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cooler Product List and Ranking from 153 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

cooler Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

  1. 山善 Osaka//Trading company/Wholesale
  2. アピステ Osaka//Industrial Machinery
  3. サイシュウテクノ 涼風プラン 節電 エコ 冷風 熱中症 空調対策 Osaka//environment
  4. 4 荏原製作所 Tokyo//Industrial Machinery
  5. 5 シロ産業 Osaka//Industrial Electrical Equipment

cooler Product ranking

Last Updated: Aggregation Period:Feb 18, 2026~Mar 17, 2026
This ranking is based on the number of page views on our site.

  1. Cool Revolution: Heat Countermeasures for Large Spaces and Facilities 山善
  2. Ceiling-mounted control panel cooler "ENC-GR-EX-Pro Series" アピステ
  3. Portable Dry Cooler "CD7 Type" 荏原製作所
  4. 4 Control Box Cooler "Hikari Raku Cool" 光精工 本社
  5. 5 Portable dry cooler "Tempasis 12 CD12V type" 荏原製作所

cooler Product List

481~510 item / All 522 items

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Air-cooled thermo-cooler for close cooling in semiconductor manufacturing

Temperature management in semiconductor manufacturing. Direct cooling with power connection.

In the semiconductor manufacturing industry, temperature management in the manufacturing process is a crucial factor that affects product quality and yield. Particularly in precision electronic components and high-density mounted substrates, localized temperature increases can lead to performance degradation and failures. The direct-mounted air-cooled thermo-cooler addresses these challenges by cooling semiconductor devices and substrates directly. 【Usage Scenarios】 - Temperature management within semiconductor manufacturing equipment - Cooling of electronic components - Localized cooling of substrates 【Benefits of Implementation】 - Improved product reliability - Enhanced yield - Stabilization of the manufacturing process

  • Cooling system
  • air conditioning
  • cooler

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Air-cooled thermo-cooler for close cooling in communication infrastructure.

Solve the heat generation problem of communication infrastructure! Cooling possible with power connection.

In the telecommunications infrastructure industry, heat management has become a crucial issue for the stable operation of equipment. Particularly for servers and communication devices that operate 24 hours a day, it is essential to prevent performance degradation and failures due to overheating. The close-contact cooling air-cooled thermo-cooler contributes to addressing these challenges by directly cooling objects simply by connecting to a power source. 【Usage Scenarios】 - Inside server racks - Inside communication devices - Outdoor base stations 【Benefits of Implementation】 - Stable operation of equipment - Reduced risk of failure - Space-saving design

  • Cooling system
  • air conditioning
  • cooler

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Air-cooled thermo-cooler for close-contact cooling for research and development.

Easily manage the temperature of experiments. Cooling is possible with a power connection.

In research and development, the improvement of reproducibility and accuracy in experiments is always required. In particular, temperature management is a crucial factor that significantly affects experimental results. If precise temperature control cannot be achieved, the reliability of experimental data may be compromised. The close-contact air-cooled thermo-cooler allows for direct cooling of the experimental subject simply by connecting to a power source. This facilitates experiments that require precise temperature management and contributes to the efficiency of research and development. 【Usage Scenarios】 - Cooling of precision instruments - Testing materials against temperature changes - Evaluation of temperature characteristics of electronic components - Temperature adjustment of various sensors 【Benefits of Implementation】 - Improved reproducibility of experiments - Enhanced reliability of experimental data - Increased efficiency in research and development - Adaptability to a variety of experiments

  • Cooling system
  • air conditioning
  • cooler

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Air-cooled thermo-cooler for close-contact cooling for image processing

Precision cooling solutions that support high resolution.

