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    • 1. 发明申请
    • Touch Sensing
    • 触摸感应
    • US20100302185A1
    • 2010-12-02
    • US12757693
    • 2010-04-09
    • Jefferson Y. HanJoel S. KollinDavid Elliott Slobodin
    • Jefferson Y. HanJoel S. KollinDavid Elliott Slobodin
    • G06F3/041
    • G06F3/042G06F3/0425G06F2203/04109
    • A touch-screen device includes a radiation source, a pliable waveguide configured to receive radiation emitted by the radiation source and to cause some of the received radiation to undergo total internal reflection within the pliable waveguide, a frustrating layer disposed relative to the pliable waveguide so as to enable the frustrating layer to contact the pliable waveguide when the pliable waveguide is physically deformed, the frustrating layer being configured to cause frustration of the total internal reflection of the received radiation within the pliable waveguide at a contact point between the frustrating layer and the pliable waveguide when the pliable waveguide is physically deformed to contact the frustrating layer such that some of the received radiation undergoing total internal reflection within the pliable waveguide escapes from the pliable waveguide at the contact point, and an imaging sensor configured to detect some of the radiation that escapes from the optical waveguide.
    • 触摸屏设备包括辐射源,柔性波导,其被配置为接收由辐射源发射的辐射并且使一些接收的辐射在柔韧波导内经历全内反射,相对于柔性波导设置的令人沮丧的层 为了使柔性层在柔韧波导物理变形时能够接触柔性波导,令人沮丧的层被配置成在柔性波导中的受阻辐射的全内反射在挫折层和 当柔性波导物理变形以接触沮丧层时,柔性波导,使得在柔性波导内进行全内反射的一些接收的辐射在接触点处从柔性波导逸出,并且成像传感器被配置为检测一些辐射 从光波逃逸 指南。
    • 2. 发明授权
    • Touch sensing with frustrated total internal reflection
    • 触摸感应与沮丧的全内反射
    • US08736581B2
    • 2014-05-27
    • US12757937
    • 2010-04-09
    • Jefferson Y. HanJoel S. KollinDavid Elliott Slobodin
    • Jefferson Y. HanJoel S. KollinDavid Elliott Slobodin
    • G06F3/042G06F3/03
    • G06F3/0421G06F3/0317G06F3/0412G06F3/042G06F3/0425G06F2203/04109G06F2203/04808
    • A touch-screen device includes a radiation source, a waveguide configured to receive radiation emitted by the source and to cause some of the radiation to undergo total internal reflection within the waveguide, a pliable frustrating layer disposed relative to the waveguide to enable the frustrating layer to contact the waveguide when the frustrating layer is physically deformed, the frustrating layer being configured to cause frustration of the total internal reflection of the received radiation within the waveguide when the frustrating layer is physically deformed to contact the waveguide such that some of the received escapes from the waveguide at the contact point, an imaging sensor configured to detect some of the radiation that escapes from the waveguide, and a structure disposed relative to the frustrating layer, the structure configured to steer at least a portion of the radiation that escapes from the waveguide toward the imaging sensor.
    • 触摸屏设备包括辐射源,波导,其被配置为接收由源发射的辐射并且使一些辐射在波导内经历全内反射,相对于波导布置的柔性挫折层,以使得沮丧层 当沮丧层物理变形时接触波导,令人沮丧的层被配置为当沮丧层物理变形以接触波导时导致接收的辐射在波导内的全内反射的挫败,使得一些接收的逸出 从所述接触点处的所述波导形成的成像传感器被配置为检测从所述波导中逸出的一些辐射,以及相对于所述挫折层设置的结构,所述结构被配置为引导从所述波导中逸出的至少一部分辐射 波导朝向成像传感器。
    • 3. 发明授权
    • Structure-augmented touch sensing with frustated total internal reflection
    • 结构增强的触觉感应与截锥全内反射
    • US08624853B2
    • 2014-01-07
    • US12757693
    • 2010-04-09
    • Jefferson Y. HanJoel S. KollinDavid Elliott Slobodin
    • Jefferson Y. HanJoel S. KollinDavid Elliott Slobodin
    • G06F3/041
    • G06F3/042G06F3/0425G06F2203/04109
    • A touch-screen device includes a radiation source, a pliable waveguide configured to receive radiation emitted by the radiation source and to cause some of the received radiation to undergo total internal reflection within the pliable waveguide, a frustrating layer disposed relative to the pliable waveguide so as to enable the frustrating layer to contact the pliable waveguide when the pliable waveguide is physically deformed, the frustrating layer being configured to cause frustration of the total internal reflection of the received radiation within the pliable waveguide at a contact point between the frustrating layer and the pliable waveguide when the pliable waveguide is physically deformed to contact the frustrating layer such that some of the received radiation undergoing total internal reflection within the pliable waveguide escapes from the pliable waveguide at the contact point, and an imaging sensor configured to detect some of the radiation that escapes from the optical waveguide.
