Methods of forming packaged micro-electromechanical devices
    61.
    发明授权
    Methods of forming packaged micro-electromechanical devices 有权
    形成封装的微机电装置的方法

    公开(公告)号:US07955885B1

    公开(公告)日:2011-06-07

    申请号:US12351020

    申请日:2009-01-09

    CPC classification number: B81C1/00301 B81B2207/095 B81C2203/0118

    Abstract: Methods of forming packaged micro-electromechanical devices include forming a first substrate having a micro-electromechanical device therein, which extends adjacent a first surface of the first substrate. A first surface of a second substrate is then bonded to the first surface of the first substrate, to thereby encapsulate the micro-electromechanical device within a space provided between the first and second substrates. Subsequent to bonding, a second surface of the second substrate is selectively etched to define at least one through-substrate opening therein, which exposes an electrode of the micro-electromechanical device. Thereafter, the through-substrate opening is filled with an electrically conductive through-substrate via.

    Abstract translation: 形成包装的微机电装置的方法包括在其中形成具有微机电装置的第一基板,其在第一基板的第一表面附近延伸。 然后将第二基板的第一表面接合到第一基板的第一表面,从而将微机电装置封装在设置在第一和第二基板之间的空间内。 在接合之后,选择性地蚀刻第二衬底的第二表面以在其中限定其中暴露微机电器件的电极的至少一个贯穿衬底开口。 此后,贯通基板开口填充有导电贯穿基板通孔。

    Secure Multi-Party Computation of Normalized Sum-Type Functions
    62.
    发明申请
    Secure Multi-Party Computation of Normalized Sum-Type Functions 有权
    安全多方计算归一化和类函数

    公开(公告)号:US20110040820A1

    公开(公告)日:2011-02-17

    申请号:US12890151

    申请日:2010-09-24

    Abstract: Embodiments of present invention disclose a system and a method for determining a result of a function applied to a first vector and a second vector, wherein the function is a normalized sum-type function. The first vector is stored at a first processor, and the second vector is stored at a second processor. The system and the method determine a joint empirical probability distribution (JEPD) of the first vector and the second vector using a secure multi-party computation. The function is determined as a normalized summation of products of values of the JEPD with corresponding values of the function.

    Abstract translation: 本发明的实施例公开了一种用于确定应用于第一矢量和第二矢量的功能的结果的系统和方法,其中该功能是归一化的和型功能。 第一矢量存储在第一处理器中,第二矢量被存储在第二处理器中。 系统和方法使用安全的多方计算确定第一向量和第二向量的联合经验概率分布(JEPD)。 该函数被确定为JEPD的值的乘积与函数的相应值的归一化求和。

    METHOD AND SYSTEM FOR PROVIDING RUNTIME VULNERABILITY DEFENSE FOR CROSS DOMAIN INTERACTIONS
    63.
    发明申请
    METHOD AND SYSTEM FOR PROVIDING RUNTIME VULNERABILITY DEFENSE FOR CROSS DOMAIN INTERACTIONS 失效
    用于提供跨域互动的运行性漏洞防范的方法和系统

    公开(公告)号:US20100049792A1

    公开(公告)日:2010-02-25

    申请号:US12546754

    申请日:2009-08-25

    CPC classification number: H04L63/20 H04L67/02

    Abstract: A runtime vulnerability defense method, system, and computer readable article of manufacture tangibly embodying computer readable instructions for executing the method for cross domain interactions for a Web application. The method includes: creating a first and second iFrame object by the Web application which belong to a lower domain; creating an object ◯ by the first iFrame object; sharing the created object ◯ by the second iFrame object; promoting the domain of the second iFrame object to an upper domain; creating in the shared object ◯ a source accessing function for submitting to a third party server a request to access the content of the third party server; and creating in the shared object ◯ a sanitization function for sanitizing the response received from the server.

