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    • 51. 发明授权
    • Optical detection device, and image display device
    • 光学检测装置和图像显示装置
    • US08259061B2
    • 2012-09-04
    • US12822511
    • 2010-06-24
    • Toshihiko OmiIsamu FujiiSatoshi MachidaToshiyuki Uchida
    • Toshihiko OmiIsamu FujiiSatoshi MachidaToshiyuki Uchida
    • G09G3/36
    • H01L27/14645G01J1/02G01J1/0488G01J1/18G01J1/4228G01J1/44H01L27/14621H04N5/37457
    • Provided is a photodetection device which is small in size and has excellent sensitivity. A photodetection device puts cathode terminals of photodiodes having different spectral characteristics into an open end state, and detects light intensity of a desired wavelength region according to a difference in electric charges that have been stored in those photodiodes in a given period of time. The photodiodes employ a system of storing electric charges, and hence even if a photocurrent is small, the photocurrent may be stored to obtain the electric charges required for detection, and the downsizing and high detection performance of a semiconductor device that forms the photodiodes may be achieved. Further, a wide dynamic range may be realized with an electric charge storage time being variable according to the light intensity, to intermittently drive an element required for difference detection at the time of difference detection so as to suppress electric power consumption, or to average the output so as to reduce flicker.
    • 提供了一种尺寸小且灵敏度高的光检测装置。 光检测装置将具有不同光谱特性的光电二极管的阴极端子设置为开放状态,并且根据在给定时间段内存储在那些光电二极管中的电荷的差异来检测期望波长区域的光强度。 光电二极管使用存储电荷的系统,因此即使光电流小,也可以存储光电流以获得检测所需的电荷,并且形成光电二极管的半导体器件的小型化和高检测性能可以是 实现了 此外,可以通过根据光强度可变的电荷存储时间来实现宽的动态范围,以间歇地驱动差分检测时的差异检测所需的元件,以便抑制电力消耗,或者使 输出以减少闪烁。
    • 52. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20110206423A1
    • 2011-08-25
    • US13029391
    • 2011-02-17
    • Narumi SUGITAToshiyuki UchidaYohei MiuraKeisuke Sugiyama
    • Narumi SUGITAToshiyuki UchidaYohei MiuraKeisuke Sugiyama
    • G03G15/20
    • G03G15/0131G03G15/1615G03G15/5054G03G15/5058G03G2215/00059G03G2215/0132G03G2215/0161
    • An image forming apparatus includes: a first image carrier; a first image forming unit that forms an image; an intermediate transfer belt; a primary transfer unit that primarily transfers the image onto the intermediate transfer belt; a secondary transfer unit that secondarily transfers the image transferred further onto a recording medium; a second image carrier that transfers the image onto the recording medium; a second image forming unit that forms an image on the second image carrier; a direct transfer unit that directly transfers the image onto the recording medium; a recording medium carriage belt, and a driving roller that drives the recording medium carriage belt; a speed fluctuation detecting unit; and a drive control unit that controls driving of the driving roller so as to reduce the cyclic speed fluctuation of the carriage belt based on a detection result of the speed fluctuation detecting unit.
    • 一种图像形成装置包括:第一图像载体; 形成图像的第一图像形成单元; 中间转印带; 主要转印单元,其主要将图像转印到中间转印带上; 二次传送单元,其二次传送进一步传送到记录介质上的图像; 将图像传送到记录介质上的第二图像载体; 第二图像形成单元,其在所述第二图像载体上形成图像; 将图像直接传送到记录介质上的直接传送单元; 记录介质托架带和驱动记录介质托架带的驱动辊; 速度波动检测单元; 以及驱动控制单元,其基于速度波动检测单元的检测结果来控制驱动辊的驱动,以便减小托架带的循环速度波动。
    • 59. 发明申请
    • Comparator Circuit
    • 比较器电路
    • US20080197887A1
    • 2008-08-21
    • US11960284
    • 2007-12-19
    • Toshiyuki Uchida
    • Toshiyuki Uchida
    • H03K5/153
    • H03K5/249H03F3/45475H03F3/45977H03F2203/45212
    • Provided is a comparator circuit that is capable of operating at high speed and canceling an offset voltage with high precision. The comparator circuit includes a second amplifier circuit for amplifying an output of an amplifier circuit and feeding back the amplified output to an input of the amplifier circuit. When the comparator circuit samples the input voltage, the second amplifier circuit conducts feedback and increases a gain to cancel the offset. Also, when the gain of the amplifier circuit is made lower than the gain of the second amplifier circuit, and the comparator circuit compares the input voltage, the comparing operation can be conducted at high speed by separating the amplifier circuit from the feedback of the second amplifier circuit.
    • 提供了能够以高速度操作并且以高精度抵消偏移电压的比较器电路。 比较器电路包括用于放大放大器电路的输出并将放大的输出反馈到放大器电路的输入的第二放大器电路。 当比较器电路对输入电压进行采样时,第二放大器电路进行反馈并增加增益以消除偏移。 此外,当放大器电路的增益低于第二放大器电路的增益时,并且比较器电路比较输入电压,可以通过将放大器电路与第二放大器电路的反馈分离来高速地进行比较操作 放大电路。
    • 60. 发明申请
    • Image forming apparatus
    • 图像形成装置
    • US20080131168A1
    • 2008-06-05
    • US11987608
    • 2007-12-03
    • Yasuhisa EharaKazuhiko KobayashiJoh EbaraToshiyuki UchidaNoriaki FunamotoKeisuke Sugiyama
    • Yasuhisa EharaKazuhiko KobayashiJoh EbaraToshiyuki UchidaNoriaki FunamotoKeisuke Sugiyama
    • G03G15/00G03G15/01
    • G03G15/5008G03G2215/0119G03G2215/0161
    • An image forming apparatus includes at least first, second and third image carriers, a first drive source, a second drive source, at least one visible image forming mechanism for forming a visible image on the image carriers, a transfer unit for overlappingly transferring the visible images, an image detector, and a controller. The first drive source transmits a driving force to at least the first image carrier. The second drive source transmits a driving force to at least two image carriers other than the first image carrier. The controller calculates an amount of misalignment of the overlapped visible images that remain at the start timing of image formation based on the start timing of image formation after the timing correction, and separately determines driving speeds of the first and the second drive sources based on the amount of misalignment of the overlapped visible images.
    • 图像形成装置至少包括第一,第二和第三图像载体,第一驱动源,第二驱动源,用于在图像载体上形成可见图像的至少一个可视图像形成机构,用于重叠地转移可见光 图像,图像检测器和控制器。 第一驱动源将驱动力传递给至少第一图像载体。 第二驱动源将驱动力传递给除了第一图像载体之外的至少两个图像载体。 控制器基于在定时校正之后的图像形成的开始时刻,计算保持在图像形成的开始定时处的重叠的可见图像的未对准量,并且基于该第一和第二驱动源分别确定第一和第二驱动源的驱动速度 重叠的可见图像的未对准量。