Category

Thermal Systems Companies

12 organizations4 countries1 listed

12 organizations working in thermal systems across the global space industry.

Names to know in thermal systems

Rank all by market value →
Spacecraft Components Verified PH

Parker Hannifin Space

Irvine, United States commercial

Parker Hannifin Space, a division of the century-old Parker Hannifin Corporation, focuses on the design and manufacture of critical components for the space industry. The company specializes in spacecraft components, with a core product line encompassing space valves, seals, and advanced thermal-management systems. Beyond these foundational elements, Parker Hannifin Space also develops and provides propulsion components and cryogenic systems essential for a range of space applications. A key strength of Parker Hannifin Space lies in its established engineering expertise and demonstrated flight heritage. The company highlights a history of successful implementation across both commercial and government space programs, suggesting a reliable and proven technology base. While specific technologies aren’t detailed publicly, the focus on cryogenic systems indicates capabilities in handling extremely low temperatures – a crucial requirement for propellant storage and advanced space exploration. Given the limited publicly available information, assessing precise market position is challenging. However, the combination of valves, seals, thermal control, and propulsion elements suggests Parker Hannifin Space operates as a key supplier to larger prime contractors and spacecraft manufacturers. Their long history and flight heritage likely position them as a trusted, established provider within the supply chain, rather than a direct-to-end-user company. Ultimately, Parker Hannifin Space appears to be a vital, if understated, contributor to the space industry, providing essential enabling technologies for a broad spectrum of missions. Their focus on reliability and proven performance, evidenced by their flight heritage, likely differentiates them in a competitive market.

Irvine, United States · Est. 1917 $119.8B
Thermal Systems Verified

Bally Ribbon Mills

Bally, United States commercial

Bally Ribbon Mills is a US-based manufacturer specializing in the design, development, and production of engineered woven fabrics, webbing, and tapes. Founded in 1923, the company serves a diverse range of industries including aerospace, defense, medical, safety, and automotive. Currently, Bally Ribbon Mills focuses on two key categories: thermal systems and composites, with a particular emphasis on weaving 3D composite thermal protection materials. The company’s core competency lies in its weaving capabilities, allowing for the creation of highly specialized and customized narrow fabrics. This expertise extends to producing materials designed for demanding applications requiring precise construction and performance characteristics. While specific details regarding proprietary technologies aren't publicly available, the focus on 3D composite thermal protection suggests capabilities in advanced materials integration and complex weave patterns. Currently available information does not detail specific missions, achievements, or key customers. However, serving the aerospace and defense sectors indicates a commitment to meeting stringent quality and performance standards required for critical applications. Bally Ribbon Mills differentiates itself through its long history of expertise in narrow fabric weaving and its ability to engineer specialized solutions tailored to customer needs. The company positions itself as a provider of high-performance materials for industries where reliability and precision are paramount, particularly within the growing fields of composite materials and thermal management.

Bally, United States · Est. 1923
Testing & Qualification

Experior Laboratories

San Antonio, United States commercial

Founded in 1968 and based in San Antonio, Texas, Experior Laboratories is a leading provider of testing services for the aerospace, satellite, telecommunications, military, automotive, and railway industries. The company specializes in vibration and shock testing, as well as thermal vacuum environmental testing – critical processes for verifying the performance and reliability of components and systems destined for challenging operational environments. Experior Laboratories offers electrical and fiber optic component testing as well. Experior Laboratories supports a broad customer base including leading manufacturers, government agencies, and prime contractors. Recent projects highlighted by the company demonstrate its involvement in numerous high-profile space missions, including work with Johns Hopkins APL’s Dragonfly program, Pixxel Space Technologies’ Firefly satellite launch, and testing for Astrojet Rocketdyne, Sierra Space, and Astrobotic’s lunar lander. They have also supported testing for emerging space companies like Impulse Space, Turion Space, and XONA Space Systems. The company has recently expanded its capabilities with the addition of new ExploraVac chambers and custom slip tables equipped with T-Film bearing technology, enhancing its capacity for complex testing requirements. This investment demonstrates a commitment to providing state-of-the-art services and supporting the rapidly evolving needs of the space industry.

