nspired by the structure and functions of the human skin, a highly sensitive capacitive‐piezoelectric flexible sensing skin with fingerprint‐like patterns to detect and discriminate between spatiotemporal tactile stimuli including static and dynamic pressures and textures is presented. The capacitive‐piezoelectric tandem sensing structure is embedded in the phalange of a 3D‐printed robotic hand, and a tempotron classifier system is used for tactile exploration. The dynamic tactile sensor, interfaced with an extended gate configuration to a common source metal oxide semiconductor field effect transistor (MOSFET), exhibits a sensitivity of 2.28 kPa−1. The capacitive sensing structure has nonlinear characteristics with sensitivity varying from...
Finger skin electronics are essential for realizing humanoid soft robots and/or medical applications...
Biomimetic flexible tactile sensors endow prosthetics with the ability to manipulate objects, simila...
A capacitive silicon tactile imaging system has been investigated for robotic and biomedical applica...
nspired by the structure and functions of the human skin, a highly sensitive capacitive‐piezoelectri...
Inspired by the structure and functions of the human skin, a highly sensitive capacitive‐piezoelectr...
Human skin contains slowly-adapting (SA) and rapidly-adapting mechanoreceptors (RA) through which it...
This paper presents our work on the development of a biomimetic tactile sensor and its integration w...
In this study, a flexible tactile sensing array based on a capacitive mechanism was designed, fabric...
This paper presents our work on the development of a biomimetic tactile sensor and its integration w...
Flexible tactile sensors capable of detecting the magnitude and direction of the applied force toget...
Flexible tactile sensors capable of detecting the magnitude and direction of the applied force toget...
The development of pressure sensors of high sensitivity and stable robustness over a broad range is ...
In human fingertips, the fingerprint patterns and interlocked epidermal-dermal microridges play a cr...
Enabling the robotic ability to sense tactile interactions is a complex and interdisciplinary challe...
Flexible and stretchable tactile sensors can fit complex surfaces nicely, and can be applied to robo...
Finger skin electronics are essential for realizing humanoid soft robots and/or medical applications...
Biomimetic flexible tactile sensors endow prosthetics with the ability to manipulate objects, simila...
A capacitive silicon tactile imaging system has been investigated for robotic and biomedical applica...
nspired by the structure and functions of the human skin, a highly sensitive capacitive‐piezoelectri...
Inspired by the structure and functions of the human skin, a highly sensitive capacitive‐piezoelectr...
Human skin contains slowly-adapting (SA) and rapidly-adapting mechanoreceptors (RA) through which it...
This paper presents our work on the development of a biomimetic tactile sensor and its integration w...
In this study, a flexible tactile sensing array based on a capacitive mechanism was designed, fabric...
This paper presents our work on the development of a biomimetic tactile sensor and its integration w...
Flexible tactile sensors capable of detecting the magnitude and direction of the applied force toget...
Flexible tactile sensors capable of detecting the magnitude and direction of the applied force toget...
The development of pressure sensors of high sensitivity and stable robustness over a broad range is ...
In human fingertips, the fingerprint patterns and interlocked epidermal-dermal microridges play a cr...
Enabling the robotic ability to sense tactile interactions is a complex and interdisciplinary challe...
Flexible and stretchable tactile sensors can fit complex surfaces nicely, and can be applied to robo...
Finger skin electronics are essential for realizing humanoid soft robots and/or medical applications...
Biomimetic flexible tactile sensors endow prosthetics with the ability to manipulate objects, simila...
A capacitive silicon tactile imaging system has been investigated for robotic and biomedical applica...