In the image processing industry, as high resolution advances, the heat generation of image sensors and related electronic components has become a significant challenge. Heat generation leads to increased noise and malfunctions, resulting in decreased image quality and reduced system reliability. The close-contact air-cooled thermoelectric cooler addresses these issues, enabling stable image processing. 【Usage Scenarios】 - High-resolution cameras - Image processing devices - Medical imaging diagnostic equipment 【Benefits of Implementation】 - Reduction of image noise - Improvement of image quality - Enhanced system stability

  • Cooling system
  • air conditioning
  • cooler

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Aerospace Air-Cooled Thermo-Cooler for Close-Coupled Cooling

Directly cooled air coolers that contribute to lightweighting in the aerospace field.

In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and performance. Cooling electronic devices is a critical challenge in achieving both miniaturization and high performance. Traditional cooling methods often lead to increased weight and space constraints. The compact air-cooled thermal cooler for close-contact cooling meets the cooling needs of aerospace equipment with its lightweight and compact design. 【Application Scenarios】 - Cooling electronic devices in aircraft and spacecraft - Cooling of equipment where weight reduction is required - Cooling of precision instruments where temperature management is crucial 【Benefits of Implementation】 - Contributes to the miniaturization and weight reduction of equipment - Ensures stable operation of equipment through high cooling performance - Adaptable to various installation locations

  • Cooling system
  • air conditioning
  • cooler

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Air Cooling Thermo Cooler for Close Contact Cooling for 3D Printers

Direct cooling air cooler that improves the molding accuracy of 3D printers.

In the 3D printer industry, the accuracy and quality of printed objects are crucial. In particular, deformation and distortion due to heat can significantly compromise printing accuracy. Effective temperature management during the printing process is essential for precise modeling. A direct cooling air-cooled thermo-cooler improves printing accuracy by directly cooling the printed object and maintaining a constant temperature. 【Application Scenarios】 - Cooling of 3D printed objects - Printing with materials prone to thermal deformation - Applications requiring high precision in printing 【Benefits of Implementation】 - Improved dimensional accuracy of printed objects - Suppression of warping and distortion - Stabilization of printing quality

  • Cooling system
  • air conditioning
  • cooler

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Air-cooled thermo-cooler for housing cooling in medical precision equipment

Install in the enclosure for sealed cooling of precision equipment! No adjustments needed and maintenance-free.

In the field of medical precision instruments, temperature management is a crucial factor that affects the performance and reliability of products. Particularly in devices that perform high-precision measurements or analyses, temperature fluctuations can impact measurement results, potentially leading to incorrect diagnoses or analysis outcomes. Additionally, the rise in temperature within a sealed enclosure can cause equipment failure and shorten its lifespan. Air-cooled thermoelectric coolers for enclosure cooling address these challenges by maintaining precision instruments at optimal temperatures and supporting stable operation. 【Application Scenarios】 - Medical analysis instruments - Precision measurement devices - Imaging diagnostic equipment 【Benefits of Implementation】 - Stable operation of equipment - Improved measurement accuracy - Extended product lifespan

  • Cooling system
  • air conditioning
  • cooler

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Air-cooled thermo-cooler for automotive applications.

Install in the enclosure for sealed cooling! No adjustments needed and maintenance-free.

In the automotive industry, the reliability and durability of electronic devices are extremely important. These devices are expected to operate stably under harsh environmental conditions. In particular, for in-vehicle electronic devices exposed to high temperatures and vibrations, proper temperature management is essential. An increase in temperature within the enclosure can lead to failures or performance degradation of electronic components. Air-cooled thermal coolers for enclosure cooling appropriately manage the temperature inside the sealed enclosure, thereby enhancing the reliability of electronic devices. [Usage Scenarios] - In-vehicle electronic devices - Engine control units - In-car entertainment systems [Benefits of Implementation] - Extended lifespan of electronic devices - Reduced risk of failure - Assurance of stable operation

  • Cooling system
  • air conditioning
  • cooler

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Air Cooling Thermo Cooler for Game Cabinets

Install in the enclosure for sealed cooling! No adjustments needed and maintenance-free.

