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    • 1. 发明授权
    • Method for welding by magnetically driven arc
    • 磁力驱动电弧焊接方法
    • US4511784A
    • 1985-04-16
    • US485184
    • 1983-04-15
    • Hideaki MiyamoriKenji TakagiShigeru SatoFujio TakahashiMikio Ozawa
    • Hideaki MiyamoriKenji TakagiShigeru SatoFujio TakahashiMikio Ozawa
    • B23K9/08
    • B23K9/08
    • A method for welding by a magnetically driven arc, which comprises placing two objects of welding in butt formation with a small gap between the end edges thereof to form a welding line; parallelly connecting a first electric circuit comprising the two objects of welding and a cable arranged on the surface side of the two objects of welding and a second electric circuit comprising the two objects of welding and another cable arranged on the back side of the two objects of welding to a welding power source; flowing a welding current through the first and second electric circuits to produce an arc in the small gap; moving the arc along the welding line under the effect of an electromagnetic force in the direction of the welding line, the electromagnetic force being produced by the magnetic flux of magnetizing coils provided near the end edges of the two objects of welding and welding current flowing through the arc; and changing the amount of welding current flowing through the first and second electric circuits to control the electromagnetic force in the thickness direction of the two objects of welding; thereby continuously moving the arc in the thickness direction of the two objects of welding, thus uniformly heating the end edge of the two objects of welding to a welding temperature by the heat of the moving arc.
    • 一种用于通过磁力驱动的电弧进行焊接的方法,其特征在于,将两个焊接对象焊接在其端缘之间的小间隙处,形成焊接线; 平行连接包括两个焊接对象的第一电路和布置在两个焊接对象的表面侧上的电缆,以及包括两个焊接对象的第二电路和布置在两个焊接对象的背面的另一个电缆 焊接焊接电源; 使焊接电流流过第一和第二电路以在小间隙中产生电弧; 在焊接线下沿着电磁力沿着焊接线的方向沿着焊接线移动电弧,电磁力由设置在两个焊接对象的端部边缘附近的磁化线圈的磁通和流过的焊接电流产生 电弧 并且改变流过第一和第二电路的焊接电流量,以控制两个焊接对象的厚度方向上的电磁力; 从而在两个焊接对象的厚度方向上连续地移动电弧,从而通过移动电弧的热量将两个焊接对象的端部边缘均匀地加热到焊接温度。
    • 3. 发明授权
    • Checkout counter and self checkout terminal
    • 结帐柜台和自助结帐终端
    • US08037970B2
    • 2011-10-18
    • US12469725
    • 2009-05-21
    • Shigeru Sato
    • Shigeru Sato
    • A63F9/02
    • A47F9/045
    • A counter base for checkout includes a basket placing table on one side thereof to be freely raised and lowered. A driving unit can drive to raise and lower the basket placing table. A first detecting unit detects that a shopping cart enters an access area closer to the basket placing table than a predetermined range. A second detecting unit detects presence or absence of the shopping cart stopped along one side of the counter base. A control unit controls to drive, when the first detecting unit detects entrance of the shopping cart into the access area, the driving unit to move the basket placing table to a lowered position and, thereafter, controls to drive, when the second detecting unit does not detect the shopping cart stopped along the counter base, the driving unit to return the basket placing table to a raised position.
    • 用于结帐的柜台包括在其一侧的篮子放置台,以便自由地升高和降低。 驱动单元可以驱动以升高和降低篮子放置台。 第一检测单元检测到购物车进入比预定范围更靠近篮子放置台的进入区域。 第二检测单元检测在台座的一侧停止的购物车的存在或不存在。 当所述第一检测单元检测到所述购物车进入所述通道区域时,所述控制单元控制驱动所述驱动单元将所述筐放置台移动到降低位置,并且此后,当所述第二检测单元执行 没有检测到购物车沿着底座停止,驱动单元将篮子放置台返回到升起位置。
    • 5. 发明申请
    • CHECKOUT COUNTER AND SELF CHECKOUT TERMINAL
    • 检查计数器和自检终端
    • US20090288917A1
    • 2009-11-26
    • US12469725
    • 2009-05-21
    • Shigeru Sato
    • Shigeru Sato
    • A47F9/04
    • A47F9/045
    • A counter base for checkout includes a basket placing table on one side thereof to be freely raised and lowered. A driving unit can drive to raise and lower the basket placing table. A first detecting unit detects that a shopping cart enters an access area closer to the basket placing table than a predetermined range. A second detecting unit detects presence or absence of the shopping cart stopped along one side of the counter base. A control unit controls to drive, when the first detecting unit detects entrance of the shopping cart into the access area, the driving unit to move the basket placing table to a lowered position and, thereafter, controls to drive, when the second detecting unit does not detect the shopping cart stopped along the counter base, the driving unit to return the basket placing table to a raised position.
    • 用于结帐的柜台包括在其一侧的篮子放置台,以便自由地升高和降低。 驱动单元可以驱动以升高和降低篮子放置台。 第一检测单元检测到购物车进入比预定范围更靠近篮子放置台的进入区域。 第二检测单元检测在台座的一侧停止的购物车的存在或不存在。 当所述第一检测单元检测到所述购物车进入所述通道区域时,所述控制单元控制驱动所述驱动单元将所述筐放置台移动到降低位置,并且此后,当所述第二检测单元执行 没有检测到购物车沿着底座停止,驱动单元将篮子放置台返回到升起位置。
    • 9. 发明授权
    • Image reproduction device and method of image reproduction, together with information storage medium
    • 图像再现装置和图像再现方法,以及信息存储介质
    • US06597350B1
    • 2003-07-22
    • US09463759
    • 2000-03-15
    • Akihiko MoriguchiShigeru Sato
    • Akihiko MoriguchiShigeru Sato
    • G09G500
    • G09G5/008A63F2300/203G09G5/18
    • The objective of the invention is to provide an image reproduction device that can take digital data that has been subjected to analog conversion and reproduce digital data therefrom that is substantially the same as the original digital data, without using over-sampling or special hardware. An analog signal that was generated as a digital signal by an image generation device (200), but then subjected to analog conversion, and a synchronization signal from the image generation device (200) are input to an image reproduction device (100). A clock generation section (30) generates a sampling clock which has the same frequency as the dot clock used during the digital data generation, and with a suitably-adjusted phase, based on an input horizontal synchronization signal (12) together with frequency data (82) and phase data (84) as selected by a selection section (80). Digital data is reproduced from the input analog signal by an analog-digital converter (40), based on the thus generated sampling clock.
    • 本发明的目的是提供一种图像再现装置,其可以采用已经经过模拟转换的数字数据,并从其再现与原始数字数据基本相同的数字数据,而不使用过采样或特殊硬件。 通过图像生成装置(200)生成数字信号,然后进行模拟转换的模拟信号和来自图像生成装置(200)的同步信号被输入到图像再现装置(100)。 时钟生成部(30)生成与数字数据生成时使用的点时钟频率相同的采样时钟,并且根据输入的水平同步信号(12)和频率数据( 82)和由选择部分(80)选择的相位数据(84)。 基于由此产生的采样时钟,通过模数转换器(40)从输入模拟信号再现数字数据。