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    • 1. 发明授权
    • Active matrix display device
    • 主动矩阵显示装置
    • US08284364B2
    • 2012-10-09
    • US12765105
    • 2010-04-22
    • Ichiro YamakawaKazuhiko HorikoshiNaotoshi AkamatsuJun GotohHiroaki Asuma
    • Ichiro YamakawaKazuhiko HorikoshiNaotoshi AkamatsuJun GotohHiroaki Asuma
    • G02F1/1333
    • G02F1/136286G02F1/136213G02F1/136227
    • Provided is a technology for preventing current leak of a charge holding capacitor which constitutes a pixel of a display device so as to prevent deterioration of display image quality of the display device. The display device includes a first contact hole connecting a first wiring layer and a second wiring layer which is formed over the first wiring layer, a second contact hole connecting the second wiring layer and a third wiring layer which is formed over the second wiring layer, and an electrode layer formed between the plurality of insulating films disposed between the second wiring layer and the third wiring layer, wherein at a position in a substrate surface direction, a distance between a electrode layer and the second contact hole is larger than a distance between the electrode layer and the first contact hole.
    • 提供了一种用于防止构成显示装置的像素的电荷保持电容器的电流泄漏的技术,以防止显示装置的显示图像质量的劣化。 该显示装置包括连接第一布线层和形成在第一布线层上的第二布线层的第一接触孔,连接第二布线层的第二接触孔和形成在第二布线层上的第三布线层, 以及形成在所述第二布线层和所述第三布线层之间的所述多个绝缘膜之间的电极层,其中,在基板表面方向的位置处,电极层与所述第二接触孔之间的距离大于 电极层和第一接触孔。
    • 3. 发明申请
    • ACTIVE MATRIX DISPLAY DEVICE
    • 主动矩阵显示设备
    • US20100271582A1
    • 2010-10-28
    • US12765105
    • 2010-04-22
    • Ichiro YAMAKAWAKazuhiko HorikoshiNaotoshi AkamatsuJun GotohHiroaki Asuma
    • Ichiro YAMAKAWAKazuhiko HorikoshiNaotoshi AkamatsuJun GotohHiroaki Asuma
    • G02F1/1333
    • G02F1/136286G02F1/136213G02F1/136227
    • Provided is a technology for preventing current leak of a charge holding capacitor which constitutes a pixel of a display device so as to prevent deterioration of display image quality of the display device. The display device includes a first contact hole connecting a first wiring layer and a second wiring layer which is formed over the first wiring layer, a second contact hole connecting the second wiring layer and a third wiring layer which is formed over the second wiring layer, and an electrode layer formed between the plurality of insulating films disposed between the second wiring layer and the third wiring layer, wherein at a position in a substrate surface direction, a distance between a electrode layer and the second contact hole is larger than a distance between the electrode layer and the first contact hole.
    • 提供了一种用于防止构成显示装置的像素的电荷保持电容器的电流泄漏的技术,以防止显示装置的显示图像质量的劣化。 该显示装置包括连接第一布线层和形成在第一布线层上的第二布线层的第一接触孔,连接第二布线层的第二接触孔和形成在第二布线层上的第三布线层, 以及形成在所述第二布线层和所述第三布线层之间的所述多个绝缘膜之间的电极层,其中,在基板表面方向的位置处,电极层与所述第二接触孔之间的距离大于 电极层和第一接触孔。
    • 4. 发明申请
    • Steering member unit
    • 转向构件单元
    • US20090211837A1
    • 2009-08-27
    • US12379474
    • 2009-02-23
    • Hitoshi SuzukiFumihiro OkazakiTakeshi AnzaiKazuhiko Horikoshi
    • Hitoshi SuzukiFumihiro OkazakiTakeshi AnzaiKazuhiko Horikoshi
    • B62D5/04
    • B62D25/145
    • The present invention provides a steering member unit including: a metal steering member body disposed to extend substantially in a vehicle width direction; metal side brackets that are fixed respectively to both ends of the steering member body and are attachable respectively to vehicle, body side parts; and a metal stay that is fixed to an intermediate part of the steering member body and is attachable to a vehicle body floor. In an intermediate part of the steering member body, multiple ground current connecting members connectable to a vehicle body metal part are provided at intervals in a longitudinal direction (vehicle width direction) of the steering member body. Thereby, a resonance frequency of resonance of a wavelength depending on a distance in a magnetic field generated by a current flowing into the steering member body can be changed and adjusted.
