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公开(公告)号:US20170068039A1
公开(公告)日:2017-03-09
申请号:US15341881
申请日:2016-11-02
Applicant: Microsoft Technology Licensing, LLC
Inventor: David D. Bohn , Rod G. Fleck , Derek Leslie Knee
IPC: F21V8/00
CPC classification number: G02B6/0041 , B82Y20/00 , G02B6/0033 , G02B6/0035 , G02B6/0036 , G02B6/0043 , G02B6/0053 , G02B6/0068 , G02B6/0073 , G02B6/0076 , G02F1/13338 , G02F1/133615 , G02F2001/133342 , G02F2001/133622 , G02F2203/01 , Y10S977/834
Abstract: In embodiments of a transparent display backlight assembly, a backlight panel is operable as a transparent panel, and a light source generates light that the backlight panel directs from the light source to illuminate a display panel of a display device. Light refraction features refract and scatter the light, where the light refraction features are spaced for approximate transparency of the backlight panel and to illuminate the display panel. An active diffuser can be implemented as an additional transparent panel and operable for activation to diffuse the light from the backlight panel that illuminates the display panel.
Abstract translation: 在透明显示器背光组件的实施例中,背光面板可操作为透明面板,并且光源产生背光面板从光源引导以照亮显示装置的显示面板的光。 光折射特征折射和散射光,其中光折射特征被间隔开以用于背光面板的近似透明度并照亮显示面板。 有源漫射器可以被实现为附加的透明面板,并且可操作用于激活以使来自照明显示面板的背光面板的光漫射。
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公开(公告)号:US09488836B2
公开(公告)日:2016-11-08
申请号:US13886161
申请日:2013-05-02
Applicant: MICROSOFT TECHNOLOGY LICENSING, LLC
Inventor: David D. Bohn , Steve Robbins
CPC classification number: G02B27/0172 , G02B6/10 , G02B6/34 , G02B27/0179 , G02B2027/0154 , G02B2027/0178
Abstract: A binocular display includes a waveguide. A convex spherical mount has a fixed position relative to the waveguide. A light engine includes a concave spherical mount that adjustably mates with the convex spherical mount.
Abstract translation: 双目显示器包括波导。 凸形球面安装座相对于波导具有固定位置。 轻型发动机包括可与凸形球形支架可调节地配合的凹形球形座。
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公开(公告)号:US09164351B2
公开(公告)日:2015-10-20
申请号:US14625498
申请日:2015-02-18
Applicant: Microsoft Technology Licensing, LLC
Inventor: David D. Bohn
IPC: G02B27/01 , G06F3/01 , G02F1/29 , G02F1/313 , G02F1/1335
CPC classification number: G02F1/292 , G02B6/00 , G02B6/0018 , G02B6/0068 , G02B6/0076 , G02B17/086 , G02B27/0101 , G02B27/0172 , G02B2027/0112 , G02B2027/0118 , G02F1/133504 , G02F1/133524 , G02F1/133621 , G02F1/313 , G02F2001/133616 , G02F2001/133622
Abstract: An imaging panel includes a light source, a reflective image-forming array, and a freeform-prism eyepiece. The light source includes a light emitter and a waveguide having a grating. The waveguide is configured to confine the light from the light emitter and to release the light through the grating. The reflective image-forming array is configured to form a display image using light from the light source and to reflect the display image back through the waveguide. The freeform-prism eyepiece configured to receive the display image and to present the display image for viewing, together with an external image transmitted through the eyepiece.
Abstract translation: 成像面板包括光源,反射成像阵列和自由曲面目镜。 光源包括光发射器和具有光栅的波导。 波导被配置为限制来自光发射器的光并且通过光栅释放光。 反射图像形成阵列被配置为使用来自光源的光形成显示图像,并通过波导反射显示图像。 配置为接收显示图像并呈现显示图像以供观看的自由形棱镜目镜,以及通过目镜传输的外部图像。
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公开(公告)号:US10553139B2
公开(公告)日:2020-02-04
申请号:US15348911
申请日:2016-11-10
Applicant: MICROSOFT TECHNOLOGY LICENSING, LLC
Inventor: David D. Bohn
Abstract: An optical system comprises a linear illumination source configured to emit light, a first scanning stage configured to receive the light and to scan the light, and a second scanning stage. The linear illumination source is configured to generate light forming a vertical field of view based on the one or more output signals received from a controller modulating the one or more output signals comprising image data defining content. The first scanning stage redirects portions of the light to generate an output defining a horizontal field of view based on the one or more output signals of the controller. The first scanning device combines the vertical field of view and the horizontal field of view in the output light to create a two-dimensional light image of the content. The second scanning stage receives and directs the output of the first scanning stage toward a projected exit pupil.
