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    • 3. 发明申请
    • COMPONENT MOUNTING METHOD
    • 组件安装方法
    • US20090088888A1
    • 2009-04-02
    • US11995166
    • 2006-08-07
    • Takeyuki KawaseYoshiyuki Hattori
    • Takeyuki KawaseYoshiyuki Hattori
    • G06F19/00B23P19/00
    • H05K13/0813H05K13/0417Y10T29/53174
    • The component mounter (100) includes a component return determination apparatus (503) being a computer device for determining whether the electronic component picked up by a suction nozzle is a component to be returned to the component supply unit based on a component type. The component return determination apparatus (503) has: a data storage unit (506) into which pick-up position information (506a), the number of remaining components (506b), component return flag information (506c) are stored; a reuse judgment unit (507) which judges whether the electronic component currently picked up by the suction nozzle is the component to be returned to the component supply unit for reuse; and a component return control unit (508) which obtains pick-up position information of the picked-up component from the pick-up position information (506a) stored in the data storage unit (506) and controls an XY robot so that the component is returned to the pick-up position.
    • 部件安装器(100)包括作为计算机装置的部件返回确定装置(503),用于基于部件类型来确定由吸嘴吸取的电子部件是否要返回到部件供应部件的部件。 分量返回确定装置(503)具有:拾取位置信息(506a),剩余分量数(506b),分量返回标志信息(506c)被存储到的数据存储单元(506) 判断当前由吸嘴吸取的电子部件是否要返回到部件供给部用于再利用的再生判定部(507) 以及从存储在数据存储单元(506)中的拾取位置信息(506a)中获取拾取组件的拾取位置信息的组件返回控制单元(508),并控制XY机器人,使得组件 返回到拾取位置。
    • 5. 发明授权
    • Vertical channel FET with super junction construction
    • 具有超结结构的垂直沟道FET
    • US07345339B2
    • 2008-03-18
    • US10872789
    • 2004-06-22
    • Hitoshi YamaguchiMikimasa SuzukiYoshiyuki Hattori
    • Hitoshi YamaguchiMikimasa SuzukiYoshiyuki Hattori
    • H01L29/76
    • H01L29/7813H01L29/0634H01L29/1095
    • A semiconductor device includes a body region, a drift region having a first part and a second part, and a trench gate electrode. The body region is disposed on the drift region. The first and second parts extend in an extending direction so that the second part is adjacent to the first part. The trench gate electrode penetrates the body region and reaches the drift region so that the trench gate electrode faces the body region and the drift region through an insulation layer. The trench gate electrode extends in a direction crossing with the extending direction of the first and second parts. The first part includes a portion near the trench gate electrode, which has an impurity concentration equal to or lower than that of the body region.
    • 半导体器件包括主体区域,具有第一部分和第二部分的漂移区域以及沟槽栅电极。 身体区域设置在漂移区域上。 第一和第二部分沿延伸方向延伸,使得第二部分与第一部分相邻。 沟槽栅电极穿透体区并到达漂移区,使得沟槽栅电极通过绝缘层面向体区和漂移区。 沟槽栅电极沿与第一和第二部分的延伸方向交叉的方向延伸。 第一部分包括沟槽栅电极附近的部分,其杂质浓度等于或低于体区的杂质浓度。
    • 9. 发明申请
    • NC hole-machining programming device
    • NC孔加工编程装置
    • US20060106486A1
    • 2006-05-18
    • US11256192
    • 2005-10-24
    • Katsunori TanakaSusumu MatsubaraYoshiyuki HattoriHiroyoshi ImazuTakashi Kamiya
    • Katsunori TanakaSusumu MatsubaraYoshiyuki HattoriHiroyoshi ImazuTakashi Kamiya
    • G06F19/00
    • G05B19/40938Y02P90/265
    • An NC hole-machining programming device according to this present invention includes: a tool information storing unit for storing tool information including types and sizes of tools used for hole machining; a form recognizing unit for extracting a cylindrical surface and conical surface as a local geometry which constitutes a hole-machining form of target objects based on CAD data; a machining method determining unit which generates a hole-machining-form pattern based on the hole-machining form detected by the form recognizing unit and determine machining methods based on the hole-machining-form patterns; a tool determining unit for selecting a tool in accordance with the machining methods determined by the machining method determining unit with reference to the tool information; a tool path determining unit which determines a tool path for each tool selected by the tool determining unit; and an NC program generating unit which generates a NC programs based on the tool paths determined by the tool path determining unit.
    • 根据本发明的NC孔加工编程装置包括:刀具信息存储单元,用于存储包括用于孔加工的刀具的类型和尺寸的刀具信息; 一种用于根据CAD数据提取圆柱形表面和圆锥形表面作为构成目标对象的孔加工形式的局部几何形状的形式识别单元; 加工方法确定单元,其基于由所述形状识别单元检测到的孔加工形式产生孔加工形式图案,并且基于所述孔加工形式图案确定加工方法; 工具确定单元,用于参照所述工具信息,根据由所述加工方法确定单元确定的加工方法来选择工具; 刀具路径确定单元,其确定由所述刀具确定单元选择的每个刀具的刀具路径; 以及NC程序生成单元,其基于由刀具路径判定单元确定的刀具路径生成NC程序。
    • 10. 发明申请
    • Colliding obstacle detection apparatus for vehicle
    • 车辆碰撞障碍物检测装置
    • US20050154530A1
    • 2005-07-14
    • US11007303
    • 2004-12-09
    • Toshio HosokawaTetsuya TakafujiYoshiyuki Hattori
    • Toshio HosokawaTetsuya TakafujiYoshiyuki Hattori
    • B60R21/34B60R19/48B60R21/01B60R21/0134G06F17/00
    • B60R21/013B60R19/483B60R21/0134B60R21/34
    • The present colliding obstacle detection apparatus comprises a pedestrian bumper, which is supported below a front bumper of the vehicle by a body of the vehicle, at least one collision detector, which is located on the pedestrian bumper, and a control circuit, which determines whether the collision has actually occurred based on a detection signal outputted by the at least one collision detector. The front end of the pedestrian bumper vertically aligns with or extending ahead of that of the front bumper. The at least one collision detector detects one of a collision of the pedestrian bumper with an obstacle, and a presence of the obstacle in a close proximity to the pedestrian bumper. When the control circuit determines that the collision has actually occurred, the circuit activates a colliding obstacle protector for protecting the obstacle, especially a pedestrian.
    • 本发明的碰撞障碍物检测装置包括行人保险杠,该行人保险杠由车身的主体支撑在车辆的前保险杠下方,位于行人保险杠上的至少一个碰撞检测器,以及控制电路,其确定是否 实际上基于由至少一个碰撞检测器输出的检测信号发生碰撞。 行人保险杠的前端垂直对准或延伸到前保险杠前方。 所述至少一个碰撞检测器检测到所述行人保险杠与障碍物的碰撞中的一个以及所述障碍物与所述行人保险杠紧邻的存在。 当控制电路确定实际发生碰撞时,电路激活碰撞障碍物保护器,用于保护障碍物,特别是行人。