Oxford, United Kingdom

Alan Fernley Simpson


Average Co-Inventor Count = 1.0

ph-index = 1

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 2000

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1 patent (USPTO):Explore Patents

Title: Alan Fernley Simpson: Innovator in Resistance Thermometry

Introduction: Alan Fernley Simpson is a distinguished inventor based in Oxford, GB. He holds a patented innovation that addresses the complexities associated with resistance thermometry. His work has significant implications in temperature measurement and serves as an important contribution to the field.

Latest Patents: Simpson's noteworthy patent titled "Correction for parasitic voltages in resistance thermometry" introduces a novel apparatus for measuring the temperature of a sensor (Rx) whose resistance varies with temperature changes. This innovation employs a sophisticated switching sequence to apply a parasitic voltage correction signal to the input of an amplifier within the measurement circuit. As a result, the sensor generates an offset response signal that is amplified and adjusted to minimize this amplified offset. The actual temperature is then accurately calculated from the amplified response signal using a predetermined algorithm. This advancement highlights Simpson's commitment to enhancing precision in temperature measurement.

Career Highlights: Simpson is currently associated with Oxford Instruments (UK) Ltd., a reputable organization in the scientific instrumentation sector. His role at the company allows him to apply his innovative expertise in developing solutions that improve measurement accuracy in various applications. His background and experiences contribute to his inventive capabilities, making him a key figure in his field.

Collaborations: While specific collaborations have not been documented, Simpson's affiliation with Oxford Instruments suggests potential partnerships and collective efforts that may enhance the capabilities of his patented technology. Collaborations with other inventors and research institutions could further expand the application and impact of his innovations.

Conclusion: Alan Fernley Simpson stands out as an inventive force in the realm of resistance thermometry. Through his patent, he has developed a method that significantly improves temperature measurement, showcasing his technical ingenuity. As he continues to work with Oxford Instruments, it will be exciting to see how his innovations will evolve and contribute to advancements in scientific measurement technologies.

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