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NASA NTRS · 19820007450

A gallium phosphide high-temperature bipolar junction transistor

Abstract

Preliminary results are reported on the development of a high temperature (350 C) gallium phosphide bipolar junction transistor (BJT) for geothermal and other energy applications. This four-layer p(+)n(-)pp(+) structure was formed by liquid phase epitaxy using a supercooling technique to insure uniform nucleation of the thin layers. Magnesium was used as the p-type dopant to avoid excessive out-diffusion into the lightly doped base. By appropriate choice of electrodes, the device may also be driven as an n-channel junction field-effect transistor. The initial design suffers from a series resistance problem which limits the transistor's usefulness at high temperatures.

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BibTeXRIS

Zipperian, T. E., Dawson, L. R., Chaffin, R. J.. 1981-01-01. A gallium phosphide high-temperature bipolar junction transistor. https://ntrs.nasa.gov/citations/19820007450

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