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    • 161. 发明授权
    • Sports ball
    • 运动球
    • US08801553B2
    • 2014-08-12
    • US13134719
    • 2011-06-15
    • Takashi FujikuraOsamu KobayashiShuzo Matsuno
    • Takashi FujikuraOsamu KobayashiShuzo Matsuno
    • A63B41/00
    • A63B41/00
    • There is provided a sports ball capable of relieving the pain of the hands suffered from impact on the ball and having a soft feel and high flexibility. The sports ball comprises a spherical hollow rubber bladder (2) inflated with air injected into it, a fabric tape reinforcement layer (3) formed by winding a narrow adhesive-impregnated fabric tape (7) around a central spherical portion (6) of the rubber bladder about each of three axes of the rubber bladder with the exception of opposite spherical end portions (5) of the rubber bladder, whereby the fabric tape reinforcement layer is formed as orthogonal lap windings of the fabric tape over substantially all of the spherical surface of the rubber bladder, to provide a fabric tape wound ball core, and surface panels (4) adhered with adhesive to the fabric tape reinforcement layer on the rubber bladder, after vulcanization and forming of the fabric tape wound ball core.
    • 提供了一种能够减轻手受到撞击的手感并且具有柔软的手感和高弹性的运动球。 运动球包括用注入其中的空气充气的球形中空橡胶囊(2),织物带加强层(3),其通过将窄的粘合剂浸渍的织物带(7)缠绕在其上的中心球形部分(6) 橡胶囊围绕橡胶囊的相对的球形端部(5),除了橡胶囊的相对的球形端部(5)之外,还围绕橡胶囊的三个轴线的每一个,由此织物带加强层形成为基本上所有的球形表面上的织物带的正交搭接线圈 的橡胶囊,提供织物带缠绕的球芯,以及在橡胶囊上的织物带加强层上粘合的表面板(4),硫化和形成织物带缠绕球芯之后。
    • 162. 发明授权
    • Data rate throttling in an internal packet-based interface
    • 数据速率限制在内部基于分组的接口中
    • US08793410B2
    • 2014-07-29
    • US12888255
    • 2010-09-22
    • Osamu Kobayashi
    • Osamu Kobayashi
    • G06F3/00G06F5/00H04N7/173G09G5/00H04L29/06
    • G09G5/006G09G2370/14H04L29/06176
    • Methods and systems for transmitting video pixel data from a transmitter component, such as a controller, to a receiver within a monitor are described. Video data is received at a transmitter at an incoming pixel rate based on a pixel clock. The data is transmitted to the receiver at a link symbol clock rate and is drained from the receiver at the pixel clock rate, which is regenerated by the receiver using the link symbol clock frequency, an M video value, and an N video value. The M video value (Mvid) is determined by the transmitter based on the incoming pixel rate and the N video value (Nvid) may be constant. An accumulator is used within the transmitter to ensure that the transmitter and receiver create a balanced system.
    • 描述了用于将视频像素数据从诸如控制器的发射器部件发射到监视器内的接收器的方法和系统。 基于像素时钟,以传入像素速率在发射机处接收视频数据。 数据以链路符号时钟速率发送到接收机,并且以接收机使用链路符号时钟频率,M视频值和N视频值以像素时钟速率从接收机中排出。 M视频值(Mvid)由发射机根据输入像素速率确定,N视频值(Nvid)可以是常数。 发射机内部使用一个累加器,以确保发射机和接收机产生平衡的系统。
    • 167. 发明申请
    • Compact Packet Based Multimedia Interface
    • 紧凑型数据包多媒体接口
    • US20120229486A1
    • 2012-09-13
    • US13476894
    • 2012-05-21
    • Osamu Kobayashi
    • Osamu Kobayashi
    • G09G5/00
    • G09G5/006G06F3/14G09G2370/042G09G2370/047G09G2370/10
    • A packet based display interface arranged to couple a multimedia source device to a multimedia sink device is disclosed that includes a transmitter unit coupled to the source device arranged to receive a source packet data stream in accordance with a native stream rate, a receiver unit coupled to the sink device, and a linking unit coupling the transmitter unit and the receiver unit arranged to transfer a multimedia data packet stream formed of a number of multimedia data packets based upon the source packet data stream in accordance with a link rate between the transmitter unit and the receiver unit.
    • 公开了一种布置成将多媒体源设备耦合到多媒体接收设备的基于分组的显示接口,其包括耦合到源设备的发射机单元,其被配置为根据本地流速率接收源分组数据流,接收机单元耦合到 宿设备和链接单元,其耦合发射机单元和接收机单元,其被布置为根据源分组数据流传输由多个多媒体数据分组形成的多媒体数据分组流,所述多媒体数据分组流根据发射机单元和 接收器单元。
    • 169. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE AND ELECTRONIC APPARATUS
    • 液晶显示装置和电子装置
    • US20110181808A1
    • 2011-07-28
    • US13005199
    • 2011-01-12
    • Osamu KobayashiOsamu KaiEiko Hirose
    • Osamu KobayashiOsamu KaiEiko Hirose
    • G02F1/1335G01B11/14
    • G02F1/1341G02F1/1362
    • A liquid crystal display device includes: a component substrate including a transistor device; an opposing substrate disposed so as to face the component substrate through a liquid crystal layer; a back light disposed on a side of the component substrate located opposite to the opposing substrate; first and second measurement portions formed on a surface of the component substrate and the opposing substrate, respectively, located on the liquid crystal layer side and used for measuring a difference between bonding positions of the component substrate and the opposing substrate; a measurement opening portion disposed on the second measurement portion side; and a light shielding layer disposed between the component substrate and the second measurement portion and preventing transmission of light from the back light through the measurement opening portion.
    • 液晶显示装置包括:包括晶体管器件的元件衬底; 相对基板,其通过液晶层与所述部件基板相对配置; 设置在与所述相对基板相对的所述部件基板的一侧的背光; 第一和第二测量部分分别形成在位于液晶层一侧的部件基板和相对基板的表面上,用于测量部件基板与相对基板的接合位置之间的差异; 设置在所述第二测量部分侧的测量开口部分; 以及遮光层,其设置在所述部件基板和所述第二测量部分之间,并且防止来自所述背光的光通过所述测量开口部分的透射。