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
    • 2. 发明授权
    • Signal input circuit and integrated circuit
    • 信号输入电路和集成电路
    • US08648610B2
    • 2014-02-11
    • US13304944
    • 2011-11-28
    • Yuuki MikamiToru ItabashiYoshiharu TakeuchiKenji MochizukiNaoya Tsuchiya
    • Yuuki MikamiToru ItabashiYoshiharu TakeuchiKenji MochizukiNaoya Tsuchiya
    • G01R31/00G01R31/08
    • G01D21/02G01D3/08G01R31/007
    • A signal input circuit includes: a signal input device having a signal input terminal; an inspection capacitor connected between the signal input terminal and a reference potential; a connection unit connecting/disconnecting an inspection path between the inspection capacitor and the signal input terminal; a charge and discharge unit charging/discharging the inspection capacitor; and a determination processing unit carrying out a terminal failure detection processing. The determination processing unit controls the connection unit to disconnect the inspection path and controls the charge and discharge unit to set the voltage of the inspection capacitor to a terminal inspection voltage in a charge and discharge procedure, controls the connection unit to connect the inspection path in a continuity establishing procedure, and detects the terminal failure at the signal input terminal or a communication path from the signal input terminal based on a voltage of the inspection path.
    • 信号输入电路包括:具有信号输入端的信号输入装置; 连接在信号输入端子和参考电位之间的检查电容器; 连接单元,连接/断开检查电容器和信号输入端子之间的检查路径; 充放电单元对检查电容器进行充放电; 以及执行终端故障检测处理的确定处理单元。 确定处理单元控制连接单元断开检查路径并控制充放电单元,以在充放电过程中将检查电容器的电压设置为终端检查电压,控制连接单元将检查路径连接到 连续性建立过程,并且基于检查路径的电压来检测信号输入端子处的端子故障或者来自信号输入端子的通信路径。
    • 6. 发明申请
    • Fastening tool and fastening bolt
    • 紧固工具和紧固螺栓
    • US20050079012A1
    • 2005-04-14
    • US10885973
    • 2004-07-08
    • Kenji Mochizuki
    • Kenji Mochizuki
    • F16B39/28F16B5/02F16B35/06F16L21/06F16B7/04
    • F16B35/06F16B5/025F16L21/065Y10T24/1441Y10T403/53Y10T403/535Y10T403/5761Y10T403/5786Y10T403/75
    • The present invention provides a fastening tool in which even when two members are inclined as the members are threadedly inserted, a displacement load is not applied to the members almost at all. A fastening bolt 1 of the fastening tool includes a rod-like bolt body 10 provided at its outer periphery with a male thread 11, and a head 20 provided on an end of the bolt body 10 and having a diameter greater than that of the bolt body 10. A lower surface of the head 20 is a tapered surface whose diameter is reduced toward the bolt body 10 so that the lower surface abuts against a tapered seat surface 31 of the first member 3 provided with a bolt through hole 31. This tapered surface is formed into a tapered curved surface 21 finished into a curved surface. With this structure, even if the threaded hole 40 of the second member 4 into which the fastening bolt 1 is threadedly inserted is inclined, the tapered curved surface 21 appropriately slides on the tapered seat surface 31 in the first member 3, the threadedly insertion direction of the bolt body 10 substantially matches with the axial direction of the threaded hole 40. Therefore, the fastening bolt 1 can easily enter concentrically with the threaded hole 40.
    • 本发明提供一种紧固工具,其中即使两个构件在构件被螺纹插入时倾斜,也几乎不会对构件施加位移载荷。 紧固工具的紧固螺栓1包括在其外周设置有阳螺纹11的杆状螺栓本体10和设置在螺栓本体10的端部上并且具有大于螺栓的直径的头部20 头部20的下表面是其直径朝向螺栓本体10减小的锥形表面,使得下表面邻接设置有螺栓通孔31的第一构件3的锥形座面31。 表面形成为精加工成曲面的锥形曲面21。 通过这种结构,即使紧固螺栓1螺纹插入的第二构件4的螺纹孔40倾斜,锥形曲面21在第一构件3的锥形座面31上适当地滑动,螺纹插入方向 螺栓体10的大致与螺纹孔40的轴向一致。因此,紧固螺栓1能够容易地与螺纹孔40同心地进入。
    • 7. 发明授权
    • Input device of 3-D translation and rotation and its method and recording medium
    • 3-D平移和旋转的输入装置及其方法和记录介质
    • US06710765B1
    • 2004-03-23
    • US09678274
    • 2000-10-03
    • Koichi KatoKenji MochizukiShinichi Meguro
    • Koichi KatoKenji MochizukiShinichi Meguro
    • G09G508
    • G06F3/0325G06F3/0346G06F3/037G06F3/04845
    • A device and method can carry out reliable visceral 3-D input over a wide range at arbitrary measuring time intervals without being affected from electric field or temperature, with requiring small installation space. A bright spot is displayed on the display surface of a display by scanning. A photo device condenses the bright spot on the display to project the spot light onto the projection plane, thereby projecting it onto photo detectors the projection plane. A counter counts the time from the time of a vertical sync signal, and supplies its output to AND gates. A correspondence detector brings bright spot display positions on the display at multiple times into correspondence with their projection positions on the photo device in accordance to recording time. An extrinsic parameter calculator calculates the 3-D translation and rotation of the photo device with respect to the bright spot scanning surface of the display from at least three sets of the bright spot display positions and their corresponding projection positions.
