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    • 8. 发明申请
    • Displacement detection apparatus and displacement detection method
    • 位移检测装置和位移检测方法
    • US20050258826A1
    • 2005-11-24
    • US11127311
    • 2005-05-12
    • Mitsunari KanoAkira MoriItsuki HayashiMuneharu Nakabayashi
    • Mitsunari KanoAkira MoriItsuki HayashiMuneharu Nakabayashi
    • G01B7/00G01D5/20G01D5/243H03K17/95G01B7/14G01P3/44G01P9/00
    • G01D5/2013G01D5/243
    • Improving reducing or eliminating the effects of variation in characteristics of the resonance circuit in a resonance type displacement detection apparatus, so as to improve displacement detection accuracy. In a displacement detection system 10, the resonance frequency range assumable by the resonance circuit 21 is estimated in advance, there is determined a drive frequency variation range f1-f2 such that the estimated resonance frequency range is included therein, and by means of a variable oscillator 30, drive frequency is repeatedly varied between the first frequency f1 and the second frequency f2. Accordingly, where the resonance frequency of the resonance circuit 21 is fr1, when the drive frequency has changed to fr1, resonance voltage Vgl1 may be obtained in the case of large gap G. Where the resonance frequency of the resonance circuit 21 is fr2, when the drive frequency has changed to fr2, resonance voltage Vgl2 may be obtained in the case of large gap G.
    • 改善谐振型位移检测装置中降低或消除谐振电路特性变化的影响,从而提高位移检测精度。 在位移检测系统10中,由谐振电路21假设的谐振频率范围预先进行估计,确定驱动频率变化范围f 1 -f 2,使得估计谐振频率范围包括在其中,并且借助于 可变振荡器30,驱动频率在第一频率f 1和第二频率f 2之间重复变化。 因此,在谐振电路21的谐振频率为fr 1的情况下,当驱动频率变为fr1时,在间隙G大的情况下,可以获得谐振电压Vgl1。在谐振电路21的谐振频率为 fr 2时,当驱动频率变为fr 2时,在间隙G大的情况下,可以获得谐振电压Vgl 2。
    • 9. 发明授权
    • Method of driving multiple chip CCD image sensor
    • 多芯片CCD图像传感器的驱动方法
    • US4939578A
    • 1990-07-03
    • US286829
    • 1988-12-20
    • Mitsunari Kano
    • Mitsunari Kano
    • G06K9/20G06T1/00H04N1/028H04N1/19H04N1/40
    • H04N3/1593H04N1/40056
    • In a method of driving an image sensor comprised of a plurality of image sensor chips to sequentially deliver image outputs from the image sensor chips, start signals are initially applied to all of the image sensor chips at the beginning of the drive timing, a shift clock is applied to only each one of the plurality of image sensor chips which is so selected as to deliver an image output, and image outputs are picked up from the individual image sensor chips by sequentially applying shift clocks to selected image sensor chips so as to provide a continuous sensor output signal, whereby no noise is superimposed on the sensor output signal and the quality of images in the image reader, facsimile equipment, OCR equipment and the like can be improved.
    • 在驱动由多个图像传感器芯片组成的图像传感器以顺序地从图像传感器芯片传送图像输出的方法中,开始信号在驱动定时开始时被初始地施加到所有的图像传感器芯片,移位时钟 仅应用于选择为输出图像输出的多个图像传感器芯片中的每一个,并且通过对所选择的图像传感器芯片顺序地应用移位时钟从各个图像传感器芯片拾取图像输出,从而提供 连续的传感器输出信号,由此在传感器输出信号上不叠加噪声,并且可以提高图像读取器,传真设备,OCR设备等中的图像质量。
    • 10. 发明授权
    • Paper quality discriminating machine
    • 纸质鉴别机
    • US07167247B2
    • 2007-01-23
    • US10417266
    • 2003-04-17
    • Toshiro UemuraYoshitaka TakezawaMitsunari KanoEiji MizunoToshiaki Nakamura
    • Toshiro UemuraYoshitaka TakezawaMitsunari KanoEiji MizunoToshiaki Nakamura
    • G01N21/00G01N21/55G01N21/86G06K9/74G06K9/00G01V8/00
    • G07D7/1205
    • The technique of the present invention enhances the stability of paper material identification of sheets. To achieve the above purpose, both short-wavelength light in the range of 370 nm and long-wavelength light in the range of 420 to 1000 nm are irradiated to paper to be identified in identifying the paper material. The identification is carried out, based on the difference in absorbance of the paper, which is obtained for each irradiated light. The absorbance of the paper varies according to the paper material, thereby enabling the identification of the paper material free from influence, which are caused by differences in manufacturing process, such as shading patterns. In addition, the simultaneous use of the short-wavelength light and the long-wavelength light declines influence on the absorbance, which are caused by environmental factors, such as humidity and deterioration of sheets, thereby resulting in stable identification of the paper material.
    • 本发明的技术提高了纸张材料识别的稳定性。 为了实现上述目的,将在370nm范围内的短波长光和420-1000nm范围内的长波长光照射在识别纸材时要识别的纸上。 基于对于每个照射的光获得的纸的吸光度差进行识别。 纸张的吸光度根据纸张材料而变化,从而能够识别由于制造过程中的差异(如阴影图案)而引起的纸张材料的影响。 此外,短波长光和长波长光的同时使用对由诸如湿度和片材劣化等环境因素引起的吸光度的影响降低,从而导致纸材的稳定识别。