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Refrigeration Compressor Fault Simulator | PolarX – 572

The Refrigeration Compressor Fault Simulator PolarX – 572 trains students to detect electrical issues in refrigeration systems using a real refrigerant compressor from practice (approx. 850W). This Refrigeration Compressor Fault Simulator enables simulation of faults including motor coil fracture, operating capacitor short circuit, welded start-up relay contacts, and condenser or evaporator fan faults. Electrical components, including start-up capacitor, operating capacitor, and bimetallic overheat protection, are wired and clearly visible, monitored by 5 Type-k temperature sensors. Optional LABVIEW-based DAQ software supports automated data measurement.

The Refrigeration Compressor Fault Simulator PolarX – 572 helps students detect electrical issues in refrigeration systems through a thorough understanding of component design, operation, and circuit diagrams. This Refrigeration Compressor Fault Simulator features a real refrigerant compressor from practice with all electrical parts wired and clearly visible.

Product Overview A thorough understanding of the design and operation of the various electrical components, along with the ability to read circuit diagrams, is necessary to detect electrical issues in refrigeration systems. This Refrigeration Compressor Fault Simulator assists students in learning this information. The electrical parts needed to start and run a refrigerant compressor are already wired and easily visible on a panel.

The necessary start-up relay and capacitor for the motor are examined. Circuit breakers and other common protection devices are also organized in an easily visible manner. It is possible to simulate various faults, such as a motor coil fracture, a short circuit in the operational capacitor, or welded contacts in the start-up relay. Voltages and resistances can be tested using a multimeter for defect indication (not provided).

Refrigeration Compressor Fault Simulator PolarX – 572 — Technical Specifications

Component Type / Detail
Training Series Practical series for training mechatronics engineers for refrigeration
Investigation Focus Electrical components for the operation of a refrigerant compressor
Compressor Real refrigerant compressor from practice
Safety Devices General safety devices mounted clearly visible
Condenser Fan Cool, Continuous Tubing and External Finned
Evaporator Forced Air, Heat Absorbed, Continuous Tubing and External Finned
Expansion Valve Thermostatic

Technical Data

Refrigerant Compressor

Parameter Value
Power Consumption approx. 850W

Electrical Components for the Compressor

Component Detail
Start-up Capacitor Included
Start-up Relay Included
Operating Capacitor Included
Overheat Protection Bimetallic

General Safety Devices

Component Detail
Main Contactor Included

Refrigerant Pressure Gauges

Parameter Value
Suction Side (low pressure gauge) -1~16bar
Delivery Side (high pressure gauge) -1~25bar

Pressure Safety Switch

Side Value
Delivery Side Not specified
Suction Side Not specified

Temperature Sensor

Parameter Value
Range -40~400°C
Type Type-k
Total 05

Digital Multifunctional Power Meter

Parameter Value
Range of AC Volt 0~500 volts
Range of AC Ampere 0~40 Ampere

Filter Drier

Parameter Value
Maximum Working Pressure 450psig

Liquid Receiver

Parameter Value
Maximum Working Pressure 450psig
Capacity 1.2L

Key Features

  • Training Focus: Refrigeration Compressor Fault Simulator for electrical fault diagnosis in refrigeration systems
  • Compressor: Real refrigerant compressor from practice, approx. 850W power consumption
  • Fault Simulation: Motor coil fracture, short circuit in operating capacitor, welded start-up relay contacts
  • Safety Devices: Main contactor and other protection devices clearly visible
  • Electrical Components: Start-up capacitor, start-up relay, operating capacitor, bimetallic overheat protection
  • Diagnostic Testing: Voltages and resistances tested using multimeter (not provided)
  • Temperature Sensors: 5 x Type-k, range -40~400°C
  • Condenser: Fan cool, continuous tubing and external finned
  • Evaporator: Forced air, continuous tubing and external finned
  • Expansion Valve: Thermostatic type

Experiments

  • Read and understand electrical circuit diagrams
  • Electrical connection of refrigerant compressors
  • Fault finding in electrical components: in idle state, under mains voltage, condenser fan fault, evaporator fan fault, frosting and defrosting mode faults, high pressure and low pressure faults in condenser and evaporator respectively, reverse cycle for defrosting
  • Design and operation of the electrical components of a refrigerant compressor: overheat protection, over voltage protection, main contactor

Construction and Design
The Refrigeration Compressor Fault Simulator PolarX – 572 is built around a real refrigerant compressor from practice, with all electrical components wired and clearly visible on a panel. General safety devices, including the main contactor, are mounted for easy visibility. The system includes a condenser with fan cool, continuous tubing and external fins, an evaporator with forced air and continuous tubing, and a thermostatic expansion valve. The unit is part of the practical training series for mechatronics engineers specializing in refrigeration.

Software
PolarX – 572 (optional). A DAQ software package, specially designed in National Instruments LABVIEW environment, measures and calculates the results of the apparatus. The software is optional. When the software is used, a set of electronic sensors is included. The software can be run on any Windows environment.

Scope of Delivery

  • 1 experimental module
  • 1 instruction manual

Q: What faults can be simulated on the Refrigeration Compressor Fault Simulator PolarX – 572?
A: Faults include motor coil fracture, short circuit in the operational capacitor, and welded contacts in the start-up relay, along with condenser fan fault, evaporator fan fault, and frosting/defrosting mode faults.

Q: What electrical components does the unit examine?
A: Start-up capacitor, start-up relay, operating capacitor, and bimetallic overheat protection, along with general safety devices like the main contactor.

Q: Is a multimeter included for defect testing?
A: No. Voltages and resistances can be tested using a multimeter, which is not provided.

Q: How many temperature sensors are included?
A: The unit includes 5 Type-k temperature sensors with a range of -40~400°C.

Q: Is the DAQ software required to operate the unit?
A: No. The PolarX – 572 software is optional, and a set of electronic sensors is included when the software is used.

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Scientico India delivered CE-certified laboratory equipment for our engineering programme on schedule. Documentation was complete and instruments were well calibrated.

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