Philadelphia, PA, United States of America

James Rondinelli

USPTO Granted Patents = 1 

Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2015

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1 patent (USPTO):Explore Patents

Title: The Innovations of James Rondinelli

Introduction

James Rondinelli is a notable inventor based in Philadelphia, PA. He has made significant contributions to the field of electronics, particularly with his innovative work on charge ordered vertical transistors. His research and inventions have the potential to revolutionize the way electronic devices operate.

Latest Patents

Rondinelli holds a patent for a technology titled "Charge Ordered Vertical Transistors." This invention discloses a vertical charge ordered transistor that utilizes a thin charge ordered layer as a tunnel barrier between two electrodes. The technology allows for a gate-induced accumulation of charge that destabilizes the charge ordered state around the device's circumference. This process opens up a parallel ohmic conduction channel, leading to an exponential increase in source-drain current. The VCOT devices developed from this patent are expected to exhibit very large on/off ratios, low off-state currents, and sub-threshold slopes below 60 mV/dec.

Career Highlights

Throughout his career, Rondinelli has worked at prestigious institutions such as Drexel University and the University of Pennsylvania. His work in these academic environments has allowed him to collaborate with other leading researchers and contribute to groundbreaking advancements in the field of electronics.

Collaborations

Some of his notable coworkers include Steven May and Jonathan Eli Spanier. Their collaborative efforts have further enhanced the research and development of innovative technologies in electronics.

Conclusion

James Rondinelli's contributions to the field of electronics, particularly through his patent on charge ordered vertical transistors, highlight his role as a significant inventor. His work has the potential to lead to advancements that could change the landscape of electronic devices.

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