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    • 1. 发明申请
    • Apparatus for and Method of Forming Images with Oscillation Mirror
    • 用振荡镜形成图像的装置和方法
    • US20070070483A1
    • 2007-03-29
    • US11464010
    • 2006-08-11
    • Yasumasa IshiharaYujiro NomuraAkihiro GomiKen Ikuma
    • Yasumasa IshiharaYujiro NomuraAkihiro GomiKen Ikuma
    • G02B26/08
    • G02B26/105B41J2/471
    • An image forming method which generates a video signal corresponding to an image forming command based on a video clock signal, modulates a light beam according to the video signal, and scans the modulated light beam along a main scanning direction by means of an oscillation mirror which resonates based on a drive signal, so as to form a latent image in an effective image region of a latent image carrier, the method includes: synchronizing the drive signal with the video clock signal to synchronize a detection signal with the vide clock signal, the detection signal being output from a detector which detect the light beam scanned in the main scanning direction in a region away from an effective scan region which corresponds to the effective image region; controlling a resonant frequency of the oscillation mirror based on the detection signal so that the resonant frequency of the oscillation mirror almost coincides with the frequency of the drive signal; and adjusting a position, at which the latent image is written over the latent image carrier, is adjusted by adjusting output timing of the video signal based on the detection signal from the detector.
    • 一种图像形成方法,其基于视频时钟信号产生与图像形成命令相对应的视频信号,根据视频信号调制光束,并通过振荡镜沿主扫描方向扫描调制光束, 基于驱动信号进行共振,以便在潜像载体的有效图像区域中形成潜像,该方法包括:使驱动信号与视频时钟信号同步,以使检测信号与视频时钟信号同步, 检测信号从检测在远离有效图像区域的有效扫描区域的区域中在主扫描方向上扫描的光束的检测器输出; 基于检测信号控制振荡镜的谐振频率,使得振荡反射镜的谐振频率几乎与驱动信号的频率一致; 并且通过基于来自检测器的检测信号调整视频信号的输出定时来调整在潜像载体上写入潜像的位置。
    • 2. 发明授权
    • Apparatus for and method of forming images with oscillation mirror
    • 用振荡镜形成图像的装置和方法
    • US07480087B2
    • 2009-01-20
    • US11464010
    • 2006-08-11
    • Yasumasa IshiharaYujiro NomuraAkihiro GomiKen Ikuma
    • Yasumasa IshiharaYujiro NomuraAkihiro GomiKen Ikuma
    • G02B26/08B41J2/435
    • G02B26/105B41J2/471
    • An image forming method which generates a video signal corresponding to an image forming command based on a video clock signal, modulates a light beam according to the video signal, and scans the modulated light beam along a main scanning direction by means of an oscillation mirror which resonates based on a drive signal, so as to form a latent image in an effective image region of a latent image carrier, the method includes: synchronizing the drive signal with the video clock signal to synchronize a detection signal with the vide clock signal, the detection signal being output from a detector which detect the light beam scanned in the main scanning direction in a region away from an effective scan region which corresponds to the effective image region; controlling a resonant frequency of the oscillation mirror based on the detection signal so that the resonant frequency of the oscillation mirror almost coincides with the frequency of the drive signal; and adjusting a position, at which the latent image is written over the latent image carrier, is adjusted by adjusting output timing of the video signal based on the detection signal from the detector.
    • 一种图像形成方法,其基于视频时钟信号产生与图像形成命令相对应的视频信号,根据视频信号调制光束,并通过振荡镜沿主扫描方向扫描调制光束, 基于驱动信号进行共振,以便在潜像载体的有效图像区域中形成潜像,该方法包括:使驱动信号与视频时钟信号同步,以使检测信号与视频时钟信号同步, 检测信号从检测在远离有效图像区域的有效扫描区域的区域中在主扫描方向上扫描的光束的检测器输出; 基于检测信号控制振荡镜的谐振频率,使得振荡反射镜的谐振频率几乎与驱动信号的频率一致; 并且通过基于来自检测器的检测信号调整视频信号的输出定时来调整在潜像载体上写入潜像的位置。
    • 5. 发明授权
    • Optical velocity measuring apparatus of non-contact measurement type
    • 非接触式测量型光学速度测量装置
    • US4329047A
    • 1982-05-11
    • US114598
    • 1980-01-23
    • Tetsuro KikuchiHideaki SasayaYasumasa Ishihara
    • Tetsuro KikuchiHideaki SasayaYasumasa Ishihara
    • G01P3/36G01P3/80
    • G01P3/806
    • An optical velocity measuring apparatus applicable to measurement of the velocity of a vehicle relative to the road. A pair of light sensors mounted on the bottom of the vehicle body spaced from each other in a direction of the movement of the vehicle respectively receive rays of light reflected from different spots on the road through an optical system and produce electric signals indicative of the surface conditions of the spots. A time lag from the detection of a particular spot by the forward light sensor until the backward light sensor detects the same spot is measured to determine the velocity of the vehicle. The optical system is comprised of first and second lenses each having a peripheral portion cut away by a plane parallel to the optical axis. The first and second lenses are aligned so that the cut away faces are in contact with each other and that the optical axes are in parallel to and spaced a predetermined distance from each other.
    • 一种适用于测量车辆相对于道路的速度的光学速度测量装置。 安装在车身底部上的一对光传感器在车辆运动方向上彼此间隔开的方向分别通过光学系统接收从道路上的不同点反射的光线,并产生指示表面的电信号 斑点状况。 通过前方光传感器检测到特定光点直到向后光传感器检测到同一光点为止的时间滞后,以确定车辆的速度。 光学系统由第一透镜和第二透镜组成,每个透镜具有由与光轴平行的平面切除的周边部分。 第一透镜和第二透镜被对准,使得切割面彼此接触并且光轴彼此平行并间隔开预定的距离。