Fingerprint Identification Data Card and Electronic Device
    21.
    发明申请
    Fingerprint Identification Data Card and Electronic Device 有权
    指纹识别数据卡和电子设备

    公开(公告)号:US20120155721A1

    公开(公告)日:2012-06-21

    申请号:US13410090

    申请日:2012-03-01

    CPC classification number: G06K19/07 G06K19/0718 G06K19/07732

    Abstract: A fingerprint identification data card and an electronic device are provided. The data card includes a case, a circuit board located in the case, an interface, and a fingerprint identifier. The case has a hole, the interface passes through the hole and the interface is connected with the circuit board, and the fingerprint identifier is disposed in the case and is connected with a processor on the circuit board in the case. It can be seen that, before using the data card, a user is required to input a fingerprint through the fingerprint identifier, and the user can use the data card only after passing authentication.

    Abstract translation: 提供指纹识别数据卡和电子设备。 数据卡包括壳体,位于壳体中的电路板,接口和指纹识别器。 外壳有孔,接口通过孔,接口与电路板连接,指纹识别器设置在外壳中,与电路板上的处理器连接。 可以看出,在使用数据卡之前,需要用户通过指纹识别符输入指纹,用户只能在通过认证后才能使用数据卡。

    Method and apparatus for location evaluation and site selection
    23.
    发明授权
    Method and apparatus for location evaluation and site selection 有权
    用于位置评估和选址的方法和装置

    公开(公告)号:US08117138B2

    公开(公告)日:2012-02-14

    申请号:US12046256

    申请日:2008-03-11

    CPC classification number: G06N99/005

    Abstract: Method, apparatus and system for location evaluation and site selection, capable of effectively configuring the site network and evaluating the facility location by scientifically modeling and incorporating human knowledge are provided. In one aspect, geographic and demographic data associated with a plurality of locations and human knowledge comprising partial rating knowledge and pair-wise preference knowledge are used in a regression algorithm to construct a location evaluation model. The regression algorithm is further refined using active learning that identifies a plurality of pairs of locations to improve precision of the regression algorithm.

    Abstract translation: 提供了位置评估和场地选择的方法,装置和系统,能够通过科学建模和整合人类知识来有效地配置现场网络和评估设施位置。 在一个方面,在回归算法中使用与多个位置相关联的地理和人口统计数据以及包括部分评估知识和成对偏好知识的人类知识来构建位置评估模型。 使用主动学习进一步改进回归算法,该学习识别多对位置以提高回归算法的精度。

    SELF-COLLIMATOR CONCAVE SPECTRA SHAPING DEVICE FOR CHIRPED-PULSE-AMPLIFICATION
    24.
    发明申请
    SELF-COLLIMATOR CONCAVE SPECTRA SHAPING DEVICE FOR CHIRPED-PULSE-AMPLIFICATION 失效
    用于激光脉冲放大的自动胶片形状光谱成像装置

    公开(公告)号:US20110317427A1

    公开(公告)日:2011-12-29

    申请号:US12735943

    申请日:2009-03-05

    Abstract: A self-collimator concave spectral shaping device for chirped-pulse-amplification (CPA): uses a spectrum decomposing system with CTSI construction, a spectrum synthesizing system with CTSI structure that is symmetrical to the decomposing structure, and a spectrum shaping system including an aperture and a planar reflector for spectrum shaping function design. The device accomplishes the following functions: firstly decomposing the spectrum of a chirped temporal pulse laser to a spectral domain; then shaping the spectrum in the spectral domain; finally synthesizing un-shiftily this shaped spectrum in the spectral domain into a temporal chirped pulse with a designed shape. The device has the feature of requiring less optical components, compacting the structure, requiring less space, cheap in cost, and running stability, for its small size of concave reflector, and its self-collimation and its symmetrical distribution, which it can be not only utilized in a general laser spectrum shaping and spectrum modulation, but also can be utilized for a high energy and ultra-high peak-power laser system in chirped pulse amplification with a large caliber and with a chirped pulse bandwidth of a few nanometers.

