Chiller Product List and Ranking from 16 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

Chiller Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. 東栄 Tokyo//Trading company/Wholesale
  2. 不二熱学サービス Osaka//Other construction industries
  3. VISTA Yamanashi//others
  4. 4 三國機械工業 Tokyo//Trading company/Wholesale
  5. 4 桑名金属工業 Mie//Building materials, supplies and fixtures manufacturers

Chiller Product ranking

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. Water-soluble coolant temperature control device Coolant Chiller RCC (air-cooled) 東栄
  2. Super Large Inverter Chiller RKE Series 東栄
  3. Environmentally friendly air-cooled non-Freon chiller "Dear Cool" 不二熱学サービス
  4. 4 Large DC Inverter Chiller RKE-B Series (Air-Cooled / Water-Cooled) 東栄
  5. 4 TELEMARK Cryochiller VISTA

Chiller Product List

31~45 item / All 52 items

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Chiller "Type B"

Ideal for temperature control of liquids such as pharmaceuticals and food! Custom solutions are also available to meet your needs.

The "Type B" chiller can adjust temperatures from -35°C to +25°C. The heat exchanger is completely separated, preventing any mixing of the primary and secondary sides of the coolant. It is effective for temperature control of liquids that must never mix, such as pharmaceuticals and food products. Additionally, we accept custom products tailored to your needs. Please consult us about the development of heat exchange components within the equipment. We will propose products based on extensive experience. 【Features】 ■ Temperature adjustment range: -35°C to +25°C ■ Coolants used: fluorinated inert liquids, brine, and pure water ■ Complies with international safety standards such as SEMI, CE, and RoHS ■ Various communication specifications can be accommodated ■ Dimensions: 700(W) × 610(D) × 1695(H) *For more details, please feel free to contact us.

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Chiller "Type C"

Ideal for temperature regulation of liquids such as pharmaceuticals and food! Custom solutions are also available to meet your needs.

The "Type C" chiller can adjust temperatures from -30°C to +90°C. The heat exchanger is completely separated, preventing any mixing of the primary and secondary cooling fluids. It is effective for temperature control of liquids that must not mix, such as pharmaceuticals and food. Additionally, we accept custom products tailored to our customers' needs. Please consult us for the development of heat exchange components within the equipment. We will propose products based on extensive experience. 【Features】 ■ Temperature adjustment range: -30°C to +90°C ■ Cooling fluids used: fluorinated inert liquids, brine, and pure water ■ Complies with international safety standards such as SEMI, CE, and RoHS ■ Various communication specifications can be accommodated ■ Dimensions: 640(W) × 980(D) × 1640(H) *For more details, please feel free to contact us.

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Chiller "Type D"

Ideal for temperature control of liquids such as pharmaceuticals and food! Custom solutions are also available to meet your needs.

The "Chiller Type D" allows for temperature regulation from +10°C to +90°C. The heat exchanger is completely separated, preventing any mixing of the primary and secondary cooling liquids. It is effective for temperature control of liquids that must not mix, such as pharmaceuticals and food products. Additionally, we accept custom products tailored to our customers' needs. Please consult us for the development of heat exchange components within your equipment. We will propose products based on extensive experience. 【Features】 ■ Temperature regulation range: +10°C to +90°C ■ Cooling liquids used: fluorinated inert liquids, brine, and pure water ■ Complies with international safety standards such as SEMI, CE, and RoHS ■ Supports various communication specifications ■ Dimensions: 750(W) × 848(D) × 1600(H) *For more details, please feel free to contact us.

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R32 refrigerant used air-cooled heat pump chiller 'MSV2'

Achieving high efficiency and energy savings! We also introduce case studies from beverage factories, farms, and industrial plants.

The "MSV2" is a new series of air-cooled heat pump chillers that achieves top-class efficiency and energy savings in the industry, enhancing environmental performance. It supports annual cooling and annual heating as standard. By adopting R32 refrigerant and reducing the amount of refrigerant, it significantly lowers the impact on global warming. Additionally, the Y-shaped unit structure ensures a wide entrance even when installed continuously, making it easier to replace compressors and facilitating inspection services. 【Features】 ■ Achieves top-class efficiency and energy savings in the industry ■ Supports annual cooling and annual heating as standard ■ Adopts R32 refrigerant and reduces refrigerant amount, significantly lowering the impact on global warming ■ Achieves 70 horsepower, contributing to space-saving ■ Y-shaped unit structure *For more details, please refer to the PDF materials or feel free to contact us.

