Location History:
- Tokyo, JP (1998 - 2010)
- Minato-ku, JP (2010)
Company Filing History:
Years Active: 1998-2010
Title: **Innovator Shinya Muraoka: Pioneering Advances in CDMA Technology**
Introduction
Shinya Muraoka, an esteemed inventor based in Tokyo, Japan, holds an impressive portfolio of 14 patents. His groundbreaking contributions primarily focus on advancements in Code Division Multiple Access (CDMA) technology, showcasing his expertise in telecommunications.
Latest Patents
Muraoka's latest patents include a CDMA receiving apparatus and method, which features a channel estimation circuit for effective demodulation. This innovative design enables accurate correction of reception power fluctuations due to timing offsets between individual and shared channels. Additionally, his patent on uplink transmission power control in CDMA base stations presents a solution to reduce interference within a cell, even when accommodating mobile stations engaging in high-speed packet communication. His invention employs a noise estimation circuit that ensures effective management of transmission power, thus optimizing overall performance.
Career Highlights
Throughout his career, Shinya Muraoka has worked with prestigious companies such as NEC Corporation and NTT Docomo, Inc. His tenure at these institutions has allowed him to harness and apply cutting-edge technology in real-world applications, significantly impacting the telecommunications industry.
Collaborations
Muraoka has collaborated with notable personalities in his field, including Yasushi Maruta and Satoshi Oura. These partnerships have further enriched his specialist knowledge and have led to innovative ideas being translated into successful patents.
Conclusion
In conclusion, Shinya Muraoka stands out as a key figure in the field of telecommunications. His 14 patents, particularly in CDMA technology, underline his commitment to innovation and excellence. As he continues to push boundaries, Muraoka's work will undoubtedly influence the future of mobile communications in significant ways.