DocumentCode
1693486
Title
Integrated low power and high bandwidth optical isolator for monolithic power MOSFETs driver
Author
Rouger, Nicolas ; Crébier, Jean-Christophe ; Lesaint, Olivier
Author_Institution
Centre Nat. de la Rech. Sci., UJF-Grenoble Univ. 1, St. Martin d´´Hères, France
fYear
2011
Firstpage
356
Lastpage
359
Abstract
An integrated solution for the galvanic isolation between power transistors and their control unit is presented in this paper. This solution is based on a monolithic integration of a photodetector within a power MOSFET without any modification of its fabrication process. This photoreceiver can be associated with a monolithic driver to drive high side switches. Exhaustive characteristics for several integrated photodetectors are presented and discussed: quantum efficiency, step response, small signal analysis and sensitivity to the High Voltage MOSFET´s Drain. The results of this analysis are photoreceivers with a Full Width at Half Maximum above 300MHz and a responsivity above 0.15A/W at a wavelength of 500nm. This leads to an integrated low power and high bandwidth optical isolation.
Keywords
MOS integrated circuits; driver circuits; integrated optoelectronics; isolation technology; monolithic integrated circuits; optical isolators; optical receivers; photodetectors; power MOSFET; power integrated circuits; fabrication process; galvanic isolation; high bandwidth optical isolator; integrated low power optical isolator; integrated photodetectors; monolithic power MOSFET driver; photoreceiver; power transistors; Driver circuits; Logic gates; Optical sensors; Optical switches; Photodetectors; Power transistors; Stimulated emission; Monolithic integration; Power ICs; integrated optical sensor; power transistor gate driving circuits;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Semiconductor Devices and ICs (ISPSD), 2011 IEEE 23rd International Symposium on
Conference_Location
San Diego, CA
ISSN
1943-653X
Print_ISBN
978-1-4244-8425-6
Type
conf
DOI
10.1109/ISPSD.2011.5890864
Filename
5890864
Link To Document