Tomsk, Russia

Evgeny H Baksht


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2007

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1 patent (USPTO):Explore Patents

Title: Evgeny H Baksht: Innovator in Gas Discharge Lamp Technology

Introduction

Evgeny H Baksht is a notable inventor based in Tomsk, Russia. He has made significant contributions to the field of electrical engineering, particularly in the development of power supply systems for gas discharge lamps. His innovative approach has led to the creation of a patented technology that enhances the efficiency and performance of these lighting systems.

Latest Patents

Evgeny H Baksht holds a patent for a "Gas discharge lamp power supply." This apparatus is designed to provide power to a gas discharge lamp through a sophisticated mechanism involving a storage capacitor and an ignition switch. The design incorporates a primarily parasitic first inductor, which is coupled to a parallel combination of a diode assembly and a second inductor in series with the gas discharge lamp. The second inductor is specifically selected to optimize energy transfer from the capacitor to the lamp. The patent outlines a two-interval operation where the diode assembly alternates between conducting and non-conducting states, ultimately generating a unipolar, forward sense, single pulse current output for the lamp.

Career Highlights

Evgeny is associated with Alameda Applied Sciences Corporation, where he applies his expertise in electrical engineering to advance innovative technologies. His work focuses on improving the efficiency of gas discharge lamps, which are widely used in various lighting applications.

Collaborations

Evgeny has collaborated with notable colleagues, including Mikhail I Lomaev and Dmitry V Rybka. Their combined efforts contribute to the advancement of technology in their field.

Conclusion

Evgeny H Baksht's contributions to gas discharge lamp technology exemplify the impact of innovative thinking in electrical engineering. His patented inventions continue to influence the efficiency and functionality of lighting systems.

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