Top Battery Cooling Companies

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163 companies for Battery Cooling

Tristone Flowtech's Logo

Tristone Flowtech


- Employees


At TRISTONE Group, we focus on our customers. We build and we deliver what they need and what we promised. Building on our knowledge, TRISTONE is constantly working hard not only on the existing product portfolio and new devices, but on the respective processes, too. At TRISTONE, we are on a constant mission to take our products a step further, on the next quality level. Tristone Global Environmental Policy V1.pdfTristone Global Quality Policy.pdfLocal Policies. At Tristone Flowtech, we recognize the role we play in promoting sustainability throughout the automotive industry. At Tristone Flowtech, our sustainability approach includes establishing strict supplier evaluation criteria, promoting ethical practices, and adhering to international social and environmental standards. We are committed to achieving carbon neutrality by 2050.


Battery Cooling

... Battery Cooling ...

VOSS Automotive, Inc., USA's Logo

VOSS Automotive, Inc., USA

Fort Wayne, United States

101-250 Employees


At VOSS, we develop, mechanically engineer and produce innovative line and connection technology for the transportation industry worldwide. Our collaborative culture embraces and empowers employees to provide exceptional service for our customers. The success of VOSS is based on quality products, close customer proximity, dedication and commitment. At VOSS, we plan and implement all process steps in close collaboration with our customers – from project conception to product delivery through our global network. Our high production standards "5S" and "Zero Defect Production" are transparent and applied at all VOSS locations. In order to maintain our high quality standards every single day and every location, we have established a 6-point program that is valid worldwide and that our customers can rely on.

Core business

VOSSUSA.COM | A Global Leader in Custom Line and Connection…

... thermal management battery cooling line assemblies, quick ...

LargEddy's Logo


Duisburg, Germany

1-10 Employees



Battery Cooling

... Battery Cooling ...

Yinlun TDI's Logo

Yinlun TDI

Ontario, United States

51-100 Employees


Yinlun TDI LLC provides thermal management solutions to the Automotive, Commercial Truck and Recreational Vehicle market place. Our highly-focused Engineering and Applications team will provide a superior product design that is sure to meet all your performance and vehicle packaging challenges. Our skilled manufacturing personnel will bring your thermal management solution needs into production at world class prices and quality.


Battery Cooling Plates

...   A battery cooling plate is a thin metal fabrication which includes ...

Shanghai SDAAC Automotive Air-Conditioning Systems Co., Ltd. Yantai Branch's Logo

Shanghai SDAAC Automotive Air-Conditioning Systems Co., Ltd. Yantai Branch

Yantai, China

251-500 Employees


We are a global player in the automotive industry. The components we produce keep the heating, cooling and air conditioning systems of vehicles running just right. Ultimately, it is our goal to become the preferred partner for all our customers. We are now fully integrated as one company and one team with one vision “Be the most preferred partner for each of our customers - we do this by continuously developing ourselves individually and as one family”. It is our job to make people comfortable; so, even as our products are used around the world, we take pride in our personal connection with our customers. Our people are central to this, helping us deliver high-quality solutions in a flexible, responsive way that enable lasting customer relationships. ESTRA designs ,validates and manufactures vehicle thermal system solutions with an annual production capability of 3 million sets of HVAC and 4 million sets of Powertrain Cooling Modules, including Liquid Cooled Condensers, Oil Coolers, Radiators and Condensers. The previously distinct brands – ERAE Automotive and SDAAC – will now operate as one brand: ESTRA.


Battery Cooling Plate

... Battery Cooling Plate - ...



Svendborg, Denmark

1-10 Employees


COOL4SEA has developed a cooling technology that recycles thermal waste energy and utilizes it for marine air-conditioning and battery cooling. We are very proud to announce that we have once again agreed on a contract with Teknotherm Marine AS for the delivery of the unique COOL4SEA chiller system for a windfarm support vessel for Esvagt – Chiller system for windfarm support vessel. COOL4SEA recycles thermal waste energy from the ship’s engines for cooling. COOL4SEA has developed an award-winning refrigeration technology for use onboard ships.

Core business

Marine air-conditioning and battery cooling powered by waste heat

... Marine air-conditioning and battery cooling powered by waste ...



Charleroi, Belgium

11-50 Employees


Cette offre de prêt à tempérament All-In se compose d’un crédit EASYfin Planning et d’un contrat d’extension de garantie incluse.




DCAirco Thermal management & HVAC Systems's Logo

DCAirco Thermal management & HVAC Systems

Alkmaar, Netherlands

11-50 Employees


DCAirco is based in the Netherlands close to our well known European suppliers guaranteeing the high quality and the latest technology. No worries when we are on a mission with these robust Heating, Venting & Cooling - Air conditioning! DCAirco's High efficient electric HVAC (Heating, Venting & Cooling) cab air conditioners & battery chillers are supplied off the shelf or custom made offered in 12V 24V 48V 74V 110V 230V 400V 750V for AC and DC powered:. DCAirco is the manufacture of High Efficient DC Powered Heating, Venting & Cooling (HVAC) - Air Conditioning, Chiller, and Free cooling solutions that are robust, reliable, and running directly from the battery of the off-grid equipment or vehicles. High output - Low consumption Air Conditioning products are the equipment of choice for worldwide clients. The company founded as Transsolar in 1990 decided to develop a air conditioner that could work on solar energy. As the solar modules cost remained high, the company decided to focus on making energy efficient dc powered air conditioners for anti idling of trucks. The main office and production are situated next to one of the world biggest airport (Amsterdam) and harbour (Rotterdam) providing low cost fast shipment around the world.


