Nagano, Japan

Akemi Nozaki


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2012

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1 patent (USPTO):Explore Patents

Title: Innovator Akemi Nozaki: Advancements in Semiconductor Technology

Introduction: Akemi Nozaki, an accomplished inventor based in Nagano, Japan, has made significant strides in the field of semiconductor technology. With one patented innovation to her name, she continues to contribute to advancements in this critical industry.

Latest Patents: Akemi's notable patent is titled "Lead frame, method for manufacturing the same and semiconductor device". This invention features a lead frame that includes a die pad for bonding semiconductor chips and a plurality of leads made of copper or a copper alloy. A unique aspect of her design is a metallic film on the lead frame body, designed to connect to a metallic wire linked to the electrode pad of the semiconductor chip. This Ag-plated film incorporates nanoparticles arranged in gaps among the Ag crystal grains, enhancing the performance of the semiconductor devices.

Career Highlights: Throughout her career, Akemi Nozaki has been associated with Shinko Electric Industries Co., Ltd., where she has played a pivotal role in the development of innovative semiconductor technologies. Her work reflects a deep understanding of materials science and manufacturing processes critical for modern electronics.

Collaborations: Akemi frequently collaborates with talented colleagues, including Kazumitsu Seki and Muneaki Kure. Together, they strive to push the boundaries of technology, ensuring that their contributions significantly impact the semiconductor sector.

Conclusion: In conclusion, Akemi Nozaki stands out as a leading figure in semiconductor innovation. Her patent underscores her vision and skill, promising to enhance the functionality of semiconductor devices in the marketplace. With her continued dedication and collaborative efforts, she is set to influence the future of technology significantly.

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