    Abstract translation: 用于啁啾脉冲放大(CPA)的自准直凹凹光谱整形装置:使用具有CTSI结构的频谱分解系统,具有与分解结构对称的CTSI结构的频谱合成系统,以及包括孔径的频谱整形系统 以及用于频谱整形功能设计的平面反射器。 该设备完成以下功能:首先将啁啾脉冲激光的频谱分解为频域; 然后在光谱域中整形光谱; 最后在频谱域中将该形状谱非移动地合成具有设计形状的时间啁啾脉冲。 该器件具有要求较少的光学部件,压实结构,需要更少的空间,便宜的成本和运行稳定性,因为其小尺寸的凹面反射器,以及其自准直和对称分布,其不可能 仅用于一般的激光光谱整形和光谱调制,而且还可以用于具有大口径和啁啾脉冲带宽为几纳米的啁啾脉冲放大中的高能量和超高峰值功率激光系统。

    USB Connector and USB Device
    26.
    发明申请
    USB Connector and USB Device 有权
    USB连接器和USB设备

    公开(公告)号:US20110217858A1

    公开(公告)日:2011-09-08

    申请号:US13110605

    申请日:2011-05-18

    Abstract: A USB connector for connecting with a USB female comprises a rotating shaft assembly which is capable of rotating, metal legs, a connecting line, and a substrate, and said rotating shaft assembly includes a rotating shaft, a rotating shaft sleeve and a rotating shaft support, the rotating shaft is disposed in the rotating shaft sleeve and is capable of rotating relative to the rotating shaft sleeve, the rotating shaft sleeve is located in a support hole of the rotating shaft support, and the rotating shaft assembly with the rotating shaft support is fixed on the surface of the substrate by the rotating shaft support. According to the USB connector and the USB device, the metal legs are formed on the surface of the substrate to ensure the connecting strength of the metal legs and reduce the thickness of the USB device.

    Abstract translation: 用于与USB母头连接的USB连接器包括能够旋转的旋转轴组件,金属腿,连接线和基底,并且所述旋转轴组件包括旋转轴,旋转轴套和旋转轴支撑 旋转轴配置在旋转轴套内,能够相对于旋转轴套旋转,旋转轴套位于旋转轴支撑体的支撑孔内,旋转轴组件与旋转轴支承件 通过旋转轴支撑件固定在基板的表面上。 根据USB连接器和USB装置,金属支脚形成在基板的表面上,以确保金属支脚的连接强度,并减小USB装置的厚度。

    SURFACE ROUGHNESS FOR IMPROVED VACUUM PRESSURE FOR EFFICIENT MEDIA HOLD-DOWN PERFORMANCE
    27.
    发明申请
    SURFACE ROUGHNESS FOR IMPROVED VACUUM PRESSURE FOR EFFICIENT MEDIA HOLD-DOWN PERFORMANCE 有权
    用于改善真空压力的表面粗糙度,用于有效的介质保持性能

    公开(公告)号:US20110139577A1

    公开(公告)日:2011-06-16

    申请号:US12637218

    申请日:2009-12-14

    CPC classification number: G03G15/657 Y10T29/49826

    Abstract: Provided are vacuum transport systems, methods of making them and methods of transporting one or more objects. In accordance with various embodiments, there is a vacuum transport system including a vacuum plenum and one or more transport members configured to rotate around the vacuum plenum and wherein at least one of the one or more transport members can include a substrate, the substrate including a plurality of holes extending from a first side proximate to the vacuum plenum to a second side proximate to an object, wherein a surface of the second side comprises a textured surface having an average roughness Ra of about 2 μm to about 100 μm.

