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    • 2. 发明授权
    • Coil component and manufacturing method for the same
    • 线圈部件及其制造方法相同
    • US06427315B1
    • 2002-08-06
    • US09333907
    • 1999-06-16
    • Toshio KitagawaYukio Hata
    • Toshio KitagawaYukio Hata
    • H01F706
    • H01F5/04Y10T29/4902Y10T29/49071
    • A coil component and a manufacturing method for producing the same permit a wire terminal to be bonded to an electrode with high reliability by implementing thermal compression bonding using a heater chip. The coil component comprises a bobbin around which a wire is wound, the wire having a solder layer on the outer peripheral surface of a core conductor and an insulating layer formed on the outer peripheral surface of the solder layer. The wire terminal is secured to the electrode provided on the bobbin by thermal compression bonding. A heated heater chip is applied to the terminal to break the insulating layer and to melt the solder layer at substantially the same time. Then, pressure is applied to the heater chip to provide intermetallic bonding between the core conductor and the electrode. Melted solder solidifies and covers the area around the core conductor, thereby securely bonding the wire terminal to the electrode.
    • 线圈部件及其制造方法允许通过使用加热器芯片实现热压接而以高可靠性将电线端子接合到电极。 线圈部件包括卷绕线的绕线管,线在芯导体的外周面上具有焊料层,以及形成在焊料层的外周面上的绝缘层。 线端子通过热压接而固定在设置在线轴上的电极。 将加热的加热器芯片施加到端子以破坏绝缘层并且基本上同时熔化焊料层。 然后,对加热器芯片施加压力以在芯导体和电极之间提供金属间结合。 熔融焊料固化并覆盖芯导体周围的区域,从而将导线端子牢固地接合到电极。
    • 4. 发明授权
    • Coil width detecting apparatus for coil material feeding unit
    • 线圈材料供给单元线圈宽度检测装置
    • US4913367A
    • 1990-04-03
    • US360934
    • 1989-03-09
    • Yukio Hata
    • Yukio Hata
    • B21C47/16B21C47/24B21C51/00B21D43/02
    • B21C47/16B21C47/24B21C51/00B21D43/021
    • The present invention is concerned with a technique for measuring the width (l) of a strip uncoiled from a coil material (3) to be fed to a press line, wherein linear displacement of both support shafts (4) on uncoiler mechanisms (1) adapted to support the coil material (3) from both sides using a mechanism including racks (8) and a pinion (5) is converted into rotational displacement so that an amount of actual linear displacement of both the support shafts (4) represented by (L.sub.1 +L.sub.2) is detected by detecting the rotational displacement of the pinion 5. The coil width is measured by subtracting the amount of linear displacement of the pinions (5) represented by (L.sub.1 +L.sub.2) from the distance (L) between both of support shafts which can be measured when both the support shafts (4) are displaced to predetermined positions where they are displaced to the rearmost ends. This enables incorrect setting of the coil material to be checked by comparing the measured coil width (l) with the coil width data (lc) which have been poreviously inputted.
    • PCT No.PCT / JP88 / 00696 Sec。 371日期:1989年3月9日 102(e)日期1989年3月9日PCT Filed 1988年7月13日PCT公布。 出版物WO89 / 00466 日本1989年1月26日。本发明涉及一种用于测量从被供给到压制线的线圈材料(3)展开的带材的宽度(l)的技术,其中两个支撑轴(4)的线性位移 )适于使用包括齿条(8)和小齿轮(5)的机构从两侧支撑线圈材料(3)的开卷机机构(1)被转换为旋转位移,使得两个支撑件的实际线性位移量 通过检测小齿轮5的旋转位移来检测由(L1 + L2)表示的轴(4)。通过从(L1 + L2)表示的小数(5)的线性位移量减去线圈宽度 当两个支撑轴(4)移动到它们被移动到最后端的预定位置时,可以测量的两个支撑轴之间的距离(L)。 通过将测得的线圈宽度(l)与已被透过输入的线圈宽度数据(lc)进行比较,能够对要检查的线圈材料进行不正确的设定。
    • 5. 发明授权
    • Operation apparatus for press
    • 印刷机操作装置
    • US06334077B1
    • 2001-12-25
    • US09156688
    • 1998-09-18
    • Koichi FutsuharaMasayoshi SakaiIwashige TakahashiYukio Hata
    • Koichi FutsuharaMasayoshi SakaiIwashige TakahashiYukio Hata
    • G06F1900
    • B30B15/285B30B15/281
    • The present invention provides an operation apparatus for a press, of simple structure with lower cost. The operation apparatus for a press according to the present invention comprises a controlling system 1 for generating a slide actuation command signal K1 by an ON operation of an operation button or an entrance/escape detection output of a human body by a light-beam type safety apparatus and controlling slide actuation, based on a crank angle signal from an encoder 4; a monitoring system 2 for monitoring controlling operation of the controlling system 1, including slide overrun monitoring function and the like, utilizing operation button ON signal T, operation button-OFF signal /T or the detection output from the light-beam type safety apparatus, position signals Pa and Pb indicative of slide elevating process and slide lowering process, respectively, position signal Ph from a light-beam type safety apparatus, and slide actuation command OFF signal /K1; and an AND gate 3 for generating a slide actuation signal S based on the slide actuation command signal K1 from the controlling system 1, only when the normality judgment signals K2, K3 are being generated from the monitoring system 2.
