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JLSS-5HP Industrial Laser Chiller CO2 Laser Diode Laser Fiber Laser

Dongguan Jialisheng Refrigeration Equipment Co., Ltd.

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JLSS-5HP Industrial Laser Chiller CO2 Laser Diode Laser Fiber Laser

Country/Region china
City & Province dongguan guangdong
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Product Details

JLSS-5HP Small Water-Cooled Laser Chiller CO2 Laser, Solid-State Laser, Diode Laser, Fiber Laser


Product Description:

 


The small water-cooled laser chiller is a device used for cooling laser equipment. It dissipates the heat generated by the laser through water cooling to ensure the stable operation of the laser.

Typically, a small water-cooled laser chiller consists of the following components:

1. Water-cooling unit: including water pumps, heat exchangers, cooling fans and other components, used to conduct the heat generated by the laser into the water and dissipate the heat into the air through the heat exchanger.

 

2. Water tank: A container used to store cooling water, usually with a certain capacity and cooling water level monitoring function.

 

3. Cooling water pipeline: transport cooling water from the water tank to the cooling component of the laser, and discharge the hot water from the laser to form a closed cooling cycle.

 

4. Control system: used to monitor and control the operation of water-cooled units, including temperature sensors, water level sensors, fan control, etc.

 

Small water-cooled laser chillers are usually smaller in size and are suitable for applications where the laser power is lower or the volume is smaller. Its main function is to keep the temperature of the laser within a safe range to prevent equipment damage or performance degradation caused by overheating.

 

It should be noted that different models and brands of small water-cooled laser chillers may have differences in performance and specifications, and the specific selection should be evaluated based on actual needs and laser equipment requirements.


 

 

 

Production Features:

 


Small laser chillers have the following characteristics:

1. Compact size: Compared with large laser chillers, small laser chillers are smaller and occupy less space. They are suitable for use in limited spaces and are easy to move and install.

 

2. Lightweight and portable: Small laser chillers usually adopt lightweight designs and are relatively light in weight, making them easy to carry and move. They are suitable for occasions that require frequent relocation.

 

3. High heat dissipation effect: Although it is a small device, small laser chillers usually have effective heat dissipation capabilities, which can efficiently dissipate the heat generated by the laser and maintain the stable operation of the laser.

 

4. High energy efficiency: Small laser chillers usually use advanced refrigeration technology and energy-saving design, have a high energy efficiency ratio, and can reduce energy consumption while maintaining cooling effects.

 

5. Easy control: Small laser chillers are usually equipped with a simple and easy-to-use control interface, which is easy to operate. Users can easily set and adjust cooling parameters and monitor the operating status of the equipment.

 

6. Low noise: Small laser chillers mostly adopt a silent design to reduce the generation of noise and reduce interference to the working environment and users.

 

It is important to note that different brands and models of small laser chillers may have differences in features and functions. When selecting and purchasing, you can comprehensively consider various factors based on actual needs and requirements of laser equipment, and choose a suitable model and brand.

 

 

Working Principle:

 


The working principle of the water-cooled chiller is to compress the low-temperature and low-pressure refrigerant gas into a high-temperature and high-pressure gas through the compressor, and then radiate the high-temperature and high-pressure gas through the condenser to condense it into a high-pressure liquid, and then pass the expansion valve to make the high-pressure liquid It expands into a low-pressure liquid and flows into the evaporator to complete the refrigeration cycle.
In the water-cooled chiller, water is used as the cooling medium, and is connected to the cooling equipment through the water pipeline, and the refrigerant gas after heat dissipation absorbs heat and turns it into a low-temperature and low-pressure gas, thereby realizing refrigeration.

 ① Compressor

 ⑤ Evaporator

 ⑨ Temperature sensor

 ⑬ Bypass valve

 ② Condenser

 ⑥ Ball valve

 ⑩ Water tank

 ⑭ Low voltage controller

 ③ Filter drier

 ⑦ Antifreeze switch

 ⑪ Water pump pressure gauge

 ⑮ High voltage controller

 ④ Expansion valve

 ⑧ Float switch

 ⑫ Water pump

 ⑯ Pressure relief valve

 

 

 

Techinical Parameters:

 

ModelJLSS-5HPJLSS-10HPJLSS-15HPJLSS-20HPJLSS-25HPJLSS-30HPJLSS-40HPJLSS-50HP
Cooling capacityKW/h16.232.548.764.281.297.4130.3163.4
Kcal/h14,20028,40042,60056,80071,00085,200113,600142,000
Temperature range 5℃-35℃(Below 0℃ can be customized)
Power supply 1PH-220V 50HZ/60HZ 3PH-380V/415V 50HZ/60HZ
Total powerKW4.178.2512.7518.220.9526.535.643.2
CompressorType Hermetic scroll type or piston
PowerKW3.757.511.2515.018.7522.530.037.5
Circulating pumpPowerKW0.751.51.52.252.253.753.753.75
Headm2221.521.52323232525
RefrigerantType R22/R407c/R134a/R410a
Control method Temperature Sensing External Pressure Equalizing Expansion Valve
filling volumeKg2.65.27.810.413.015.620.826.0
EvaporatorFlowm³/h2.755.478.6211.5514.0317.0622.1926.48
water capacity0.0580.1500.2850.3000.3800.3800.5600.560
Diameterinch1"1.5"2"2.5"2.5"3"3"3"
CompressorTypem³/hEfficient copper shell and tube type
Flowm³/h3.426.8510.7814.4417.5421.3227.7433.09
Diameterinch1"1.5"2"2.5"2.5"3"3"3"
Protective deviceHigh and low pressure switch, antifreeze protection, fusible plug/safety valve, overload protection device, coil overheat protector, automatic temperature protection switch, etc.
Machine sizeLmm8501300160016001600180024002400
Wmm48061070073073076010001000
Hmm9801260140015001500160017501750
Unit weightKg601504004406907608501000

