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    • 1. 发明申请
    • DISPLAY EFFICIENCY OPTIMIZATION BY COLOR FILTERING
    • 通过彩色滤光显示效率优化
    • US20150002528A1
    • 2015-01-01
    • US13931241
    • 2013-06-28
    • David D. BohnNed NestorovicRod G. FleckCynthia Bell
    • David D. BohnNed NestorovicRod G. FleckCynthia Bell
    • G02B27/01
    • G02B27/0172G02B5/18G02B6/0076G02B2027/0112G02B2027/0178
    • Technology is disclosed for optimizing a near-eye display using a waveguide. A first waveband for a first color narrower than the full spectral bandwidth for the first color and a second waveband for a second color adjacent to the first color in the visible spectrum are generated in image light of an image generation unit like a microdisplay. The first waveband and the second waveband are coupled into a same layer of a diffractive waveguide. An input grating of the same layer of the waveguide has a grating wavelength band approximately matching a waveband extensive with the first waveband and the second waveband. A converted green light emitting diode (LED) may be used for obtaining a first waveband centered around 515 nm in some examples. One of more of the wavebands may be obtained using filters, for example filters using dichroic mirrors, quantum dots or a combination of these.
    • 公开了用于使用波导优化近眼显示的技术。 在诸如微显示器的图像生成单元的图像光中,生成比第一颜色的全光谱带宽窄的第一颜色的第一波段和与可见光谱中的第一颜色相邻的第二颜色的第二波段。 第一波段和第二波段被耦合到相同的衍射波导层中。 波导的相同层的输入光栅具有与第一波段和第二波段广泛匹配的波段的光栅波长带。 在一些示例中,转换的绿色发光二极管(LED)可用于获得以515nm为中心的第一波段。 可以使用滤波器获得更多的波段中的一个,例如使用二向色镜的滤波器,量子点或它们的组合。
    • 2. 发明申请
    • PROJECTION OPTICAL SYSTEM FOR COUPLING IMAGE LIGHT TO A NEAR-EYE DISPLAY
    • 用于将图像光耦合到近端显示器的投影光学系统
    • US20140211322A1
    • 2014-07-31
    • US13752359
    • 2013-01-28
    • David D. BohnNed NestorovicSteve J. Robbins
    • David D. BohnNed NestorovicSteve J. Robbins
    • G02B27/01
    • G02B27/0172G02B17/0856G02B27/0081
    • Technology is described for a projection optical system which optically couples image light from an image source to a near-eye display (NED) of a wearable near-eye display device. The projection optical system and the image source make up a projection light engine. Light from the image source is directed to a birdbath reflective optical element which is immersed in high index glass. The image light is reflected and collimated by the birdbath element and travels outside a housing of the projection light engine forming an external exit pupil, meaning the exit pupil is external to the projection light engine. A waveguide optically couples the image light of the external exit pupil. An example of a waveguide which can be used is a surface relief grating waveguide.
    • 对于将图像源的图像光光学耦合到可佩戴的近眼显示装置的近眼显示(NED)的投影光学系统,描述了技术。 投影光学系统和图像源组成投影光引擎。 来自图像源的光被引导到浸在高折射率玻璃中的浴浴反射光学元件。 图像光被鸟浴元件反射并准直,并且在形成外部出射光瞳的投影光引擎的壳体外面行进,意味着出射光瞳在投影光引擎的外部。 波导将外部出射光瞳的图像光学耦合。 可以使用的波导的示例是表面浮雕光栅波导。
    • 3. 发明授权
    • Optical system for near-eye display
    • 用于近眼显示的光学系统
    • US09063331B2
    • 2015-06-23
    • US13777562
    • 2013-02-26
    • David D. BohnNed Nestorovic
    • David D. BohnNed Nestorovic
    • G02F1/1335G02B27/01G02F1/13G02B27/28G02B5/30
    • G02B27/0172G02B5/30G02B27/283G02B2027/0114G02B2027/015G02B2027/0178G02F1/1313
    • Embodiments are disclosed herein that relate to compact optical systems for incorporation into near-eye display devices. For example, one disclosed embodiment provides a near-eye display system may comprising a light source, a first polarizing beam splitting surface configured to receive light from the light source, a mirror configured to reflect light passed by the first polarizing beam splitting surface, and a quarter wave plate positioned between the first polarizing beam splitting surface and the mirror. The near-eye display system may further include a second polarizing beam splitting surface positioned at an angle relative to the first polarizing beam splitting surface and a microdisplay configured to produce an image via light received from the second polarizing beam splitting surface.