    • 本发明提供一种转向构件单元,包括:金属转向构件体,其设置成基本上沿车辆宽度方向延伸; 金属侧支架分别固定在转向构件主体的两端,并可分别安装在车身,车体侧部分上; 以及固定在转向构件主体的中间部分并且可附接到车体地板的金属支架。 在转向构件体的中间部分,在转向构件主体的纵向(车辆宽度方向)上间隔设置有可连接到车体金属部的多个地电流连接构件。 由此,可以改变和调整由流过转向构件主体的电流产生的磁场中的距离的波长的共振频率。
    • 7. 发明授权
    • Fast-responsive electromagnetic balance-type weighing apparatus
    • 快速响应电磁平衡式称重装置
    • US5367128A
    • 1994-11-22
    • US678334
    • 1991-05-08
    • Fumihiro TsukasaHideya FujimotoKazuhiko HorikoshiOsamu TanakaKunio Kikuchi
    • Fumihiro TsukasaHideya FujimotoKazuhiko HorikoshiOsamu TanakaKunio Kikuchi
    • G01G7/04G01G1/38G01G3/14
    • G01G7/04
    • A novel electromagnetic balance-type weighing apparatus according to the invention includes a weighing pan/balance beam assembly (15) whose balance beam is angularly displaced as a function of the weight of an object of weighing placed on the weighing pan. An electromagnetic coil (9) is provided to generate an electromagnetic force that offsets the displacement of the balance beam of the weighing pan/balance beam assembly (15) caused by the weight of the object of weighing. A displacement detector (3, 4, 5) is provided to detect the displacement of the balance beam of the weighing pan/balance beam assembly (15). An operation unit (7) performs operations to determine a control voltage in response to the detection signal transmitted from the displacement detector (3, 4, 5). A current transducer circuit (20) generates an electric current in response to the control voltage applied to it by the operation unit (7) and supplies it to the electromagnetic coil (9). The current transducer circuit (20) comprises a negative feedback loop circuit for feeding the output current from said current transducer circuit (20) back to the input terminal of the current transducer circuit (20). A weight calculator (24) calculates the weight of the object of weighing from the output current of the current transducer circuit (20).
    • PCT No.PCT / JP90 / 01639 Sec。 371日期1991年5月8日 102(e)日期1991年5月8日PCT 1990年12月15日PCT PCT。 公开号WO91 / 11688 日本1991年8月8日。根据本发明的新型电磁平衡型计量装置包括称重盘/平衡梁组件(15),其平衡梁作为与放置在所述秤上的称重物体的重量有关的角度位移 秤盘 提供电磁线圈(9)以产生电磁力,其抵消由称重物体的重量引起的称重盘/平衡梁组件(15)的平衡梁的位移。 设置位移检测器(3,4,5)以检测称重盘/平衡梁组件(15)的平衡梁的位移。 操作单元(7)执行响应于从位移检测器(3,4,5)发送的检测信号来确定控制电压的操作。 电流传感器电路(20)响应于由操作单元(7)施加到其上的控制电压产生电流并将其提供给电磁线圈(9)。 电流传感器电路(20)包括用于将来自所述电流传感器电路(20)的输出电流馈送回电流传感器电路(20)的输入端的负反馈环路电路。 权重计算器(24)根据当前换能器电路(20)的输出电流来计算称重对象的权重。
    • 10. 发明授权
    • Mass spectrometer and mass spectrometry method
    • 质谱仪和质谱法
    • US08742332B2
    • 2014-06-03
    • US12952453
    • 2010-11-23
    • Kazuhiko HorikoshiNaotoshi Akamatsu
    • Kazuhiko HorikoshiNaotoshi Akamatsu
    • H01J49/00
    • H01J49/16
    • A mass spectrometer and a mass spectrometry method adapted for mass spectrometry of a hardly volatile minuscule organic foreign matter of several μm often causing a device defect are disclosed. A sample gasified by a sample heating probe is introduced into an ion source, and the sample thus ionized is detected by being separated in accordance with the mass-to-charge ratio. In this mass spectrometry technique, the sample heating probe is covered with a cylindrical gas guide mechanism, and the gasified sample is led efficiently to the ion source by the gas guide mechanism, thereby making possible the contribution by the sample components which otherwise might be dispersed and wasted in the prior art. As a result, the mass spectrometry with higher sensitivity and S/N than in the prior art is realized.
    • 公开了一种质谱仪和质谱法,其适用于容易造成器件缺陷的几微米的几乎不易挥发的微小有机杂质的质谱。 将由样品加热探针气化的样品引入离子源中,通过根据质荷比分离来检测如此离子化的​​样品。 在该质谱技术中,样品加热探针被圆柱形气体引导机构覆盖,气化样品通过气体引导机构有效地被引导到离子源,从而使可能被分散的样品成分的贡献成为可能 并浪费在现有技术中。 结果,实现了比现有技术更高的灵敏度和S / N的质谱。