This inventor holds 4 USPTO granted patents, plus 1 CIPO patent. Top assignee: Thermo Finnigan LLC. Active years: 2007-2008.
Company Filing History:
Years Active: 2007-2008
Title: Innovations of James T Kapron
Introduction
James T Kapron is a notable inventor based in Ottawa, Canada. He has made significant contributions to the field of ion separation technology. With a total of 4 patents to his name, Kapron's work has advanced the understanding and application of ion mobility spectrometry.
Latest Patents
Kapron's latest patents include innovative apparatuses and methods for adjusting ion separation resolution in Field Asymmetric Waveform Ion Mobility Spectrometry (FAIMS). One of his inventions involves an apparatus for separating ions, which features a FAIMS analyzer region with a first ion inlet for introducing ions. This apparatus also includes an ion outlet for extracting a subset of ions that is selectively transmitted along an average ion flow path. Additionally, it incorporates an actuator for controllably varying the length of the average ion flow path through the FAIMS analyzer region. Another patent focuses on controllably varying the specificity of a FAIMS-based ion separation, utilizing an asymmetric waveform voltage applied across electrode surfaces to define the average ion flow path.
Career Highlights
James T Kapron has been associated with Thermo Finnigan LLC, where he has contributed to the development of advanced analytical instruments. His work has been pivotal in enhancing the capabilities of ion separation technologies, making them more efficient and effective for various applications.
Collaborations
Kapron has collaborated with notable colleagues such as Roger Guevremont and Govindanunny Thekkadath. These partnerships have fostered innovation and have led to the successful development of new technologies in the field.
Conclusion
James T Kapron's contributions to ion separation technology through his patents and collaborations highlight his role as a significant inventor in the field. His work continues to influence advancements in analytical chemistry and related disciplines.
