This inventor holds 1 USPTO granted patent. Top assignee: Crystal Group, Inc.. Active years: 2019.
Company Filing History:
Years Active: 2019
Title: Brent Sievers - Innovator in Memory Module Technology
Introduction
Brent Sievers is an accomplished inventor based in Cedar Rapids, IA (US). He has made significant contributions to the field of memory module technology, particularly in environments that experience high shock and vibration. His innovative approach has led to the development of a unique system that enhances the performance and reliability of memory modules.
Latest Patents
Brent Sievers holds a patent for a "System and method for retaining memory modules." This invention provides an apparatus and method that allows for the use of commercial dual inline memory modules (DIMM) in challenging environments while preserving serviceability. The system extends the performance of standard Joint Electron Device Engineering (JEDEC) memory connectors without sacrificing high-speed electrical performance. It features a simple clip that locks the module in place using standard connector latches, preventing relative motion and ensuring uninterrupted computational performance. The clip is designed with resilient ends that snap onto pivotal latching devices to avoid inadvertent openings. Additionally, the clips may include bumper spacers to maintain proper orientation of the modules.
Career Highlights
Brent Sievers is currently employed at Crystal Group, Inc., where he continues to innovate and develop advanced technology solutions. His work has been instrumental in enhancing the reliability and performance of memory modules in various applications.
Collaborations
Brent collaborates with talented individuals such as James E Shaw and Rachel Manson, contributing to a dynamic and innovative work environment.
Conclusion
Brent Sievers is a notable inventor whose work in memory module technology has made a significant impact. His innovative solutions address critical challenges in high shock and vibration environments, ensuring reliable performance in demanding applications.