  • Heating and cooling equipment and facilities

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Instant Cold Water Chiller Direct One

Brine system focused on low-temperature stability, direct water supply without stagnation in the tank.

1. Supply of Drinking Cold Water: Tankless Cold Water Supply The decrease in chlorine concentration of cold water stored in ice shavers and ice storage tanks poses a risk of bacterial growth. Our unique tankless design supplies cold water directly. Regular cleaning of cold water tanks is no longer necessary. 2. Stable Supply: Stable Supply of Cold Water Close to 0°C Using a brine heat exchange method, cold water can be reliably extracted in the necessary amounts at any time without being affected by external conditions. 3. Full Cooling: Measures Against Overcapacity of Ice Storage Systems In the case of ice storage systems, if the design value is exceeded, uncooled water will flow. The direct water supply method is designed to cool the entire volume, eliminating the risk of temperature rise during use. 4. Energy Saving: Adoption of Inverter Equipment The cooling unit uses an inverter that excels in load-following capability and also offers excellent energy-saving performance. 5. Easy Installation: Easy to Install Unit Type With an integrated frame design, it can be delivered and installed as is. Being tankless and lightweight, its compact dimensions allow for flexible installation locations. 6. Environmentally Friendly: Excellent Environmental Impact Mitigation The indirect brine method minimizes the use of refrigerants. The refrigerant used is R410A.

  • Water supply facilities
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LCC Low-Cost Basic Chiller

A smart chiller that pursues basic functions, providing 3°C cold water at half the market price.

1. Stable Supply: We can consistently supply 3°C cold water throughout the year. Our chiller control technology (patent pending) enables a stable supply of 800 liters of 3°C cold water per hour, unaffected by supply water temperature. 2. Energy Saving: Unit COP 2.2, and operates only when needed. Compared to conventional cold water units, power consumption is reduced, changing the common perception that "cold water is expensive." 3. Low Cost: Pursuing the "minimum necessary" to produce 3°C cold water. Innovative ideas have made it possible to produce cold water without a brine solution. By eliminating the brine circuit that was previously necessary, we have achieved significant cost reductions.

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TRUSCO Portable Body Cooling Wear "Cold Carry"

For heatstroke prevention! Always cool, portable, and keeps you cool anywhere, truly a "mobile air conditioner."

Cold water circulates through the tubes inside the vest, effectively cooling the body without being affected by the outside temperature. The Cold Carry is a perfect product for heatstroke prevention, connecting a compact carry-type chiller (cooling water circulation device) with a dedicated vest (sold separately) via a hose. Cold water circulates through the tubes spread throughout the vest, providing a refreshing sensation as if wearing cold water. Despite its compact size, the chiller is high-performance, maintaining a "cold" state even as the outside temperature or working environment rises, effectively providing cooling in work environments where air conditioning was previously not possible. The unit is equipped with a handle and casters, allowing for easy movement like a carry cart, and can be easily connected with just an AC100V power supply. There is no drainage, making maintenance simple. The hose is 3 meters long, and splash guard covers (for the hose and the unit) are also available for separate purchase. *For more details, please contact us or download the catalog PDF to view.

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[Construction Achievements] Changed from gas absorption chiller to air-cooled heat pump chiller.

Cutting down on complicated maintenance costs! Contributing to the reduction of running costs.

We would like to introduce the construction results of the air conditioning system that was changed from a gas absorption chiller to an air-cooled heat pump chiller. The gas absorption chiller, which required cumbersome maintenance, was updated to a convenient air-cooled heat pump chiller. VOC countermeasures in the printing factory (such as ventilation and chemical recovery) were built into the system. Outdoor air is taken into the air conditioning system, temperature-controlled, and then used for heating and cooling, achieving both functionality and performance. 【Benefits of Implementation】 ■ Reduction in running costs ■ Improvement in service life ■ Enhancement of quality in the printing process *For more details, please refer to the PDF document or feel free to contact us.

