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This enables the replacement of the conventional tactile sensor comprising a patterned array structure with a super\u2010simple, single\u2010layer, large\u2010area tactile sensor pad. A crude carbon nanotube\u2010dispersed polydimethylsiloxane pad\u2014with a bias applied to the center and the resultant piezoresistive current detected at several electrodes located on the pad edge\u2014plays a smart sensory role without the need for complicated fabrication of microengineered structures. The piezoresistive current while recording the indented location and the pressure thereon is measured, and then various DL models (a multimodel arrangement is necessary due to the viscoelasticity of the pad) using the collected data are trained. The proposed concept is realized using a tandem model comprising a combination of algorithms selected from deep neural networks, convolutional neural networks, long short\u2010term memory networks, and 16 state\u2010of\u2010the\u2010art machine learning algorithms. 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