This inventor holds 6 USPTO granted patents. Top assignees: Eastman-Kodak Company, Tandem Computers Incorporated, Other. Active years: 1980-1994.
Location History:
- Honolulu, HI (US) (1980 - 1993)
- Honolulu, H (1994)
Company Filing History:

Years Active: 1980-1994
Title: The Innovations of Edward J Weldon, Jr.
Introduction
Edward J Weldon, Jr. is a notable inventor based in Honolulu, HI (US). He holds a total of 6 patents that showcase his contributions to technology and innovation. His work primarily focuses on coding and decoding systems that enhance data integrity and efficiency.
Latest Patents
Weldon's latest patents include a shift correction code system designed for correcting additive errors. This system addresses issues in a shift correction decoder that processes d,k-constrained RLL data. The decoder corrects additive errors, such as drop-out and drop-in errors, by utilizing information about the sequence of polarities of successive 1-bits in the received data. This innovative approach allows for the insertion of missing 1-bits and the deletion of spurious 1-bits, effectively identifying the location of additive errors. Additionally, he developed a method for coding and decoding ternary symbols to d,k-constrained binary runs, which enhances the efficiency of shift-correction codeword parity checks.
Career Highlights
Throughout his career, Weldon has worked with prominent companies, including Eastman Kodak Company and Tandem Computers Incorporated. His experience in these organizations has contributed to his expertise in the field of data coding and error correction.
Collaborations
Weldon has collaborated with notable individuals such as Dennis G Howe and Hugh M Hilden. These partnerships have likely influenced his innovative approaches and advancements in technology.
Conclusion
Edward J Weldon, Jr. is a distinguished inventor whose work in coding systems has made significant contributions to the field of data integrity. His innovative patents reflect his commitment to enhancing technology and solving complex problems.