In the gaming industry, effective heat management within the casing is crucial for maintaining high performance. Especially during long gaming sessions or when performing high-load processing, there is a risk of performance degradation due to heat, and in the worst case, it could lead to equipment failure. Our air-cooled thermal cooler for casing cooling suppresses temperature rise within the casing and provides a stable operating environment. 【Usage Scenarios】 - High-performance gaming PCs - Arcade machine casings - eSports events 【Benefits of Implementation】 - Stabilization of performance - Extension of equipment lifespan - Prevention of issues caused by overheating

  • Cooling system
  • air conditioning
  • cooler

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Air-cooled thermo-cooler for robotics enclosure cooling

Cooling solution for sealed enclosures that contributes to the longevity of robots.

In the robotics industry, maximizing the reliability and uptime of robots is essential. Particularly for robots used in harsh environments, temperature management of electronic components is crucial. Increased temperatures can accelerate the degradation of components and potentially lead to failures. Air-cooled thermocoolers for housing cooling properly manage the temperature within the sealed housing of the robot, contributing to a longer lifespan. 【Usage Scenarios】 - Industrial robots - Outdoor-use robots - Robots equipped with precision instruments 【Benefits of Implementation】 - Extended lifespan of electronic components - Reduced risk of failure - Achieving stable operation

  • Cooling system
  • air conditioning
  • cooler

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Air-cooled thermo-cooler for defense applications.

Install in the enclosure for sealed cooling! No adjustments needed and maintenance-free.

In the defense industry, stable operation of electronic devices under harsh conditions is required. In particular, for equipment exposed to temperature changes, humidity, and vibration, proper cooling and dehumidification are essential to maintain the reliability of the devices. Inadequate cooling can lead to equipment failure or performance degradation. Air-cooled thermal coolers for housing cooling properly manage the temperature inside sealed enclosures and support the stable operation of the equipment. 【Usage Scenarios】 - Outdoor communication equipment - Mobile communication systems - Military electronic devices 【Benefits of Implementation】 - Increased equipment lifespan - Reduced risk of failure - Maintenance of stable performance

  • Cooling system
  • air conditioning
  • cooler

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Ultra-Low Temperature Thermo Cooler for Food Processing

Preserving food quality at -50℃ extreme low temperatures. Contributing to rapid freezing!

In the food processing industry, rapid freezing is essential for maintaining the freshness and quality of food. It is particularly important to minimize cell damage in food and suppress drip loss after thawing. Traditional freezing methods often have slow cooling rates, which can lead to a decline in food quality. The Thermo Cooler Ultra-Low Temperature SAMOL provides an ultra-low temperature environment of -50°C, solving these challenges by rapidly and uniformly cooling food. 【Usage Scenarios】 - Rapid freezing of food - Preservation of ingredient quality - Sample freezing in research and development 【Benefits of Implementation】 - Maintains food freshness and nutritional value - Suppresses drip loss after thawing - Reduces food waste

  • Cooling system
  • Refrigerators and freezers
  • Other environmental equipment
  • cooler

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Cryogenic Thermo Cooler for Aerospace Testing

Bringing an ultra-low temperature environment of -50℃ to aerospace testing sites.

In the aerospace industry, testing under extreme low-temperature conditions is essential for evaluating the durability and performance of components and materials. In particular, assessing resistance to temperature changes and functionality at cryogenic temperatures is crucial for ensuring the safety and reliability of products. Traditional cooling methods have faced challenges in temperature control accuracy and stability, which could affect the precision of test results. Our thermocooler achieves precise temperature management with an accuracy of ±0.1°C, supporting reliable data acquisition in aerospace testing. 【Application Scenarios】 - Cryogenic testing of aerospace components - Evaluation of low-temperature properties of materials - Simulation of space environments 【Benefits of Implementation】 - Improved reliability of test data - Reduced testing time - Enhanced efficiency in product development

  • Cooling system
  • Refrigerators and freezers
  • Other environmental equipment
  • cooler

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Cryo cooler for electron microscopes

A cryogenic environment of -50℃ for cooling samples in an electron microscope.

