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Aerospace

Aerospace

Space simulation chambers include thermal vacuum environment simulators (thermal vacuum chambers), space dynamics simulators, and space combination environment simulators. These space simulation chambers replicate the vacuum, cold-black, and solar radiation conditions of space by controlling pressure and temperature. This testing assesses the adaptability of materials, components, and products used in aerospace—such as aircraft, spacecraft, satellites, rockets, and space capsules—in space environments. Through testing, potential issues with these devices can be identified, reducing the likelihood of failure and ensuring safe and reliable operation in space. KOMEG provides customized services for various types of space simulation chambers.

Space Simulation Chamber Solutions

Drilling Sampling Device Testing
Drilling Sampling Device Testing
Aerospace Electronics Component Testing
Aerospace Electronics Component Testing
Aerospace optical remote sensing instrument testing
Aerospace Optical Remote Sensing Instrument Testing
Vacuum Baking and Degassing
Vacuum Baking and Degassing
Hall Thruster Space Environment Simulator
Hall Thruster Test
Thermal vacuum test system
Thermal Vacuum Test System (TVAC)
Electric Propulsion and Thruster Systems Testing
Electric Propulsion and Thruster Systems Testing
Electric Propulsion and Thruster Systems
Thruster Life Test
Space Simulation and Vacuum
Space Environment Simulator
Drilling Sampling Device Testing

It is used for testing the mechanical properties of drilling sampling devices and can also be employed for thermal property testing of equipment in vacuum environments at both high and low temperatures.

  • Container size:Φ 1500mm×1200mm
  • Heat Sink size:Φ 1200mm×1200mm
  • Heat Cage size:Φ1000mm×1000mm
  • Working vacuum:1.0×10-3Pa
  • Ultimate vacuum:5.0×10-5Pa
  • Heat Sink temperature:≤100K
  • Heat flux:Not less than 1 solar constant

Connect with large microwave sources to complete microwave simulation tests in different altitudes, humidity and temperature environments.

  • Size:Φ1800mm×2700mm(L)
  • Vacuum degree:1×105Pa~1×10-2 Pa
  • Temperature range:-60℃~40℃
  • Control accuracy:±1℃
  • Humidity:In the range of 15℃~40℃, the pressure is from 2000 Pa to atmospheric pressure, and the partial pressure control accuracy of water vapor in this pressure range is better than ±10%.
Vacuum Baking and Degassing
Thermal vacuum test system

High and low temperature gas nitrogen, liquid nitrogen and infrared heating cage are used for temperature control. It is used for thermal vacuum test of central electronic equipment subsystem, single machine vacuum thermal cycle test and discharge test, and thermal balance test of electronic equipment inside and outside the cabin.

  • Container size: Φ 1800mm×2000mm
  • Heat Sink size: Φ 1500mm×2000mm
  • Base plate size: Φ 500mm×800mm
  • Working vacuum: 1.0×10-4Pa
  • Ultimate vacuum: 5.0×10-5Pa
  • Temperature range: -85℃~+140℃
  • Heat sink temperature uniformity: ≤5℃
  • Control accuracy: ≤0.1℃

Thermal vacuum testing of aerospace electronic components (devices)

  • Container size: Φ 1000mm×1800mm
  • Heat Sink size: Φ 800mm×1800mm
  • Working vacuum: 5.0×10-4Pa
  • Ultimate vacuum: 5.0×10-5Pa
  • Heat Sink temperature range: -65℃ to +120℃
  • Average heating and cooling rate of heat sink: ≥1℃/min
  • Heat sink temperature uniformity: ±1.5℃
Aerospace Electronics Component Testing