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    • 1. 发明申请
    • METHOD FOR CORRECTING HIGH-FREQUENCY CHARACTERISTIC ERROR OF ELECTRONIC COMPONENT
    • 校正电子元件高频特性误差的方法
    • US20100017669A1
    • 2010-01-21
    • US12474389
    • 2009-05-29
    • NAOKI FUJIIGaku KamitaniTaichi Mori
    • NAOKI FUJIIGaku KamitaniTaichi Mori
    • H03M13/00G06F11/07
    • G01R35/005G01R27/28
    • An electronic-component high-frequency characteristic error correcting method for allowing a calibration work to be performed on a two-terminal impedance component using the same correction-target measuring system as that used in actual measurement. At least three correction data acquisition samples having different high-frequency characteristics are measured by a reference measuring system and an actual measuring system. An equation for associating the value measured by the actual measuring system with the value measured by the reference measuring system using an error correction coefficient of a transmission line is determined. A given electronic component is measured by the actual measuring system. An estimated high-frequency characteristic value of the electronic component obtained when the electronic component is measured by the reference measuring system is calculated using the determined equation.
    • 一种电子部件高频特性误差校正方法,用于使用与实际测量中使用的相同的校正目标测量系统,对两端子阻抗分量进行校准工作。 通过参考测量系统和实际测量系统来测量具有不同高频特性的至少三个校正数据采集样本。 确定将由实际测量系统测量的值与由参考测量系统测量的值相关联的方程式,使用传输线的误差校正系数。 给定的电子元件由实际测量系统测量。 使用所确定的方程来计算通过基准测量系统测量电子部件时获得的电子部件的估计高频特性值。
    • 2. 发明授权
    • Method for correcting high-frequency characteristic error of electronic component
    • 电子元件高频特性误差校正方法
    • US08423868B2
    • 2013-04-16
    • US12474389
    • 2009-05-29
    • Naoki FujiiGaku KamitaniTaichi Mori
    • Naoki FujiiGaku KamitaniTaichi Mori
    • H03M13/00
    • G01R35/005G01R27/28
    • An electronic-component high-frequency characteristic error correcting method for allowing a calibration work to be performed on a two-terminal impedance component using the same correction-target measuring system as that used in actual measurement. At least three correction data acquisition samples having different high-frequency characteristics are measured by a reference measuring system and an actual measuring system. An equation for associating the value measured by the actual measuring system with the value measured by the reference measuring system using an error correction coefficient of a transmission line is determined. A given electronic component is measured by the actual measuring system. An estimated high-frequency characteristic value of the electronic component obtained when the electronic component is measured by the reference measuring system is calculated using the determined equation.
    • 一种电子部件高频特性误差校正方法,用于使用与实际测量中使用的相同的校正目标测量系统,对两端子阻抗分量进行校准工作。 通过参考测量系统和实际测量系统来测量具有不同高频特性的至少三个校正数据采集样本。 确定将由实际测量系统测量的值与由参考测量系统测量的值相关联的方程式,使用传输线的误差校正系数。 给定的电子元件由实际测量系统测量。 使用所确定的方程来计算通过基准测量系统测量电子部件时获得的电子部件的估计高频特性值。
    • 3. 发明申请
    • MEASUREMENT ERROR CORRECTING METHOD AND ELECTRONIC COMPONENT CHARACTERISTIC MEASUREMENT DEVICE
    • 测量误差校正方法和电子元件特性测量装置
    • US20070084035A1
    • 2007-04-19
    • US11563338
    • 2006-11-27
    • Taichi MoriGaku KamitaniHiroshi Tomohiro
    • Taichi MoriGaku KamitaniHiroshi Tomohiro
    • B23Q17/00
    • G01R35/005G01R27/32Y10T29/49764
    • A measurement error correcting method and electronic component characteristic measuring device capable of accurately coping with an electronic component which includes nonsignal line ports and whose electrical characteristics are changed by a jig. The method includes the steps of measuring an electrical characteristic, with correcting-data-acquisition samples mounted on a test jig enabling measuring nonsignal line ports, and the samples mounted on a reference jig in which nonsignal line ports cannot be measured; measuring a through device in which a signal line port and a nonsignal line port are electrically connected to each other, with the through device mounted on the test jig, and the through device mounted on the reference jig; determining a numerical expression for calculating, from results of measurement with the through device mounted on the test jig, an estimated electrical characteristic value obtained with the through device mounted on the reference jig; measuring an arbitrary electronic component, with the electronic component mounted on the test jig; and calculating the estimated electrical characteristic value obtained with the through device mounted on the reference jig.
