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    • 12. 发明申请
    • LIGHTWEIGHT EYEPIECE FOR HEAD MOUNTED DISPLAY
    • 用于头部安装显示器的轻型眼镜
    • WO2013043252A1
    • 2013-03-28
    • PCT/US2012/046372
    • 2012-07-12
    • GOOGLE INC.GUPTA, AnuragAMIRPARVIZ, BabakSHARMA, Sumit
    • GUPTA, AnuragAMIRPARVIZ, BabakSHARMA, Sumit
    • G02B27/02
    • G02B27/0172G02B5/30G02B6/0035
    • An eyepiece includes an eyepiece frame, an in-coupling polarization beam splitter ("PBS"), an end reflector, and an out-coupling PBS. The eyepiece frame defines an air cavity and includes an illumination region for receiving computer generated image ("CGI") light into the eyepiece frame and a viewing region to be aligned with an eye of a user. The in-coupling PBS is supported within the eyepiece frame at the illumination region to re-direct the CGI light to a forward propagation path extending along the air cavity towards the viewing region. The end reflector is disposed to reflect the CGI light back along a reverse propagation path within the eyepiece frame. The out-coupling PBS is supported at the viewing region to pass the CGI light traveling along the forward propagation path and to redirect the CGI light traveling along the reverse propagation path out of an eye- ward side of the eyepiece frame.
    • 目镜包括目镜框架,耦合偏振分束器(“PBS”),端反射器和输出耦合PBS。 目镜框架限定空气腔,并且包括用于将计算机生成的图像(“CGI”)光接收到目镜框架中的照明区域和与用户的眼睛对准的观看区域。 入射耦合PBS在照明区域内支撑在目镜框架内,以将CGI光重新定向到沿着空气腔向观察区域延伸的正向传播路径。 端部反射器设置成沿着目镜框架内的反向传播路径反射CGI光。 输出耦合PBS被支撑在观看区域,以通过沿着正向传播路径传播的CGI光,并将沿着反向传播路径传播的CGI光重定向到目镜框架的眼睛侧。
    • 13. 发明申请
    • EYEPIECE FOR NEAR-TO-EYE DISPLAY WITH MULTI-REFLECTORS
    • 用多重反射器近视显示的眼睛
    • WO2013012484A2
    • 2013-01-24
    • PCT/US2012/041156
    • 2012-06-06
    • GOOGLE INC.MIAO, XiaoyuAMIRPARVIZ, Babak
    • MIAO, XiaoyuAMIRPARVIZ, Babak
    • G02B27/02
    • G02B27/0172G02B5/30G02B27/283G02B2027/0118G02B2027/0125G02F1/136277G02F2001/133616G02F2001/136281G02F2203/02
    • An eyepiece for a head mounted display includes an illumination module, an end reflector, a viewing region, and a polarization rotator. The illumination module includes an image source for launching computer generated image ("CGI") light along a forward propagating path. The end reflector is disposed at an opposite end of the eyepiece from the illumination module to reflect the CGI back along a reverse propagation path. The viewing region is disposed between the illumination module and the end reflector. The viewing region includes a polarizing beam splitter ("PBS) and non-polarizing beam splitter ("non-PBS") disposed between the PBS and the end reflector. The viewing region redirects the CGI light from the reverse propagation path out of an eye-ward side of the eyepiece. The polarization rotator is disposed in the forward and reverse propagation paths of the CGI light between the viewing region and the end reflector.