San Antonio, United States · Est. 1968
Human Spaceflight Verified

Paragon Space Development

Tucson, United States commercial

Paragon Space Development Corporation is a Tucson, Arizona-based engineering company founded in 1993 by Jane Poynter and Taber MacCallum — both Biosphere 2 crew members — specializing in environmental control and life support systems (ECLSS) and thermal control systems (TCS) for human spaceflight applications ranging from near-Earth orbital habitats to deep space and lunar surface missions. Paragon's core engineering competency is the design and manufacture of closed-loop life support systems that maintain human-habitable atmospheric conditions in sealed pressurized environments: oxygen generation (via electrolysis or chemical oxygen generators), carbon dioxide removal (using lithium hydroxide canisters or regenerable 4-bed molecular sieves), humidity and temperature control, trace contaminant monitoring, and cabin pressure management. The company also develops water recovery systems that process crew condensate, urine, and wastewater through filtration and distillation into potable water — a critical system for long-duration missions where water resupply is impractical. Thermal control systems designed by Paragon manage heat rejection from spacecraft internal equipment through heat exchangers, cold plates, fluid loops (using ammonia or water as working fluid), radiators, and multi-layer insulation (MLI) blankets. For lunar surface operations, Paragon has developed regolith-facing thermal management concepts that must handle extreme temperature swings from -173°C (lunar night) to +127°C (lunar day). Paragon has contributed ECLSS hardware and engineering services to multiple programs: Bigelow Aerospace's BEAM (Bigelow Expandable Activity Module) on the ISS, NASA Commercial Crew program, Sierra Space Dream Chaser spaceplane life support design, and early-stage lunar lander habitat concepts under NASA's Artemis Commercial Lunar Payload Services (CLPS) framework. The company has also developed prototype spacesuit life support systems and portable life support system (PLSS) components. Competitors in the ECLSS space include Hamilton Sundstrand (now Collins Aerospace, which built the ISS ECLSS), Honeywell Aerospace, and NASA's own Johnson Space Center engineering teams. Paragon differentiates through its willingness to support smaller commercial customers and novel habitat architectures where legacy ECLSS vendors lack incentive to engage.

Tucson, United States · Est. 1993
Space Technology Verified

ThermAvant Technologies

Columbia, United States commercial

ThermAvant Technologies is a U.S.-based company specializing in advanced heat transfer solutions, with a core focus on oscillating heat pipe (OHP) technology. The company designs and manufactures custom OHPs, cold plates, and related thermal management systems for a diverse range of industries, including aerospace, defense, high-tech, and energy. With nearly $45 million invested in research and development since 2009, ThermAvant emphasizes innovation in materials and processes to optimize Size, Weight, Power, and Cost (SWaP-C) for its customers. A key differentiator for ThermAvant is its demonstrated reliability in space applications; the company reports over 300,000 hours of successful on-orbit operation of its OHP technology. This expertise is supported by an AS9100D certified manufacturing facility and a comprehensive development and quality assurance process. Recent activity indicates a strong relationship with government agencies, including NASA and the Air Force Research Laboratory (AFRL), as well as participation in initiatives related to national security and advanced manufacturing. Beyond aerospace, ThermAvant leverages its core thermal technologies into consumer products, having spun out a separate group focused on BURNOUT travel mugs utilizing aerospace-grade temperature control. This diversification demonstrates the broad applicability of their heat transfer expertise. ThermAvant positions itself as a provider of best-in-class thermal solutions, offering both custom engineering services and manufactured hardware, and actively pursues innovation through internal R&D and collaborative partnerships.

Columbia, United States · Est. 2007
Spacecraft Components

Admatis

Miskolc, Hungary commercial

ADMATIS (the name stands for "Advanced Materials In Space") is a Hungarian space engineering company based in Miskolc, founded in 2000. It specializes in thermal and structural hardware for spacecraft, including multi-layer insulation, radiators, thermal-control systems, mechanical structures and ground-support equipment, backed by in-house material-science, structural-analysis, manufacturing and environmental-test capabilities. Its hardware has flown on multiple European Space Agency missions: the company supplied thermal and structural components for ESA's JUICE (Jupiter Icy Moons Explorer) mission, which launched in 2023, for the CHEOPS exoplanet telescope, and for the Sentinel-2 and Meteosat Third Generation Earth-observation satellites; as of 2026 it was testing a third flight model of Meteosat Third Generation hardware. ADMATIS also contributed equipment to the POSITIVE project, an ISS-bound payload, and works as a subcontractor to prime contractors including Airbus, Thales and OHB, alongside direct collaboration with ESA and NASA. The company is privately held, majority-owned (63.5%) by the Bárczy family with the remainder held by other Hungarian private individuals, and has received Hungarian national GINOP grant funding for thermal-services and aerogel-insulation development work. ADMATIS is Hungary's most established space-hardware manufacturer, supplying flight components into ESA's science and Earth-observation programs rather than building complete spacecraft of its own.

Miskolc, Hungary · Est. 2000
Materials Acquired

Canopy Aerospace

Denver, United States commercial

Founded in 2021 and based in Denver, Colorado, Canopy Aerospace & Defense specializes in advanced ceramic additive manufacturing for demanding applications across multiple industries. The company focuses on providing end-to-end solutions – from design and research & development through to manufacturing and refurbishment – addressing critical needs for insulative, absorptive, and signal reduction requirements. Canopy’s core competency lies in the transformation and engineering of advanced materials, particularly ultra-high-temperature ceramics, enabling them to deliver bespoke thermal protection systems and components. Canopy serves a diverse customer base including the Aerospace & Defense, Space & Launch Operations, Maritime, and Power & Electronics sectors. They highlight capabilities in supporting hypersonic flight platforms, launch vehicles, deep-space probes, and critical defense programs. Notably, the company emphasizes a “speed-to-solution” approach, positioning itself as a flexible and responsive partner capable of rapidly prototyping and adapting to evolving customer needs. Canopy aims to function as a seamless extension of its clients’ organizations, filling critical gaps in the manufacturing chain and providing integrated program management and systems integration. While specific missions or publicly named customers are not detailed, Canopy’s solutions are designed for operation in extreme environments – ranging from the ocean depths to outer space – demonstrating the resilience and performance of their materials and systems. They are focused on improving mission readiness, survivability, and expanding design freedom through advanced material science and engineering.

