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8000w Water Chiller Laser Cutting Machine

an 8000W laser source would require a cooler to cool it. Lasers generate a lot of heat, and if it is not dissipated properly, it can damage the laser components. A cooler or a chiller is typically used to cool the laser source and maintain it at a safe operating temperature. The cooler works by circulating a liquid coolant, such as water or refrigerant, through the laser components. This helps to remove the excess heat generated by the laser and ensure that it operates efficiently and reliably.

  • Product Introduction
Product Features

, the active cooling technology helps to maintain a consistent temperature even when there are changes in ambient temperature or when the system is under heavy load. This is especially important for sensitive equipment that requires precise temperature control to function optimally, such as medical or research equipment. The ±1°C accuracy ensures that the temperature remains within a tight tolerance range, minimizing the risk of fluctuations that can negatively affect the equipment or samples being processed. Overall, the dual cooling circuit and active cooling technology make this system a reliable choice for use in a wide range of environments and applications where temperature control is critical.


Laser chillers are used to cool down the temperature of the laser system's components to maintain their efficiency and stability. If the laser system's temperature becomes too high, it could damage the components or decrease performance.

The "380V50HZ8000W" in the question refers to the laser chiller's power requirements.

- "380V" is the voltage rating required to operate the chiller.
- "50HZ" refers to the frequency of the AC electrical power that needs to be supplied to the chiller.
- "8000W" represents the power output capacity of the chiller, which indicates the amount of heat the chiller can remove from the system per unit time.

Overall, a laser chiller is an essential component for maintaining the performance and longevity of laser systems.

an 8000W laser source would require a cooler to cool it down. Laser sources generate a lot of heat, and if not properly cooled, can damage the laser and decrease its efficiency. A cooling system is typically necessary to maintain the temperature of the laser source within a safe range. This can be achieved using various methods such as water cooling, air cooling, or thermoelectric cooling. The specific cooling method used will depend on the type of laser source and the application.

 

product-83-20

Uint

 

HL-8000-QG2/2

Voltage & Frequency

 

3p 380V/50Hz

Rated power

kW

9.7

maximum current

A

18.5

Cooling capacity

kW

15.2

Compressor power

kW

4.15

Electric heating power

kW

1.6/1.4

Pump power

kW

1.85

Fan power

kW

0.75

Maximum air volume of the fan

m³/h

8400

Rated Flow of the low temperature end

L/min

80~88

Rated pressure of the low temperature end

bar

4.0

Maximum pressure of low temperature end

bar

5.2

Dimensions of the low temperature end interface

 

G1-Φ25mm Pagoda joints

Water temperature setting range of low temperature end

21~32

Rated Flow of the high temperature end

L/min

2.3

Rated pressure of the high temperature end

bar

4.0

Dimensions of the high temperature end interface

 

G1/2-Φ12mm quick connector

Water temperature setting range of high temperature end

26~35

Water temperature control accuracy

22~29.5

Water Tank

L

55

Application environment

-20~40

Coolant

 

R32

Noise Level

dB(A)

≈75

Machine dimension

mm

70

Net Weight

kg

610×665× 1000

Packing dimension

mm

76

Gross Weight

kg

725×670×1035

Suitable cooling medium

 

Pure water , glycol

solution(concentration ≤ 30%)

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