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Under different cooling methods, chillers are categorized into two types: air-cooled and water-cooled. The air-cooled chiller dissipates heat from the refrigerant directly through the fan’s forced airflow. This type features a compact design and is easy to move.
Tospmelt’s air-cooled chiller is compact, portable, and fully treated with anti-rust coating. It is simple to install and operate—just connect it to the equipment requiring cooling, and it’s ready to run.
Equipped with a low-noise motor and a high-performance compressor, the machine delivers high cooling efficiency and stable operation. It requires no cooling tower, making it especially suitable for water-scarce regions and medium-scale industrial facilities.

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Features & Benefits
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  • Equipped with Europe/US-imported fully sealed, low-noise, high-efficiency scroll compressor and digital thermostat.


  • One, two, or three independent refrigeration circuits for flexible and stable performance.


  • Built-in safety protection and electronic fault alerts ensure secure, damage-free operation.


  • Plug-and-play design with pre-filled cooling oil – no complex setup required.


  • Quick start-up: connect pipes and power, no extra commissioning needed.


Tospmelt air-cooled chillers are widely used for cooling equipment in jewelry manufacturing, precision machinery, electronics, and other industrial applications. Their compact, portable design and simple installation make them ideal for workshops and medium-scale production facilities.
Equipped with low-noise motors, high-performance compressors, and anti-rust treatment, these chillers deliver stable, efficient cooling without the need for a cooling tower, making them especially suitable for water-scarce regions.

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    Superior protection with our 24-month warranty.
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    CE, ISO, and AAA certified for global standards
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Frequently Asked Questions
How does an air-cooled chiller work?

An air-cooled chiller removes heat from your process by circulating refrigerant through an evaporator, where it absorbs heat from water or coolant. The refrigerant is then compressed into high-temperature gas, cooled in a finned condenser using ambient air, and converted back into liquid. This cycle repeats continuously, delivering stable cooling without the need for a cooling tower.

What are the main components of an air-cooled chiller?

·Condenser – Releases heat to the surrounding air.

·Liquid Reservoir – Stores condensed refrigerant for stable operation.

·Filter Drier – Removes moisture and debris to prevent blockages.

·Evaporator – Absorbs heat from the process liquid.

·Thermal Expansion Valve – Regulates refrigerant flow and pressure for efficient cooling.

These components work together to ensure reliable and energy-efficient operation.


How do you operate an air-cooled chiller?

·Check pipelines, valves, and power supply.

·Power on and confirm correct phase sequence.

·Start the water pump, then the compressor, and set the desired temperature.

·To stop, turn off the compressor first, then the pump.
Once installed, operation is simple and requires minimal training.




In what environments is an air-cooled chiller most suitable?

Perfect for outdoor or well-ventilated workshops. Especially recommended in regions with water shortages, as it uses air for heat dissipation instead of consuming large amounts of water. No cooling tower is required, reducing installation complexity.

What power supply options are available?

Units can be configured for various voltages and frequencies to meet different country standards—such as 440–480V, 380–420V, 220–230V, at both 50Hz and 60Hz—ensuring compatibility worldwide.

How precise is the temperature control?

Advanced controllers provide high-precision temperature management, maintaining stable cooling within ±1°C. Automatic control reduces operator workload, improves product quality, and saves up to 15% in energy consumption.

Are air-cooled chillers easy to operate?

Yes. Installation is straightforward—just connect and start. They require less maintenance than water-cooled units, lowering operational costs over time.

Why is the compressor quality important?

The compressor is the heart of the chiller. High-quality compressors ensure stable operation, low noise, and long service life. This directly impacts reliability and energy efficiency in your production line.

What is the difference between an air-cooled chiller and a water-cooled chiller?

Air-cooled chillers discharge heat directly into the air using built-in fans. Water-cooled chillers use water and a cooling tower. Air-cooled units are more compact and mobile, while water-cooled units typically offer higher cooling capacities but require more installation space and water supply.

Which type is more space-saving?

Air-cooled chillers are smaller, lighter, and easier to relocate—ideal for small and medium-sized factories or laboratories. Water-cooled chillers require a cooling tower and a dedicated machine room.

Which type works better in limited water supply areas?

Air-cooled chillers are the clear choice—they operate independently without a constant water source.

How does cooling capacity compare between air-cooled and water-cooled chillers?

Water-cooled chillers are generally more powerful, suitable for large-scale systems. Air-cooled chillers are optimized for small to medium-scale production with cooling capacities tailored to specific needs.

What are the typical applications of air-cooled chillers?

Used in laser processing, CNC machining, coating, plastic molding, metal casting, jewelry manufacturing, electronics, and laboratory testing—anywhere precise, reliable cooling is required.

Which type has lower initial investment cost?

Air-cooled chillers have a lower upfront cost since they include a built-in water tank and pump, require no cooling tower, and reduce site preparation expenses.

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