Moscow, Russia

Natalya F Naumenko


Average Co-Inventor Count = 2.2

ph-index = 6

Forward Citations = 326(Granted Patents)


Company Filing History:


Years Active: 1999-2016

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13 patents (USPTO):Explore Patents

Title: Innovations of Natalya F Naumenko

Introduction

Natalya F Naumenko is a prominent inventor based in Moscow, Russia. She has made significant contributions to the field of piezoelectric acoustic wave devices, holding a total of 13 patents. Her work has advanced the technology used in various applications, showcasing her expertise and innovative spirit.

Latest Patents

Among her latest patents is the "High coupling, low loss PBAW device and associated method." This invention involves a piezoelectric acoustic wave (PBAW) device that includes a substrate and a resonator with multiple electrodes. The design features a dielectric overcoat that enhances the device's performance. By adjusting the width of the electrodes based on the resonator's period, Naumenko's invention effectively suppresses spurious modes within the passband of the PBAW device. Another notable patent is the "High coupling, low loss saw filter and associated method," which describes a surface acoustic wave device with varied electrode parameters to optimize performance.

Career Highlights

Throughout her career, Naumenko has worked with leading companies in the industry, including Sawtek, Inc. and Triquint Semiconductor Corporation. Her experience in these organizations has allowed her to refine her skills and contribute to groundbreaking advancements in acoustic wave technology.

Collaborations

Naumenko has collaborated with notable professionals in her field, including Benjamin P Abbott and Leland P Solie. These partnerships have further enriched her work and expanded the impact of her inventions.

Conclusion

Natalya F Naumenko's contributions to the field of piezoelectric acoustic wave devices highlight her innovative capabilities and dedication to advancing technology. Her patents reflect a commitment to excellence and a vision for the future of acoustic wave applications.

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