This inventor holds 1 USPTO granted patent and 1 published patent application and 1 EPO patent. Top assignee: Quanta Dialysis Technologies Limited. Active years: 2024.
Company Filing History:
Years Active: 2024
Title: Innovations by Lewis Reading in Membrane Pump Technology
Introduction
Lewis Reading is an accomplished inventor based in Warwickshire, GB. He has made significant contributions to the field of membrane pump technology. His innovative approach has led to the development of a unique system that enhances the efficiency and reliability of membrane pumps.
Latest Patents
Lewis Reading holds a patent for a "Membrane pump usage condition detection system." This system includes a method for determining the usage condition of a membrane pump. The system comprises a membrane pump with a flow path that can be opened and closed by at least one valve. It features a measuring device that determines an electrical characteristic between two points on the flow path, one located upstream and the other downstream of the valve. The measuring device operates when the valve is closed, allowing the comparator to monitor the electrical characteristic. The signal generator then provides an output signal when the electrical characteristic indicates a specific usage condition of the membrane pump. This innovation is crucial for maintaining optimal performance in various applications.
Career Highlights
Lewis Reading is associated with Quanta Dialysis Technologies Limited, where he applies his expertise in developing advanced technologies for dialysis. His work focuses on improving the functionality and reliability of medical devices, particularly in the field of dialysis.
Collaborations
Lewis has collaborated with notable colleagues, including Paul Edward May and Chung Chan Tham. Their combined efforts contribute to the advancement of technology in the medical field.
Conclusion
Lewis Reading's innovative work in membrane pump technology exemplifies the impact of dedicated inventors in enhancing medical devices. His contributions are vital for improving patient care and operational efficiency in dialysis treatments.