    • 触摸屏设备包括辐射源,柔性波导,其被配置为接收由辐射源发射的辐射并且使一些接收的辐射在柔韧波导内经历全内反射,相对于柔性波导设置的令人沮丧的层 为了使柔性层能够在柔韧波导物理变形时接触柔性波导,令人沮丧的层被配置成使得受阻辐射在柔韧波导内的全内反射在沮丧层和 当柔性波导物理变形以接触沮丧层时,柔性波导,使得在柔性波导内进行全内反射的一些接收的辐射在接触点处从柔性波导逸出,并且成像传感器被配置为检测一些辐射 从光波逃逸 指南。
    • 4. 发明申请
    • Touch Sensing
    • 触摸感应
    • US20100302210A1
    • 2010-12-02
    • US12757937
    • 2010-04-09
    • Jefferson Y. HanJoel S. KollinDavid Elliott Slobodin
    • Jefferson Y. HanJoel S. KollinDavid Elliott Slobodin
    • G06F3/042
    • G06F3/0421G06F3/0317G06F3/0412G06F3/042G06F3/0425G06F2203/04109G06F2203/04808
    • A touch-screen device includes a radiation source, a waveguide configured to receive radiation emitted by the source and to cause some of the radiation to undergo total internal reflection within the waveguide, a pliable frustrating layer disposed relative to the waveguide to enable the frustrating layer to contact the waveguide when the frustrating layer is physically deformed, the frustrating layer being configured to cause frustration of the total internal reflection of the received radiation within the waveguide when the frustrating layer is physically deformed to contact the waveguide such that some of the received escapes from the waveguide at the contact point, an imaging sensor configured to detect some of the radiation that escapes from the waveguide, and a structure disposed relative to the frustrating layer, the structure configured to steer at least a portion of the radiation that escapes from the waveguide toward the imaging sensor.
    • 触摸屏设备包括辐射源,波导,其被配置为接收由源发射的辐射并且使一些辐射在波导内经历全内反射,相对于波导布置的柔性挫折层,以使得沮丧层 当沮丧层物理变形时接触波导,令人沮丧的层被配置为当沮丧层物理变形以接触波导时导致接收的辐射在波导内的全内反射的挫败,使得一些接收的逸出 从所述接触点处的所述波导形成的成像传感器被配置为检测从所述波导中逸出的一些辐射,以及相对于所述挫折层设置的结构,所述结构被配置为引导从所述波导中逸出的至少一部分辐射 波导朝向成像传感器。
    • 5. 发明授权
    • Touch sensing
    • 触摸感应
    • US09323396B2
    • 2016-04-26
    • US12791663
    • 2010-06-01
    • Jefferson Y. HanJoel S. Kollin
    • Jefferson Y. HanJoel S. Kollin
    • G06F3/041G06F3/042F21V8/00G02B6/34G02B6/42
    • G06F3/0425G02B6/0016G02B6/34G02B6/4204G06F2203/04109
    • A touch-screen device includes an imaging waveguide, in which the imaging waveguide has a radiation receiving surface and an imaging surface different than the radiation receiving surface. The imaging waveguide is configured to receive, at the radiation receiving surface, radiation emitted by a contact receiving structure, and transmit the received radiation from a position on the radiation receiving surface to a position and/or angle of incidence on the imaging surface as a function of the position on the radiation receiving surface at which the transmitted radiation was received. An imaging sensor coupled to the imaging surface of the imaging optical waveguide is configured to detect radiation incident upon the imaging surface of the imaging optical waveguide. A processing device coupled to the imaging sensor is configured to determine contact points on the exposed contact surface of a contact receiving structure based on radiation detected by the imaging sensor.
    • 触摸屏设备包括成像波导,其中成像波导具有辐射接收表面和与辐射接收表面不同的成像表面。 成像波导被配置为在辐射接收表面处接收由接触接收结构发射的辐射,并且将接收到的辐射从辐射接收表面上的位置发射到成像表面上的位置和/或入射角,作为 在接收透射辐射的辐射接收表面上的位置的功能。 耦合到成像光波导的成像表面的成像传感器被配置为检测入射到成像光波导的成像表面上的辐射。 耦合到成像传感器的处理设备被配置为基于由成像传感器检测到的辐射来确定接触接收结构的暴露的接触表面上的接触点。
    • 6. 发明申请
    • Touch Sensing
    • 触摸感应
    • US20100302196A1
    • 2010-12-02
    • US12791663
    • 2010-06-01
    • Jefferson Y. HanJoel S. Kollin
    • Jefferson Y. HanJoel S. Kollin
    • G06F3/041
    • G06F3/0425G02B6/0016G02B6/34G02B6/4204G06F2203/04109
    • A touch-screen device includes an imaging waveguide, in which the imaging waveguide has a radiation receiving surface and an imaging surface different than the radiation receiving surface. The imaging waveguide is configured to receive, at the radiation receiving surface, radiation emitted by a contact receiving structure, and transmit the received radiation from a position on the radiation receiving surface to a position and/or angle of incidence on the imaging surface as a function of the position on the radiation receiving surface at which the transmitted radiation was received. An imaging sensor coupled to the imaging surface of the imaging optical waveguide is configured to detect radiation incident upon the imaging surface of the imaging optical waveguide. A processing device coupled to the imaging sensor is configured to determine contact points on the exposed contact surface of a contact receiving structure based on radiation detected by the imaging sensor.
    • 触摸屏设备包括成像波导,其中成像波导具有辐射接收表面和与辐射接收表面不同的成像表面。 成像波导被配置为在辐射接收表面处接收由接触接收结构发射的辐射,并且将接收到的辐射从辐射接收表面上的位置发射到成像表面上的位置和/或入射角,作为 在接收透射辐射的辐射接收表面上的位置的功能。 耦合到成像光波导的成像表面的成像传感器被配置为检测入射到成像光波导的成像表面上的辐射。 耦合到成像传感器的处理设备被配置为基于由成像传感器检测到的辐射来确定接触接收结构的暴露的接触表面上的接触点。