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
    • 23. 发明授权
    • Agglutination inhibition assay method and reagent
    • 凝集抑制试验方法和试剂
    • US08026107B2
    • 2011-09-27
    • US12374726
    • 2007-07-23
    • Tadaaki YoshidaHiroshi Takahashi
    • Tadaaki YoshidaHiroshi Takahashi
    • G01N33/566G01N33/531
    • G01N33/54313G01N33/54306
    • Provided are an agglutination-inhibition assay and a reagent for agglutination-inhibition assay, which can be used for measuring a ligand in a sample at high sensitivity in a wide range from the low-concentration range to the high-concentration range and have good reproducibility of measurement. Specifically, provided are an agglutination-inhibition assay and a reagent for agglutination-inhibition assay, in which used are an insoluble carrier particle carrying a ligand, a specific receptor in the free-form and an insoluble carrier particle carrying a specific receptor which binds to a different site on the ligand than the receptor in the free-form.
    • 本发明提供凝集抑制试验和凝集抑制试验用试剂,其可以从低浓度范围到高浓度范围的高灵敏度下高灵敏度地测定样品中的配体,并具有良好的再现性 的测量。 具体地,提供了凝集抑制测定和用于凝集抑制测定的试剂,其中使用的是携带配体的不溶性载体颗粒,游离形式的特异性受体和携带特异性受体的不溶性载体颗粒,其结合 配体上的不同位点是以游离形式的受体。
    • 26. 发明授权
    • Objective lens unit for endoscope
    • 内窥镜物镜单元
    • US07695431B2
    • 2010-04-13
    • US10771403
    • 2004-02-05
    • Shinsuke Okada
    • Shinsuke Okada
    • A61B1/06
    • G02B27/62G02B23/243G02B27/021
    • An objective optical system is configured to be suitable to be implemented at a tip of an endoscope. The objective optical system is provided with a first lens unit having a first lens barrel and a first optical system including plurality of lens elements assembled in the first lens barrel, and a second lens unit having a second lens barrel and a second optical system including a plurality of lens elements. The first lens unit or the second lens unit includes an alignment lens which is movable in a direction perpendicular to the optical axis thereof. The alignment lens is a lens most sensitive with respect to an alignment error among the plurality of lenses included in the first optical system.
    • 物镜光学系统被配置为适合于在内窥镜的尖端处实现。 物镜光学系统设置有具有第一透镜镜筒和第一光学系统的第一透镜单元,第一透镜镜筒和第一光学系统包括组装在第一透镜镜筒中的多个透镜元件,以及具有第二透镜镜筒的第二透镜单元和包括第 多个透镜元件。 第一透镜单元或第二透镜单元包括可在垂直于其光轴的方向上移动的对准透镜。 对准透镜是对包括在第一光学系统中的多个透镜中的对准误差最敏感的透镜。
    • 27. 发明授权
    • Information recording medium and region management method for a plurality of recording regions each managed by independent file system
    • 用于由独立文件系统管理的多个记录区域的信息记录介质和区域管理方法
    • US07653796B2
    • 2010-01-26
    • US10546453
    • 2004-02-19
    • Shinji InoueTakuji Maeda
    • Shinji InoueTakuji Maeda
    • G06F13/00
    • G06F3/0644G06F3/0607G06F3/0643G06F3/0674G06F3/0679
    • A region management method for an information recording medium capable of maintaining data interchangeability among devices and preventing malfunction when one information recording medium shared among devices different in type or number of file systems that can be interpreted by devices is provided. A recording region of the information recording medium is divided into a plurality of regions, and region information such as position and size of each region is held in the information recording medium. Different file systems are constructed in individual data recording regions. In response to a command from an information processing apparatus, accessible regions by the information processing apparatus are changed over by, for example, referring to validity flag information that indicates a presently valid region.