Battery - Equipment cooling, Air-conditioning, Heating, Venting and Free cooling

... Battery - Equipment cooling, Air-conditioning, Heating, Venting and Free ...

Thermo Kingtec CO.,LTD's Logo

Thermo Kingtec CO.,LTD


251-500 Employees



Battery Cooling System Manufacturer from China - henan TKT

... Battery Cooling System Manufacturer from China - henan ...

Wölfle GmbH's Logo

Wölfle GmbH

Kronburg, Germany

1-10 Employees


Das Unternehmen Ungezähmte Leidenschaft für ­Technologie Inside Wölfle. Karriere bei Wölfle Werde zum Wolf Inside Wölfle. Zu weiteren Informationen der von uns verknüpften Diensten wie Google, Salesforce, Pardot und Social Media Plattformen lesen Sie bitte unsere Datenschutzerklärung. >>zum Datenschutz.


Battery cooling

... Battery cooling ...

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Some interesting numbers and facts about your company results for Battery Cooling

Country with most fitting companiesUnited Kingdom
Amount of fitting manufacturers1433
Amount of suitable service providers1342
Average amount of employees11-50
Oldest suiting company2003
Youngest suiting company2021

Geographic distribution of results





Things to know about Battery Cooling

What is Battery Cooling?

Battery cooling refers to the process and systems implemented to manage and regulate the temperature of batteries, particularly in applications where batteries are subjected to high operational demands, such as in electric vehicles (EVs), energy storage systems, and electronic devices. This thermal management strategy is crucial because batteries, especially lithium-ion types, generate heat during charging and discharging cycles due to internal resistance and inefficiencies in energy conversion processes. Excessive heat can lead to accelerated degradation of battery components, reduced efficiency, and in extreme cases, thermal runaway—a condition where increasing temperature can lead to uncontrolled battery reactions and potential failures or fires. Battery cooling systems can be passive, relying on heat dissipation through natural airflow and thermal conductive materials, or active, employing mechanisms such as liquid cooling circuits, air cooling with forced ventilation, or phase change materials to effectively remove or distribute heat. The implementation of efficient battery cooling technologies enhances the operational longevity, reliability, and safety of battery systems, thereby playing a pivotal role in the widespread adoption and performance optimization of battery-powered solutions across various sectors, including automotive, renewable energy, and portable electronics. This, in turn, supports the global transition towards electrification and sustainable energy utilization, highlighting the significance of advanced battery cooling solutions in contemporary and future technological advancements.

Advantages of Battery Cooling

1. Enhanced Battery Life:
Battery cooling systems significantly prolong the lifespan of batteries by maintaining them at optimal operating temperatures. Excessive heat can cause battery degradation at a faster rate, thus cooling helps in preserving the battery's health and functionality over time.

2. Improved Performance:
Batteries operate more efficiently in a controlled temperature environment. Cooling systems ensure that the battery maintains its ideal temperature, thus enhancing its performance. This is particularly important in high-demand applications like electric vehicles, where battery performance directly impacts vehicle range and power.

3. Safety:
Battery cooling systems play a critical role in ensuring safety by preventing overheating, which can lead to thermal runaway—a condition where an increase in temperature can cause a chain reaction leading to fires or explosions. By regulating the battery temperature, cooling systems significantly reduce the risk of such hazardous events.

4. Cost Efficiency:
By extending the battery's life and optimizing its performance, cooling systems can offer significant cost savings over time. The reduced need for frequent battery replacements and maintenance translates to lower long-term expenses, making it an economically viable option.

How to select right Battery Cooling supplier?

While evaluating the different suppliers make sure to check the following criteria:

1. Technical Expertise and Experience
Ensure the supplier has a proven track record and expertise in developing and implementing battery cooling systems specifically. Their experience in the electric vehicle (EV) sector or in applications similar to your needs is crucial.

2. Product Quality and Reliability
Evaluate the quality of the cooling systems offered. High reliability and durability are essential to prevent battery overheating and to ensure the longevity of your product.

3. Customization Capabilities
The ability to customize cooling solutions to fit specific battery configurations and vehicle designs is important for optimal performance.

4. Compliance with Standards
Check that the supplier’s products comply with international safety and performance standards relevant to battery cooling systems.

5. Supply Chain Efficiency
Assess the supplier's ability to meet demand with minimal lead times. A robust and reliable supply chain is crucial for maintaining production schedules.

