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    • 1. 发明申请
    • INTERFERENCE CHECKING DEVICE AND NUMERICAL CONTROL APPARATUS
    • 干扰检查装置和数字控制装置
    • US20140233839A1
    • 2014-08-21
    • US14000272
    • 2013-02-21
    • Toshiyuki MoritaNobuyuki TakahashiTadahiro Otsuka
    • Toshiyuki MoritaNobuyuki TakahashiTadahiro Otsuka
    • G06T7/00
    • G05B19/4061G05B2219/37559G06T7/0004G06T7/564G06T7/62
    • An interference checking device includes a contour shape analyzing unit that extracts a contour shape of a tool cross section and a tool length by analyzing a two-dimensional image of a rotating tool, a rotation center analyzing unit that obtains a rotation center of the rotating tool by analyzing the contour shape, a three-dimensional-rotation-shape generating unit that generates a three-dimensional shape of the rotating tool on the basis of the contour shape, the tool length, and the rotation center, and an interference check processing unit that checks whether the rotating tool and a component other than the rotating tool interfere with each other when numerical control machining is performed on a workpiece by using the rotating tool, by using the three-dimensional shape, in which the three-dimensional-rotation-shape generating unit generates the three-dimensional shape by using a left-side contour shape.
    • 干涉检查装置包括轮廓形状分析单元,其通过分析旋转工具的二维图像来提取工具横截面的轮廓形状和刀具长度;旋转中心分析单元,其获得旋转工具的旋转中心 通过分析轮廓形状,基于轮廓形状,刀具长度和旋转中心产生旋转刀具的三维形状的三维旋转形状生成单元以及干涉检查处理单元 当通过使用旋转工具对工件进行数控加工时,通过使用三维旋转工具的三维形状来检查旋转工具和旋转工具以外的部件是否彼此干涉, 形状生成单元通过使用左侧轮廓形状来生成三维形状。
    • 6. 发明授权
    • High-pressure fuel pump drive circuit for engine
    • 发动机高压燃油泵驱动电路
    • US07881035B2
    • 2011-02-01
    • US11833677
    • 2007-08-03
    • Nobuyuki TakahashiTakashi OkamotoTakuya Mayuzumi
    • Nobuyuki TakahashiTakashi OkamotoTakuya Mayuzumi
    • H01H9/00
    • F02D41/20F02D41/406F02D2041/2041F02M59/466F02M2037/085F04B49/06F04B49/10H01F7/1811
    • There is provided a high-pressure fuel pump drive circuit for manipulating the electric current to be passed to a solenoid coil for controlling a high-pressure pump. This circuit is characterized in that a first switching element, the solenoid coil and a second switching element are connected in series with each other in a rout from a source voltage side to the ground side, that a flywheel diode for passing electric current to a power source is disposed parallel with the solenoid and with the first switching element, and that a Zener diode connected with the power source is disposed parallel with the second switching element, wherein a counter electromotive force to be developed at the opposite ends of solenoid coil on the occasion when the second switching element is changed from ON to OFF is consumed by the flywheel diode provided that the first switching element is in a state of ON, and the counter electromotive force is more rapidly consumed by the Zener diode provided that the first switching element is turned OFF.
    • 提供了用于操纵要通过到用于控制高压泵的螺线管线圈的电流的高压燃料泵驱动电路。 该电路的特征在于,第一开关元件,螺线管线圈和第二开关元件在从源极电压侧到接地侧的路径中彼此串联连接,用于将电流传递到电力的续流二极管 源极与螺线管和第一开关元件平行设置,并且与电源连接的齐纳二极管与第二开关元件平行设置,其中在电磁线圈的相对端处形成的反电动势 只要第一开关元件处于ON状态,并且反电动势被齐纳二极管更快地消耗,则由续流二极管消耗第二开关元件由ON变为OFF的情况,只要第一开关元件 关闭。
    • 8. 发明授权
    • Structure mounting rear suspension
    • 结构安装后悬挂
    • US07575243B2
    • 2009-08-18
    • US11510907
    • 2006-08-28
    • Nobuyuki Takahashi
    • Nobuyuki Takahashi
    • B60G3/12
    • B60G7/02B60G2200/21B60G2204/1434B60G2204/4302B62D25/08
    • A vehicle suspension structure includes a frame member having a first side portion and a bottom portion. The bottom portion extends in a first direction relative to the first side portion. The structure also includes a suspension mounting member attached to the first side portion of the frame member. The suspension mounting member extends in a second direction that is opposite of the first direction. The structure also includes a support bracket attached to the bottom portion of the frame member and the suspension mounting member. The structure further includes a suspension member rotatably coupled to the suspension mounting member and supporting a vehicle wheel.
    • 车辆悬架结构包括具有第一侧部分和底部部分的框架部件。 底部相对于第一侧部在第一方向上延伸。 该结构还包括附接到框架构件的第一侧部的悬挂安装构件。 悬挂安装构件沿与第一方向相反的第二方向延伸。 该结构还包括附接到框架构件的底部和悬架安装构件的支撑支架。 该结构还包括可旋转地联接到悬挂安装构件并支撑车轮的悬挂构件。
    • 10. 发明授权
    • Plasma display device
    • 等离子显示装置
    • US07379032B2
    • 2008-05-27
    • US10876868
    • 2004-06-28
    • Koji OhiraYoshimi KawanamiNobuyuki TakahashiMasahiro SawaHiroyuki Nakahara
    • Koji OhiraYoshimi KawanamiNobuyuki TakahashiMasahiro SawaHiroyuki Nakahara
    • G09G3/28
    • G09G3/2983G09G3/2927G09G2310/0218G09G2310/066H01J11/12H01J11/24
    • A plasma display device is provided that can realize a stable progressive display using a plasma display panel that has a shared type arrangement form of display electrodes. A plasma display panel structure including display electrodes having a shape that has little variation of electrode area between cells and a driving sequence are combined in which the addressing step is divided into the first half and the second half. One of the first half addressing and the second half addressing is performed for a row on which the first display electrode is arranged that has an odd arrangement order when noting only the first display electrodes that are not used for row selection, and the other of the first half addressing and the second half addressing is performed for a row on which the first display electrode is arranged that has an even arrangement order.
    • 提供一种等离子体显示装置,其可以使用具有共享型布置形式的显示电极的等离子体显示面板来实现稳定的逐行显示。 包括显示电极的等离子体显示面板结构被组合,其中寻址步骤被划分为上半部分和第二半部分,该显示电极具有小区之间的电极面积变化小的驱动序列。 对于排列第一显示电极的行,仅注意不用于行选择的第一显示电极,执行具有奇数排列顺序的行中的一个,另一个 对于布置有均匀布置顺序的第一显示电极的行执行第一半寻址和第二半寻址。