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    • 7. 发明授权
    • Integrated lateral short circuit for a beneficial modification of current distribution structure for xMR magnetoresistive sensors
    • 用于xMR磁阻传感器的电流分布结构的有益修改的集成横向短路
    • US08373536B2
    • 2013-02-12
    • US13481183
    • 2012-05-25
    • Juergen ZimmerThomas Bever
    • Juergen ZimmerThomas Bever
    • H01C10/00
    • G01R33/09B82Y25/00G01R33/093G01R33/096H01L43/08H01L43/12Y10T29/49082Y10T29/49124Y10T29/49165Y10T428/31663
    • The invention relates to a magnetoresistive device formed to sense an externally applied magnetic field, and a related method. The magnetoresistive device includes a magnetoresistive stripe formed over an underlying, metallic layer that is patterned to produce electrically isolated conductive regions over a substrate, such as a silicon substrate. An insulating layer separates the patterned metallic layer from the magnetoresistive stripe. A plurality of conductive vias is formed to couple the isolated regions of the metallic layer to the magnetoresistive stripe. The conductive vias form local short circuits between the magnetoresistive stripe and the isolated regions of the metallic layer to alter the uniformity of a current flow therein, thereby improving the position and angular sensing accuracy of the magnetoresistive device. In an advantageous embodiment, the metallic layer is formed as electrically conductive stripes oriented at approximately a 45° angle with respect to an axis of the magnetoresistive device.
    • 本发明涉及一种用于感测外部施加的磁场的磁阻器件及其相关方法。 磁阻器件包括形成在下面的金属层上的磁阻条,其被图案化以在诸如硅衬底的衬底上产生电隔离的导电区域。 绝缘层将图案化金属层与磁阻条纹分开。 形成多个导电通孔以将金属层的隔离区域耦合到磁阻条纹。 导电通孔在磁阻条和金属层的隔离区之间形成局部短路,以改变其中的电流的均匀性,从而改善磁阻器件的位置和角度感测精度。 在有利的实施例中,金属层形成为相对于磁阻器件的轴线以大约45°角定向的导电条纹。
    • 8. 发明授权
    • Variable chip resistor
    • 可变芯片电阻
    • US07782172B2
    • 2010-08-24
    • US11991681
    • 2006-09-04
    • Torayuki Tsukada
    • Torayuki Tsukada
    • H01C10/00
    • H01C10/005H01C10/14
    • A variable chip resistor (1) of the present invention includes a resistor element (2) made of a metal plate which is in the form of a chip and has a predetermined specific resistance. Terminal electrodes (3, 4) for soldering are provided at both ends of the resistor element (2), and at least one adjustment hole (9) is formed in the resistor element (2) at a portion between the terminal electrodes (3, 4). An adjustment rod (10) is inserted into the adjustment hole (9) in close contact with the inner surface of the adjustment hole. The adjustment rod (10) is made of an electroconductive material, and its insertion depth is adjustable in the axial direction of the adjustment hole (9).
    • 本发明的可变片式电阻器(1)包括由金属板制成的电阻元件(2),该金属板是芯片形式并具有预定的电阻率。 在电阻元件(2)的两端设置用于焊接的端子电极(3,4),并且在电极元件(2)的端子电极(3)之间的部分形成有至少一个调整孔(9) 4)。 调整杆(10)与调节孔的内表面紧密接触地插入到调节孔(9)中。 调节杆(10)由导电材料制成,其插入深度可在调节孔(9)的轴向调节。
    • 9. 发明授权
    • Trimming circuit and electronic circuit
    • 微调电路和电子电路
    • US07663470B2
    • 2010-02-16
    • US11403395
    • 2006-04-13
    • Hiroyuki Kimura
    • Hiroyuki Kimura
    • H01C10/00
    • H01C10/14H01C10/06
    • A trimming circuit and an electronic circuit that decreases the resistance of an activated transistor while reducing the number of resistors. The trimming circuit includes a plurality of series-connected units. Units for respectively changing adjusting resistances of Runit/2, Runit/4, Runit/8, and Runit/16 are each formed by a transistor, a series-connected resistor circuit, which has resistance Rt and which is connected in series to the transistor, and a parallel-connected resistor circuit, which has resistance Rm and which is connected to the transistor and the series-connected resistor circuit. The resistances Rm and Rt are determined in each unit such that the difference between the resistance Rm when the transistor is off and the resistance of the entire unit when the transistor is on determines the adjusting resistance.
    • 一种微调电路和电子电路,其减少了激活的晶体管的电阻,同时减少了电阻的数量。 微调电路包括多个串联单元。 用于分别改变Runit / 2,Runit / 4,Runit / 8和Runit / 16的调节电阻的单元各自由具有电阻Rt并串联连接到晶体管的串联电阻电路晶体管形成, 以及并联连接的电阻电路,其具有电阻Rm并连接到晶体管和串联电阻电路。 在每个单元中确定电阻Rm和Rt,使得当晶体管截止时的电阻Rm与晶体管导通时整个单元的电阻之间的差异决定了调整电阻。
    • 10. 发明申请
    • SURFACE MOUNT VARIABLE RESISTOR
    • 表面安装可变电阻器
    • US20090267725A1
    • 2009-10-29
    • US12374439
    • 2007-07-19
    • Morio TadaMasanori Urayama
    • Morio TadaMasanori Urayama
    • H01C10/00
    • H01C10/48H01C10/32
    • A surface mount variable resistor meets the needs of user for front and rear terminals of an insulating substrate. The surface mount variable resistor includes an insulating substrate 1 with a variable resistor pattern 3 and electrode patterns 5 formed thereon, resistor termination terminal fittings 7 connected to the electrode patterns 5, an electrically conductive slider 15 including a sliding contact 15c that slides on the variable resistor pattern 3, and an intermediate terminal 17 that includes a rear intermediate terminal fitting portion 17a and is electrically connected to the electrically conductive slider 15. The intermediate terminal 17 includes an extended conductor portion 17c and the rear intermediate terminal fitting portion 17a integrally formed with the extended conductor portion 17c. A front intermediate terminal fitting portion 17d located between the resistor termination terminal fittings 7 is integrally formed with the extended conductor portion 17c.
    • 表面贴装可变电阻符合用户对绝缘基板的前端和后端的需求。 表面安装可变电阻器包括具有可变电阻器图案3和形成在其上的电极图案5的绝缘基板1,连接到电极图案5的电阻器端子接头7,包括在变量上滑动的滑动接触15c的导电滑块15 电阻器图案3和中间端子17,其包括后中间端子接合部分17a并且电连接到导电滑块15.中间端子17包括延伸导体部分17c和后中间端子接合部分17a, 延伸导体部分17c。 位于电阻器端子接头7之间的前中间端子接头部分17d与延伸导体部分17c整体形成。