Laird Thermal Systems Develops Micro Thermoelectric Cooler for Next Generation Optoelectronic Packages
●Delivering precise temperature stabilization under changing environmental conditions, the compact OptoTEC™ MBX Series is designed for use in next generation LiDAR systems for autonomous vehicles, pluggable optical transceivers for telecom and Indium Phosphide VCSELs used in various high-performance applications.
●The applications for this product series tend to be highly customized requiring unique ceramic substrate materials and thicknesses. Two solder constructions are available to accommodate reflow temperatures up to 230°C or 280ºC. Lead attachments are typically wire bondable, LTS offers Au plated pads or wire bondable posts. Special finishing options are available to incorporate Au plated patterns on ceramic substrates, pre-tinning of metallized surfaces and attachment of thermistors.
●“The new cooling applications in the optoelectronic market are pushing the process technology boundaries of thermoelectric coolers,” said Andrew Dereka, Thermoelectrics Product Director at Laird Thermal Systems. “Laird Thermal Systems has built a completely new line from the ground up dedicated to the OptoTEC™ MBX product series that has high volume capacity with precision process control and repeatability and is sold at a competitive price.”
●The OptoTEC™ MBX Series is undergoing Telcordia GR-468 CORE qualification testing for unique thermoelectric coolers developed for customer specific applications to ensure high repeatability and long-life operation in harsh environments.
[ Optoelectronic Packages ][ LiDAR systems ][ autonomous vehicles ][ pluggable optical transceivers ][ telecom ][ Indium Phosphide VCSELs ] |
|
Supplier and Product Introduction |
|
|
|
Please see the document for details |
|
|
|
|
|
|
|
English Chinese Chinese and English Japanese |
|
April 4, 2023 |
|
|
|
|
|
222 KB |
- +1 Like
- Add to Favorites
Recommend
All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.