Denver, United States · Est. 2021
Thermal Systems Verified

Advanced Cooling Technologies

Lancaster, United States commercial

Advanced Cooling Technologies (ACT) is a thermal management engineering company founded in 2003 and headquartered in Lancaster, Pennsylvania, specializing in heat pipe technologies, two-phase cooling systems, and thermal control solutions for spacecraft, defense electronics, and high-power industrial applications. ACT is ISO 9001:2015 and AS9100D certified with ITAR registration, serving NASA, DoD, commercial satellite manufacturers, and aerospace prime contractors. ACT's core product lines span the full spectrum of passive and active thermal management: conventional heat pipes (copper-water, titanium-ammonia, stainless-aluminum for cryogenic), loop heat pipes (LHPs) for long-distance spacecraft thermal transport, variable conductance heat pipes (VCHPs) for temperature-regulated electronics, and oscillating heat pipes (OHPs) for high-flux cooling. For spacecraft specifically, ACT designs and manufactures thermal straps, deployable radiators, cryocooler interfaces, and isothermalizer assemblies that maintain tight temperature windows for sensors, batteries, and RF electronics in vacuum. The company's spacecraft applications include thermal control hardware for NASA science missions and commercial communications satellites, where ACT heat pipes transfer heat from power amplifiers and processors to spacecraft radiator panels. ACT has delivered thermal systems for instruments on Mars orbiters, deep space probes, and LEO satellites requiring precise temperature stability across orbital day/night thermal cycling of ±100°C or more. The company also develops specialized solutions for cryogenic cooling — maintaining infrared detector arrays at 70–150 K — using nitrogen or neon as working fluids in flight-qualified hardware. ACT's engineering team of approximately 80 engineers (many with PhDs in heat transfer) operates dedicated thermal vacuum test chambers, vibration and shock test equipment, and clean room assembly facilities at its Lancaster campus. Beyond flight hardware, ACT provides thermal analysis services and prototype development for next-generation concepts including heat pipe arrays for nuclear power systems under NASA's Kilopower/KRUSTY programs and advanced hypersonic thermal protection. Competing companies include Thermacore (now Boyd Corporation), Orbital Sciences thermal division, and ATA Engineering in the spacecraft thermal solutions market.

Lancaster, United States · Est. 2003
Thermal Systems Verified

ARQUIMEA

Madrid, Spain commercial

ARQUIMEA is a Madrid-based Spanish aerospace technology company founded in 2005, specializing in thermal control systems — particularly heat pipes and loop heat pipes (LHPs) — and electromagnetic compatibility (EMC) solutions for space applications. ARQUIMEA's thermal products have accumulated substantial mission heritage across some of Europe's most demanding space programs: the ExoMars Trace Gas Orbiter (ESA/Roscosmos), Intelsat commercial GEO telecommunications satellites, Europe's Galileo navigation satellite constellation, Sentinel Earth observation satellites (Copernicus programme), and NASA's Mars Perseverance rover — giving ARQUIMEA a portfolio spanning ESA, NASA, and commercial customers across planetary, navigation, Earth observation, and telecommunications missions. Heat pipes and loop heat pipes are passive two-phase thermal devices that transport heat over long distances using the evaporation and condensation cycle of a working fluid (ammonia for space applications) through a sealed tube with a porous wick structure. They require no moving parts, no power, and achieve effective thermal conductivities thousands of times higher than solid aluminum — making them essential for distributing heat from electronics to spacecraft radiators or for maintaining temperature uniformity across structures with non-uniform heat loads. Loop heat pipes (LHPs) extend this to larger distances and variable heat loads, enabling flexible routing around spacecraft structure. ARQUIMEA's LHP technology was critical for the ExoMars TGO mission requiring precise temperature management in Mars orbit's extreme thermal environment, and for Galileo's stringent clock stability requirements where temperature gradients threaten atomic clock performance. For Mars Perseverance, ARQUIMEA developed thermal solutions managing the power electronics heat loads through the rover's Martian day-night thermal swings. Beyond thermal, ARQUIMEA develops pyrotechnic release mechanisms (separation nuts, cable cutters) and microelectronics for space qualification. The company employs approximately 150 engineers and operates cleanroom assembly facilities in Madrid. ARQUIMEA competes in the European space thermal market with Advanced Cooling Technologies (USA), Terma (Denmark), and Bradford ECAPS for thermal engineering services and flight hardware.

Madrid, Spain · Est. 2005

Explore all 12 thermal systems organisations

Filter by country, type or status, sort by market value or founding year. The view is saved in the address bar.

Skip to results

Loading companies…

Loading companies…