In the field of electron microscopy, temperature management of samples is crucial for improving observation accuracy. In particular, appropriate cooling is required to prevent samples from deteriorating due to heat or to avoid degradation of the observed images. Our thermocooler achieves an ultra-low temperature environment of -50°C, maintaining a stable condition for the samples. 【Application Scenarios】 - Observation of biological samples, polymer materials, semiconductor materials, etc., using electron microscopy - Reduction of observation time through rapid cooling of samples - Prevention of thermal denaturation of delicate samples 【Effects of Implementation】 - Improved observation accuracy of samples - Reduced observation time - Prevention of sample degradation

  • Cooling system
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  • Other environmental equipment
  • cooler

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Ultra-Low Temperature Thermo Cooler for Laser Technology

Optimizing the performance of laser devices in an ultra-low temperature environment of -50℃.

In the field of laser technology, temperature management of laser devices is key to maintaining performance. An increase in the temperature of the device can lead to a decrease in output and a reduction in lifespan, making precise temperature control essential. Particularly in high-power lasers and precision experiments, a stable cooling environment is required. The Thermo Cooler VL series provides ultra-low temperature environments down to -50°C, maintaining the optimal operating temperature of laser devices to maximize performance. 【Application Scenarios】 - Cooling of laser devices - Temperature management in laser experiments - Maintaining stable performance in laser processing 【Benefits of Implementation】 - Extension of laser device lifespan - Stabilization of laser output - Improvement in experimental accuracy

  • Cooling system
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  • Other environmental equipment
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Ultra-Low Temperature Thermo Cooler for the Energy Sector

Testing energy materials in an ultra-low temperature environment of -50℃. Improving testing accuracy with precise temperature management.

In the field of energy materials testing, it is important to accurately assess the impact of temperature changes on material properties. Particularly in the development of new materials and the performance evaluation of existing materials, testing in extremely low-temperature environments is essential. Traditional cooling methods have faced challenges in temperature control accuracy and stability, which could compromise the reliability of test results. The thermoelectric cooler, ultra-low temperature SAMOL "VL-2F2/VL-3F3," easily achieves ultra-low temperature environments down to -50°C and allows for precise temperature management within ±0.1°C. This enables accurate evaluation of energy material properties and accelerates research and development. 【Application Scenarios】 - Evaluation of low-temperature properties of energy materials - Low-temperature durability testing of battery materials - Performance evaluation of solar cell materials in low-temperature environments 【Benefits of Implementation】 - Improved testing accuracy - Enhanced efficiency in research and development - Acquisition of highly reliable test results

  • Cooling system
  • Refrigerators and freezers
  • Other environmental equipment
  • cooler

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Cryogenic Thermo Cooler for Astronomical Observations

For cooling astronomical observation sensors. Achieving ultra-low temperatures of -50°C.

In the field of astronomical observation, temperature management has become a crucial issue in maximizing the performance of high-sensitivity sensors. In particular, it is essential to maintain the sensor at an appropriate temperature to suppress thermal noise and obtain clearer image data. The Thermoelectric Cooler SAMOL, which provides ultra-low temperature environments down to -50°C, is ideal for cooling sensors used in astronomical observations. 【Application Scenarios】 - Cooling CCD/CMOS sensors in telescopes - Cooling infrared sensors - Temperature adjustment for observation equipment 【Benefits of Implementation】 - Reduces thermal noise in sensors and improves observation accuracy - Maximizes the performance of high-sensitivity sensors - Ensures stable acquisition of observation data

  • Cooling system
  • Refrigerators and freezers
  • Other environmental equipment
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[Data] Apiste Dictionary Thai - Compilation - / Apiste

<Overseas Support BOOK> Introducing translations of terms related to control panel coolers and FA sites in three languages: Japanese, English, and Thai!

I would like to introduce the "Apiste Dictionary Thai Language - Compilation Edition." It includes topics such as "coolers for control panels," "refrigeration cycles," and "the structure of engine bodies." Additionally, there is a special section summarizing business culture and manners. This book is very useful, so please take a moment to read it. 【Contents (excerpt)】 ■vol.1 index ・Coolers for control panels ・Refrigeration cycles ■vol.2 index ・Coolers for control panels ENC-GR series ■vol.3 index ・Machine tools *For more details, please refer to the PDF document or feel free to contact us.

