Thermoelectric Coolers

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Cooling Solutions for Autonomous Systems


Advances in autonomous technologies, such as smart headlights, autonomous systems for collision avoidance, and infotainment systems, require enhanced thermal protection of critical electronics to ensure optimized performance. These emerging intelligent autonomous systems are increasingly complex while decreasing in size and weight. Packing more functionality into smaller footprints has increased the heat flux density and thermal challenges in autonomous systems.





Advanced Thermoelectric Cooling for Optoelectronics






Optoelectronic devices require active cooling to maintain peak performance and long-life operation. The OptoTEC™ OTX/HTX is a miniature high-performance thermoelectric cooler that provides superior temperature stability meeting demands of high temperature optoelectronic applications.



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Advanced Thermoelectric Cooling for Optoelectronics

Introduction

Used to source, detect, and control light, optoelectronics are increasingly important in a wide range of automotive, telecom, and industrial applications. With high beam quality and low energy consumption, optoelectronics offer superior performance at a low cost. Due to the potentially high-temperature environments in which these optoelectronic components operate, active thermoelectric coolers are used for temperature stabilization to ensure maximum performance and long-life operation.




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Modern Thermoelectrics Designed for Point of Care Testing (POCT)






Point of Care Testing enables accurate, real-time diagnostic test results within an hour. PCR point of care testing requires sophisticated thermal cycling that can withstand rapid temperature changes. The PowerCycling PCX Series features next generation material and a robust module construction to speed up PCR testing and provide long-life operation.



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Next-Generation Thermoelectrics Designed for Real-Time PCR






Real-Time PCR requires a high number thermal cycles to replicate DNA. PCR Thermocyclers utilize thermoelectric coolers to precisly manage set point temperatures and ramp rates. Mechanical stresses that occur during heating and cooling cycles quickly degrades standard thermoelectric coolers.



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