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    • 73. 发明申请
    • METHOD FOR IDENTIFYING EMI SOURCES IN AN ELECTRICAL SYSTEM
    • 在电气系统中识别EMI源的方法
    • US20140062502A1
    • 2014-03-06
    • US13597602
    • 2012-08-29
    • Masayoshi TakahashiHua Zeng
    • Masayoshi TakahashiHua Zeng
    • G01R29/26
    • G01R31/001G01R29/0814
    • A method for identifying EMI sources in a system having a plurality of electrical components connected together by cables wherein each set of two electrical components connected by a cable forms a potential EMI source. A plurality of antennas are positioned around the vehicle and the EMI from each antenna is measured over a plurality of frequencies and the frequencies having an EMI greater than a predetermined threshold and a measurement profile of the received EMI versus the antennas for each of the identified frequencies is created. EMI reception is then simulated for each potential EMI source and a simulation profile of the received EMI versus the antennas is plotted for each potential EMI source. The actual source of the EMI is then identified by comparing the measurement profile with the simulation profile for the potential EMI sources at each frequency to determine a match of the profiles.
    • 一种用于识别具有通过电缆连接在一起的多个电气部件的系统中的EMI源的方法,其中通过电缆连接的每组两个电气部件形成潜在的EMI源。 多个天线位于车辆周围,并且在多个频率上测量来自每个天线的EMI,并且具有大于预定阈值的EMI的频率以及所接收到的EMI与针对每个识别频率的天线的测量分布 被创建 然后为每个潜在EMI源模拟EMI接收,并为每个潜在EMI源绘制接收的EMI与天线的仿真曲线。 然后通过将测量轮廓与每个频率处的潜在EMI源的仿真曲线进行比较来确定EMI的实际来源,以确定轮廓的匹配。
    • 74. 发明申请
    • IMAGE READING APPARATUS, IMAGE FORMING APPARATUS, AND METHOD OF IMAGE READING
    • 图像读取装置,图像形成装置和图像读取方法
    • US20120075647A1
    • 2012-03-29
    • US13241402
    • 2011-09-23
    • Masayoshi Takahashi
    • Masayoshi Takahashi
    • H04N1/60
    • H04N1/48H04N1/40056
    • An image reading apparatus includes a light-emitting device having a peak wavelength that varies depending on a value of a drive current, and illuminates a document with illumination light from the light-emitting device. A light receiving unit receives a light reflected from the document when the illumination light is emitted from the light-emitting device, and converts the received reflected light into image data at a predetermined sensitivity depending on the wavelengths of the received light. A current drive circuit supplies the drive current to turn on the light-emitting device. A wavelength distribution control unit produces two or more durations each having a different value of the drive current by controlling the current drive circuit during each main scanning to the document to produce two or more durations each having a different peak wavelength in each main scanning.
    • 图像读取装置包括具有根据驱动电流的值而变化的峰值波长的发光装置,并且利用来自发光装置的照明光照射原稿。 当从发光装置发射照明光时,光接收单元接收从原稿反射的光,并且根据所接收的光的波长将接收到的反射光转换为预定灵敏度的图像数据。 电流驱动电路提供驱动电流以接通发光器件。 波长分布控制单元通过在每个主扫描期间通过控制当前驱动电路到文档以产生每个主扫描中具有不同峰值波长的两个或更多个持续时间,产生两个或更多个持续时间,每个持续时间具有不同的驱动电流值。
    • 75. 发明授权
    • Base sequence detecting electrode, base sequence detecting device and base sequence detecting method
    • 碱基序列检测电极,碱基序列检测装置和碱基序列检测方法
    • US07718048B2
    • 2010-05-18
    • US11452370
    • 2006-06-14
    • Jun OkadaKoji HashimotoMasayoshi Takahashi
    • Jun OkadaKoji HashimotoMasayoshi Takahashi
    • G01N27/327
    • C12Q1/6825C12Q2563/173C12Q2549/125
    • A conductive detecting electrode (2), first blocking molecules (21) formed so as to cover a surface of the detecting electrode (2), the first blocking molecules decreasing adsorption of an intercalating agent to the surface of the detecting electrode (2), a target-complementary probe (23) immobilized to the detecting electrode (2) via a spacer member (22) comprising straight chain organic molecules, the target-complementary probe including a base sequence complementary to a target base sequence which is an object of detection, a conductive comparison electrode (3), and second blocking molecules (31) formed so as to cover a surface of the comparison electrode (3), the second blocking molecules decreasing adsorption of an intercalating agent to the surface of the comparison electrode (3), are provided.
    • 导电检测电极(2),形成为覆盖检测电极(2)的表面的第一阻挡分子(21),第一阻挡分子减少插入剂吸附到检测电极(2)的表面, 通过包含直链有机分子的间隔构件(22)固定在检测电极(2)上的目标互补探针(23),靶互补探针包括与作为检测对象的目标碱基序列互补的碱基序列 ,导电比较电极(3)和形成为覆盖比较电极(3)的表面的第二阻挡分子(31),第二阻断分子减少插入剂吸附到比较电极(3)的表面 )。