Saitama, Japan

Masafumi Uemori


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 2007

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Masafumi Uemori

Introduction

Masafumi Uemori, residing in Saitama, Japan, is known for his innovative work within the field of semiconductor technology. As an inventor, he has made notable contributions that enhance the precision and efficiency of signal processing.

Latest Patents

Uemori holds a patent for a "Band-pass Δ-Σ AD modulator for AD-converting high frequency narrow-band signal with higher precision and lower power consumption." This invention involves a continuous-time band-pass Δ-Σ AD modulator that subtracts an analog signal from a digital-to-analog (DA) converter from an inputted analog signal. The outputted analog signal is sent to an analog-to-digital (AD) converter via a continuous-time analog band-pass filter, which subsequently produces a digital signal that undergoes band-pass Δ-Σ AD modulation processing. Notably, the highest input frequency of the analog signal is set to three-fourths of the sampling frequency, allowing for optimal performance and signal integrity.

Career Highlights

Uemori has dedicated his professional career to the Semiconductor Technology Academic Research Center, where his expertise in analog and digital signal processing shines. His research focuses on advancing technologies that improve the efficiency and performance of high-frequency signal applications.

Collaborations

Throughout his career, Uemori has collaborated with esteemed colleagues such as Haruo Kobayashi and Tomonari Ichikawa. These partnerships have fostered a rich environment for innovation and development, contributing valuable insights into semiconductor technologies.

Conclusion

Masafumi Uemori's inventive spirit and commitment to research have led to significant advancements in the field of semiconductor technology. His patent demonstrates a clear understanding of the challenges in high frequency signal processing, setting a benchmark for future innovations in this domain.

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