    Abstract translation: 运行时漏洞防御方法,系统和计算机可读制品,其有形地体现了用于执行用于Web应用的跨域交互的方法的计算机可读指令。 该方法包括:由属于较低域的Web应用程序创建第一和第二iFrame对象; 由第一个iFrame对象创建一个对象◯; 由第二个iFrame对象共享创建的对象◯; 将第二个iFrame对象的域提升到上一个域; 在共享对象中创建◯来源访问功能,用于向第三方服务器提交访问第三方服务器的内容的请求; 并在共享对象中创建◯用于对从服务器接收的响应进行消毒的消毒功能。

    METHOD AND SYSTEM FOR OPTICAL MEMS WITH FLEXIBLE LANDING STRUCTURES
    64.
    发明申请
    METHOD AND SYSTEM FOR OPTICAL MEMS WITH FLEXIBLE LANDING STRUCTURES 有权
    具有柔性接地结构的光学MEMS的方法和系统

    公开(公告)号:US20090231671A1

    公开(公告)日:2009-09-17

    申请号:US12031388

    申请日:2008-02-14

    CPC classification number: G02B26/0841 Y10T29/49826

    Abstract: An optical deflection device for a display application includes a semiconductor substrate comprising an upper surface region defining an upper surface plane. The optical deflection device also includes one or more electrode devices provided overlying the upper surface region and a hinge device including a silicon material and coupled to the upper surface region at a predetermined height above the upper surface plane. The optical deflection device further comprises a plurality of landing pads including a silicon material and coupled to the upper surface region at the predetermined height from the upper surface plane and a mirror structure. The mirror structure includes a post portion coupled to the hinge device and a mirror plate portion coupled to the post portion.

    Abstract translation: 用于显示器应用的光学偏转装置包括:半导体衬底,其包括限定上表面的上表面区域。 光学偏转装置还包括设置在上表面区域上的一个或多个电极装置和包括硅材料的铰链装置,并且在上表面平面上方的预定高度处联接到上表面区域。 光学偏转装置还包括多个着陆焊盘,其包括硅材料,并且在与上表面平面预定高度处的上表面区域和反射镜结构相耦合。 镜结构包括联接到铰链装置的柱部分和联接到柱部分的镜板部分。

    Device and a Method of Playing Audio Clips
    65.
    发明申请
    Device and a Method of Playing Audio Clips 有权
    设备和播放音频剪辑的方法

    公开(公告)号:US20080306744A1

    公开(公告)日:2008-12-11

    申请号:US12092329

    申请日:2006-11-03

    CPC classification number: G10L19/24 G10L19/008 G10L19/0204 G11B2020/10546

    Abstract: A device for playing audio clips, a method of playing audio clips and a data storage medium having stored thereon computer code means for instructing a computer system to execute a method of playing audio clips. The device comprising a processor scalable in voltage, frequency, or both; a switch for selecting one of a plurality of output modes of the device; and a controller for controlling the processor to decode input joint/MS stereo mode encoded audio data representing said audio clip based on the selected output mode; wherein each output mode defines a number, m, of subbands of an M channel and a number, s, of subbands of an S channel of the joint/MS stereo mode encoded data; and the controller controls the processor to decode and store only data from the m and s subbands for playback.

    Abstract translation: 用于播放音频剪辑的装置,播放音频剪辑的方法和在其上存储有数字存储介质的数据存储介质,用于指示计算机系统执行播放音频剪辑的方法。 所述设备包括处于电压,频率或两者均可扩展的处理器; 用于选择所述设备的多个输出模式之一的开关; 以及控制器,用于基于所选择的输出模式来控制处理器解码表示所述音频剪辑的输入联合/ MS立体声模式编码的音频数据; 其中每个输出模式定义联合/ MS立体声模式编码数据的S信道的M个频带的子频带的数量m和数量s s; 并且控制器控制处理器来仅解码和存储来自m和s子带的数据以便回放。

    System and method for error concealment in digital audio transmission
    66.
    发明授权
    System and method for error concealment in digital audio transmission 失效
    数字音频传输中错误隐藏的系统和方法

    公开(公告)号:US07447639B2

    公开(公告)日:2008-11-04

    申请号:US10020579

    申请日:2001-12-14

    Applicant: Ye Wang

    Inventor: Ye Wang

    Abstract: A beat-pattern based error concealment system and method which detects drum-like beat patterns of music signals on the encoder side of the system and embeds the beat information as data ancillary to a preceding audio data interval in the transmitted compressed bitstream. The embedded information is then used to perform an error concealment task on the decoder side of the system. The beat detector functions as part of an error concealment system in an audio decoding section used in audio information transfer and audio download-streaming system terminal devices such as mobile phones. The disclosed sender-based method improves error concealment performance while reducing decoder complexity.

