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    • 1. 发明申请
    • TOUCH SENSING
    • 触摸感应
    • WO2010141453A8
    • 2011-08-04
    • PCT/US2010036880
    • 2010-06-01
    • PERCEPTIVE PIXEL INCHAN JEFFERSON YKOLLIN JOEL S
    • HAN JEFFERSON YKOLLIN JOEL S
    • G06F3/042G02B6/10
    • G06F3/0425G02B6/0016G02B6/34G02B6/4204G06F2203/04109
    • A touch- screen device (8) includes an imaging waveguide (370), in which the imaging waveguide has a radiation receiving surface (370a) and an imaging surface (370b) different than the radiation receiving surface. The imaging waveguide is configured to receive, at the radiation receiving surface, radiation (A) emitted by a contact receiving structure (304), 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 (308) 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 (390) coupled to the imaging sensor is configured to determine contact points on a contact surface of a contact receiving structure based on radiation detected by the imaging sensor.
    • 触摸屏设备(8)包括成像波导(370),其中成像波导具有辐射接收表面(370a)和与辐射接收表面不同的成像表面(370b)。 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(304)发射的辐射(A),并将接收到的辐射从辐射接收表面上的位置传输到位置和/或入射角 作为接收透射辐射的辐射接收表面上的位置的函数的成像表面上。 耦合到成像光波导的成像表面的成像传感器(308)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(390)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接触表面上的接触点。
    • 2. 发明申请
    • EYE TRACKED FOVEAL DISPLAY BY CONTROLLED ILLUMINATION
    • 通过控制照明进行眼睛跟踪显示
    • WO2005057248A2
    • 2005-06-23
    • PCT/US2004040127
    • 2004-12-01
    • UNIV NEW YORKPERLIN KENNETHKOLLIN JOEL S
    • PERLIN KENNETHKOLLIN JOEL S
    • A61B3/113A61B3/14G02B20060101G02B27/10G02B
    • A61B3/113
    • An apparatus for viewing includes a screen. The apparatus includes means for detecting a fixation point of a viewer's eyes on an image on the screen. The apparatus includes means for displaying a foveal inset image on the image on the screen about the fixation point so a viewer's fovea sees the foveal image while the rest of the eye sees the image. A method for viewing. The method includes the steps of detecting a fixation point of a viewer's eyes on an image on a screen. There is the step of displaying a foveal inset image on the image on the screen about the fixation point so the viewers fovea sees the foveal image while the rest of the eye sees the image.
    • 用于观看的装置包括屏幕。 该装置包括用于检测观察者的眼睛在屏幕上的图像上的固定点的装置。 该装置包括用于在屏幕上关于固定点的图像上显示中央凹插图像的装置,使得观看者的中央凹看到中心凹图像,而眼睛的其余部分看到图像。 一种观看方法。 该方法包括以下步骤:在屏幕上的图像上检测观看者的眼睛的固定点。 在屏幕上的关于固定点的图像上显示中心凹插图像的步骤,使得观看者中央凹看到中心凹图像,而眼睛的其余部分看到图像。
    • 3. 发明申请
    • TOUCH SENSING
    • 触摸感应
    • WO2010141453A3
    • 2011-06-23
    • PCT/US2010036880
    • 2010-06-01
    • HAN JEFFERSON YKOLLIN JOEL S
    • HAN JEFFERSON YKOLLIN JOEL S
    • G06F3/042G02B6/10
    • G06F3/0425G02B6/0016G02B6/34G02B6/4204G06F2203/04109
    • A touch - screen device (8) includes an imaging waveguide (370), in which the imaging waveguide has a radiation receiving surface (370a) and an imaging surface (370b) different than the radiation receiving surface. The imaging waveguide is configured to receive, at the radiation receiving surface, radiation (A) emitted by a contact receiving structure (306), 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 (308) 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 (390) 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(8)包括成像波导(370),其中成像波导具有辐射接收表面(370a)和与辐射接收表面不同的成像表面(370b)。 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(306)发射的辐射(A),并将接收到的辐射从辐射接收表面上的位置传送到位置和/或入射角 作为接收透射辐射的辐射接收表面上的位置的函数的成像表面上。 耦合到成像光波导的成像表面的成像传感器(308)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(390)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。
    • 5. 发明申请
    • TOUCH SENSING
    • 触摸感应
    • WO2010141372A2
    • 2010-12-09
    • PCT/US2010/036684
    • 2010-05-28
    • HAN, Jefferson, Y.KOLLIN, Joel, S.SLOBODIN, David, Elliott
    • HAN, Jefferson, Y.KOLLIN, Joel, S.SLOBODIN, David, Elliott
    • 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 radiation 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沮丧层,以使得沮丧层 当沮丧层物理变形时接触波导,沮丧层被配置为当沮丧层物理变形以接触波导时导致接收到的辐射在波导内的全内反射的挫败,使得一些接收的辐射 在接触点处从波导逸出的成像传感器,被配置为检测从波导中逸出的一些辐射的成像传感器以及相对于沮丧层设置的结构,所述结构被配置为引导至少一部分从所述波导逸出的辐射 波导朝向成像传感器。
    • 7. 发明申请
    • TOUCH SENSING
    • 触摸感应
    • WO2010141453A2
    • 2010-12-09
    • PCT/US2010/036880
    • 2010-06-01
    • HAN, Jefferson Y.KOLLIN, Joel S.