    • 本发明提供一种压机的操作装置,结构简单,成本较低。 根据本发明的按压操作装置包括控制系统1,用于通过操作按钮的ON操作或人体的入射/逃逸检测输出通过光束型安全来产生滑动致动指令信号K1 基于来自编码器4的曲柄角信号的装置和控制滑动致动; 利用操作按钮ON信号T,操作按钮OFF信号/ T或来自光束型安全装置的检测输出来监视控制系统1的控制操作的监视系统2,包括滑盖超限监视功能等, 位置信号Pa和Pb分别指示滑梯升降过程和滑落降低过程,来自光束型安全装置的位置信号Ph和滑动致动指令OFF信号/ K1; 以及仅在从监视系统2生成正常判定信号K2,K3时,根据来自控制系统1的滑动致动指令信号K1,生成滑动致动信号S的与门3。
    • 6. 发明授权
    • Servo press control system and servo press control method
    • 伺服压力控制系统及伺服压力控制方式
    • US07434505B2
    • 2008-10-14
    • US11575210
    • 2005-09-02
    • Yuichi SuzukiYukio Hata
    • Yuichi SuzukiYukio Hata
    • B30B15/26
    • B30B15/148B30B1/14
    • High production processing and high accuracy processing are selectively performed with a single press. To this end, there are provided a system and method for controlling a servo press 1 in which an eccentric rotation mechanism 20 is driven by a servo motor 21 and the rotating power of the eccentric rotation mechanism 20 is transmitted to a slide 3 through a toggle linkage 15, thereby vertically moving the slide 3. In the control system and method, the rotation of the servo motor 21 is controlled in response to a motor speed command rm calculated based on the deviation ε p of the position of the slide 3 and a positional gain G(θ) preset according to a speed ratio of the slide 3.
    • 通过单次压机选择性地进行高生产加工和高精度加工。 为此,提供了一种用于控制伺服压力机1的系统和方法,其中偏心旋转机构20由伺服电动机21驱动,偏心旋转机构20的旋转动力通过肘节 从而使滑块3垂直移动。在控制系统和方法中,响应于基于滑块3的位置的偏差εp计算出的电动机速度指令rm来控制伺服电机21的旋转, 根据滑块3的速比预先设定位置增益G(θ)。
    • 8. 发明申请
    • Servo Press Control System and Servo Press Control Method
    • 伺服压力控制系统和伺服压力控制方法
    • US20080034985A1
    • 2008-02-14
    • US11575210
    • 2005-09-02
    • Yuichi SuzukiYukio Hata
    • Yuichi SuzukiYukio Hata
    • B30B15/14
    • B30B15/148B30B1/14
    • High production processing and high accuracy processing are selectively performed with a single press. To this end, there are provided a system and method for controlling a servo press 1 in which an eccentric rotation mechanism 20 is driven by a servo motor 21 and the rotating power of the eccentric rotation mechanism 20 is transmitted to a slide 3 through a toggle linkage 15, thereby vertically moving the slide 3. In the control system and method, the rotation of the servo motor 21 is controlled in response to a motor speed command rm calculated based on the deviation ε p of the position of the slide 3 and a positional gain G(θ) preset according to a speed ratio of the slide 3.
    • 通过单次压机选择性地进行高生产加工和高精度加工。 为此,提供了一种用于控制伺服压力机1的系统和方法,其中偏心旋转机构20由伺服电动机21驱动,偏心旋转机构20的旋转动力通过肘节 从而使滑块3垂直移动。在控制系统和方法中,响应于基于滑块3的位置的偏差εp计算出的电动机速度指令rm来控制伺服电机21的旋转, 根据滑块3的速比预先设定位置增益G(θ)。