This inventor holds 2 USPTO granted patents. Top assignees: Advanced Silicon Materials LLC, Rec Silicon Inc. Active years: 2004-2006.
Company Filing History:
Years Active: 2004-2006
Title: John Peter Hill: Innovator in Silicon Production
Introduction
John Peter Hill is a notable inventor based in Moses Lake, WA (US). He has made significant contributions to the field of silicon production, holding a total of 2 patents. His innovative approaches have advanced the efficiency and effectiveness of silicon manufacturing processes.
Latest Patents
One of his latest patents is an energy-efficient method for growing polycrystalline silicon. In this process, polysilicon dendrites are grown by depositing silicon on a polysilicon rod or other substrate. The surface temperature is increased to a level where needle-like dendrites develop due to the deposition of silicon from silicon-containing molecules in the surrounding reactor atmosphere. Subsequently, the surface temperature is gradually reduced, allowing silicon that deposits on the needle-like dendrites to cause them to grow and assume a generally flared shape. Another significant patent is a rod replenishment system for use in single crystal silicon production. This system is designed for the efficient utilization of charge replenishment rods in Czochralski silicon crystal growing processes.
Career Highlights
Throughout his career, John has worked with prominent companies in the silicon industry, including Rec Silicon Inc and Advanced Silicon Materials LLC. His work has been instrumental in enhancing the production techniques used in these organizations.
Collaborations
John Peter Hill has collaborated with several professionals in his field, including Lyle C Winterton and Henry Dare Wood. Their combined expertise has contributed to the advancement of silicon production technologies.
Conclusion
John Peter Hill's innovative work in silicon production has led to significant advancements in the industry. His patents reflect a commitment to improving efficiency and effectiveness in silicon manufacturing processes.