    • 一种用于信息记录介质的区域管理方法,用于在设备中可以解释的文件系统的类型或数量不同的设备之间共享一个信息记录介质时,能够维护设备之间的数据可互换性并防止故障。 信息记录介质的记录区域被划分为多个区域,并且各区域的位置和大小等区域信息保存在信息记录介质中。 在各个数据记录区域中构建不同的文件系统。 响应于来自信息处理设备的命令,通过例如参考指示当前有效区域的有效性标志信息来改变信息处理设备的可访问区域。
    • 29. 发明授权
    • Imaging device driver, imaging device driving method, and image signal processor
    • 成像设备驱动器,成像设备驱动方法和图像信号处理器
    • US07619195B2
    • 2009-11-17
    • US11553499
    • 2006-10-27
    • Koichi SatoAkifumi Tabata
    • Koichi SatoAkifumi Tabata
    • H01J27/00
    • H04N9/045H04N5/3452H04N5/3456H04N5/3458H04N5/3728
    • An imaging device driver that drives an imaging device, comprising a controller, is provided. The imaging device has the light receiving surface divided into a plurality of pixel blocks. Each pixel block has a plurality of pixels. The pixel generates a pixel signal according to received light amount. The imaging device generates an image signal. The image signal is formed by a plurality of the pixel signals. The image signal corresponds to an optical image of an object during a single frame period. The controller causes the pixel located at a first and a second area in the pixel block to generate the pixel signal in a first and a second frame period, respectively, if the imaging device is driven to output the image signal while thinning out the pixel signals. The second frame period follows the first frame period.
    • 提供了一种驱动包括控制器的成像装置的成像装置驱动器。 成像装置具有被分成多个像素块的光接收表面。 每个像素块具有多个像素。 像素根据接收到的光量生成像素信号。 成像装置产生图像信号。 图像信号由多个像素信号形成。 图像信号对应于在单个帧周期期间的对象的光学图像。 如果成像装置被驱动以输出图像信号,同时使像素信号变薄,则控制器使得位于像素块中的第一和第二区域处的像素分别在第一和第二帧周期中产生像素信号 。 第二帧周期遵循第一帧周期。
    • 30. 发明授权
    • Wafer dividing method
    • 晶圆分割法
    • US07605058B2
    • 2009-10-20
    • US12122952
    • 2008-05-19
    • Masaru Nakamura
    • Masaru Nakamura
    • H01L21/00
    • H01L21/78H01L21/67132
    • A wafer dividing method is provided that includes a protective plate sticking step of sticking the face of the wafer to the face of a protective plate by a pressure sensitive adhesive material whose adhesive force is decreased by an external stimulus; a degeneration layer formation step of throwing a laser beam, which permeates the wafer, along the street to the back side of the wafer, thereby forming a degeneration layer of a thickness corresponding to at least the finished thickness of the device within the wafer, the degeneration layer starting at the face of the wafer; a back grinding step of grinding the back of the wafer to form the wafer into the finished thickness of the device; a wafer support step of sticking the back of the wafer to a surface of a dicing tape mounted on an annular frame; an adhesive force decreasing step of imparting an external stimulus to the pressure sensitive adhesive material, thereby decreasing the adhesive force of the pressure sensitive adhesive material; a protective plate peeling step of peeling the protective plate from the face of the wafer; and a wafer rupture step of imparting an external force to the wafer, thereby rupturing the wafer along the street.
    • 提供了一种晶片分割方法,其包括通过外部刺激使粘合力降低的压敏粘合剂将保护板的表面粘贴在晶片的表面上的保护板粘贴步骤; 沿着街道向晶片的背面投射透过晶片的激光束的退化层形成步骤,从而形成厚度对应于晶片内的器件的最终厚度的至少一层的退化层, 退化层从晶片的表面开始; 背面研磨步骤,研磨晶片的背面,以将晶片形成装置的成品厚度; 晶片支撑步骤,将晶片的背面粘贴到安装在环形框架上的切割带的表面; 赋予压敏粘合剂材料外部刺激的粘合力降低步骤,从而降低压敏粘合剂材料的粘合力; 保护板剥离步骤,从所述晶片的表面剥离所述保护板; 以及向晶片施加外力的晶片断裂步骤,从而沿着街道破裂晶片。