    • 一种测量误差校正方法和电子部件特性测量装置,其能够精确地处理包括非信号线端口并且通过夹具改变其电特性的电子部件。 该方法包括以下步骤:利用安装在能够测量非信号线端口的测试夹具上的校正数据采集样本以及安装在不能测量非信号线端口的参考夹具上的样本的测量电特性; 测量通过装置,其中信号线端口和非信号线端口彼此电连接,穿通装置安装在测试夹具上,并且穿通装置安装在参考夹具上; 根据安装在测试夹具上的通过装置的测量结果,确定用安装在参考夹具上的通过装置获得的估计电特性值来计算数值表达式; 测量任意电子部件,电子部件安装在测试夹具上; 并计算通过安装在参考夹具上的贯穿装置获得的估计电特性值。
    • 4. 发明授权
    • Measurement error correcting method and electronic component characteristic measurement device
    • 测量误差校正方法和电子元件特性测量装置
    • US07885779B2
    • 2011-02-08
    • US11563338
    • 2006-11-27
    • Taichi MoriGaku KamitaniHiroshi Tomohiro
    • Taichi MoriGaku KamitaniHiroshi Tomohiro
    • G01R35/00
    • G01R35/005G01R27/32Y10T29/49764
    • A measurement error correcting method and electronic component characteristic measuring device capable of accurately coping with an electronic component which includes nonsignal line ports and whose electrical characteristics are changed by a jig. The method includes the steps of measuring an electrical characteristic, with correcting-data-acquisition samples mounted on a test jig enabling measuring nonsignal line ports, and the samples mounted on a reference jig; measuring a through device in which a signal line port and a nonsignal line port are electrically connected to each other; determining a numerical expression for calculating, from results of measurement on the test jig, an estimated electrical characteristic value obtained on the reference jig; measuring an arbitrary electronic component, on the test jig; and calculating the estimated electrical characteristic value obtained on the reference jig.
    • 一种测量误差校正方法和电子部件特性测量装置,其能够精确地处理包括非信号线端口并且通过夹具改变其电特性的电子部件。 该方法包括以下步骤:利用安装在能够测量非信号线端口的测试夹具上的校正数据采集样本以及安装在参考夹具上的样品来测量电特性; 测量其中信号线端口和非信号线端口彼此电连接的贯穿装置; 确定用于根据测试夹具上的测量结果计算在参考夹具上获得的估计电特性值的数值表达式; 在测试夹具上测量任意电子部件; 并计算在参考夹具上获得的估计电特性值。
    • 5. 发明申请
    • SILENCER COVER FOR SADDLE-RIDE TYPE VEHICLE
    • 用于四轮式车辆的遮阳罩
    • US20100193285A1
    • 2010-08-05
    • US12637366
    • 2009-12-14
    • Taichi MoriHayato YamazakiMasashi Koyanagi
    • Taichi MoriHayato YamazakiMasashi Koyanagi
    • F01N13/00
    • F01N13/1811F01N13/1838F01N2260/20F01N2590/04
    • A silencer cover adapts to a heat expansion of a silencer even when, for example, the silencer cover has a large size and is attached to the silencer over an area from the front to the rear. A silencer cover is provided for a silencer connected to a downstream end of an exhaust pipe of an engine. The silencer cover is fixed to a fixing support provided to the silencer. The silencer is heat-expanded with the fixing support part fixed as a base. The fixing support part is provided at a front end portion, in a vehicle front-rear direction, of the silencer. With a tail pipe constituting a rear end portion of the silencer, the rear end portion of the silencer is provided with a slide structure in which the silencer cover is slidably supported.
    • 即使例如消音器盖具有较大的尺寸并且在从前到后的区域上连接到消声器上,消音器盖也适应于消音器的热膨胀。 提供消声器盖,用于连接到发动机的排气管的下游端的消音器。 消音器盖固定到提供给消音器的固定支架上。 消声器以固定支撑部件固定为基座进行热膨胀。 固定支撑部设置在消音器的车辆前后方向的前端部。 在构成消声器的后端部的尾管中,消音器的后端部设置有可滑动地支撑消音器盖的滑动结构。