Bend, OR, United States of America

Jacob Alexander Soto


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Jacob Alexander Soto: Innovator in Silicon Carbide Technology

Introduction

Jacob Alexander Soto is a notable inventor based in Bend, Oregon. He has made significant contributions to the field of semiconductor technology, particularly in silicon carbide devices. His innovative work has led to the development of a unique method and assembly that enhances the performance of these devices.

Latest Patents

Jacob holds a patent for a "Method and assembly for ohmic contact in thinned silicon carbide devices." This patent describes a silicon carbide semiconductor assembly that includes a semiconductor substrate and an electrode. The substrate is formed of silicon carbide and features a first surface, a second surface opposing the first surface, and a thickness extending between them. The method involves forming electronic devices on the first surface and thinning the substrate by removing the second surface to a predetermined depth. This process leaves a third surface opposing the first surface. Additionally, the method includes forming a non-ohmic alloy layer on the third surface at a specific temperature range and subsequently annealing the alloy layer at a higher temperature range to create an ohmic layer.

Career Highlights

Jacob is currently employed at Microsemi Corporation, where he continues to work on advancing semiconductor technologies. His expertise in silicon carbide devices has positioned him as a valuable asset to his team and the company.

Collaborations

Jacob collaborates with Bruce Odekirk, a coworker at Microsemi Corporation. Together, they contribute to the development of innovative solutions in the semiconductor industry.

Conclusion

Jacob Alexander Soto is a prominent inventor whose work in silicon carbide technology has led to significant advancements in semiconductor devices. His contributions are shaping the future of this critical field.

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