Abstract
This work presents a flexible polyimide-based capacitive tactile sensing array with sub-millimeter spatial resolution. The sensor is conceived to be embedded in a multimodal artificial finger to detect and classify the texture morphology of an object's surface. The proposed tactile sensor comprises a 16× 16 array of capacitive sensing units. Each unit is composed of a parallel square electrode pairs (340μ m × 340μ m) separated by a compressible air cavity and embedded into a flexible polyimide substrate. Standard MEMS microfabrication techniques were used to develop the sensor. The polyimide device was covered with a thin compressible PDMS layer to tune the normal pressure sensitivity and dynamic range (225-430 μ m thin PDMS layer resulting in 0.23-0.14 fF/kPa). The detection of the surface morphologies of a regular grating stamp for different orientation and a small metallic nut placed on the sensor is demonstrated, showing a 420 μ m spatial resolution. The proposed sensor represents a novel capacitive tactile sensing device with a sub-mm resolution of human fingertip sensitivity.
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Sotgiu, E., Aguiam, D. E., Calaza, C., Rodrigues, J., Fernandes, J., Pires, B., … Gaspar, J. (2020). Surface Texture Detection with a New Sub-mm Resolution Flexible Tactile Capacitive Sensor Array for Multimodal Artificial Finger. Journal of Microelectromechanical Systems, 29(5), 629–636. https://doi.org/10.1109/JMEMS.2020.3004584
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