  • Control Panel Cooler
  • cooler

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Plate cooler "ENC-GR-Pro series"

Numerous benefits! The ENC-GR-Pro series control panel cooler achieves low maintenance and energy savings with non-fluorocarbon + α.

The panel cooler, using an internal circulation method, can perform cooling, dust prevention, and dehumidification within the panel. It keeps the equipment inside the manufacturing site in optimal condition, ensuring stable production. ■ Significant reduction in maintenance costs and labor with finless and filterless design The GR-Pro series employs a finless condenser. There are no areas prone to clogging, so there is no filter, eliminating the need for filter cleaning or replacement. ■ No management costs for refrigerants as it uses non-Freon refrigerants With an extremely low global warming potential (GWP), it is exempt from the Freon emission control law, meaning there are no costs for recovering or destroying Freon from discarded coolers, and there is no obligation for regular inspections during use. ■ Energy-saving operation By operating according to the load rate, it achieves up to 55% energy savings compared to conventional models. In addition to "compressor control" using a uniquely developed inverter, it also controls the "condensing fan" and "electronic expansion valve." 【Features】 ■ Low maintenance due to no clogging ■ Energy-efficient (eco) & powerful cooling ■ High convenience with IoT compatibility ■ Lightweight, slim, and easy to install ■ User-friendly global specifications

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  • Control Panel Cooler
  • cooler

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Cabinet Cooling Dedicated Cooler | Cabinet Cooler 175-CC

No power required. Cabinet cooling (heat dissipation) dedicated spot cooler that operates solely on compressed air.

Cabinet coolers reduce overheating inside NC or CNC cabinets, electrical control panels, motor boxes, surveillance cameras, various measuring instruments, etc., protecting precision machinery and instruments from malfunction or damage due to overheating. Additionally, the automatic exhaust mechanism keeps the inside of the cabinet in a pressurized state with cooling air, preventing the intrusion of dust and mist from outside the cabinet and protecting electronic devices from contamination. By using a thermostat and solenoid valve, it is possible to regulate the temperature inside the box and reduce the amount of compressed air consumed. Model: 175-CC Minimum temperature*: -20°C Compressor guideline*: 3.7KW~ *Conditions apply; please refer to the catalog for details. ーーーーーーーーーー The Ariake Satellite Showroom showcases approximately 3,000 items of plastic piping components and pneumatic equipment that can be used simply by connecting compressed air, based on the concept of "see," "touch," "compare," and "verify." It is located in the TFT Building, close to Tokyo Big Sight, making it convenient to visit while attending exhibitions. ▼ Access 〒135-0063 Tokyo, Koto-ku, Ariake 3-chome 6-11, TFT Building, East Wing, 8F

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Spray Cooler for the Chemical Industry

Compatible with high-viscosity liquids! The ideal spray cooler for the chemical industry.

When a solid is heated above its melting point, it melts and becomes liquid. By spraying this, it is turned into many fine particles. By applying cold air to these particles and solidifying them, spherical products are obtained. By selecting the spray conditions, the product size can be set in the range of a few microns to several thousand microns. Additionally, by mixing another substance that serves as a core into the melted material and performing a similar process, microencapsulation can also be achieved. ● For more details, please contact us or download and view the catalog.

  • Granulating Equipment
  • Other physicochemical equipment
  • cooler

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Spray cooler

Ideal for processed products and pharmaceuticals! A spray cooler that produces spherical particles with extremely good fluidity.

When a solid is heated above its melting point, it melts and becomes liquid. By spraying this, it is transformed into many fine particles. By applying cold air to these particles, they solidify, resulting in spherical products. By selecting the spray conditions, the product size can be set in the range of several microns to several thousand microns. Additionally, by mixing another substance that serves as a core into the melted material and applying the same treatment, microencapsulation can also be achieved. ● For more details, please contact us or download and view the catalog.

