By Anthony F Veneruso; Charles Arnold; Richard S Simpson; United States. Dept. of Energy. Division of Geothermal Energy.; United States. Dept. of Energy. Division of Fossil Fuel Extraction.; All authors
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51-52 H i g h T e m p e h a t u h e E L e c t h o n i c n a n d I n n Z h u m e n t a t i o n Seminah, D e c e m b e h 1 9 7 9 1-A. 1 / HARDENING MICROCIRCUITS AGAINST 300°C, YESTERDAY AND TOMORROW* \ D. W. Palmer Sandia Laboratories Albuquerque, NM 87185 INTRODUCTION ture range. 5%. Likewise, Sandia developed temperature 2 1%) insensitive capacitors ( A C/Co by combining commercial dielectric inks. Although high temperature electronics had sporatic popularity during the 53's and ~ O ' S , a sustained effort on high temperature microelectronics was not initiated until May 1976, when the effort at Sandia Laboratories began.
I t h a s n o t been p o s s i b l e t o ext e n d t h e t e m p e r a t u r e r a n g e above 350OC b e c a u s e o f t h e l a c k of a s u i t a b l e counI t was found t h a t t h e ter-electrode. r a t e o f d i f f u s i o n of gold i n t o t h e g l a s s o f t h e c a p a c i t o r dielectric was u n a c c e p t a b l y h i g h a t 500OC, and w h i l e p l a t i n u m i s s u i t a b l e a s a n electrode material, a low f i r i n g p l a t i n u m f i l m c o n d u c t o r h a s n o t as y e t been realized.
Department of Energy. Having characterized several JFET types at 300°C, circuit design started in earnest. To have 100 hours of operation at 3OOOC from a circuit made of 53 and l n b t h u m e n t a t i o n S e m i n a k , components and connections rated for . 1000 hours, it was necessary to limit designs to approximately 100 components. To this end, niceties such as inputoutput linearity or circuit interchangeability were abandoned. Reliability was worth the price of linearizing the data uphole and individually calibrating each circuit.