DocumentCode
1323801
Title
Real Multitouch Panel Without Ghost Points Based on Resistive Patterning
Author
Wen-Yang Chang ; Heng-Ju Lin
Author_Institution
Dept. of Mech. & Comput.-Aided Eng., Nat. Formosa Univ., Yunlin, Taiwan
Volume
7
Issue
11
fYear
2011
Firstpage
601
Lastpage
606
Abstract
The real multitouch panel without ghost points is investigated using the structural patterns and an algorithm matrix of the two configurations. The pixels of patterns on the multitouch panel include virtual high and low resistances. The algorithm matrix with two configurations of equivalent circuit is derived using a voltage divider rule for array scanning. The fabrication process of structural patterns is carried out using microelectromechanical systems technology. The optical transmittance and absorbance of the multitouch panel in the UV, Vis, and IR regions are measured using a spectrophotometer. The multitouch panel, containing an array of 30 × 30, has a pixel size of 2 × 2 mm2 and a pitch distance of 2 mm. The average values of high and low impedances are 53.23 and 9.3 kΩ, respectively. The maximum transmittance is about 74.2% at the wavelength of 692 nm. The multitouch panel based on high and low impedance patterns has good adjacent touch resolution for reality multitouch applications. In addition, the patterned design and the algorithm matrix provide unlimited multitouch points and avoid the ghost points.
Keywords
micromechanical devices; spectrophotometers; touch sensitive screens; voltage dividers; IR regions; UV; algorithm matrix; array scanning; equivalent circuit; fabrication process; ghost points; microelectromechanical systems technology; multitouch panel; optical transmittance; resistive patterning; size 692 nm; spectrophotometer; voltage divider rule; Fabrication; Glass; Impedance; Indium tin oxide; Positron emission tomography; Resistance; Substrates; Ghost point; high/low impedance; multitouch; patterning;
fLanguage
English
Journal_Title
Display Technology, Journal of
Publisher
ieee
ISSN
1551-319X
Type
jour
DOI
10.1109/JDT.2011.2159479
Filename
6021887
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