Pablo Granell
Papers
1
Total Citations
84
H-Index
1
About
Pablo Granell is a leading figure in the emerging field of flexible magnetic field sensorics, where his work bridges the gap between high-performance sensing and mechanical adaptability. His key research areas include planar Hall effect sensors, magnetoresistive devices, and the development of robust, flexible electronics for real-world applications. Granell’s most notable contribution is the creation of a highly compliant planar Hall effect sensor, detailed in his 2019 paper, which has garnered 84 citations. This work achieved sub-200 nT sensitivity in a mechanically reshapeable form, a breakthrough that directly enables novel applications in soft robotics, virtual and augmented reality interfaces, and point-of-care diagnostics. By demonstrating that high-sensitivity magnetic sensing can be integrated into flexible, durable substrates, Granell has opened new pathways for wearable and implantable devices that must conform to complex surfaces. His research not only advances the fundamental physics of magnetoresistive materials but also provides practical, scalable solutions for next-generation interactive and biomedical technologies. Granell’s work stands as a cornerstone for researchers aiming to merge high-precision sensing with the mechanical compliance required for truly flexible electronics.
Research Focus
Key Achievements
Top Papers
- 1Highly compliant planar Hall effect sensor with sub 200 nT sensitivity84 citations · 2019