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User interface techniques / Multi-touch / Touchscreen / Capacitive sensing / Total internal reflection / IPod Touch / Optical fiber / Microsoft Surface / Electronic component / Human–computer interaction / Optics / Input/output


Scanning FTIR: Unobtrusive Optoelectronic Multi-Touch Sensing through Waveguide Transmissivity Imaging Jon Moeller, Andruid Kerne Interface Ecology Lab – Dept. of Computer Science & Engineering Texas A&M University jmo
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Document Date: 2009-11-28 15:22:37


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File Size: 4,50 MB

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Cambridge / Arduino / /

Company

Microprocessor Systems / Microsoft / CNN / Apple / /

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United States / /

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Patent Filing / /

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optoelectronic multi-touch technology / multi-touch technologies / capacitive and resistive touch technologies / Camera-based systems / capacitive technology / optoelectronic touch technologies / Dual function input device / obtrusive technologies / metal electrodes / range fiber-optic systems / touch-sensing technologies / optoelectronic technologies / sizeappropriate technologies / touch technology / reconstruction algorithm / /

Organization

National Science Foundation / Texas A&M University / Consumer Product Safety Commission / Andruid Kerne Interface Ecology Lab / Panel Assembly / /

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Eric Dean / Steve Liu / /

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Author / Devices General / Butler / /

Product

iPhone / /

ProvinceOrState

Massachusetts / /

Technology

promising optoelectronic multi-touch technology / ADC / capacitive and resistive touch technologies / multi-touch technologies / sizeappropriate technologies / Unobtrusive optoelectronic technologies / touch-sensing technologies / optoelectronics / reconstruction algorithm / optoelectronic touch technologies / CRT-based touch technology / /

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