Madhusoodhanan Syam, Sabbar Abbas, Tran Huong, Lai Pengyu, Gonzalez David, Mantooth Alan, Yu Shui-Qing, Chen Zhong
Department of Electrical Engineering, University of Arkansas, Fayetteville, AR, 72701, USA.
Sci Rep. 2022 Feb 24;12(1):3168. doi: 10.1038/s41598-022-06858-5.
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.
一种基于低温共烧陶瓷(LTCC)的光耦合器设计被证明是高密度集成电源模块中实现光隔离的一种可能解决方案。讨论了基于LTCC的封装的设计与制造。在所提出的光耦合器中,商用的铝镓砷/镓砷(AlGaAs/GaAs)双异质结构被用作发射极和光电探测器。在高温下对AlGaAs/GaAs结构的电致发光和光谱响应进行了详细研究。在77 - 800 K的温度范围内计算了材料品质因数参数D*。对制造的光耦合器在高温下进行了测试,并给出了测试结果。