Company Filing History:
Years Active: 2001-2008
Title: The Innovative Contributions of Mana Hamada
Introduction
Mana Hamada is a prominent inventor based in Fukuoka, Japan. She has made significant contributions to the field of image processing, holding a total of 9 patents. Her work focuses on enhancing image encoding and decoding technologies, which are crucial in various applications.
Latest Patents
Hamada's latest patents include an image decoding unit and image encoding/decoding devices that utilize this unit. The image decoding unit consists of a decoding unit, a data memory unit, a reconstruction unit, and a frame memory. The decoding unit features an entropy decoder, a motion compensator, an inverse quantizer, and an inverse DCT unit. The data memory unit is composed of data memory A and data memory B. This innovative structure allows for high-speed processing of image reconstruction by enabling parallel processing of generating and storing reconstructed image data.
Another notable patent is the conditional vector arithmetic method and conditional vector arithmetic unit. This invention determines whether the first source data from memory should undergo arithmetic operations based on a state flag detection mechanism. The control means then decides if the arithmetic logic unit (ALU) should perform the arithmetic based on the condition satisfaction information.
Career Highlights
Mana Hamada is currently employed at Matsushita Electric Industrial Co., Ltd., where she continues to develop cutting-edge technologies in image processing. Her work has significantly impacted the efficiency and effectiveness of image decoding and encoding processes.
Collaborations
Hamada collaborates with talented coworkers, including Masahiro Ohashi and Tomonori Yonezawa. Their combined expertise fosters an innovative environment that drives advancements in their field.
Conclusion
Mana Hamada's contributions to image processing technology through her patents demonstrate her innovative spirit and dedication to advancing the industry. Her work continues to influence the development of efficient image encoding and decoding systems.