Richmond, United Kingdom

Philip Judge



Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2009

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1 patent (USPTO):Explore Patents

Title: The Innovations of Philip Judge: A Pioneer in Thin Film Technology

Introduction: Philip Judge, an accomplished inventor based in Richmond, GB, has made significant contributions to the field of materials science through his innovative patent. With a keen focus on high resistivity thin film compositions, Judge's work is characterized by its potential applications in various electronic devices.

Latest Patents: Judge holds a patent for a "High resistivity thin film composition and fabrication method." This groundbreaking technology utilizes a combination of silicon, insulators like alumina or silicon dioxide, and additional materials such as chromium, nickel, boron, and carbon. The patented composition achieves a resistivity of at least 0.02 Ω-cm, with typical values ranging from 0.02 to 1.0 Ω-cm. Moreover, it boasts a temperature coefficient of resistance (TCR) of less than ±1000 ppm/°C, typically under ±300 ppm/°C. The design also allows for a sheet resistance of at least 20 kΩ/□, ensuring optimal performance in reducing surface scattering conduction currents.

Career Highlights: Philip Judge currently works at Analog Devices, Inc., a company renowned for its high-performance analog technologies. His collaboration with a talented team, including coworkers Michael Lee and Steven Wright, has fostered an environment of creativity and progress in the domain of thin film technology.

Collaborations: Judge's partnership with Michael Lee and Steven Wright has played a crucial role in the development of his patented technology. Together, they leverage their collective expertise to enhance the efficiency and efficacy of their inventions, establishing a strong collaborative spirit within their team at Analog Devices, Inc.

Conclusion: Philip Judge's innovative contributions, particularly the patent for high resistivity thin film compositions, exemplify the intersection of creativity and technology in material science. His work continues to influence advancements in electronics, paving the way for future innovations that could redefine industry standards.

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