Papers
1
Total Citations
84
H-Index
1
About
F. Golmar is a leading figure in the development of flexible magnetic field sensorics, a field at the intersection of materials science, electronics, and soft robotics. Their most-cited work, a 2019 study on a highly compliant planar Hall effect sensor, achieved sub-200 nT sensitivity—a breakthrough that has garnered 84 citations and laid the groundwork for reshapeable, robust devices. Golmar’s key contributions center on engineering mechanically compliant sensors that maintain high performance under deformation, enabling novel applications in virtual and augmented reality, interactive soft robotics, and point-of-care diagnostics. By addressing the critical challenge of merging sensitivity with flexibility, their research has opened new pathways for wearable and implantable electronics. Golmar’s impact is evident in the growing adoption of their sensor designs, which balance robustness with the ability to conform to irregular surfaces. Their work not only advances fundamental understanding of magnetoresistive phenomena but also drives practical innovations in human-machine interfaces and portable medical tools. For students and researchers, Golmar exemplifies how targeted materials engineering can transform a niche sensing technology into a versatile platform for next-generation flexible electronics.
Research Focus
Key Achievements
Top Papers
- 1Highly compliant planar Hall effect sensor with sub 200 nT sensitivity84 citations · 2019