  • Granulating Equipment
  • Other physicochemical equipment
  • cooler

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Medical Jet Cooler

Supporting the storage environment in medical settings with spot cooling.

In the medical industry, proper temperature management for storage purposes, such as for pharmaceuticals and specimens, is crucial. Inadequate temperature management can lead to quality degradation and alteration, potentially affecting accurate diagnosis and treatment. Jet coolers utilize compressed air to supply cool air to the necessary locations, making temperature management easier. 【Usage Scenarios】 - Storage of pharmaceuticals - Preservation of specimens - Cooling of medical devices 【Benefits of Implementation】 - Improved accuracy of temperature management - Quality preservation - Stable supply of products

  • Other environmental equipment
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Jet Cooler for Data Centers

Improving air conditioning efficiency in data centers with spot cooling.

In data centers, improving cooling capacity is essential due to the increasing density of servers. Excessive heat can lead to decreased server performance and failures, potentially hindering the stable operation of systems. Jet coolers enable spot cooling without using electricity, achieving precise temperature management. This helps reduce the overall air conditioning load in the data center and contributes to energy savings. 【Usage Scenarios】 - Local cooling of server racks - Temperature management of specific equipment - Emergency cooling in critical situations 【Benefits of Implementation】 - Stable operation of servers - Reduction in air conditioning costs - Promotion of energy efficiency

  • Other environmental equipment
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Jet Cooler for Chemical Plants

Optimize reaction control with spot cooling!

In the chemical plant industry, precise temperature management of reaction processes is essential to ensure product quality and safety. Particularly in exothermic reactions or temperature-sensitive reactions, localized overheating or temperature variations can lead to runaway reactions or the generation of by-products. Jet coolers utilize compressed air to cool specific areas precisely, allowing for accurate control of reaction temperatures. 【Application Scenarios】 - Cooling of reaction vessels - Removal of reaction heat - Localized temperature control 【Benefits of Implementation】 - Stabilization of reactions - Improvement of product quality - Enhanced safety

  • Other environmental equipment
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Jet Cooler for Metal Processing

Improve the cooling efficiency of the quenching process! Electric-free cooling air generation device.

In the metal processing industry, particularly in the quenching process, managing the cooling rate, which affects product quality, is crucial. Rapid cooling increases the hardness of metals, but uneven cooling can lead to warping and cracking. Jet coolers solve the cooling challenges in the quenching process by using compressed air to deliver uniform cold air precisely where needed. 【Application Scenarios】 - Cooling of metal parts after quenching - Cooling of molds and tools - Metal processing processes requiring localized cooling 【Benefits of Implementation】 - Improved product quality through precise control of cooling rates - Cost reduction through lower electricity bills - Prevention of warping and cracking due to uniform cooling

  • Other environmental equipment
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Jet Cooler for the Printing Industry

Pursuing performance and ease of use! Streamlining the ink drying process.

In the printing industry, there is a demand for reduced ink drying times and improved quality. Particularly when using high-speed printing or special inks, insufficient drying can lead to ink smudging and transfer, potentially compromising product quality. Jet coolers utilize compressed air to generate cool air, thereby streamlining the ink drying process. This is expected to result in shorter drying times, enhanced quality, and increased productivity. 【Application Scenarios】 - Ink drying for high-speed printing machines - Drying of special inks (such as UV inks) - Cooling of products after printing 【Effects of Implementation】 - Reduction in ink drying time - Prevention of ink smudging and transfer - Improvement in print quality - Increase in productivity

  • Other environmental equipment
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Fertilizer cooler

Efficiently cools fertilizers using indirect heat exchange technology with heat exchange plates.

- Over 100 units in operation at fertilizer plants worldwide - 90% reduction in power consumption - Compact design: installation possible within 4 square meters (requires height due to elongated design) - Stable temperature management year-round enables operational efficiency

  • others
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