Title :
Resistivity characteristics of single miniature tactile sensing element based on pressure sensitive conductive rubber sheet
Author :
Aqilah, Ahsana ; Jaffar, A. ; Bahari, S. ; Low, C.Y. ; Koch, T.
Author_Institution :
Center of Excellence for Humanoid Robot. & Bio-Sensing (HuRoBs), Univ. Teknol. MARA (UiTM), Shah Alam, Malaysia
Abstract :
This paper presents the development of a tactile sensor using single miniature sensing element based on pressure sensitive conductive rubber and outlines the resistance measurements performance. This sensor is specially designed for a robotic hand developed at UiTM Faculty of Mechanical Engineering. Nevertheless, the low cost, low density and flexible material is suitable for most robotics hand designs. It exhibits piezoresistive like behavior whose resistance change with force/pressure enables its applications as tactile sensor. The operating principle and hardware architecture of the sensor is explained. It consists of an array of 16 sensing elements in rows and columns for data acquisition. The test results indicate significant drop of resistance with the increase of applied load.
Keywords :
data acquisition; manipulators; piezoresistive devices; pressure sensors; rubber; sheet materials; tactile sensors; Faculty of Mechanical Engineering; UiTM; data acquisition; hardware architecture; piezoresistive like behavior; pressure sensitive conductive rubber sheet; resistance change; resistance measurements performance; resistivity characteristics; robotic hand; robotics hand designs; sensing elements; single miniature sensing element; single miniature tactile sensing element; Materials; Resistance; Rubber; Tactile sensors; Pressure sensitive rubber; piezoresistive; tactile sensor;
Conference_Titel :
Signal Processing and its Applications (CSPA), 2012 IEEE 8th International Colloquium on
Conference_Location :
Melaka
Print_ISBN :
978-1-4673-0960-8
DOI :
10.1109/CSPA.2012.6194722