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公开(公告)号:US20130278542A1
公开(公告)日:2013-10-24
申请号:US13453923
申请日:2012-04-23
申请人: Philip Jason Stephanou , Nicholas Ian Buchan , David William Burns , Kristopher Andrew Lavery , Srinivasan Kodaganallur Ganapathi
发明人: Philip Jason Stephanou , Nicholas Ian Buchan , David William Burns , Kristopher Andrew Lavery , Srinivasan Kodaganallur Ganapathi
CPC分类号: G06F3/0414 , G06F3/044 , G06F2203/04103 , G06F2203/04106 , G06F2203/04111
摘要: A touch sensor may include a digital resistive touch (DRT) sensor architecture that is substantially free of air gaps. The DRT touch sensor may include a layer of force-sensitive resistor (FSR) material on an array of row and column electrodes. The electrodes may be formed on a substantially transparent substrate. Near the intersection of each row and column, one or more thin transparent patterned conductive bridges may be situated above the FSR. The conductive bridges may be configured for electrical connection with row and column electrodes when force is applied to the conductive bridge or surface of the touch sensor. Some touch sensors may include both DRT and projected capacitive touch (PCT) functionality.
摘要翻译: 触摸传感器可以包括基本上没有空气间隙的数字电阻式触摸(DRT)传感器架构。 DRT触摸传感器可以在行和列电极阵列上包括一层力敏电阻(FSR)材料。 电极可以形成在基本上透明的基底上。 在每行和列的交叉点附近,一个或多个薄透明图案化导电桥可以位于FSR上方。 当力被施加到触摸传感器的导电桥或表面时,导电桥可被配置为与行电极和列电极电连接。 一些触摸传感器可以包括DRT和投射电容触摸(PCT)功能。
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公开(公告)号:US08149496B2
公开(公告)日:2012-04-03
申请号:US12645379
申请日:2009-12-22
申请人: Manish Kothari , Bangalore Ramaswamiengar Natarajan , Alok Govil , Kristopher Andrew Lavery , Lauren Fay Palmateer , Jonathan Charles Griffiths
发明人: Manish Kothari , Bangalore Ramaswamiengar Natarajan , Alok Govil , Kristopher Andrew Lavery , Lauren Fay Palmateer , Jonathan Charles Griffiths
CPC分类号: G06F3/044 , G02B26/001 , G02B26/02 , G09G3/3466
摘要: An interferometric modulator (“IMOD”) display utilizes ambient light and incorporates touch sensing without reducing the amount of ambient light that reaches the MEMS modulators, and without introducing any optical distortion or loss of performance. Electrodes for touch sensing are located at a back glass of the inteferometric display, and are used in conjunction with electrodes whose primary function is to activate the pixels of the MEMS display, in order to sense a touch. The touch deflects the IMOD layers and is sensed through the various display layers at the rear of the display.
摘要翻译: 干涉式调制器(“IMOD”)显示器利用环境光并且结合触摸感测而不减少到达MEMS调制器的环境光的量,并且不引入任何光学失真或性能损失。 用于触摸感测的电极位于该半透明显示器的后玻璃上,并且与主要功能是激活MEMS显示器的像素的电极结合使用,以感测触摸。 触摸偏转IMOD层,并通过显示器背面的各种显示层进行感测。
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公开(公告)号:US09024910B2
公开(公告)日:2015-05-05
申请号:US13453923
申请日:2012-04-23
申请人: Philip Jason Stephanou , Nicholas Ian Buchan , David William Burns , Kristopher Andrew Lavery , Srinivasan Kodaganallur Ganapathi
发明人: Philip Jason Stephanou , Nicholas Ian Buchan , David William Burns , Kristopher Andrew Lavery , Srinivasan Kodaganallur Ganapathi
CPC分类号: G06F3/0414 , G06F3/044 , G06F2203/04103 , G06F2203/04106 , G06F2203/04111
摘要: A touch sensor may include a digital resistive touch (DRT) sensor architecture that is substantially free of air gaps. The DRT touch sensor may include a layer of force-sensitive resistor (FSR) material on an array of row and column electrodes. The electrodes may be formed on a substantially transparent substrate. Near the intersection of each row and column, one or more thin transparent patterned conductive bridges may be situated above the FSR. The conductive bridges may be configured for electrical connection with row and column electrodes when force is applied to the conductive bridge or surface of the touch sensor. Some touch sensors may include both DRT and projected capacitive touch (PCT) functionality.
