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    • 4. 发明申请
    • VARIABLE-SPEED HOISTING MACHINE
    • 可变速离心机
    • US20130334996A1
    • 2013-12-19
    • US14002594
    • 2012-03-06
    • Kazuhiro Nishikawa
    • Kazuhiro Nishikawa
    • B66D1/12
    • B66D1/12B66D3/18B66D5/30
    • A variable-speed hoisting machine uses an electric motor having a pull-rotor brake as a hoisting motor and capable of supplying the electric motor with an electric current that can reliably release the pull-rotor brake at the time of starting an operation even in the case of a variable-speed hoisting machine such as an electric chain block in a variable-speed hoisting machine having an electric motor with a pull-rotor brake and an inverter controlling the speed of the electric motor in a soft-start manner, the inverter is set to operate according to a predetermined voltage-frequency (V-F) pattern.
    • 变速曳引机使用具有拉动转子制动器的电动机作为起重电动机,并能够向电动机供给能够在开始动作时可靠地释放牵引转子制动器的电流,即使在 在具有拉动转子制动器的电动机和以软启动方式控制电动机的转速的变频器的变速曳引机中的电动链条等可变速曳引机的情况下, 被设定为根据预定的电压 - 频率(VF)模式进行操作。
    • 5. 发明授权
    • Protection panel having touch input function of analog resistance film method
    • 保护面板具有模拟电阻膜触摸输入功能
    • US08482537B2
    • 2013-07-09
    • US12674324
    • 2008-08-19
    • Jun ShimizuToshiyuki IwaiMitsutoyo ToshiharaKazuhiro NishikawaYoshihiro Kai
    • Jun ShimizuToshiyuki IwaiMitsutoyo ToshiharaKazuhiro NishikawaYoshihiro Kai
    • G06F3/041
    • G06F3/045
    • A protection panel having a touch input function of the analog resistance film method for detecting an X-Y coordinate representing an operated position by a potential gradient based on a touch operation relative to the front substrate 6, in which the back substrate 5 and the front substrate 6 include contacts 5G and 6G, respectively, connected to each other in series on the resistance films 5A and 6A through the routing circuits 5C and 6C to have potential difference, in which the contacts 5G and 6G face each other at a predetermined distance when the back substrate 5 and the front substrate 6 are connected to each other, and in which a switch 12 is provided for detecting, when voltage is applied by the contacts 5G and 6G between the electrodes 5D or 6D of either one of the front substrate 6 and the back substrate 5, whether or not the contacts 5G and 6G are brought into contact with each other based on voltage detected by the electrodes 5D or 6D of the other of the front substrate 6 and the back substrate 5.
    • 一种具有模拟电阻膜方法的触摸输入功能的保护面板,用于基于相对于前基板6的触摸操作,通过电位梯度检测表示操作位置的XY坐标,其中后基板5和前基板6 包括分别通过布线电路5C和6C串联连接在电阻膜5A和6A上的触点5G和6G以具有电位差,其中触点5G和6G在背面以预定的距离彼此面对 基板5和前基板6彼此连接,并且其中设置开关12用于检测当在前基板6和前基板6中的任一个的电极5D或6D之间的触点5G和6G施加电压时 背面基板5,基于前面基板6a中的另一个的电极5D或6D检测的电压,触点5G和6G是否彼此接触 和背面基板5。
    • 8. 发明授权
    • Protection panel with touch input function
    • 带触摸输入功能的保护面板
    • US08199128B2
    • 2012-06-12
    • US12992432
    • 2009-05-25
    • Yoshiko SuetomiYoshihiro KaiKazuhiro NishikawaJun ShimizuToshiyuki IwaiMitsutoyo Toshihara
    • Yoshiko SuetomiYoshihiro KaiKazuhiro NishikawaJun ShimizuToshiyuki IwaiMitsutoyo Toshihara
    • G06F3/045
    • G06F3/045H01H2209/038H01H2239/074
    • A protection panel for detecting an X-Y coordinate as an operation position from a potential gradient based on a touch operation to a front substrate is provided. A rear substrate (5) has a first transparent resistive film (5A) and a contact point (5G) connected to a pair of first terminals (5D) through routing circuits (5C) so that the contact point (5G) is arranged in parallel with the first transparent resistive film (5A). When the rear substrate (5) and a front substrate (6) are connected, the contact point (5G) and an expanded region (6Ab) of a second transparent resistive film (6A) on the front substrate (6), which are arranged opposingly with a predetermined gap, form a switch (12) for detecting a contact therebetween, based on a voltage detected in the terminals (6D,5D) of one of the rear substrate (5) and the front substrate (6) when a voltage is applied between the terminals (5D,6D) of the other.
    • 提供了一种用于基于对前基板的触摸操作从电位梯度检测X-Y坐标作为操作位置的保护面板。 后基板(5)具有通过布线电路(5C)连接到一对第一端子(5D)的第一透明电阻膜(5A)和接触点(5G),使得接触点(5G)平行布置 与第一透明电阻膜(5A)。 当后基板(5)和前基板(6)连接时,布置在前基板(6)上的第二透明电阻膜(6A)的接触点(5G)和扩展区域(6Ab) 基于在后基板(5)和前基板(6)之一的端子(6D,5D)中检测到的电压,形成用于检测它们之间的接触的开关(12),当开关 施加在另一个的端子(5D,6D)之间。
    • 10. 发明授权
    • Image processing method, image processing program, and image processing device
    • 图像处理方法,图像处理程序和图像处理装置
    • US08126243B2
    • 2012-02-28
    • US12064430
    • 2006-02-21
    • Kazuo HamadaKazuhiro Nishikawa
    • Kazuo HamadaKazuhiro Nishikawa
    • G06K9/00
    • G06T3/4053A61B6/037G06T7/35G06T2207/10072G06T2207/30016G06T2207/30061
    • An image processing method is provided as one for creating a fused image automatically and with high overlapping accuracy.An image processing method according to an embodiment of the present invention includes (a) a voxel normalization step of equalizing voxel sizes and numbers of voxels in respective effective fields of view of a first 3D image based on a plurality of first tomographic images obtained from an arbitrary part of a subject and a second 3D image based on a plurality of second tomographic images obtained from the same part, thereby creating a first normalized 3D image corresponding to the first 3D image and a second normalized 3D image corresponding to the second 3D image; and (b) a fused image creation step of creating a fused image, using the first normalized 3D image and the second normalized 3D image.
    • 提供了一种图像处理方法,用于自动和高重叠精度地创建融合图像。 根据本发明实施例的图像处理方法包括:(a)体素归一化步骤,用于基于从第一3D图像获得的多个第一断层图像,在第一3D图像的相应有效视场中均衡体元大小和体素数 基于从相同部分获得的多个第二断层图像,从而创建与第一3D图像相对应的第一归一化3D图像和对应于第二3D图像的第二归一化3D图像的主体的任意部分和第二3D图像; 和(b)使用第一标准化3D图像和第二标准化3D图像来创建融合图像的融合图像创建步骤。