This inventor holds 2 USPTO granted patents and 1 published patent application and 3 EPO patents. Top assignee: Schneider Electric Industries Sas. Active years: 2016-2017.
Company Filing History:
Years Active: 2016-2017
Title: Nathalie Caillault: Innovator in Magnetothermal Technology
Introduction
Nathalie Caillault is a prominent inventor based in Vourey, France. She has made significant contributions to the field of electrical engineering, particularly in the development of innovative current limiting devices. With a total of two patents to her name, her work showcases her expertise and dedication to advancing technology.
Latest Patents
Nathalie's latest patents include a magnetothermal current limiting device and an actuator with a thermomagnetic shunt. The magnetothermal current limiting device features a transformer that incorporates a magnetothermal material. This device is designed to limit current in the primary conductor by modifying the coupling coefficient of the transformer when the current exceeds a certain threshold. The actuator with a thermomagnetic shunt is an electromagnetic actuator that includes a saturable magnetic shunt system. This shunt works in conjunction with a coil of the actuator, allowing for the effective channeling of current flow, which is crucial for triggering circuit breakers during overloads and short circuits.
Career Highlights
Nathalie Caillault is currently employed at Schneider Electric Industries Sas, where she continues to innovate and develop cutting-edge technologies. Her work at Schneider Electric has positioned her as a key player in the field of electrical engineering.
Collaborations
Some of her notable coworkers include Philippe Schuster and Laurent Carbone, who contribute to the collaborative environment that fosters innovation at Schneider Electric.
Conclusion
Nathalie Caillault's contributions to the field of electrical engineering through her patents and work at Schneider Electric highlight her role as a leading inventor. Her innovative solutions in current limiting devices and actuators demonstrate her commitment to advancing technology and improving safety in electrical systems.