6. After-Sales Support
Consider the level of technical and after-sales support offered. Effective troubleshooting, maintenance services, and warranty terms are important for long-term satisfaction.

7. Cost-Effectiveness
While not compromising on quality and reliability, evaluate the cost-effectiveness of the supplier’s solutions. Competitive pricing, along with the factors above, can significantly impact your project's ROI.

8. Innovation and Technology Advancement
A supplier that invests in research and development to innovate and improve their cooling solutions can offer advanced technologies that enhance battery performance and safety.

What are common B2B Use-Cases for Battery Cooling?

Battery cooling systems are crucial in various industries, ensuring the optimal performance and longevity of battery systems by managing their temperature. One significant use case is in the electric vehicle (EV) sector. As EVs gain popularity, the demand for efficient and reliable battery cooling systems escalates. These systems are essential for preventing overheating, ensuring batteries operate within their ideal temperature range, thus maximizing the vehicle's range and battery life. In the realm of renewable energy storage, battery cooling plays a pivotal role. Solar and wind energy systems often rely on large battery banks for storing energy. Efficient cooling systems are essential to safeguard these batteries from temperature extremes, which can degrade their performance and lifespan. This ensures a steady and reliable supply of stored energy, enhancing the efficiency of renewable energy systems. Additionally, the data center industry presents a growing use case for battery cooling. As data centers expand, so does their reliance on uninterruptible power supplies (UPS) that feature large battery arrays. Keeping these batteries cool is vital for maintaining data integrity and operational continuity. High temperatures can lead to battery failure, risking data loss and downtime. Thus, effective battery cooling systems are integral to the resilience and reliability of data centers. These examples illustrate the diverse and critical applications of battery cooling across sectors, underscoring its importance in supporting the evolving needs of technology and energy.

Current Technology Readiness Level (TLR) of Battery Cooling

Battery cooling technology, essential for managing the temperature of batteries in various applications such as electric vehicles (EVs) and renewable energy storage systems, currently spans a broad spectrum within the Technology Readiness Level (TRL) scale, primarily ranging from TRL 6 to TRL 9. This variance is due to the diverse approaches to battery cooling, including air cooling, liquid cooling, and phase change material (PCM) cooling, each at different stages of development and deployment. Liquid cooling systems, being more advanced, are closer to TRL 9, having been fully integrated into several commercial EV models, demonstrating their reliability and efficiency in real-world applications. These systems circulate a coolant to absorb and dissipate heat, offering superior thermal management compared to air cooling, which is simpler and less expensive but less efficient, aligning it with a slightly lower TRL. PCM cooling technology, while promising for its ability to manage extreme temperature spikes without active energy input, is generally considered to be at an intermediate TRL, reflecting ongoing development and partial integration into commercial products. The specific TRL designation for each cooling technology underscores the technical challenges and achievements in thermal management, including the balance of efficiency, cost, weight, and complexity, which are critical for the safe and effective operation of battery systems.

What is the Technology Forecast of Battery Cooling?

In the short-term, advancements in battery cooling technologies are anticipated to focus on enhancing the efficiency of current liquid cooling systems. Developers are expected to integrate more sophisticated thermal management materials, such as phase change materials (PCMs) and advanced coolants, that can operate effectively at a wider range of temperatures. These improvements aim to reduce thermal hotspots and improve the longevity and performance of battery packs, particularly in electric vehicles (EVs) and consumer electronics, where safety and efficiency are paramount. Mid-term developments are likely to witness the emergence of solid-state battery (SSB) cooling solutions. As solid-state batteries gradually replace lithium-ion ones, cooling strategies will adapt to their unique needs. Innovations may include the integration of cooling channels within the battery structure or the use of electrochemical approaches to dissipate heat. These techniques will not only enhance the safety and energy density of batteries but also pave the way for their application in more demanding environments, such as aerospace and industrial machinery, where robust performance is critical. In the long-term, the focus will shift towards the implementation of autonomous thermal regulation systems. These advanced systems will leverage artificial intelligence (AI) and machine learning (ML) to dynamically adjust cooling mechanisms based on real-time data, such as temperature fluctuations, usage patterns, and environmental conditions. This intelligent approach to battery cooling could significantly extend battery life, reduce energy consumption, and minimize the need for maintenance. Such futuristic cooling technologies will be crucial in enabling the next generation of energy storage solutions to meet the ever-increasing demands of high-performance computing, electric transportation, and renewable energy storage.

Frequently asked questions (FAQ) about Battery Cooling Companies

Some interesting questions that has been asked about the results you have just received for Battery Cooling

Based on our calculations related technologies to Battery Cooling are Industrial Electroplating, Industrial Filtration, Industrial Sintering, Industrial Extrusion, Industrial Handling

Start-Ups who are working in Battery Cooling are Ferveret, i2Cool Limited 創冷科技有限公司

The most represented industries which are working in Battery Cooling are Other, Manufacturing, Construction, Machinery Manufacturing, Oil, Energy and Gas

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Related categories of Battery Cooling