    • 本文公开了涉及用于并入近眼显示装置的紧凑型光学系统的实施例。 例如,一个公开的实施例提供了一种近眼显示系统,其可以包括光源,被配置为接收来自光源的光的第一偏振光束分离表面,被配置为反射由第一偏振光束分离表面通过的光的反射镜,以及 位于第一偏振光束分离表面和反射镜之间的四分之一波片。 近眼显示系统还可以包括相对于第一偏振光束分离表面成一角度定位的第二偏振光束分离表面和配置成通过从第二偏振光束分离表面接收的光产生图像的微显示器。
    • 4. 发明授权
    • Projection optical system for coupling image light to a near-eye display
    • 用于将图像光耦合到近眼显示器的投影光学系统
    • US08873149B2
    • 2014-10-28
    • US13752359
    • 2013-01-28
    • David D. BohnNed NestorovicSteve J. Robbins
    • David D. BohnNed NestorovicSteve J. Robbins
    • G02B27/14G02B3/00
    • G02B27/0172G02B17/0856G02B27/0081
    • Technology is described for a projection optical system which optically couples image light from an image source to a near-eye display (NED) of a wearable near-eye display device. The projection optical system and the image source make up a projection light engine. Light from the image source is directed to a birdbath reflective optical element which is immersed in high index glass. The image light is reflected and collimated by the birdbath element and travels outside a housing of the projection light engine forming an external exit pupil, meaning the exit pupil is external to the projection light engine. A waveguide optically couples the image light of the external exit pupil. An example of a waveguide which can be used is a surface relief grating waveguide.
    • 对于将图像源的图像光光学耦合到可佩戴的近眼显示装置的近眼显示(NED)的投影光学系统,描述了技术。 投影光学系统和图像源组成投影光引擎。 来自图像源的光被引导到浸在高折射率玻璃中的浴浴反射光学元件。 图像光被鸟浴元件反射并准直,并且在形成外部出射光瞳的投影光引擎的壳体外面行进,意味着出射光瞳在投影光引擎的外部。 波导将外部出射光瞳的图像光学耦合。 可以使用的波导的示例是表面浮雕光栅波导。
    • 5. 发明申请
    • OPTICAL SYSTEM FOR NEAR-EYE DISPLAY
    • 用于近眼显示的光学系统
    • US20140240613A1
    • 2014-08-28
    • US13777562
    • 2013-02-26
    • David D. BohnNed Nestorovic
    • David D. BohnNed Nestorovic
    • G02B27/01G02F1/13
    • G02B27/0172G02B5/30G02B27/283G02B2027/0114G02B2027/015G02B2027/0178G02F1/1313
    • Embodiments are disclosed herein that relate to compact optical systems for incorporation into near-eye display devices. For example, one disclosed embodiment provides a near-eye display system may comprising a light source, a first polarizing beam splitting surface configured to receive light from the light source, a minor configured to reflect light passed by the first polarizing beam splitting surface, and a quarter wave plate positioned between the first polarizing beam splitting surface and the mirror. The near-eye display system may further include a second polarizing beam splitting surface positioned at an angle relative to the first polarizing beam splitting surface and a microdisplay configured to produce an image via light received from the second polarizing beam splitting surface.
    • 本文公开了涉及用于并入近眼显示装置的紧凑型光学系统的实施例。 例如,一个公开的实施例提供了一种近眼显示系统,其可以包括光源,被配置为接收来自光源的光的第一偏振光束分离表面,被配置为反射由第一偏振光束分离表面通过的光的次级,以及 位于第一偏振光束分离表面和反射镜之间的四分之一波片。 近眼显示系统还可以包括相对于第一偏振光束分离表面成一角度定位的第二偏振光束分离表面和配置成通过从第二偏振光束分离表面接收的光产生图像的微显示器。