    • 可以任意测量时间间隔在宽范围内进行可靠的内脏3-D输入的设备和方法,而不受电场或温度的影响,并且需要较小的安装空间。 通过扫描在显示器的显示面上显示亮点。 照片装置将亮点聚集在显示器上以将光束投影到投影平面上,从而将其投影到投影平面的光电检测器上。 计数器从垂直同步信号的时间计数时间,并将其输出提供给与门。 对应检测器根据记录时间在显示器上使亮点显示位置与照相装置上的投影位置相对应地多次显示。 外部参数计算器从至少三组亮点显示位置及其对应的投影位置计算照相装置相对于显示器的亮点扫描表面的3-D平移和旋转。
    • 9. 发明申请
    • SIGNAL INPUT CIRCUIT AND INTEGRATED CIRCUIT
    • 信号输入电路和集成电路
    • US20120176141A1
    • 2012-07-12
    • US13304944
    • 2011-11-28
    • Yuuki MIKAMIToru ItabashiYoshiharu TakeuchiKenji MochizukiNaoya Tsuchiya
    • Yuuki MIKAMIToru ItabashiYoshiharu TakeuchiKenji MochizukiNaoya Tsuchiya
    • G01R31/00
    • G01D21/02G01D3/08G01R31/007
    • A signal input circuit includes: a signal input device having a signal input terminal; an inspection capacitor connected between the signal input terminal and a reference potential; a connection unit connecting/disconnecting an inspection path between the inspection capacitor and the signal input terminal; a charge and discharge unit charging/discharging the inspection capacitor; and a determination processing unit carrying out a terminal failure detection processing. The determination processing unit controls the connection unit to disconnect the inspection path and controls the charge and discharge unit to set the voltage of the inspection capacitor to a terminal inspection voltage in a charge and discharge procedure, controls the connection unit to connect the inspection path in a continuity establishing procedure, and detects the terminal failure at the signal input terminal or a communication path from the signal input terminal based on a voltage of the inspection path.
    • 信号输入电路包括:具有信号输入端的信号输入装置; 连接在信号输入端子和参考电位之间的检查电容器; 连接单元,连接/断开检查电容器和信号输入端子之间的检查路径; 充放电单元对检查电容器进行充放电; 以及执行终端故障检测处理的确定处理单元。 确定处理单元控制连接单元断开检查路径并控制充放电单元,以在充放电过程中将检查电容器的电压设置为终端检查电压,控制连接单元将检查路径连接到 连续性建立过程,并且基于检查路径的电压来检测信号输入端子处的端子故障或者来自信号输入端子的通信路径。
    • 10. 发明申请
    • Data processing device
    • 数据处理装置
    • US20050105816A1
    • 2005-05-19
    • US10504968
    • 2003-02-17
    • Tadahiro OhmiKenji MochizukiKoji Kotani
    • Tadahiro OhmiKenji MochizukiKoji Kotani
    • G06T9/20G06K9/64G06T7/00H03M7/30H04N19/00H04N19/94G06K9/36G06K9/62
    • G06K9/6202H03M7/30H03M7/3082H03M7/3084H04N19/94
    • In order to carry out data compression processing using vector quantization at a high speed by hardware, upon retrieving a template pattern most similar to an input pattern from a plurality of template patterns, those template patterns to be subjected to calculation of the degree of similarity are selected by the use of feature quantities of the input pattern and the template patterns. Upon calculating the degree of similarity between each of the selected template patterns and the input pattern, the calculation is carried out in a bit serial fashion. Thus, in pattern matching processing in the vector quantization, the number of the templates to be subjected to matching is reduced and the number of cycles required for calculation upon matching is reduced, thereby enabling the data compression processing using the vector quantization to be carried out at a high speed.
    • 为了通过硬件高速地进行矢量量化的数据压缩处理,在从多个模板图案检索与输入图案最相似的模板图案时,要进行相似度计算的那些模板图案是 通过使用输入图案的特征量和模板图案来选择。 在计算每个所选择的模板图案和输入图案之间的相似程度时,以串行方式进行计算。 因此,在矢量量化中的模式匹配处理中,要进行匹配的模板的数量减少,并且匹配时计算所需的周期数减少,从而能够进行使用矢量量化的数据压缩处理 以高速度。