Cryogenics

Cryostats and cryogenic devices operating with liquid nitrogen and helium, engineered for vacuum environments.

Home / Vacuum Systems / Cryogenics

Engineered for extreme cold.

We design and manufacture devices for the cryogenic sector operating in vacuum, with both nitrogen and liquid helium, joining copper, stainless steel and various aluminium alloys with vacuum-tight techniques.

What we build

Cryogenic devices we engineer.

Helium and nitrogen cryostats

Cryostats operating with LN2 and LHe for research experiments.

Magnet and coil assemblies

Cold masses and coil structures for detectors and accelerators.

Copper cold components

High-conductivity copper parts for cold and RF environments.

Custom cryogenic devices

One-off devices co-designed with research groups, from concept to test.

Engineering

Cold, vacuum and materials.

The know-how that keeps performance stable at cryogenic temperatures.

01

Materials at low temperature

Copper, stainless steel and aluminium alloys selected and joined for cryogenic service.

02

Vacuum-tight joining

Welding and brazing qualified for thermal cycling between ambient and cryogenic temperatures.

03

Thermal management

Thermal shields, supports and interfaces designed to control heat loads.

04

Testing

Leak testing and functional checks performed before delivery.

Operating media

Nitrogen and helium, in vacuum.

Nitrogen and helium

Devices designed for liquid nitrogen and liquid helium service in vacuum conditions.

3 metal families

Copper, stainless steel and aluminium alloys joined with vacuum-tight techniques.

Vacuum Systems

Explore the vacuum offering.

UHV Chambers

High and ultra-high vacuum chambers, manifolds and custom components.

Chambers and ovens combining controlled temperature and vacuum.

Cryostats and devices for liquid nitrogen and helium.

You are here
Related projects

Cryogenic projects.

Particle Accelerators, Scientific Research
Cryogenics, Vacuum Systems

Cluster D Vertical Cryostat

Design, manufacturing and operational testing of liquid helium vertical cryostats for large superconducting magnets. A solution developed to ensure cryogenic stability, reduced thermal losses and high efficiency in liquid helium management.
Get in touch
Start Your Project

Talk with our team to develop your cryogenic device.

Scroll to Top