This inventor holds 4 USPTO granted patents. Top assignee: Digital Equipment Corporation. Active years: 1977-1984.
Location History:
- Peabody, MA (US) (1977)
- Merrimac, NH (US) (1982)
- Merrimack, NH (US) (1983 - 1984)
Company Filing History:
Years Active: 1977-1984
Title: The Innovations of Robert A. Giggi
Introduction
Robert A. Giggi is a notable inventor based in Merrimac, NH (US). He has made significant contributions to the field of data processing systems, holding a total of 4 patents. His work primarily focuses on enhancing the efficiency and functionality of multiprocessor systems.
Latest Patents
One of Robert A. Giggi's latest patents is for a "Cached Multiprocessor System with Pipeline Timing." This innovative system features processors and input/output devices that share a common control unit (CCU). The CCU includes a write-through cache memory, a memory management circuit, and an address translation circuit. The design allows for an ordered pipelined sequence in which the processors and input/output devices utilize the cache memory efficiently. When a read command misses the cache, the CCU accesses memory modules to allocate cache memory and return data. The system is optimized for transactions that require minimal cache access, enhancing overall performance.
Career Highlights
Robert A. Giggi has had a distinguished career at Digital Equipment Corporation, where he has contributed to various projects that push the boundaries of technology. His expertise in multiprocessor systems has made him a valuable asset to the company.
Collaborations
Throughout his career, Robert has collaborated with notable colleagues, including Richard Franklin Lary and Jega A. Arulpragasam. These partnerships have fostered innovation and led to advancements in their respective fields.
Conclusion
Robert A. Giggi's contributions to the field of data processing systems exemplify the spirit of innovation. His patents and work at Digital Equipment Corporation have significantly impacted technology, showcasing his dedication to advancing multiprocessor systems.