    • 用于头戴式显示器的目镜包括照明模块,端部反射器,观察区域和偏振旋转器。 照明模块包括用于沿着正向传播路径发射计算机生成的图像(“CGI”)光的图像源。 端部反射器设置在距离照明模块的目镜的相对端处,以沿反向传播路径反射CGI。 观察区域设置在照明模块和端部反射器之间。 观察区域包括设置在PBS和端反射器之间的偏振分束器(“PBS”)和非偏振分束器(“非PBS”)。观察区域将来自反向传播路径的CGI光重定向到眼睛外 目镜的右侧,偏振旋转体设置在CGI光的正向和反向传播路径之间的观察区域和端部反射器之间。
    • 15. 发明申请
    • METHOD AND APPARATUS FOR A NEAR-TO-EYE DISPLAY
    • 近视眼显示的方法和装置
    • WO2013019371A8
    • 2014-01-30
    • PCT/US2012046306
    • 2012-07-11
    • GOOGLE INCSPITZER MARK BMIAO XIAOYUAMIRPARVIZ BABAK
    • SPITZER MARK BMIAO XIAOYUAMIRPARVIZ BABAK
    • G02B27/02
    • G02B27/0172G02B5/02G02B5/30G02B27/01G02B27/0176G02B2027/0118G02B2027/0178
    • An eyepiece for a head mounted display includes an illumination module, an end reflector, a viewing region, and a polarization rotator. The illumination module provides CGI light along a forward propagation path within the eyepiece. The end reflector is disposed at an opposite end of the eyepiece from the illumination module to reflect the CGI light back along a reverse propagation path within the eyepiece. The viewing is disposed between the illumination module and the end reflector and includes an out-coupling polarizing beam splitter ("PBS"). The out- coupling PBS passes the CGI light traveling along the forward propagation path and redirects the CGI light traveling along the reverse propagation path out of an eye- ward side of the eyepiece. The polarization rotator is disposed in the forward and reverse propagation paths between the out-coupling PBS and the end reflector.
    • 用于头戴式显示器的目镜包括照明模块,端部反射器,观察区域和偏振旋转器。 照明模块沿着目镜内的前向传播路径提供CGI光。 端部反射器设置在目镜的与照明模块的相对端处,以沿着目镜内的反向传播路径反射CGI光。 观察设置在照明模块和端部反射器之间,并且包括输出耦合偏振分束器(“PBS”)。 输出耦合的PBS通过沿着正向传播路径传播的CGI光,并将沿反向传播路径传播的CGI光重定向在目镜的眼睛侧面之外。 偏振旋转器设置在输出耦合PBS和端反射器之间的正向和反向传播路径中。
    • 19. 发明申请
    • ACTIVE CONTACT LENS
    • 主动接触镜
    • WO2008109867A2
    • 2008-09-12
    • PCT/US2008/056309
    • 2008-03-07
    • UNIVERSITY OF WASHINGTONAMIRPARVIZ, BabakHO, HarveySAEEDI, Ehsan
    • AMIRPARVIZ, BabakHO, HarveySAEEDI, Ehsan
    • A61F2/14
    • G02C7/04B29D11/00826G02C7/101
    • An active contact lens system (100) and method for fabricating an active contact lens (200) are disclosed. The system comprises an active contact lens (110) worn like a conventional contact lens, and comprising a transparent substrate (112) having a circuit formed of one or more of a semi-transparent display (114), a display drive circuit (116), a data communications circuit (118), one or more biosensors (122), an energy transfer antenna (120) and an interconnect network (124). The substrate may be a conventional contact lens material, such as PMMA or RGP, and the display may be formed from a plurality LEDs. A method for fabricating the active contact lens includes fabricating the template (202), forming solder compatible pads (204), assembling the circuit elements (206) and micro-molding the lens (208). The template is fabricated with an interconnect network and shape-specific recesses for receiving the circuit elements. Preferably, the assembly is done using fluidic self-assembly.
    • 公开了一种有源隐形眼镜系统(100)和用于制造活性隐形眼镜(200)的方法。 该系统包括像常规隐形眼镜一样佩戴的主动隐形眼镜,并且包括具有由半透明显示器(114),显示驱动电路(116)中的一个或多个形成的电路的透明基板(112) ,数据通信电路(118),一个或多个生物传感器(122),能量传输天线(120)和互连网络(124)。 衬底可以是诸如PMMA或RGP的常规隐形眼镜材料,并且显示器可以由多个LED形成。 一种用于制造有源隐形眼镜的方法包括制造模板(202),形成焊料兼容的焊盘(204),组装电路元件(206)和微型模制透镜(208)。 模板用互连网络和形状特定的凹槽制造,用于接收电路元件。 优选地,使用流体自组装完成组件。