This work presents Poly(vinylidene fluoride – trifluoroethylene))/Barium Titanate (P(VDF-TrFE)-BT) nanocomposite based touch sensors tightly coupled with MOSFET devices in extended gate configuration. The P(VDF-TrFE)-BT nanocomposite exploits the distinct piezo and pyroelectric properties of P(VDF-TrFE) polymer matrix and BT fillers to suppress the temperature response when force and temperature are varied simultaneously. The reasons for this unique feature have been established through structural and electrical characterization of nanocomposite. The proposed touch sensor was tested over a wide range of force/pressure (0-4N)/(0-364 Pa) and temperature (26-70°C) with almost linear response. The sensitivity towards force/pressure and temperat...
This paper reports on a highly sensitive tactile sensor based on a floating gate organic transistor ...
Multifunctional electronic skins have attracted considerable attention for soft electronics includin...
This work presents the development of tactile sensing arrays, inspired by cutaneous sensing in human...
This paper presents an enhanced piezoelectricity based sensor for touch and temperature sensing. The...
Responses of a tactile sensor to force (0 to 9 N) and temperature (15 to 47°C) are investigated. The...
In this study, a novel approach to the fabrication of a multimodal temperature and force sensor on u...
This paper presents an enhanced piezoelectricity based sensor for touch and temperature sensing. The...
Abstract In this manuscript, we report on a novel architecture for the fabrication of highly sensiti...
A multifunctional sensor that responds to all – static/quasi-static or dynamic temperature or force ...
Responses of a tactile sensor to force (0 to 9 N) and temperature (15 to 47°C) are investigated. The...
This thesis presents the development of tactile force and temperature sensors formed by coupling an ...
This paper presents the research on tactile sensing system on chip. The tactile sensing chips compr...
This paper presents the research on tactile sensing system on chip. The tactile sensing chips compri...
This work presents the advanced version of novel POSFET (Piezoelectric Oxide Semiconductor Field Eff...
This paper presents an ultra-thin bendable silicon based tactile sensor, in a piezoelectric capacito...
This paper reports on a highly sensitive tactile sensor based on a floating gate organic transistor ...
Multifunctional electronic skins have attracted considerable attention for soft electronics includin...
This work presents the development of tactile sensing arrays, inspired by cutaneous sensing in human...
This paper presents an enhanced piezoelectricity based sensor for touch and temperature sensing. The...
Responses of a tactile sensor to force (0 to 9 N) and temperature (15 to 47°C) are investigated. The...
In this study, a novel approach to the fabrication of a multimodal temperature and force sensor on u...
This paper presents an enhanced piezoelectricity based sensor for touch and temperature sensing. The...
Abstract In this manuscript, we report on a novel architecture for the fabrication of highly sensiti...
A multifunctional sensor that responds to all – static/quasi-static or dynamic temperature or force ...
Responses of a tactile sensor to force (0 to 9 N) and temperature (15 to 47°C) are investigated. The...
This thesis presents the development of tactile force and temperature sensors formed by coupling an ...
This paper presents the research on tactile sensing system on chip. The tactile sensing chips compr...
This paper presents the research on tactile sensing system on chip. The tactile sensing chips compri...
This work presents the advanced version of novel POSFET (Piezoelectric Oxide Semiconductor Field Eff...
This paper presents an ultra-thin bendable silicon based tactile sensor, in a piezoelectric capacito...
This paper reports on a highly sensitive tactile sensor based on a floating gate organic transistor ...
Multifunctional electronic skins have attracted considerable attention for soft electronics includin...
This work presents the development of tactile sensing arrays, inspired by cutaneous sensing in human...