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公开(公告)号:US10514541B2
公开(公告)日:2019-12-24
申请号:US13728892
申请日:2012-12-27
Applicant: Microsoft Technology Licensing, LLC
Inventor: Andras Tantos , Rod G. Fleck , Jedd Perry , David D. Bohn
IPC: G02B27/01 , H04N21/2343 , H03M13/35 , H04N21/2383 , H03M13/03 , G02B27/00 , H04N19/167 , H04N19/67
Abstract: Technology is described for reducing display update time for a near-eye display (NED) device. A point of focus in the NED field of view is identified, often based on natural user input data. A communication module of a computer system communicatively coupled to the NED device transmits lossless priority data, an example of which is user focal region image data, using one or more communication techniques for satisfying lossless transmission criteria. Allowed loss image data is identified based at least in part on its distance vector from a point of focus in the display field of view. An example of allowed loss image data is image data to be displayed outside the user focal region. The allowed loss image data is transmitted and extracted from received image data allowing for lossy transmission.
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公开(公告)号:US10025355B2
公开(公告)日:2018-07-17
申请号:US15010134
申请日:2016-01-29
Applicant: Microsoft Technology Licensing, LLC
Inventor: David D. Bohn , Paul M. O'Brien
Abstract: In embodiments of a flexible display extendable assembly, an extendable assembly includes a slideable display guide integrated in a first housing part of an extendable electronic device. The extendable electronic device includes a flexible display that slide-engages into the first housing part of the extendable electronic device. The extendable assembly includes an extendable mechanism that is coupled in a second housing part of the extendable electronic device and to the slideable display guide. The first and second housing parts of the extendable electronic device slide-engage relative to each other. The extendable mechanism is implemented to extend as the first and second housing parts slide apart relative to each other, and also to retract as the first and second housing parts slide together relative to each other.
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公开(公告)号:US20180098056A1
公开(公告)日:2018-04-05
申请号:US15284424
申请日:2016-10-03
Applicant: Microsoft Technology Licensing, LLC
Inventor: David D. Bohn
Abstract: A near-to-eye display (NED) device comprises a light sensor, a processor, a first imager to generate a left image of an object for the user's left optical sensor, and a second imager to generate a right image of the object for the user's right optical sensor. The device further comprises at least one light-transmissive optical component arranged to receive concurrently the left image and the right image, the at least one light-transmissive optical component further arranged to direct a first portion of each of the left and right images to the left and right optical sensors, respectively, of the user while directing a second portion of each of the left and right images to the light sensor. The at least one processor a binocular misalignment between the left and right images based on output of the light sensor and to control the imagers to correct for the misalignment.
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公开(公告)号:US09684174B2
公开(公告)日:2017-06-20
申请号:US15171924
申请日:2016-06-02
Applicant: Microsoft Technology Licensing, LLC
Inventor: Rod G. Fleck , David D. Bohn , Andreas G. Nowatzyk
IPC: F21V1/00 , F21V11/00 , G02B27/01 , H01L33/60 , F21V5/00 , H01L33/00 , H01L33/58 , H01S5/40 , H01L27/15 , F21Y103/00 , F21Y105/00
CPC classification number: G02B27/0172 , F21V5/004 , F21V5/007 , F21Y2103/10 , F21Y2105/10 , F21Y2115/10 , G02B2027/0112 , G02B2027/0178 , H01L27/15 , H01L27/153 , H01L27/156 , H01L33/005 , H01L33/58 , H01L33/60 , H01L2933/0058 , H01S5/4025
Abstract: In embodiments of an imaging structure with embedded light sources, an imaging structure includes a silicon backplane with a driver pad array. The embedded light sources are formed on the driver pad array in an emitter material layer, and the embedded light sources can be individually controlled at the driver pad array to generate and emit light. A conductive material layer over the embedded light sources forms a p-n junction between the emitter material layer and the conductive material layer. Micro lens optics can be positioned over the conductive material layer to direct the light that is emitted from the embedded light sources. Further, the micro lens optics may be implemented as parabolic optics to concentrate the light that is emitted from the embedded light sources.
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公开(公告)号:US10561035B2
公开(公告)日:2020-02-11
申请号:US15597034
申请日:2017-05-16
Applicant: Microsoft Technology Licensing, LLC
Inventor: Rod G. Fleck , David D. Bohn , Ben Garcia , Sarah L. Joers , Aaron P. Toney
Abstract: One embodiment provides a computing device comprising a computing device body, a display coupled with the computing device body, a first set of computing components incorporated into the computing device body, and a securing system configured to secure the body to a wrist, the securing system comprising a plurality of detachable modular segments joined together to form a second set of computing components that is modifiable by changing segments. Each modular segment comprises a first mechanical connector and a second mechanical connector, a first set of electrical connectors and a second set of electrical connectors, and one or more electrical components incorporated into the modular segment, such that a functionality of the computing device is modifiable by changing modular segments.
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公开(公告)号:US10546523B2
公开(公告)日:2020-01-28
申请号:US16016366
申请日:2018-06-22
Applicant: Microsoft Technology Licensing, LLC
Inventor: David D. Bohn
Abstract: Display systems with a single plate optical waveguide and independently adjustable micro display arrays and related methods are provided. A method includes coupling: a first light portion received from the first micro display array to a first input grating region of the optical waveguide, a second light portion received from the second micro display array to a second input grating region of the optical waveguide, and a third light portion received from the third micro display array to a third input grating region of the optical waveguide. The method further includes directing: a first diffracted portion of the first light portion to a first expansion grating, a second diffracted portion of the second light portion to a second expansion grating, and a third diffracted portion of the third light portion to a third expansion grating. The method further includes using a single output grating outputting combined light.
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