  • Air conditioning equipment

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Environment and New Refrigerants International Symposium 2018

Overview of the program and impressions! Introducing a report on participation in the international symposium.

The "International Symposium on Environment and New Refrigerants" (Kobe Symposium) was held on December 6 (Thursday) and 7 (Friday), 2018. This event, organized by the Japan Refrigeration and Air Conditioning Industry Association, has been held biennially since 1994 and is highly regarded internationally as a platform for the presentation of information on the environment and refrigerants by government bodies, organizations, research institutions, universities, and companies. In this article, we will provide a report on our participation in the 13th Kobe Symposium. [Contents] ■ Program Overview - Day 1: 12/6 (Thursday) - Day 2: 12/7 (Friday) ■ Impressions (from our participants) *For detailed content of the article, please refer to the related links. *For more information, please refer to the PDF document or feel free to contact us.

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Air cooling? Water cooling? Which chiller is suitable for a data center?

It is helpful to understand the specific advantages and disadvantages of each type of chiller!

Which cooling system is more suitable for data centers, air-cooled chillers or water-cooled chillers? There is not just one answer. Designers of air conditioning systems need to ask many questions before proposing the appropriate type of chiller. Factors specific to the project, such as available space, backup power, regional regulations limiting power and water usage, and the owner's sustainability priorities, can overturn what was almost considered a definitive choice of equipment. It is ideal for data centers to consult with air conditioning companies in the preliminary design phase to identify solutions that meet both short-term and long-term goals. If you are making decisions for a data center, it helps to understand the specific advantages and disadvantages of each type of chiller. [Contents (Excerpt)] - Capacity - Maintenance - Location - Energy Efficiency - Delivery and Installation *For more detailed information, please refer to the related links. *For more details, please check the PDF materials or feel free to contact us.

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Six Ways to Achieve the Greening of Air Conditioning Systems

Towards decarbonizing air conditioning systems! Here are six ways to make significant progress from now on.

The sustainability of buildings has consistently improved over the decades due to advancements in technology and materials. Some of these advancements are groundbreaking. Today, solutions are readily available that can provide economic benefits to building owners while reducing emissions. Here, we present six ways for air conditioning systems to make significant progress towards decarbonization: - Thoroughly eliminate inefficiencies on a per-kilowatt basis - Use cold outside air instead of compressors - Recover and reuse thermal energy - Plan for a transition to low-GWP refrigerants - Store energy and balance supply and demand - Transition to on-site and off-site renewable energy *For more details, please refer to the related links. *For more information, please check the PDF materials or feel free to contact us.

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Indoor Air Quality (IAQ) of Commercial Facilities: Success Stories and Trends

There are cases where attention is being focused on the long-term health of buildings! Small changes can have a big impact.

Managing buildings in the context of a global pandemic is not an easy task. Tenant occupancy rates, hygiene, air flow, and energy usage are just a few of the areas that building owners and managers focus on. In many cases, activities aimed at improving the indoor environment of buildings (including air quality) have been yielding results. Until now, there have been no specific solutions, and concrete assessments and research tailored to each situation have been conducted to mitigate risks within the scope of the owner's buildings, facilities, and budget. *For more detailed information, please refer to the related links. *For more details, please check the PDF materials or feel free to contact us.

  • maintenance
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Energy Conservation Benchmarking System

An explanation of the key points to keep in mind about the energy-saving benchmark system based on the materials!

The Energy Conservation Act was enacted in 1979 in response to the oil crisis, and since then, various systems have been introduced. In recent years, the Energy Conservation Benchmarking System (Industry Top Runner System) was introduced in the industrial sector in 2009-2010, followed by its introduction in the business sector and the expansion of the target industries. This time, I will explain the key points of the Energy Conservation Benchmarking System based on materials from the Ministry of Economy, Trade and Industry. [Contents] ■ Overview of the Energy Conservation Act ■ What is the Energy Conservation Benchmarking System? ■ Awareness of issues in the Energy Conservation Act and the introduction of the Energy Conservation Benchmarking System ■ Expansion of the Energy Conservation Benchmarking System (Industry Top Runner System) ■ Class classification evaluation system for businesses *Detailed content of the article can be viewed via related links. *For more information, please refer to the PDF materials or feel free to contact us.

  • maintenance
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