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Thermal Testing Optical Transceivers

Thermal Test Optical Transceivers

Temperature Cycling Fiber Optics 

40G Optical Transceivers Testing

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Temperature Testing 5G Devices

PHOTO-2019-04-22-14-43-28 - copy











Fiber Optic Temperature Applications
Fiber Optic Temperature Applications

Fiber Optic Transceiver manufacturers test these devices to assure optical transceivers circuits work at certain temperatures. This is to guarantee reliability of these high speed fiber optic transceivers used within the communication high speed network and data center industries.

Fiber Optic Transceiver manufacturers test these devices to assure optical transceivers circuits work at certain temperatures. This is to guarantee reliability of these high speed fiber optic transceivers used within the communication high speed network and data center industries.

Small Temperature Forcing System
-65°C / +225°C
-60°C / +225°C
-80°C / +225°C
-80°C / +225°C
-25°C / +200°C
-25°C / +200°C

-100°C / +300°C

-100°C / +300°C

Watch the Video
Watch the Video
PHOTO-2019-04-22-14-43-28 - copy











Fiber Optic Temperature Applications
Fiber Optic Temperature Applications

Fiber Optic Transceiver manufacturers test these devices to assure optical transceivers circuits work at certain temperatures. This is to guarantee reliability of these high speed fiber optic transceivers used within the communication high speed network and data center industries.

Fiber Optic Transceiver manufacturers test these devices to assure optical transceivers circuits work at certain temperatures. This is to guarantee reliability of these high speed fiber optic transceivers used within the communication high speed network and data center industries.

Small Temperature Forcing System
-65°C / +225°C
-60°C / +225°C
-80°C / +225°C
-80°C / +225°C
-25°C / +200°C
-25°C / +200°C

-100°C / +300°C

-100°C / +300°C

Watch the Video
Watch the Video

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100G Optical Transceiver – Reliability Testing – Temperature Chambers – Thermal Profiling – Temperature Cycling Optical Transceivers

ThermalAir TA-Series of Temperature Forcing Systems

ThermalAir Temperature Test Systems are used for fiber optic manufacturing final test applications in engineering development and production at temperature ranges from -40°C to +90°C to thermal test and temperature calibrate these devices at precise temperatures.

ThermalAir TA-5000 -80°C to +225°C, TA-3000 -65C° to +225°C  and TA-1000 -25°C to +200°C temperature inducing equipment provides a controlled temperature of hot and cold air directly on the fiber optic component under test with temperatures ranging from -80°C to +225°C with an accuracy of +/- 1.0°C for fiber optic components.

Fiber Optic Components

Commercial SFPs and other Fiber Optic components are designed to withstand temperatures between 0°C and 70°C. Some of RAD’s SFPs are industry hardened versions, designed and tested to operate from -40°C to +90°C at a temperature margin within the set point better than +/- 1.0°C. These and other families of Fiber Optic Transceivers specified temperature ranges may vary according to where the product in which the Fiber Optic Component SFP and others are used.

  • Industrially Hardened
  • DDM Calibration
  • External DDM Calibration
  • And More Advance specification requirements 

Learn More

ThermalAir Systems for SFP Fiber Optic Transceiver

Thermal Test Applications

The small form-factor pluggable (SFP) is a compact, hot-pluggable network interface module used for both telecommunication and data communications applications. … SFP transceivers exist supporting SONET, Gigabit Ethernet, Fibre Channel, PON, and other communications standards.

MPI Thermal air stream systems meet the temperature test standards for fiber optic 25G, 40G, 100G transceivers. Our ThermalAir products provide uniform methods to generate hot and cold temperature for fiber optic transceivers common temperature test range of -40°C to +90°C.

ThermalAir TA-5000 system controls temperature for testing microelectronic and other electronic and non-electronic materials. This assures your parts are suitable for use within industrial, commercial and consumer electronic systems. These include basic temperature tests to determine characteristics of these fiber optic transceivers / laser devices over temperature.

Temperature Test 100G – Temperature Conditioning – Accelerated Temperature Testing – Accelerated Life Testing – 100G Optical Transceiver

Thermal Cycling Fiber Optic Components

Standard environmental test chambers cannot meet the narrow temperature accuracy margins for 25G, 40G, 100G and 400G fiber optic transceiver.

ThermalAir systems produce a hot and cold stream of air at very fast ramp rates directed on the device under test with very precise thermal control, providing a temperature range from -80°C to +225°C with an accuracy of +/- 1.0°C for fiber optic transceivers and other high speed electronic components.

Learn More

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

Temperature cycling, thermal profiling and other environmental temperature conditioning 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.

Learn More

ThermalAir Thermal Test Systems for Fiber Optic Component Manufacturers

The design challenges go well beyond simply delivering processing power and high-speed data transfer. Design engineers must also safely manage heat generated by those processes in the confines of tight vehicle packaging requirements, as well as ambient and cold temperature fluctuations, while adhering to stringent safety and reliability standards of the automotive industry.

ThermalAir Systems for Automotive Temperature Test Applications

  • One system fits all temperature ranges -80°C to +225°C
  • Plug in anywhere 200 to 25OVAC, 20amp, 50/60Hz
  • Up to 24 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.
TA1000 Temperature Cycling Test System | Thermal Cycling Test | Temperature Cycling Test Equipment |Thermal Cycling

Environmental Stress Testing

Environmental stress conditions such as radiation exposure, temperature extremes, vibration, and dirt encountered by the military, on factory floors, and under the hoods of automobiles, these semiconductor devices need to keep working. To assure quality and reliability of electronic devices, semiconductor manufacturers need to simulate harsh environments during the engineering and production test stage. This is why the MPI Thermal TA-5000 Series ThermalAir temperature test products are part of the test.

ThermalAir Systems for Automotive Electronics, Parts, and Accessories

The design challenges go well beyond simply delivering processing power and high-speed data transfer. Design engineers must also safely manage heat generated by those processes in the confines of tight vehicle packaging requirements, as well as ambient and cold temperature fluctuations, while adhering to stringent safety and reliability standards of the automotive industry.

Temperature Forcing System

MPI ThermalAir temperature forcing systems provide a direct thermal stream of clean dry hot and cold air directly to the part that needs to be thermal tested. In the lab or on the production floor, ThermalAir Series provide unparalleled thermal stress testing  capabilities for scientist and engineers.

The ThermalAir system allows you to generate very precise controlled temperature for simulation test in Thermal Shock, Temperature Conditioning, Stress Screening, Temperature Cycling and more. Thermal test processes can be accomplished with our ThermalAir system. Ramp, Cycle, Dwell and Soak times are fully programmable with a touch of a button.

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