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    • 2. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20070229647A1
    • 2007-10-04
    • US11691724
    • 2007-03-27
    • Yuuzou KAWANOKouhei SUYAMAKazuo NISHIMURAYuuji TOYOMURA
    • Yuuzou KAWANOKouhei SUYAMAKazuo NISHIMURAYuuji TOYOMURA
    • B41J2/435
    • B41J2/45G06K15/1209G06K15/1247
    • When a driving current value of at least one light emitting element (an organic EL element) has reached a correction limit current value, a controller CPU of a controller constituting a light intensity correcting unit does not correct the light intensity of the light emitting element. Alternatively, the controller CPU may correct the light intensity of the light emitting elements other than a reference light emitting element on the basis of the light intensity of the reference light emitting element using the light element of which the driving current value is greatest as the reference light emitting element. Alternatively, the controller CPU may correct the light intensity of the light emitting elements other than a reference light emitting element on the basis of the light intensity of the reference light emitting element, using the light emitting element of which the light intensity is smallest when the entire light emitting elements are driven with the same driving condition as the reference light emitting element.
    • 当至少一个发光元件(有机EL元件)的驱动电流值已经达到校正极限电流值时,构成光强度校正单元的控制器的控制器CPU不校正发光元件的光强度。 或者,控制器CPU可以基于使用驱动电流值最大的光元件作为参考的基准发光元件的光强度来校正除参考发光元件之外的发光元件的光强度 发光元件。 或者,控制器CPU可以使用光强度最小的发光元件,基于参考发光元件的光强度来校正除参考发光元件之外的发光元件的光强度 整个发光元件以与参考发光元件相同的驱动条件被驱动。
    • 5. 发明授权
    • Touch screen device
    • 触摸屏设备
    • US08373671B2
    • 2013-02-12
    • US12965031
    • 2010-12-10
    • Takashi KitadaHaruhiko KohnoYuuji Toyomura
    • Takashi KitadaHaruhiko KohnoYuuji Toyomura
    • G09G5/00
    • G06F3/045G06F3/0416
    • Touch positions can be detected with a high accuracy. A receiver receives a charge-discharge current signal of a receiving electrode in response to a drive (pulse) signal applied to a transmission electrode, and outputs a level signal of each electrode intersection. The receiver includes an IV converter that converts the charge-discharge current signal to a voltage signal. A conversion characteristic of the IV converter is set such that phases of amplitude of the voltage signal corresponding to a leading edge and a trailing edge of a pulse wave of the drive signal substantially match each other, and phases of amplitude of the voltage signal corresponding to the trailing edge of the pulse wave and a leading edge of a succeeding pulse wave substantially match each other.
    • 可以高精度地检测触摸位置。 接收器响应于施加到发送电极的驱动(脉冲)信号接收接收电极的充放电电流信号,并输出每个电极交叉点的电平信号。 接收器包括将充放电电流信号转换成电压信号的IV转换器。 IV转换器的转换特性被设定为使得与驱动信号的脉冲波的前沿和后沿相对应的电压信号的幅度相位基本上彼此匹配,并且电压信号的幅度相位对应于 脉波的后沿和后续脉搏波的前沿基本上彼此匹配。
    • 6. 发明申请
    • IMAGE CAPTURING DEVICE
    • 图像捕获设备
    • US20120069238A1
    • 2012-03-22
    • US13232389
    • 2011-09-14
    • Yuuji TOYOMURASeiji URANO
    • Yuuji TOYOMURASeiji URANO
    • H04N5/225
    • H04N5/23232H04N5/349
    • A rotation body having an optical member is stored in an optical capsule that is filled with a liquid that is an anti-freeze solution. A magnetic rotation driver rotates the rotation body by applying a magnetic force in a rotation direction to a first magnetizer provided to the rotation body, and heats the liquid. Specifically, the stator core that configures the magnetic rotation driver is formed so that a surface opposing the first magnetizer fits along a curved surface of an outer surface of the optical capsule. The opposing surface is applied with a silicon grease and then firmly attached to the optical capsule. Thus, the entire opposing surface of the stator core acts as a thermal conduction path to more efficiently heat the liquid, thereby making it possible to stably rotate the rotation body even in a cold environment.
    • 具有光学构件的旋转体存储在填充有防冻溶液的液体的光学胶囊中。 磁旋转驱动器通过向旋转体提供的第一磁化器沿旋转方向施加磁力来旋转旋转体,并加热液体。 具体地说,构成磁旋转驱动器的定子铁芯形成为使得与第一磁化装置相对的面与光学胶囊的外表面的曲面配合。 相对的表面涂有硅油脂,然后牢固地附着在光学胶囊上。 因此,定子铁芯的整个相对表面用作热传导路径,以更有效地加热液体,从而即使在寒冷的环境中也能够稳定地旋转旋转体。
    • 8. 发明申请
    • EXPOSURE DEVICE AND IMAGE FORMING APPARATUS USING THE SAME
    • 曝光装置和使用该曝光装置的图像形成装置
    • US20070229648A1
    • 2007-10-04
    • US11693189
    • 2007-03-29
    • Kenichi MasumotoHiroshi ShirouzuTetsurou NakamuraKei SakanoueYuuji Toyomura
    • Kenichi MasumotoHiroshi ShirouzuTetsurou NakamuraKei SakanoueYuuji Toyomura
    • B41J2/45
    • B41J2/45G06K15/1209G06K15/1247
    • To provide an exposure device which is capable of controlling light intensity with high precision by improving reliability of light intensity detection, and an image forming apparatus using the same, an exposure device includes a light emitting device array having a plurality of organic electroluminescence devices 110 arranged on a substrate, a light detecting device 120 that detects light emitted from the organic electroluminescence devices 110, and a light intensity detecting circuit C that processes an output of the light detecting device 120. The light intensity detecting unit C includes a capacitive element 140 connected to the light detecting device 120 and a select transistor 130 that is connected to the capacitive element 140 and draws out charges accumulated in the capacitive element 140. The select transistor 130 and the light detecting device 120 are isolated from each other with the capacitive element 140 interposed therebetween.
    • 为了提供能够通过提高光强度检测的可靠性而能够高精度地控制光强度的曝光装置,以及使用该曝光装置的图像形成装置,曝光装置包括具有多个有机电致发光元件110的发光元件阵列, 在基板上,检测从有机电致发光装置110发射的光的光检测装置120以及处理光检测装置120的输出的光强度检测电路C. 光强检测单元C包括连接到光检测装置120的电容元件140和连接到电容元件140的选择晶体管130,并且抽出蓄积在电容元件140中的电荷。 选择晶体管130和光检测装置120彼此隔离,电容元件140插入其间。