Location History:
- Baltimore, MD (US) (1981)
- Towson, MD (US) (1983 - 1987)
Company Filing History:
Years Active: 1981-1987
Title: Dwaine O Cowan: Innovator in Electrical Organic Thin Film Technology
Introduction
Dwaine O Cowan is a notable inventor based in Towson, MD (US). He has made significant contributions to the field of electrical organic thin film technology, holding a total of four patents. His work focuses on developing advanced switching devices that enhance the performance and efficiency of electronic systems.
Latest Patents
Cowan's latest patents include an electrical organic thin film switching device that operates as a current-controlled, bistable threshold or memory switch. This innovative device comprises a polycrystalline metal-organic semiconductor sandwiched between metallic electrodes. The films utilized in this invention, which can be made of either copper or silver complexed with various electron acceptors such as TNAP, DDQ, TCNE, TCNQ, and derivative TCNQ molecules, enable switching between high and low impedance states. The combined delay and switching times are remarkably fast, on the order of 1 nanosecond. The switching behavior of this complex is intricately related to the reduction potential of the acceptor molecule, showcasing the advanced nature of Cowan's work.
Career Highlights
Dwaine O Cowan is affiliated with The Johns Hopkins University, where he continues to push the boundaries of innovation in his field. His research and inventions have garnered attention for their potential applications in various electronic devices, making significant strides in the realm of organic electronics.
Collaborations
Cowan has collaborated with esteemed colleagues such as Richard S Potember and Theodore O Poehler. These partnerships have contributed to the advancement of his research and the successful development of his patented technologies.
Conclusion
Dwaine O Cowan stands out as a prominent inventor in the field of electrical organic thin film technology. His innovative patents and collaborations reflect his commitment to advancing electronic systems through cutting-edge research.