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    • 2. 发明授权
    • Thermal printing head
    • 热敏打印头
    • US4731619A
    • 1988-03-15
    • US883715
    • 1986-07-09
    • Kunihiko MiuraTakashi Shimazaki
    • Kunihiko MiuraTakashi Shimazaki
    • B41J2/14B41J2/345G01D15/10
    • B41J2/345B41J2/14161
    • In a thermal head according to the present invention, a rod-like member having a circular cross-section is mounted on a support member. An array of heating elements is provided on the rod-like member. Drive signal side electrodes and driving power source side electrodes are connected to each heating element. The drive signal side electrodes are connected to a driver integrated circuit (IC). The driving power source side electrodes are connected in common at ends thereof to provide a common electrode. The common electrode extends along the outer circumferential surface of the rod-like member, is exposed on the side of the driver IC along the surface of the rod-like member opposing the support member, and is connected to a driving power source pattern on the side of the driver IC. A thermistor for detecting a temperature is provided in the vicinity of the rod-like member.
    • 在根据本发明的热敏头中,具有圆形横截面的杆状构件安装在支撑构件上。 一组加热元件设置在杆状构件上。 驱动信号侧电极和驱动电源侧电极与各加热元件连接。 驱动信号侧电极连接到驱动器集成电路(IC)。 驱动电源侧电极在其端部共同连接以提供公共电极。 公共电极沿杆状构件的外周面延伸,沿着与支撑构件相对的杆状构件的表面暴露在驱动器IC侧,并且与驱动电源图案相连接 侧驱动IC。 用于检测温度的热敏电阻设置在棒状部件附近。
    • 5. 发明申请
    • Apparatus and method for image forming
    • 成像装置及方法
    • US20060209317A1
    • 2006-09-21
    • US11260257
    • 2005-10-28
    • Hirokazu ShodaKunihiko MiuraHidekazu Sekizawa
    • Hirokazu ShodaKunihiko MiuraHidekazu Sekizawa
    • G06K15/02
    • H04N1/40062H04N1/40068
    • An image forming apparatus according to an embodiment of the invention reads an original by mechanically moving an axial light source in a subscanning direction perpendicular to the axis. The image forming apparatus includes: a sensor whose resolution in a main scanning direction parallel to the axis of the axial light source is higher than a designated resolution; a controller that controls the driving speed of the axial light source so that the resolution in the subscanning direction is higher than the designated resolution; an original-image-data generating unit that generates original image data with a resolution higher than the designated resolution in response to the output from the sensor; and an image reducing unit that generates reduced pixels fewer than a specified number of pixels in the original image data to generate a reduced image with a resolution equal to the designated resolution.
    • 根据本发明的实施例的图像形成装置通过在垂直于轴的副扫描方向上机械地移动轴向光源来读取原稿。 图像形成装置包括:传感器,其在与主轴扫描方向平行的主扫描方向的分辨率高于指定分辨率; 控制器,其控制轴向光源的驱动速度,使得副扫描方向上的分辨率高于指定分辨率; 原始图像数据生成单元,响应于来自传感器的输出而生成分辨率高于指定分辨率的原始图像数据; 以及图像缩小单元,其生成少于原始图像数据中的指定数量的像素的缩小像素,以生成具有等于指定分辨率的分辨率的缩小图像。
    • 10. 发明授权
    • Multi-beam scanning system with sync signal generation based on single
beam detection
    • 基于单光束检测的同步信号生成的多光束扫描系统
    • US4823151A
    • 1989-04-18
    • US137529
    • 1987-12-23
    • Kunihiko Miura
    • Kunihiko Miura
    • G02B26/10B41J2/44G03G15/04G06K15/12H04N1/113C01D15/00
    • G06K15/1219G06K15/1261
    • An optical scanning unit receives beams from a plurality of beam light sources and directs the respective beams as a plurality of scanning beams with respect to the predetermined scanning range of the object to be scanned. A deflector receives one of the plurality of scanning beams by the optical scanning unit at a position near an end portion of the predetermined scanning range of the object to be scanned and deflects the received beam in a predetermined direction. A single beam detector detects the single scanning beam deflected in the predetermined direction by the deflector. A sync signal generating unit generates a sync signal on the basis of a detection output from the single beam detector. A control unit selectively generates control signals for driving the plurality of beam light sources in accordance with the sync signal from the sync signal generating unit, and while the single beam detector detects the single scanning beam, for driving only one of the plurality of beam light sources corresponding to the single scanning beam.
    • 光扫描单元从多个光束光源接收光束,并将相应的光束相对于待扫描对象的预定扫描范围引导为多个扫描光束。 偏转器通过光学扫描单元在靠近待扫描对象的预定扫描范围的端部附近的位置处接收多个扫描光束中的一个,并使接收的光束沿预定方向偏转。 单个光束检测器检测由偏转器沿预定方向偏转的单个扫描光束。 同步信号生成单元根据来自单光束检测器的检测输出生成同步信号。 控制单元根据来自同步信号生成单元的同步信号有选择地产生用于驱动多个光束光源的控制信号,而单光束检测器检测单个扫描光束时,仅驱动多个光束中的一个 源对应于单扫描光束。