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Automotive Air Conditioning Trainer | PolarX – 544

The Automotive Air Conditioning Trainer PolarX – 544 replicates a vehicle’s air conditioning system, using a compressor, condenser, filter/drier, expansion valve, and evaporator to produce cold air. This Automotive Air Conditioning Trainer runs on a standard automotive 12VDC supply, with compressor drive via V-belt, magnetic coupling, and a variable-speed motor controlled by a frequency converter. An axial piston compressor (greater than 3HP) delivers approx. 3kW refrigeration capacity at 3000RPM, with 4 Type-k temperature sensors and optional simulation of 8 system faults. Optional LABVIEW-based DAQ software supports automated data measurement.

The Automotive Air Conditioning Trainer PolarX – 544 replicates a vehicle’s air conditioning system used to cool the car’s interior. This Automotive Air Conditioning Trainer operates on the recirculating air principle, aspirating air from the interior and propelling chilled air back into the cabin via fan.

Product Overview A compressor, a condenser with fan, and an evaporator acting as an air cooler with a three-stage fan and expansion valve make up the refrigeration circuit used to produce cold air in this Automotive Air Conditioning Trainer. All system parts reflect common aspects found in automotive technology. For example, the air cooler with the three-stage fan is fitted with the normal air vents seen inside a car, bringing the trainer close to real-world practice.

The trainer runs on a standard automotive 12VDC power supply. The system also includes the ability to lock the ignition. The compressor is driven by an electric motor using a magnetic contact and a V-belt. A frequency converter allows variable adjustment of the motor’s and compressor’s speed, imitating the drive via the vehicle engine.

Pressure, temperature, flow rate, and the compressor’s power consumption are among the significant characteristic factors displayed. Eight connectable faults have been installed specifically (optional). The system is especially effective for teaching motor mechanics. Comprehensive course materials outline the fundamentals and offer a step-by-step walkthrough of the experiments.

Automotive Air Conditioning Trainer PolarX – 544 — Technical Specifications

Component Type / Detail
Refrigeration System Compression refrigeration system with compressor, condenser, filter/drier, expansion valve, evaporator
Compressor Drive Electric motor with variable speed
Condenser With fan
Evaporator Air cooler with three-stage fan
Compressor Type Axial piston compressor
Compressor Drive Mechanism V-belt and magnetic coupling
Fault Simulation 8 faults simulated via buttons in connectable box (optional)
Power On Method Ignition lock
Displayed Parameters Temperatures, pressures (refrigerant), flow rate (refrigerant), pick-up current, speed
Refrigerant R134a, CFC-free
Voltage Supply 12VDC

Technical Data

Electric Motor

Parameter Value
Type Rotary current motor
Speed Range Variable speed, variable frequency drive, 500~3000RPM
Power 4kW at 3000RPM

Axial Piston Compressor

Parameter Value
Refrigeration Capacity approx. 3kW at 3000RPM
Compressor Capacity greater than 3HP

Evaporator

Parameter Value
Capacity 5.3kW

Condenser

Parameter Value
Capacity 6.6kW

Temperature Sensor

Parameter Value
Range -40~400°C
Type Type-k
Total 4

Measuring Ranges

Parameter Value
Speed 0~9000RPM
Current 0~10A
Flow Rate (R134a) 10~95L/h
Pressure Gauge -1~16bar

Key Features

  • System Type: Automotive Air Conditioning Trainer replicating vehicle AC operation
  • Refrigeration Circuit: Compressor, condenser, filter/drier, expansion valve, evaporator
  • Compressor: Axial piston, greater than 3HP, approx. 3kW refrigeration capacity at 3000RPM
  • Compressor Drive: Electric motor via V-belt and magnetic coupling, variable speed 500~3000RPM
  • Evaporator: Air cooler with three-stage fan, 5.3kW capacity
  • Condenser: Fan cooled, 6.6kW capacity
  • Power Supply: Standard automotive 12VDC, switched on via ignition lock
  • Fault Simulation: 8 connectable faults via button box (optional)
  • Temperature Sensors: 4 x Type-k, range -40~400°C
  • Measuring Ranges: Speed 0~9000RPM, current 0~10A, flow rate 10~95L/h, pressure -1~16bar
  • Refrigerant: R134a, CFC-free

Experiments

  • Typical components of a refrigeration system
  • Principle of operation, design and handling of a vehicle air conditioning system
  • Refrigeration circuit as thermodynamic cycle: p-h diagram, determine the coefficient of performance and efficiency of the system, determine the compressor pressure ratio
  • Detection of typical faults and repair of a faulty air conditioning system (optional): simulation of 8 system faults

Construction and Design
The Automotive Air Conditioning Trainer PolarX – 544 uses a compression refrigeration system consisting of a compressor, condenser, filter/drier, expansion valve, and evaporator. An electric motor with variable speed drives the compressor via V-belt and magnetic coupling. The condenser is fitted with a fan, and the evaporator functions as an air cooler with a three-stage fan. A frequency converter enables variable adjustment of motor and compressor speed to imitate drive via the vehicle engine. The system is switched on via an ignition lock and runs on a 12VDC supply. Eight faults can be simulated via buttons in an optional connectable box.

Software
PolarX – 544 (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 power supply does the Automotive Air Conditioning Trainer PolarX – 544 use?
A: It uses a standard automotive 12VDC power supply and is switched on via an ignition lock.

Q: How is the compressor driven?
A: The compressor is driven by an electric motor using a magnetic contact and a V-belt, with a frequency converter enabling variable speed adjustment to imitate drive via the vehicle engine.

Q: Can the trainer simulate faults?
A: Yes. Eight connectable faults can be simulated via buttons in an optional connectable box.

Q: What parameters are displayed during operation?
A: Temperatures, pressures (refrigerant), flow rate (refrigerant), pick-up current, and speed.

Q: Is the DAQ software required to operate the trainer?
A: No. The PolarX – 544 software is optional, and a set of electronic sensors is included when the software is used.

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