    Abstract translation: 提供真空输送系统,制造它们的方法和运送一个或多个物体的方法。 根据各种实施例,存在真空输送系统,该真空输送系统包括真空室和一个或多个配置成围绕真空室进行旋转的输送构件,并且其中所述一个或多个输送构件中的至少一个可包括基底,所述基底包括 多个孔从靠近真空室的第一侧延伸到靠近物体的第二侧,其中第二侧的表面包含具有约2μm至约100μm的平均粗糙度Ra的纹理化表面。

    Computer-implemented method for estimating bidder valuation
    28.
    发明授权
    Computer-implemented method for estimating bidder valuation 失效
    用于估计投标者估价的计算机实现方法

    公开(公告)号:US07899711B2

    公开(公告)日:2011-03-01

    申请号:US10279805

    申请日:2002-10-23

    CPC classification number: G06Q30/08 G06Q30/0633 G06Q40/04

    Abstract: A computer-implemented method for estimating bidder valuation. A probability that a bid of a first bidder in an auction is not greater than a first value is determined, wherein a second bidder has a valuation in the auction equal to a second value. A rate at which the probability changes is determined. The ratio of the probability to the rate of change is determined. The ratio is added to the rival bid to determine an estimate of the first bidder's valuation.

    Abstract translation: 用于估计投标人估值的计算机实现方法。 确定拍卖中的第一投标人的出价不大于第一值的概率,其中第二投标人具有拍卖中的估值等于第二值。 确定概率变化的速率。 确定概率与变化率之比。 该比率被添加到竞争对手中以确定第一投标人估值的估计。

    USB connector and USB device
    29.
    发明申请

    公开(公告)号:US20100221936A1

    公开(公告)日:2010-09-02

    申请号:US12775350

    申请日:2010-05-06

    Abstract: A USB connector for connecting with a USB female comprises a rotating shaft assembly which is capable of rotating, metal legs, a connecting line, and a substrate, wherein one end of the metal legs connects with one end of the connecting line, the metal legs are formed on a surface of the substrate, the connecting line is fixed to the surface of the substrate, and said rotating shaft assembly includes a rotating shaft and a rotating shaft sleeve, the rotating shaft sleeve is fixed on the surface of the substrate, and the rotating shaft is disposed in the rotating shaft sleeve and is capable of rotating relative to the rotating shaft sleeve. According to the USB connector and the USB device, the metal legs are formed on the surface of the substrate to ensure the connecting strength of the metal legs and reduce the thickness of the USB device.

    SYSTEM AND METHOD FOR DETERMINING INTERVALS OF A SPACE FILLING CURVE IN A QUERY BOX
    30.
    发明申请
    SYSTEM AND METHOD FOR DETERMINING INTERVALS OF A SPACE FILLING CURVE IN A QUERY BOX 有权
    用于确定查询器中空间填充曲线的间隔的系统和方法

    公开(公告)号:US20100185692A1

    公开(公告)日:2010-07-22

    申请号:US12356479

    申请日:2009-01-20

    CPC classification number: G06F17/30333 G06F17/30327

    Abstract: A system and method is disclosed for determining intervals of a space filling curve in a query box. The method includes the operation of providing a range query-box contained within a data set, wherein the data set has a plurality of elements in N dimensions. A space filling curve is applied to the data set. The space filling curve contacts each of the elements in the N dimensions. The space filling curve is also applied to a range-query box contained within the data set. An entry point of the space filling curve into the query box is determined. A first endpoint box is formed to cover an hquad of the space filling curve at the entry point that includes P×P elements, with a first value of P selected as one. The value of P is increased to expand the endpoint box around a next larger hquad of the space filling curve, until a size of the endpoint box is maximized without exiting the range-query box. The interval of the space filling curve in the endpoint box can then be determined.

    Abstract translation: 公开了一种用于确定查询框中空间填充曲线的间隔的系统和方法。 该方法包括提供包含在数据集中的范围查询框的操作,其中数据集具有N维中的多个元素。 空间填充曲线应用于数据集。 空间填充曲线接触N维中的每个元素。 空间填充曲线也应用于数据集中包含的范围查询框。 确定查询框中空格填充曲线的入口点。 第一端点盒形成为覆盖包括P×P元素在内的入口点处的空间填充曲线的四分之一,其中P的第一值被选择为一。 增加P的值,以扩大空格填充曲线的下一个更大的h的四边形框,直到端点框的大小最大化,而不退出范围查询框。 然后可以确定端点框中空间填充曲线的间隔。

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