    • HAN, Jefferson Y.KOLLIN, Joel S.
    • G06F3/042
    • 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。
    • 8. 发明申请
    • MANIPULATION OF OBJECTS
    • 对象的操纵
    • WO2004095170A2
    • 2004-11-04
    • PCT/US2004011058
    • 2004-04-09
    • UNIV NEW YORKPERLIN KENNETHROSENFELD DANIEL AKOLLIN JOEL S
    • PERLIN KENNETHROSENFELD DANIEL AKOLLIN JOEL S
    • G06F
    • G05D1/0231G09B9/04
    • A system for manipulation of objects. The system includes N objects, where N is greater than or equal to 2 and is an integer; and a mechanism for controlling and 2D locating of the N objects. A method for manipulating objects. The method includes the steps of receiving information from N objects, where N is greater than or equal to 2 and is an integer, at a centrally controlling and 2D locating controller; determining 2D locations by the controller of the N objects; and transmitting from the controller directions to the N objects for the N objects to move. An apparatus for tracking. The apparatus includes N objects, where N is greater than or equal to 2 and is an integer, each object having an emitter which emits light; and a mechanism for 2D sensing of the N objects over time from the light emitted by each emitter. The present invention pertains to a method for tracking. The method includes the steps of emitting light from N objects, where N is greater than or equal to 2 and is an integer; and sensing 2D locations of the N objects over time from the emitted light from the N objects.
    • 用于操纵物体的系统。 该系统包括N个对象,其中N大于或等于2,并且是一个整数; 以及用于控制和2D定位N个对象的机构。 一种操纵对象的方法。 该方法包括以下步骤:在中央控制和2D定位控制器处从N个对象接收信息,其中N大于或等于2,并且是整数; 由N个对象的控制器确定2D位置; 并从控制器方向向N个对象发送N个对象以移动。 跟踪装置。 该装置包括N个对象,其中N大于或等于2,并且是整数,每个对象具有发射光的发射器; 以及从每个发射器发射的光线随时间推移N个物体的2D感测的机构。 本发明涉及一种追踪方法。 该方法包括从N个对象发射光的步骤,其中N大于或等于2,并且是整数; 并且从N个物体的发射光中随时间感测N个物体的2D位置。
    • 9. 发明申请
    • TOUCH SENSING
    • 触摸感应
    • WO2010141372A8
    • 2011-08-04
    • PCT/US2010036684
    • 2010-05-28
    • PERCEPTIVE PIXEL INCHAN JEFFERSON YKOLLIN JOEL SSLOBODIN DAVID ELLIOTT
    • HAN JEFFERSON YKOLLIN JOEL SSLOBODIN DAVID ELLIOTT
    • G06F3/042
    • G06F3/0421G06F3/0317G06F3/0412G06F3/042G06F3/0425G06F2203/04109G06F2203/04808
    • A touch- screen device includes a radiation source (202), a waveguide (204) configured to receive radiation (210) emitted by the source and to cause some of the radiation to undergo total internal reflection within the waveguide, a pliable frustrating layer (206) disposed relative to the waveguide to enable the frustrating layer to contact (201) 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 radiation (A, B) escapes from the waveguide at the contact point, an imaging sensor (208) configured to detect some of the radiation that escapes from the waveguide, and a structure (309, 409, 509, 609, 709, 809, 909, 1009, 1109, 1209, 1309, 1409) 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 (208).
    • 触摸屏设备包括辐射源(202),被配置为接收由源发射的辐射(210)的波导(204),并且使一些辐射在波导内经历全内反射,柔性沮丧层( 206),当沮丧层物理变形时,使沮丧层能够接触(201)波导,沮丧层被配置为当波导中接收到的辐射的全内反射受挫时 层被物理变形以接触波导,使得接收的辐射(A,B)中的一些在接触点处从波导逸出,成像传感器(208)被配置为检测从波导逸出的一些辐射,以及 结构(309,409,509,609,709,809,909,1009,1109,1209,130​​9,1409),其相对于所述令人沮丧的层布置,所述结构被配置为引导至少一个端口 从波导从成像传感器(208)逸出的辐射的离子。
    • 10. 发明申请
    • TOUCH SENSING
    • 触摸感应
    • WO2010141380A2
    • 2010-12-09
    • PCT/US2010036706
    • 2010-05-28
    • HAN JEFFERSON YKOLLIN JOEL SSLOBODIN DAVID ELLIOTT
    • HAN JEFFERSON YKOLLIN JOEL SSLOBODIN DAVID ELLIOTT
    • G06F3/042
    • 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。