会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明申请
    • MICROMACHINED ACOUSTIC EJECTORS AND APPLICATIONS
    • MICROMACHINED ACOUSTIC EJECTORS和应用
    • WO0007735A3
    • 2000-06-02
    • PCT/US9917652
    • 1999-08-04
    • UNIV MICHIGANNAJAFI KHALILBERNAL LUIS PAMIRPARVIZ BABAK
    • NAJAFI KHALILBERNAL LUIS PAMIRPARVIZ BABAK
    • F04B19/00F04F7/00F15C5/00B05B1/08
    • F04F7/00F04B19/006
    • Disclosed are micromachined acoustic ejector (12) for generating a jet stream (24) using a Helmholtz resonator (14), applications for the ejector (12) in microflight, active heat sinking and fluid pumping, and methods of manufacturing the resonator (14) and ejector device (12). The resonator (14) comprises a resonant diaphragm (26) and a drive electrode (28) to operate on a volume inside a cavity (30) of the resonator (14). The resonance frequency of the resonator (14) is correlated or matched to the resonance of the cavity (30). The volume is forced out of the resonator (14) through a throat (40), with the throat (40) being variable through the use of another diaphragm (48). A shroud (16) and a cover (18) can direct flow to the resonator (14). An array (102) of the ejectors (12) can be fabricated. A heater (44) can vary the resonance inside the cavity (30), and another diaphragm (46) can vary the geometry of the cavity (30).
    • 公开了一种用于使用亥姆霍兹共振器(14)产生喷射流(24)的微加工声学喷射器(12),用于微射线,主动散热和流体泵送的喷射器(12)的应用,以及制造谐振器(14)的方法, 和喷射器装置(12)。 谐振器(14)包括谐振膜(26)和驱动电极(28),以在谐振器(14)的空腔(30)内的体积上操作。 谐振器(14)的谐振频率与空腔(30)的谐振相关或匹配。 体积通过喉部(40)被迫离开谐振器(14),喉部(40)通过使用另一隔膜(48)是可变的。 护罩(16)和盖(18)可以引导流到谐振器(14)。 可以制造喷射器(12)的阵列(102)。 加热器(44)可以改变空腔(30)内部的谐振,而另一隔膜(46)可以改变空腔(30)的几何形状。
    • 6. 发明申请
    • EYEPIECE FOR NEAR-TO-EYE DISPLAY WITH MULTI-REFLECTORS
    • 使用多反射镜进行近视眼显示的眼镜
    • WO2013012484A3
    • 2013-03-21
    • PCT/US2012041156
    • 2012-06-06
    • GOOGLE INCMIAO 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,观看区域和偏振旋转器。 照明模块包括用于沿正向传播路径发射计算机生成图像(“CGI”)光的图像源。 端部反射镜设置在目镜与照明模块相对的一端,以沿着反向传播路径反射CGI。 观看区域布置在照明模块和端部反射器之间。 观看区域包括设置在PBS和端部反射器之间的偏振分束器(“PBS”)和非偏振分束器(“非PBS”)。观看区域将来自反向传播路径的CGI光重定向到眼外 偏振旋转器设置在CGI光在观看区域和端部反射器之间的正向和反向传播路径中。
    • 7. 发明申请
    • LASER ALIGNMENT OF BINOCULAR HEAD MOUNTED DISPLAY
    • 双轴头安装显示器的激光对准
    • WO2013022544A1
    • 2013-02-14
    • PCT/US2012/046371
    • 2012-07-12
    • GOOLE INC.BRIN, SergeyAMIRPARVIZ, Babak
    • BRIN, SergeyAMIRPARVIZ, Babak
    • G02B27/02
    • G02B27/017G02B2027/0132G02B2027/0178
    • A binocular head mounted display includes a frame, right and left displays, an alignment sensor, and a control system. The right and left displays display right and left images to a user and are mounted to the frame. The alignment sensor includes a first laser source mounted proximate to one of the right or left displays and a first photo-detector array mounted opposite the first laser source and proximate to an opposite one of the right or left displays. The first alignment sensor is mounted to measure misalignment between the right and left displays due to deformation of the frame about one or more rotational axes and to generate a signal that is indicative of the misalignment. The control system is coupled to the alignment sensor to receive the signal and to calculate the misalignment based at least in part upon the signal.
    • 双目头戴显示器包括框架,左右显示器,对准传感器和控制系统。 右和左显示器向用户显示右图像和左图像,并且被安装到框架。 对准传感器包括靠近右显示器或左显示器中的一个安装的第一激光源和与第一激光源相对安装并且靠近右显示器或左显示器中相对的一个的第一光电检测器阵列。 安装第一对准传感器以测量由于框架围绕一个或多个旋转轴线的变形而导致的左右显示器之间的未对准并且产生指示该未对准的信号。 控制系统耦合到对准传感器以接收信号并且至少部分地基于该信号来计算未对准。
    • 8. 发明申请
    • ACTIVE CONTACT LENS
    • 主动接触镜头
    • WO2008109867A3
    • 2008-10-23
    • PCT/US2008056309
    • 2008-03-07
    • UNIV WASHINGTONAMIRPARVIZ BABAKHO HARVEYSAEEDI EHSAN
    • AMIRPARVIZ BABAKHO HARVEYSAEEDI EHSAN
    • A61F2/02G02C7/04
    • 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.
    • 公开了一种主动式隐形眼镜系统(100)和用于制造主动式隐形眼镜(200)的方法。 该系统包括与常规隐形眼镜一样佩戴的有源隐形眼镜(110),并且包括具有由半透明显示器(114),显示驱动电路(116)和显示器驱动电路(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),能量转移天线(120)和互连网络(124)。 衬底可以是常规的隐形眼镜材料,诸如PMMA或RGP,并且显示器可以由多个LED形成。 用于制造有源隐形眼镜的方法包括制造模板(202),形成焊料相容垫(204),组装电路元件(206)和微模制透镜(208)。 该模板由互连网络和用于接收电路元件的形状特定凹槽制成。 优选地,该组件使用流体自组装完成。