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    • 21. 发明授权
    • Component supply method in component mounting device
    • 元件安装装置中的元件供应方法
    • US09084384B2
    • 2015-07-14
    • US13639720
    • 2011-04-13
    • Hideki Sumi
    • Hideki Sumi
    • H05K3/30B23P19/00H05K13/04
    • H05K13/0417H05K13/0215H05K13/0419
    • A method includes: detecting a splice by splicing in a tape feed process of supplying a component by pitch-feeding the carrier tape; and performing data processing of writing splice component information over in-use component information when the splice is detected, and rewriting only a number of remaining component of the in-use component information by means of the number of remaining component of the splice component information without issuing a component depletion alarm when the splice is not detected and when the number of remaining component in the in-use component information has decreased to a predetermined value.
    • 一种方法包括:通过在通过对载带进行俯仰馈送来提供部件的带馈送过程中拼接检测拼接; 并且当检测到拼接时执行将拼接分量信息写入到使用中分量信息上的数据处理,并且仅通过拼接分量信息的剩余分量的数量重写仅使用分量信息的剩余分量的数量而没有 当未检测到拼接时以及当使用中分量信息中的剩余分量的数量已经减少到预定值时发出部件耗尽报警。
    • 22. 发明申请
    • COMPONENT-MOUNTING DEVICE, COMPONENT-MOUNTING SYSTEM, AND COMPONENT-MOUNTING METHOD
    • 组件安装设备,组件安装系统和组件安装方法
    • US20120206732A1
    • 2012-08-16
    • US13503706
    • 2010-10-20
    • Hideki SumiYoshiaki Awata
    • Hideki SumiYoshiaki Awata
    • G01B11/02
    • H05K13/0061
    • A challenge to be met by the present invention is to provide a component mounting device, a component mounting system, and a component mounting method that make it possible to correctly position a substrate at a working location and mount components on the substrate even when components mounted on the substrate project outside from an end of the substrate in a direction parallel to a substrate conveyance path. When a front end portion (PbT) of a substrate (Pb) conveyed by a substrate conveyance path (13) is detected to have reached inspection light (L), operation of the substrate conveyance path (13) is immediately halted. When a front end portion (PtT) of a projecting portion H of a component (Pt) mounted on the substrate Pb is detected to have reached the inspection light (L), the substrate conveyance path (13) is activated in such a way that the substrate (Pb) moves in the direction of projection of the projecting portion (H) over a distance equivalent to a projection length (α) of the projecting portion (H) reached the inspection light (L) and is subsequently stopped, thereby positioning the substrate (Pb).
    • 本发明要解决的挑战是提供一种部件安装装置,部件安装系统和部件安装方法,其可以将基板正确地定位在工作位置并将部件安装在基板上,即使当部件安装 在基板的与基板输送路径平行的方向上从基板的端部外侧突出。 检测由基板输送路径(13)输送的基板(Pb)的前端部(PbT)到达检查光(L)时,基板输送路径(13)的动作立即停止。 检测安装在基板Pb上的成分(Pt)的突出部H的前端部(PtT)到达检查光(L)时,基板输送路径(13)被激活,使得 基板(Pb)在突出部(H)的突出方向上移动到与检测光(L)到达的突出部(H)的突出长度(α)相当的距离,并且随后停止,从而定位 底物(Pb)。
    • 23. 发明申请
    • ELECTRONIC COMPONENT MOUNTING MACHINE AND OPERATING INSTRUCTION METHOD FOR THE SAME
    • 电子元件安装机及其相关操作方法
    • US20110184548A1
    • 2011-07-28
    • US13122231
    • 2009-10-01
    • Noboru HigashiMasahiro KiharaKazuo OkamotoHidehiko WatanabeKenichi KaidaHideki SumiMichiaki Mawatari
    • Noboru HigashiMasahiro KiharaKazuo OkamotoHidehiko WatanabeKenichi KaidaHideki SumiMichiaki Mawatari
    • G06F19/00
    • H05K13/0452H05K13/0417
    • A challenge to be met by the invention is to provide an electronic component mounting machine that makes up an electronic component mounting line and that standardizes an operation input method, to thus enable lessening of work load on an operator during performance of operation input action, and an operation instruction method for use with the electronic component mounting machine. In electronic component mounting machines that make it possible for a single machine to perform a plurality of types of works by replacement of a work head to be built into a common platform according to a type of work, a production start button (42a) to a model change button (42d) are provided as common individual input parts in a basic operation command input part (42) of a display panel (4a) of an operation unit regardless of a work type. Control processing and computation processing commensurate with an operation instruction entered by way of the individual input part are performed according to a work program and a computation processing program corresponding to the work head recognized by a plug-in function.
