Back to Search Start Over

A multi-sensor and parallel processing SoC for wearable and implantable telemetry systems

Authors :
Thomas Burger
Q. Wang
Luca Benini
Qiuting Huang
Jonathan Bosser
Xu Han
Florian Glaser
Schekeb Fateh
Noe Brun
Philipp Schonle
Giovanni Rovere
Schönle, P.
Rovere, G.
Glaser, F.
Bösser, J.
Brun, N.
Han, X.
Burger, T.
Fateh, S.
Wang, Q.
Benini, L.
Huang, Q.
Source :
ESSCIRC
Publication Year :
2017
Publisher :
IEEE, 2017.

Abstract

We report a system-on-chip (SoC) realised in 130nm CMOS for implantable telemetry systems and mobile health applications featuring 6 neural stimulation channels and acquisition circuits for 9× electrode-based recordings (ExG), 4×/32× photo-plethysmography (PPG), bio-impedance, and temperature. The SoC includes a low-power quad-core processor (34μW/MHz) with sophisticated power and clock management - enabling power-gating, load-aware voltage scaling, and selective clock-gating. The latter is demonstrated on the example of preliminary work on an implantable telemetry device for vital signs monitoring.

Details

Database :
OpenAIRE
Journal :
ESSCIRC 2017 - 43rd IEEE European Solid State Circuits Conference
Accession number :
edsair.doi.dedup.....978ec7fa32f0569859e1fd9f1435395c
Full Text :
https://doi.org/10.1109/esscirc.2017.8094564