TSA Medium-sized TSA-303EL-W; Interior Volume: 10 cu. 300 Liters: Interior Dimensions (W x D x H) 38' x 26.4' x 18' 970 x 670 x 460 mm Exterior Dimensions (W x D x H) 74' x 70' x 75' 1870 x 1770 x 1900 mm: Temperature Range-65 to 200°C-85 to 392°F: Test Performance Example: Test: Two Zone, upstream air Range: -40 to 125°C Recovery: 10. Espec tsa-101l-a Temperature Range -65°C to 200°C 25' wide x 25' high x 18' deep (workspace) 65' wide x 77' high x 60' deep (overall) In Stock Request Quote Contact Us.
ESPEC’s latest series of thermal shock chambers improve upon the high reliability and efficiency of their previous series. Compared to the previous TSA series, the power consumption has been reduced of 35-50% with the energy saving achieved thanks to the new Eco-operation mode; the instrumentation automatically adjusts pre-cooling and pre-heating periods and runs operations with just the necessary energy. Improvements in the chamber’s reliability, with particular emphasis placed on removing unnecessary loads and stresses from the refrigeration system, the refrigerators themselves, and the refrigeration circuit have resulted in another great leap forward for these Air-to-Air thermal shock chambers.
Espec Thermal Shock Chamber :: Feature Summary
With new instrumentation featuring significantly increased processing speed and network connectivity, it is now possible to monitor and manage the status of test chambers in remote locations while sitting at your desk.
Highly accurate temperature recovery
Dampers with integrated rectifying function minimize variation in exposure conditions due to specimen position within the test area. This reduces the overall test time and shortens temperature recovery time, especially during low-temperature exposure. The uniformity in test conditions brought by this innovation also contributes to improved test reproducibility and reliability. An installation support file could not.
ESPEC’s patented parallel refrigeration system improves reliability
Nero wave editor for mac os x. Thanks to parallel refrigeration system and a newly designed refrigeration circuit, reliability is improved. The refrigeration circuit prevents refrigerant leaks by reducing thermal stress to refrigerators
and prevents corrosion in cooling pipes by upgrading the material and thickness.
and prevents corrosion in cooling pipes by upgrading the material and thickness.
Available Thermal Shock Chamber Models (Air to Air)
Model | Temperature range | Inside dimensions(mm) |
---|---|---|
TSA-43EL | High temp. exposure:Ambient temp. +50 to +200°C (+122 to +392°F) Low temp. exposure:–65 to 0°C (–85 to +32°F) | W240×H460×D370 |
TSA-73EL | W410×H460×D370 | |
TSA-103EL | W650×H460×D370 | |
TSA-203EL | W650×H460×D670 | |
TSA-303EL | W970×H460×D670 | |
TSA-73ES | High temp. exposure:+60 to +200°C (+140 to +392°F) Low temp. exposure:–70 to 0°C (–94 to +32°F) | W410×H460×D370 |
TSA-103ES | W650×H460×D370 | |
TSA-203ES | W650×H460×D670 | |
TSA–73EH | High temp. exposure:+60 to +200°C (+140 to +392°F) Low temp. exposure:–70 to 0°C (–94 to +32°F) | W410×H460×D370 |
ESPEC’s latest series of thermal shock chambers improve upon the high reliability and efficiency of their previous series. Compared to the previous TSA series, the power consumption has been reduced of 35-50% with the energy saving achieved thanks to the new Eco-operation mode; the instrumentation automatically adjusts pre-cooling and pre-heating periods and runs operations with just the necessary energy. Improvements in the chamber’s reliability, with particular emphasis placed on removing unnecessary loads and stresses from the refrigeration system, the refrigerators themselves, and the refrigeration circuit have resulted in another great leap forward for these Air-to-Air thermal shock chambers.
Espec Thermal Shock Chamber :: Feature Summary
With new instrumentation featuring significantly increased processing speed and network connectivity, it is now possible to monitor and manage the status of test chambers in remote locations while sitting at your desk.
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Espec Tsa Manual Download
Highly accurate temperature recovery
Dampers with integrated rectifying function minimize variation in exposure conditions due to specimen position within the test area. This reduces the overall test time and shortens temperature recovery time, especially during low-temperature exposure. The uniformity in test conditions brought by this innovation also contributes to improved test reproducibility and reliability.
ESPEC’s patented parallel refrigeration system improves reliability
Thanks to parallel refrigeration system and a newly designed refrigeration circuit, reliability is improved. The refrigeration circuit prevents refrigerant leaks by reducing thermal stress to refrigerators
and prevents corrosion in cooling pipes by upgrading the material and thickness.
and prevents corrosion in cooling pipes by upgrading the material and thickness.
Espec Tsa Manual 2017
Available Thermal Shock Chamber Models (Air to Air)
Halo Tsa Manual
Model | Temperature range | Inside dimensions(mm) |
---|---|---|
TSA-43EL | High temp. exposure:Ambient temp. +50 to +200°C (+122 to +392°F) Low temp. exposure:–65 to 0°C (–85 to +32°F) | W240×H460×D370 |
TSA-73EL | W410×H460×D370 | |
TSA-103EL | W650×H460×D370 | |
TSA-203EL | W650×H460×D670 | |
TSA-303EL | W970×H460×D670 | |
TSA-73ES | High temp. exposure:+60 to +200°C (+140 to +392°F) Low temp. exposure:–70 to 0°C (–94 to +32°F) | W410×H460×D370 |
TSA-103ES | W650×H460×D370 | |
TSA-203ES | W650×H460×D670 | |
TSA–73EH | High temp. exposure:+60 to +200°C (+140 to +392°F) Low temp. exposure:–70 to 0°C (–94 to +32°F) | W410×H460×D370 |