Towson, MD, United States of America

Benjamin Hopwood

USPTO Granted Patents = 2 

Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2023-2025

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2 patents (USPTO):Explore Patents

Title: **Benjamin Hopwood: Innovator in Medical Sterilization Technology**

Introduction

Benjamin Hopwood, a dedicated inventor based in Towson, MD, has made significant contributions to the field of medical technology. His innovative approach to sterilization solutions is exemplified by his patent for reusable tortuous path filters used in sterilization containers.

Latest Patents

Hopwood holds a patent for "Reusable tortuous path filters for sterilization containers." This inventive design involves a sterilization container that effectively sterilizes medical instruments. It features a body that defines an interior volume along with a lid connected to the body, designed to securely seal the interior. The lid incorporates an exterior filter structure with a configuration of ridges and troughs, while the filter assembly connected to the lid contains an interior filter structure as well. These structures are designed to create longitudinal channels that form a rectangular tortuous filter path, which significantly inhibits the ingress and egress of contaminants within the container.

Career Highlights

Currently, Hopwood is employed at CareFusion 2200, Inc., where he continues to advance his work in medical device innovation. His focus on sterilization technologies showcases his commitment to enhancing healthcare practices and ensuring better patient safety.

Collaborations

Throughout his career, Hopwood has collaborated with talented professionals, including his coworkers Jason Cartwright and Brandon Toth. These partnerships foster an environment of innovation, allowing for the development of cutting-edge solutions in the medical field.

Conclusion

Benjamin Hopwood's contributions to sterilization technology highlight the importance of innovation in healthcare. His patent reflects a deep understanding of both engineering and medical requirements, paving the way for improved sterilization practices. As his career progresses, Hopwood's work will continue to influence the safety and effectiveness of medical instruments, benefiting both practitioners and patients alike.

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