Description
Chiller Water Cooling System
JL5200/CW5200

Chiller Water Cooling System

Industrial Cooling System / Water Chiller for Factories
Precise Temperature Control Industrial Cooling System




- In tropical regions with high year-round temperatures, industrial equipment may overheat, leading to malfunction, reduced efficiency, and potential fire hazards. Similar to human body temperature regulation, maintaining optimal operating temperatures for machinery is crucial for performance and longevity. Chillers provide an effective solution for managing high temperatures in industrial equipment.


- A chiller is a refrigeration unit designed to produce cooling by removing heat from a liquid, typically water, which is then circulated through a process or facility to lower the temperature. Available in various sizes, chillers are essential in industrial settings for managing machinery heat, ensuring equipment durability, and maintaining operational efficiency.

- Utilizes water as the primary medium for heat exchange and cooling.
- Widely employed in industrial environments to dissipate heat from machinery, extending equipment lifespan and preserving optimal performance.
- Applications include closed-loop systems, hydraulic injection molding machines, and CNC machinery.
- For example: Closed system pond, Hydraulic injection molding machine, CNC Engraving Cutting CO2, CNC Laser Engraving UV, CNC Router Milling, CNC Fiber Laser, and others.
Industrial Chiller for Sale: Model JL-5200
Designed for efficient cooling of CNC and fiber laser machines, ensuring optimal operation by preventing overheating during use.

FEATURES
- JL – 5000/5200 refrigerating capacity up to 1750 W.
- Utilizes a solenoid valve for precise control of coolant flow, ensuring stability and accuracy of the cooling system.
- Features intelligent and constant temperature operating modes, suitable for diverse environmental conditions.
- Equipped with an over-temperature alarm and sensor self-diagnosis function for fault detection.
- Integrated compressor overload protection and water flow alarm.
Machine Dimensions

Machine Components

Technical Parameters

Download User Manual for Chiller JL-5000/5200 Click Here
Temperature Adjustment Procedure for Chillers CW/JL5000/5200 and above
Chiller-5000 vs. Chiller-5200 Comparison

Comparison of All Water Chiller Models
Chiller Water Cooling Model JL



BTU Measurement Explained
BTU, or British Thermal Unit, is a unit of measurement used to quantify the amount of heat energy required to raise the temperature of one pound of water by one degree Fahrenheit at a constant pressure. It’s commonly used in the United States and other countries for measuring heating and cooling capacities.
The process of measuring BTUs involves several steps:
- Define the System: Determine the system for which the BTU measurement is being made. For example, it could be a heating system, a cooling system, or an appliance like a stove or water heater.
2. Identify the Substance: Determine the substance for which the heat energy is being measured. In many cases, this is water, but it can vary depending on the application.
3. Measure Temperature Change: Measure the initial temperature and final temperature of the substance. For example, if measuring the BTUs generated by burning fuel in a furnace, you would measure the temperature of the water before and after the heat exchange process.
4. Calculate Heat Energy: Use the formula to calculate the heat energy in BTUs:
Heat energy (BTU)
=
mass (lb)
×
specific heat (BTU/lb°F)
×
temperature change (°F)
5. Here, “mass” refers to the mass of the substance in pounds, “specific heat” refers to the specific heat capacity of the substance in BTU per pound per degree Fahrenheit (BTU/lb°F), and “temperature change” refers to the change in temperature in degrees Fahrenheit.
6. Account for Efficiency: In some cases, the efficiency of the system or device being measured may need to be taken into account to determine the actual BTU output or input.
Overall, BTU measurement provides a standardized way to quantify heat energy, which is essential for various applications, including HVAC (heating, ventilation, and air conditioning), cooking, and industrial processes.
Operation Between CO2 Laser Tube and Chiller
Optional Accessory: Heat Exchanger
The Heat Exchanger connects to the chiller and is submerged in water, further reducing water temperature.
Price: 3,000 THB !!
Heat Exchanger Installation with Chiller Unit
Heat Exchanger: An optional accessory for chillers that further enhances water temperature reduction. | SALECNC.net
Chiller Water Cooling VS Cooling Tower
Cooling Towers are primarily used in industries like plastics injection molding. However, they have significant drawbacks: large size, difficulty in maintenance due to their open-system design, and susceptibility to dust and debris contamination, which negatively impacts performance and shortens lifespan.
Consequently, industrial facilities increasingly favor Chiller Water Cooling Systems. These units are compact, space-saving, operate as closed systems to prevent contamination, and offer extended operational longevity.
| Cooling Tower | Chiller Water Cooling |
|---|---|
| ❌ Open system | ✅ Closed system |
| ❌ Open system design leads to easy ingress of dust and debris, causing clogging, corrosion, and negatively impacting machine performance. | ✅ Closed system design effectively prevents dust and debris from entering the unit, simplifying water changes and maintenance. |
| ❌ Difficult cleaning and maintenance procedures. | ✅ Easy cleaning and maintenance. |
| ❌ Large footprint requires significant operational space. | ✅ Compact design optimizes operational space. |
| ❌ Short operational lifespan. | ✅ Extended operational lifespan. |
| ❌ Lower initial cost but higher long-term expenses due to maintenance, repairs, and reduced lifespan. | ✅ Higher initial cost but offers superior long-term value through ease of maintenance, reduced repair costs, and extended equipment life. |
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061-509-6388 (Chompoo)
098-997-4199 (Fern)
0615096199 (Banz)
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E-mail : [email protected]
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A water chiller is often better than an air chiller depending on the application, environment, and efficiency needs. Here are the key advantages of a water chiller over an air chiller:
1. Higher Cooling Efficiency
- Water has a higher heat capacity than air, meaning it can absorb and transfer heat more efficiently.
- This makes water chillers more effective in high-heat-load applications.
2. More Consistent Cooling
- Water-cooled chillers provide steady cooling performance because water temperature is easier to control than ambient air temperature.
- Air chillers depend on the surrounding air temperature, which can fluctuate and reduce efficiency.
3. Better Performance in Hot Environments
- In hot and humid areas (like Thailand), air chillers struggle because the heat exchange with hot air is inefficient.
- Water chillers work well even in high ambient temperatures since they use water as a cooling medium.
4. Smaller Footprint & Indoor Installation
- Water-cooled chillers are typically more compact than air-cooled chillers of the same capacity.
- They can be installed indoors since they do not rely on large airflow systems.
5. Lower Noise Levels
- Water chillers are quieter because they do not require large fans for heat dissipation, unlike air-cooled chillers.
6. Longer Lifespan
- Water chillers last longer than air chillers because they operate at lower pressures and are not directly exposed to external environmental factors like dust, dirt, and fluctuating air temperatures.
7. Lower Energy Consumption in Large Systems
- In large-scale applications, water chillers can be more energy-efficient than air chillers because water is a better heat conductor, requiring less power to move heat.
Best Applications for Water Chillers:
- Industrial machinery cooling (like CNC machines, laser cutting, and injection molding).
- Data centers and large HVAC systems.
- Food & beverage production.
- Medical and laboratory equipment.
For SaleCNC.net customers, a water chiller can be an excellent solution for large-scale CNC machine cooling, laser welding, and other high-precision applications.













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