This inventor holds 1 USPTO granted patent and 2 published patent applications. Top assignees: Commonwealth Fusion Systems LLC, Massachusetts Institute of Technology. Active years: 2026.
Company Filing History:

Years Active: 2026
Title: Innovations by Nicholas J Kelton
Introduction
Nicholas J Kelton is an accomplished inventor based in Somerville, MA (US). He holds a patent that showcases his expertise in the field of superconducting magnets. His innovative techniques contribute significantly to the advancement of technology in this area.
Latest Patents
Nicholas J Kelton has been granted a patent for "Techniques for distributing forces in high field magnets and related systems and methods." This patent describes methods for lowering strains applied to superconducting material in a superconducting magnet. By arranging structural partitions between turns of the superconducting material, he effectively intercepts and transfers strain to a mechanically stronger structure, such as the housing of the magnet. The design includes feedthrough slits in the structural partitions, allowing the superconducting material to pass through easily. This innovative approach ensures that forces are distributed throughout the magnet while minimizing the space occupied by the partitions.
Career Highlights
Throughout his career, Nicholas has worked with prestigious organizations, including the Massachusetts Institute of Technology and Commonwealth Fusion Systems. His contributions to these institutions have been instrumental in advancing research and development in superconducting technologies.
Collaborations
Nicholas has collaborated with notable professionals in his field, including Sergey Kuznetsov and Grant W Kristofek. These partnerships have further enriched his work and expanded the impact of his innovations.
Conclusion
Nicholas J Kelton's contributions to the field of superconducting magnets through his innovative patent demonstrate his commitment to advancing technology. His work continues to influence the development of more efficient and effective superconducting systems.