist Page Ppor t Ti n Ne tIti That

3000/ITR specifications

The Emerson 3000/ITR is a powerful and versatile instrument designed for industrial automation and process control applications. This modular platform integrates advanced features and technologies tailored to meet the needs of diverse industries including oil and gas, pharmaceuticals, and manufacturing.

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Another key characteristic of the Emerson 3000/ITR is its user-friendly interface. The system is designed with operators in mind, featuring intuitive controls and comprehensive dashboards that provide real-time visibility into process performance. The graphical user interface simplifies complex operations, enabling quick decision-making and minimizing human errors.

Additionally, the Emerson 3000/ITR supports advanced analytics capabilities that enhance operational efficiency. By leveraging predictive analytics and machine learning algorithms, the system can identify patterns and anomalies, allowing for proactive maintenance and reducing the risk of unexpected downtime. This predictive maintenance approach helps organizations optimize their resources and extend the lifecycle of their equipment.

In conclusion, the Emerson 3000/ITR stands out as an exemplary solution for modern industrial automation. Its modular design, robust communication support, strong security measures, user-friendly interface, and advanced analytics capabilities make it an ideal choice for businesses looking to enhance their operational efficiency and adaptability. As industries continue to evolve, the Emerson 3000/ITR remains at the forefront, facilitating smarter and more efficient automation processes.