This inventor holds 27 USPTO granted patents and 5 published patent applications, plus 7 CIPO patents and 11 EPO patents. Top assignees: Bioness Neuromodulation Ltd., Neurolief Ltd., Bioness Inc.. Active years: 2009-2025.
Location History:
- Kfar Hes, IL (2014)
- Kefar-Hess, IL (2009 - 2018)
- Kfar Hess, IL (2012 - 2024)
- Kfar-Hess, IL (2024)
Company Filing History:

Years Active: 2009-2025
Title: Amit Dar: Innovator in Neurostimulation Technologies
Introduction
Amit Dar, a prominent inventor based in Kfar Hess, IL, has made significant contributions to the field of neurostimulation and healthcare technology. With a remarkable portfolio of 27 patents, his innovative approach has paved the way for new advancements in monitoring and stimulating brain functions.
Latest Patents
Among his latest patents are two groundbreaking inventions: a Headset for Neurostimulation and Sensing of Body Parameters and a Resilient Head Mounted Device for the same purposes. These devices are designed to deliver electrical stimulation to the skin surface of the head and to sense various parameters of the user's head, showcasing Amit's commitment to enhancing health monitoring and treatment methods.
Career Highlights
Amit has had a notable career, having worked with leading companies in the field, including Bioness Neuromodulation Ltd. and Neurolief Ltd. His experience in these firms has allowed him to develop advanced technologies that cater to the needs of individuals requiring neurostimulation solutions.
Collaborations
Throughout his career, Amit has collaborated with talented professionals such as Jonathan Bar-Or and Shmuel Springer. These partnerships have contributed to his success in creating innovative products and advancing research in neurostimulation.
Conclusion
Amit Dar stands out as a notable inventor in the realm of neurostimulation technology. With his extensive experience and a robust patent portfolio, he continues to drive innovation and improve the ways in which healthcare can intersect with technology. His work promises to influence the future of how we understand and interact with neurophysiological devices.