    Abstract translation: 一种基于拍子模式的错误隐藏系统和方法,其在系统的编码器侧检测音乐信号的鼓状节拍模式,并将节拍信息作为辅助于先前音频数据间隔的数据嵌入到所发送的压缩比特流中。 然后嵌入的信息用于在系统的解码器侧执行错误隐藏任务。 节拍检测器用作音频信息传输和音频下载流系统终端设备如移动电话中的音频解码部分中的错误隐藏系统的一部分。 所公开的基于发送方的方法提高了错误隐藏性能,同时降低了解码器的复杂度。

    Projection display system including a high fill ratio silicon spatial light modulator
    67.
    发明申请
    Projection display system including a high fill ratio silicon spatial light modulator 有权
    投影显示系统包括高填充率硅空间光调制器

    公开(公告)号:US20070097486A1

    公开(公告)日:2007-05-03

    申请号:US11448537

    申请日:2006-06-05

    CPC classification number: G02B26/0841

    Abstract: A display system includes a light source and a first optical system coupled to the light source and adapted to provide an illumination beam along an illumination path. The display system also includes a spatial light modulator positioned in the illumination path. The spatial light modulator includes a semiconductor substrate including a plurality of electrode devices and a hinge structure coupled to the semiconductor substrate. The hinge structure includes silicon material. The spatial light modulator also includes a mirror post coupled to the hinge structure and extending to a predetermined distance from the semiconductor substrate and a mirror plate coupled to the mirror post and overlying the plurality of electrode devices. The display system further includes a second optical system coupled to the spatial light modulator and adapted to project an image onto a projection surface.

    Abstract translation: 显示系统包括光源和耦合到光源并适于沿照明路径提供照明光束的第一光学系统。 显示系统还包括位于照明路径中的空间光调制器。 空间光调制器包括包括多个电极器件和耦合到半导体衬底的铰链结构的半导体衬底。 铰链结构包括硅材料。 空间光调制器还包括耦合到铰链结构并且延伸到半导体衬底预定距离的镜柱和耦合到镜柱并且覆盖多个电极器件的镜板。 显示系统还包括耦合到空间光调制器并适于将图像投影到投影表面上的第二光学系统。

    Fabrication of a high fill ratio silicon spatial light modulator
    68.
    发明申请
    Fabrication of a high fill ratio silicon spatial light modulator 有权
    高填充率硅空间光调制器的制造

    公开(公告)号:US20070097485A1

    公开(公告)日:2007-05-03

    申请号:US11448148

    申请日:2006-06-05

    CPC classification number: G02B26/0841

    Abstract: A method for forming an optical deflection device includes providing a semiconductor substrate comprising an upper surface region and a plurality of drive devices within one or more portions of the semiconductor substrate. The upper surface region includes one or more patterned structure regions and at least one open region to expose a portion of the upper surface region to form a resulting surface region. The method also includes forming a planarizing material overlying the resulting surface region to fill the at least one open region and cause formation of an upper planarized layer using the fill material. The method further includes forming a thickness of silicon material at a temperature of less than 300 ° C. to maintain a state of the planarizing material.

    Abstract translation: 一种形成光偏转装置的方法包括提供半导体衬底的一个或多个部分内包括上表面区域和多个驱动装置的半导体衬底。 上表面区域包括一个或多个图案化结构区域和至少一个开放区域,以暴露上表面区域的一部分以形成所得表面区域。 该方法还包括形成覆盖所得表面区域的平坦化材料以填充至少一个开放区域,并且使用填充材料形成上部平坦化层。 该方法还包括在小于300℃的温度下形成硅材料的厚度以保持平坦化材料的状态。

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