摘要翻译: 触摸传感器可以包括基本上没有空气间隙的数字电阻式触摸(DRT)传感器架构。 DRT触摸传感器可以在行和列电极阵列上包括一层力敏电阻(FSR)材料。 电极可以形成在基本上透明的基底上。 在每行和列的交叉点附近,一个或多个薄透明图案化导电桥可以位于FSR上方。 当力被施加到触摸传感器的导电桥或表面时,导电桥可被配置为与行电极和列电极电连接。 一些触摸传感器可以包括DRT和投射电容触摸(PCT)功能。
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公开(公告)号:US20130293482A1
公开(公告)日:2013-11-07
申请号:US13464135
申请日:2012-05-04
CPC分类号: B81B7/0006 , B81B2201/042 , B81B2207/07 , B81B2207/095 , G02B26/001 , G06F3/044 , H01L23/49827 , H01L2924/0002 , H01L2924/15788 , H01L2924/19105 , Y10T29/49126 , Y10T29/49155 , Y10T29/49165 , Y10T156/10 , H01L2924/00012
摘要: This disclosure provides systems, methods and apparatus for transparent conductive vias in a transparent substrate. In one aspect, a transparent conductive via extends through a transparent substrate and electrically connects a topside conductor on a top surface of the transparent substrate and a bottom side conductor on a bottom surface of the transparent substrate. In another aspect, a transparent conductive via extends at least partially through a transparent substrate and is in electrical communication with a topside conductor on a top surface of the transparent substrate. In another aspect, a method of forming a transparent through-substrate via is provided.
摘要翻译: 本公开提供了透明基板中的透明导电通孔的系统,方法和装置。 在一个方面,透明导电通孔延伸穿过透明基板并电连接透明基板的顶表面上的顶侧导体和透明基板的底表面上的底侧导体。 在另一方面,透明导电通孔至少部分地延伸穿过透明基底并且与透明基底的顶表面上的顶侧导体电连通。 另一方面,提供了一种形成透明的通孔的方法。
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公开(公告)号:US20110149375A1
公开(公告)日:2011-06-23
申请号:US12645379
申请日:2009-12-22
申请人: Manish Kothari , Bangalore Ramaswamiengar Natarajan , Alok Govil , Kristopher Andrew Lavery , Lauren Fay Palmateer , Jonathan Charles Griffiths
发明人: Manish Kothari , Bangalore Ramaswamiengar Natarajan , Alok Govil , Kristopher Andrew Lavery , Lauren Fay Palmateer , Jonathan Charles Griffiths
CPC分类号: G06F3/044 , G02B26/001 , G02B26/02 , G09G3/3466
摘要: An interferometric modulator (“IMOD”) display utilizes ambient light and incorporates touch sensing without reducing the amount of ambient light that reaches the MEMS modulators, and without introducing any optical distortion or loss of performance. Electrodes for touch sensing are located at a back glass of the inteferometric display, and are used in conjunction with electrodes whose primary function is to activate the pixels of the MEMS display, in order to sense a touch. The touch deflects the IMOD layers and is sensed through the various display layers at the rear of the display.
摘要翻译: 干涉式调制器(“IMOD”)显示器利用环境光并且结合触摸感测而不减少到达MEMS调制器的环境光的量,并且不引入任何光学失真或性能损失。 用于触摸感测的电极位于该半透明显示器的后玻璃上,并且与主要功能是激活MEMS显示器的像素的电极结合使用,以感测触摸。 触摸偏转IMOD层,并通过显示器背面的各种显示层进行感测。
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