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Tytuł pozycji:

Hybrid LAE-CMOS Force-Sensing System Employing TFT-Based Compressed Sensing for Scalability of Tactile Sensing Skins.

Tytuł:
Hybrid LAE-CMOS Force-Sensing System Employing TFT-Based Compressed Sensing for Scalability of Tactile Sensing Skins.
Autorzy:
Aygun LE
Kumar P
Zheng Z
Chen TS
Wagner S
Sturm JC
Verma N
Źródło:
IEEE transactions on biomedical circuits and systems [IEEE Trans Biomed Circuits Syst] 2019 Dec; Vol. 13 (6), pp. 1264-1276. Date of Electronic Publication: 2019 Oct 21.
Typ publikacji:
Journal Article; Research Support, Non-U.S. Gov't; Research Support, U.S. Gov't, Non-P.H.S.
Język:
English
Imprint Name(s):
Original Publication: New York, NY : IEEE, c2007-
MeSH Terms:
Semiconductors*
Skin Physiological Phenomena*
Transistors, Electronic*
Biosensing Techniques/*instrumentation
Touch/*physiology
Algorithms ; Biosensing Techniques/methods ; Humans ; Silicon/chemistry ; Zinc Oxide/chemistry
Substance Nomenclature:
SOI2LOH54Z (Zinc Oxide)
Z4152N8IUI (Silicon)
Entry Date(s):
Date Created: 20191022 Date Completed: 20200513 Latest Revision: 20200513
Update Code:
20240104
DOI:
10.1109/TBCAS.2019.2948326
PMID:
31634845
Czasopismo naukowe
Tactile sensing requires form-fitting and dense sensor arrays over large-areas. Hybrid systems, combining Large-Area Electronics (LAE) and silicon-CMOS ICs to respectively provide diverse sensing and high-performance computation/control, enable a platform for such sensing. A key challenge is that hybrid systems require a large number of interfaces between the LAE and CMOS domains, particularly as the number of sensors scales. This paper presents an architecture that exploits the attribute of signal sparsity, commonly exhibited in large-scale tactile-sensing applications, to reduce the interfacing complexity to a level set by the sparsity rather than the number of sensors. This enhances scalability compared to sequential-scanning and active-matrix approaches. The architecture implements compressed sensing via thin-film-transistor (TFT) switches, and is demonstrated in a force-sensing system with 20 force sensors, a TFT die (with 161 ZnO TFTs) per sensor, and a custom CMOS IC for system readout and control. Acquisition error of 0.7 k[Formula: see text] is achieved over a 100 k Ω-20 k Ω sensing range, at energy and rate of 2.46  μ J/frame and 31 fps.

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