Location History:
- Berkeley, CA (US) (2021 - 2023)
- San Francisco, CA (US) (2017 - 2024)
Company Filing History:
Years Active: 2017-2025
Title: Buster Benson: Innovator in Group-Based Communication Systems
Introduction
Buster Benson is a prominent inventor based in San Francisco, CA, known for his contributions to group-based communication systems. With a total of 12 patents to his name, he has made significant advancements in the field of networked computing devices. His work focuses on improving the efficiency and stability of communication systems through innovative methods and technologies.
Latest Patents
Benson's latest patents include a method, apparatus, and computer program product for selectively granting permissions to group-based objects in a group-based communication system. This invention provides an improved system that allows client devices to grant third-party applications access to group-based communication objects. The system maintains a permissions table that can be modified without requiring a new authentication process, enhancing both stability and efficiency. Another notable patent is for generating a third-party resource usage map in a group-based communication system, which includes records of user identifiers and access tokens for third-party resource providers.
Career Highlights
Throughout his career, Buster Benson has worked with notable companies such as Twitter, Inc. and Slack Technologies, Inc. His experience in these organizations has contributed to his expertise in developing innovative solutions for communication systems.
Collaborations
Benson has collaborated with talented individuals in the industry, including William Morgan and Jeremy Gordon. These partnerships have fostered a creative environment that has led to the development of groundbreaking technologies.
Conclusion
Buster Benson's work in the field of group-based communication systems showcases his innovative spirit and dedication to improving technology. His patents reflect a commitment to enhancing user experience and system efficiency in networked environments.