 

 

 


Application Industry:


Many laser equipment require the use of a chiller to maintain the stability of their operating temperature. The following are some common laser equipment that require the use of chillers:

1. CO2 laser: CO2 laser generates a lot of heat during operation and needs to be dissipated through a cooling system. Chillers are often used to provide cooling water for CO2 lasers to keep the temperature of the laser tube and other critical components stable.

 

2. Solid laser: Solid laser, such as Nd:YAG laser and Ti:sapphire laser, also requires a cooling system to control its operating temperature. Chillers can be used to provide cooling for solid laser crystals or laser media to maintain the stability and performance of laser output.

 

3. Diode Lasers: Diode lasers are a common type of laser that typically require cooling to maintain their operating temperature. Chillers can be used to cool the laser diode arrays of diode lasers to prevent overheating and performance degradation.

 

4. Fiber laser: Fiber laser also generates a certain amount of heat when working and needs to be cooled to maintain a stable operating temperature. Some fiber lasers use a chiller as a cooling system to control the temperature by cooling the fiber and other components of the laser.

 

These are just some of the common types of laser equipment that require chillers for cooling. Specific laser equipment models and manufacturers may have different requirements and guidance, so when purchasing and using a laser equipment, it is best to refer to its instruction manual and manufacturer's recommendations to determine whether a chiller is required and how to properly configure and Use cooling system.

 

      
  Automotive Manufacturing           Chemical Engineering                  Electronics Industry                Electroplating Industry

 

     

  Injection Molding Industry           Pharmaceutical Industry           Plastic Packaging Industry               Printing Industry

 

 

Upport and Services:

 


Chiller technical support and service includes:

1. 24/7 customer support
2. Remote guidance installation and maintenance
3. Remote Diagnostics and Troubleshooting
4. Phone/Email Advice and Guidance
5. User friendly documentation and manuals
6. Software Updates and Upgrades
7. Cost price of spare parts and consumables

 

 

Packing and Shipping:

 


Chillers are packaged and shipped in standard plywood wooden boxes. All components are secured and protected with a film, and the unit is then placed on a pallet for easy transport. And affix the shipping mark information label on the wooden box to ensure correct delivery.

 

 

 

Can you tell me how to configure and use the cooling system correctly?


When configuring and using a cooling system, the following are some general guidelines:

1. Understand the cooling requirements of your laser equipment: First, carefully read the laser equipment’s instruction manual and manufacturer’s guidelines to understand the equipment’s cooling requirements and recommendations. Different laser equipment may have different temperature and flow requirements, which need to be configured according to the specifications and requirements of the equipment.

 

2. Choose a suitable chiller: Choose a chiller suitable for laser equipment. Its cooling capacity must be able to meet the heat generation of the laser equipment. Select the power and cooling capacity of the chiller with reference to the power, heat emission and cooling needs of the laser equipment. Make sure the chiller can provide adequate flow and temperature control range.

 

3. Install the cooling system: Install the cooling system correctly according to the requirements of the laser equipment and chiller. Make sure that the cooling water inlet and outlet correspond to the cooling interface of the laser equipment, and take appropriate pipe connection and sealing measures. Make sure the connection between the chiller and laser equipment is firm and reliable, and avoid water leaks and leaks.

 

4. Control the cooling water temperature and flow rate: Control the cooling water temperature and flow rate according to the requirements of the laser equipment. Chillers are usually equipped with a temperature control system that can set the temperature range of the cooling water. Make sure the temperature of the cooling water is within the set range to maintain a stable operating temperature of the laser equipment. At the same time, ensure that the flow of cooling water is sufficient to effectively cool the laser and other critical components.

 

5. Regular maintenance and cleaning: Regularly inspect and maintain the cooling system to ensure its normal operation and efficient heat dissipation. Clean dust and dirt from the surfaces of coolers and heat exchangers to maintain cooling effectiveness. Check pipes and connections for leaks and repair them promptly.

 

6. Monitoring and recording: Regularly monitor the operating status of the cooling system, including cooling water temperature, flow, pressure and other parameters. Record the operation of the cooling system so that potential problems can be identified and resolved promptly.

 

These are general guidelines for configuring and using a cooling system. Specific steps and requirements may vary depending on the model of laser equipment and chiller, manufacturer guidelines, and actual application environment. Therefore, it is recommended to refer to the relevant documentation for the laser equipment and chiller and follow the manufacturer's recommendations and guidance when configuring and using the cooling system.

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