    • 本发明要解决的一个挑战是提供组成电子部件安装线的电子部件安装机,并且使操作输入方法标准化,从而能够在执行操作输入动作期间减轻操作者的工作负荷,并且 与电子部件安装机一起使用的操作指示方法。 在电子部件安装机中,通过根据工作类型将单个机器进行多种类型的工作,通过更换要构建到公共平台中的工作头,可以将生产开始按钮(42a)设置为 在操作单元的显示面板(4a)的基本操作命令输入部分(42)中,作为公共的单独输入部件提供模型切换按钮(42d),而与工作类型无关。 根据与通过插件功能识别的工作头对应的工作程序和运算处理程序,执行与通过各个输入部输入的操作指令相对应的控制处理和计算处理。
    • 24. 发明申请
    • ELECTRONIC COMPONENT MOUNTING SYSTEM AND ELECTRONIC COMPONENT MOUNTING METHOD
    • 电子元件安装系统和电子元件安装方法
    • US20100223781A1
    • 2010-09-09
    • US12160398
    • 2006-12-27
    • Hideki Sumi
    • Hideki Sumi
    • B23P19/00
    • H05K13/0452Y10T29/53174
    • In an electronic component mounting system constituted by interconnecting a plurality of mounting apparatuses, a board ID code attached by digital data to the board is read in a board supply apparatus located in the uppermost stream and transmitted to the mounting apparatuses on the downstream side via communication means. By comparing the transmitted board ID code with mounting nonrequirement board code data (defective board code, read error code, dummy board code, etc.) preparatorily stored in a storage section in the mounting apparatus, it is determined whether or not execution of mounting operation of the board is required, and the board determined to be not required to be subjected to mounting is unloaded to the downstream side without carrying out mounting works and without line stop.
    • 在通过互连多个安装装置构成的电子部件安装系统中,在位于最上游的板供给装置中读取通过数字数据附加到板的板ID代码,并且经由通信通过下游侧的安装装置 手段。 通过将发送的板ID代码与准备存储在安装装置的存储部中的安装非要求板代码数据(缺陷板代码,读取错误代码,虚拟板代码等)进行比较,确定是否执行安装操作 需要进行安装,无需进行安装就可以将不需要安装的电路板卸载到下游侧。
    • 25. 发明授权
    • Capacitance difference detecting circuit and MEMS sensor
    • 电容差分检测电路和MEMS传感器
    • US07119550B2
    • 2006-10-10
    • US10942127
    • 2004-09-16
    • Mayo KitanoHideki SumiTsuyoshi Moribe
    • Mayo KitanoHideki SumiTsuyoshi Moribe
    • G01R27/26G01P9/04
    • G01C19/56G01D5/24G01P15/125G01P2015/084
    • Oscillators have capacitors, respectively, whose capacitances change according to an external force and generate first oscillating signals according to the capacitances. Each of the capacitors is disposed, for example, between a substrate and a mass body that is movably disposed to face the substrate and oscillates in a direction perpendicular to the substrate. A detecting unit detects a relative difference between the capacitances of the capacitors as a difference between frequencies of the first oscillating signals. An angular speed or acceleration applied in a horizontal direction of the substrate is calculated according to the frequency change detected by the detecting unit. Therefore, a capacitance difference detecting circuit and a MEMS sensor that detect a minute change in the capacitances of the two capacitors caused by the external force are formed.
    • 振荡器分别具有电容器,其电容根据外力而变化,并根据电容产生第一振荡信号。 每个电容器例如设置在基板和可移动地设置成面对基板并在垂直于基板的方向上振荡的质量体之间。 检测单元检测作为第一振荡信号的频率之间的差异的电容器的电容之间的相对差。 根据由检测单元检测到的频率变化来计算在基板的水平方向上施加的角速度或加速度。 因此,形成检测由外力引起的两个电容器的电容的微小变化的电容差检测电路和MEMS传感器。