Manchester, NH, United States of America

Bassem M AlNahas


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2000

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1 patent (USPTO):Explore Patents

Title: Bassem M AlNahas: Innovator in Voltage Comparator Circuits

Introduction

Bassem M AlNahas is a notable inventor based in Manchester, NH (US). He has made significant contributions to the field of electrical engineering, particularly in the development of voltage comparator circuits. His innovative work has led to the creation of a patent that enhances the efficiency of power supply systems.

Latest Patents

Bassem M AlNahas holds a patent for a voltage comparator circuit. This control circuit is designed to provide the greater of a supply voltage V.sub.CC and a battery voltage V.sub.BATT. The comparator compares these two voltages and generates output signals to an inverting gain stage. A switch then receives these output signals and delivers the greater of V.sub.CC and V.sub.BATT as the circuit output, as well as the comparator supply voltage. The circuit output voltage can rapidly switch between V.sub.CC and V.sub.BATT, depending on the comparison status of the two voltages. This innovation is crucial for improving the reliability and performance of electronic devices.

Career Highlights

Bassem M AlNahas is associated with Sipex Corporation, where he has been instrumental in advancing technology related to voltage regulation and power management. His expertise in circuit design has contributed to the company's reputation for innovation in the semiconductor industry.

Collaborations

Bassem has worked alongside talented colleagues such as Alex Gusinov and Jeffrey B Van Auken. Their collaborative efforts have fostered an environment of creativity and technical excellence within their projects.

Conclusion

Bassem M AlNahas is a distinguished inventor whose work in voltage comparator circuits has made a significant impact in the field of electrical engineering. His contributions continue to influence the development of efficient power supply systems.

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