High-temperature analysis of optical coupling using AlGaAs/GaAs LEDs for high-density integrated power modules
Syam Madhusoodhanan1, Abbas Sabbar1, Huong Tran1
1Department of Electrical Engineering, University of Arkansas, Fayetteville, AR, 72701, USA.
Abstract:
A low-temperature co-fired ceramic (LTCC)-based optocoupler design is demonstrated as a possible solution for optical isolation in high-density integrated power modules. The design and fabrication of LTCC based package are discussed. Commercially available aluminum gallium arsenide/gallium arsenide (AlGaAs/GaAs) double heterostructure is used both as emitter and photodetector in the proposed optocoupler. A detailed study on the electroluminescence and spectral response of the AlGaAs/GaAs structure is conducted at elevated temperatures. The material figure of merit parameter, D*, is calculated in the temperature range 77-800 K. The fabricated optocoupler is tested at elevated temperatures, and the results are presented.


