Han Hao, Andrew G. Richardson, Yixiao Ding, Lin Du, Mark G. Allen, Jan Van der Spiegel, Firooz Aflatouni
2024.2.1Digest of Technical Papers - IEEE International Solid-State Circuits Conference
tlooto Summary
An interface IC is implemented for one such application, where it is combined with a force sensor to create a subcutaneous implant for tactile sensing to help restore somatosensation, an important yet lacking function in the existing reanimation treatment of hand paralysis.
Abstract
Capacitive sensors are prevalent in IoT and healthcare devices due to their low cost and zero static power consumption. As a pivotal component in these devices, the sensor interface [1–4] poses distinct design challenges, especially in wireless systems with considerable channel loss. In this work, an interface IC is implemented for one such application, where it is combined with a force sensor to create a subcutaneous implant for tactile sensing. Through a sensor-brain interface, this device aims to help restore somatosensation, an important yet lacking function in the existing reanimation treatment of hand paralysis [4]. As illustrated in Fig. 17.10.1, the sensor device, intended for palm implantation, is controlled via a bidirectional inductive link with the primary coil worn on the wrist or affixed to the back of the hand, causing no interference with natural hand movements.
Citation format
HAO, Han, et al. 17.10 a 0.4v, 750nw, individually accessible wireless capacitive sensor interface IC for a tactile sensing network. Digest of Technical Papers - IEEE International Solid-State Circuits Conference, 2024, 2024: 332–334.