Thermal Test Chambers  – Thermal Test Chamber – Environmental Testing Chamber – Environmental Test Chambers – Environmental Test Chambers

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Environmental Stress Testing Critical Electronics
Electro-Mechanical Parts and Materials in Vehicles

Environmental Stress Testing Critical Electronics
Electro-Mechanical Parts and Materials in Vehicles

Automotive Electronics
Automotive Electronics
Automotive Electronics

Environmental Stress Testing Critical Electronics
Electro-Mechanical Parts and Materials in Vehicles

Thermal Cycling Test

Thermal Cycling Test

Thermal Cycling Test

Environmental Temperature Testing

Environmental Temperature Testing

Environmental Temperature Testing

Accelerated Life Testing

Accelerated Life Testing

Accelerated Life Testing

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-80°C / +225°C

-80°C / +225°C

-80°C / +225°C

-80°C / +225°C

-65°C / +225°C

-65°C / +225°C

-25°C / +200°C

-25°C / +200°C

Continuous -80°C

Clean Dry Air @ 24 SCFM

-80°C / +225°C

-80°C / +225°C

-80°C / +225°C

-80°C / +225°C

-100°C / +300°C

MPI Thermal Air Temperature Test Solutions

-65°C / +225°C

-65°C / +225°C

-25°C / +200°C

-25°C / +200°C

Continuous -80°C

MPI Thermal Air Temperature Test Solutions

-100°C / +300°C

Automotive Electronics
Automotive Electronics
Automotive Electronics

MPI Thermal Air Temperature Test Solutions

-100°C / +300°C

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Automotive Testing Chambers – Temperature Cycling Chamber – Environmental Testing Chamber – Automotive Temperature Cycling Test – Environmental Test Chamber

Test Engineers can use ThermalAir thermal inducing equipment and our temperature test chambers to bring their automotive components to temperature from -40°C to +125°C. Our systems generate a hot and cold thermal air stream directly on the parts that require thermal testing.   Our small thermal test chambers used in combination with the ThermalAir TA-5000 product have a temperature range from -100°C to +225°C without the use of LN2 or Co2.

Download the Datasheets

Automotive Environmental Testing Chambers

Environmental Stress Testing Critical Electronics
Electro-Mechanical Parts and 
Materials in Vehicles

Thermal inducing of electronic devices is critical and automotive components manufacturers have the need to improve product quality and reliability. All types of transportation vehicles have higher system environmental stress testing requirements. Car manufacturers today are faced with increasing challenges with environmental stress conditions.

Reliability decreases exponentially in electronic components due to heat problems. ThermalAir series of reliability testing chambers & thermal inducing systems helps manufacturers design ICs, chips, PCBs, other Automotive electrical and non-electrical components for superior thermal performance and reliability.

Environmental Stress Testing

 

As temperature of an electronic component rises, the heat loss increases. Temperatures may be high enough to significantly decrease the life of automotive components, parts, and sensors, causing devices to fail. Thermal management and temperature cycling test solutions are critical to ensure product reliability in automotive electronics and materials.

TA-5000 Thermal Testing Systems helps engineers design reliable automotive components to withstand today’s increasing environmental stress conditions.

OEM Automotive Components

 

Electronics continue to infiltrate all aspects of automotive design as consumer demand for safety, performance, fuel efficiency, and reliability continues to grow. Automotive Electronic design incorporates semiconductor components, electronic sensors, and sub-systems. Automobiles have over 50 sensors, switches and other electronic controls. These components require thermal shock test, temperature conditioning, and fast temperature cycling at ranges -40C to +125C and beyond.

 

Environmental Stress Screening of automotive electronic and non-electronic components, sensors, and parts is essential in the design and manufacturing of automobiles.  The ThermalAir TA-5000 series of thermal inducing systems and thermal shock test chambers provide temperature test capabilities for engineers, allowing you to bring temperature to the test location without the need for large, walk-in environmental stress testing chambers.

Thermal Inducing Systems – Thermal Shock  –Thermal Shock  –Thermal Shock  –Thermal Shock 

MPI Thermal thermal inducing equipment is portable and can easily be moved from one test station to another. Automotive Component manufacturers can use our ThermalAir TA-5000 system to quickly bring their parts to temperature right at the test location. Temperature cycling, thermal shock and other environmental stress testing is why MPI Thermal systems are part of the manufacturing temperature test process.

 

This is why the MPI Thermal TA-5000 Series of ThermalAir temperature products are part of the test.

Products Overview

Download the Datasheets

Fast Ramp & Cycle Temperature Testing ThermalAir Systems for Automotive Part Manufacturers

 

ThermalAir Systems – Environmental Temperature Testing for Automotive Applications

 

  • One system fits all temperature ranges -100°C to +225°C
  • Plug in anywhere 200 to 25OVAC, 20amp, 50/60Hz
  • Up to 20 SCFM continuous airflow capacity Hot & Cold
  • Fastest temperature ramp rates without the use of LN2 or CO2
  • Systems are easily moved for sharing between workstations or testers.

Thermal Inducing Systems

 

Our new thermal inducing equipment and technology gives the end user the ability to easily test while controlling the ramp rate speed with one touch temperature set point functions.

The ThermalAir TA-5000 system provides temperature directly to automotive electronic and mechanical parts

Fast Ramp & Cycle Temperature Testing

ThermalAir Systems for Automotive Part Manufacturers

Products Overview

Download the Datasheets

Thermal Inducing – Thermal Shock  – Thermal Inducing Systems – Thermal Inducing Equipment – Thermal Inducing –

Bring temperature to your test for automotive electronics and non-electronic components from temperature -40C to +150C.

 

  • Automotive Sensors
  • Vehicle Control Products
  • Electronic control units or ECUs
  • Incoming Inspection
  • Semiconductor IC Verification
  • Simulation-based testing
  • Cooling Heating Stress Full Cycle
  • Design or fabrication weaknesses
  • Fast Hot & Cold Temperature Cycling
  • Electronic and Mechanical subsystems
  • Environmental Temperature Testing
  • Thermal Shock Test