DocumentCode :
1199326
Title :
Cut-and-paste customization of organic FET integrated circuit and its application to electronic artificial skin
Author :
Kawaguchi, Hiroshi ; Someya, Takao ; Sekitani, Tsuyoshi ; Sakurai, Takayasu
Author_Institution :
Inst. of Ind. Sci., Univ. of Tokyo, Meguro, Japan
Volume :
40
Issue :
1
fYear :
2005
Firstpage :
177
Lastpage :
185
Abstract :
The concept of cut-and-paste customization is introduced for the first time in designing integrated circuits based on mechanically flexible organic field-effect transistors, and is applied to electronic artificial skin. The electronic artificial skin comprise of three separate integrated circuits that are a pressure-sensor array, row decoders, and column selectors to read out pressure information over a large area. All of three integrated circuits are scalable in size because the pressure-sensor array is a simple repetition of sensor cells and the row and column decoders adopt wired-NAND circuits, which enables the cut-and-paste customization in size. The physical cut-and-paste procedure is employed by cutting a part of the integrated circuits and pasting it to another integrated circuit with a connecting plastic tape. The integrated circuits are designed with a standard SPICE simulator and layout design tool, and the operation is confirmed by measurement.
Keywords :
NAND circuits; field effect integrated circuits; field effect transistor circuits; integrated circuit design; organic semiconductors; pressure sensors; skin; SPICE simulator; column selectors; cut-and-paste customization; dynamic boosted-gate E/E; electronic artificial skin; field-effect transistors; integrated circuits design; layout design tool; organic FET integrated circuit; organic transistor; pressure-sensor array; row decoders; sensor cells; wired-NAND circuits; Decoding; FET integrated circuits; Integrated circuit layout; Joining processes; Measurement standards; OFETs; Plastics; SPICE; Sensor arrays; Skin; area sensor; cut-and-paste customization; dynamic boosted-gate E/E; electronic artificial skin; organic transistor;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2004.837259
Filename :
1375001
Link To Document :
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