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    • 4. 发明申请
    • ZOOM LENS SYSTEM, IMAGING APPARATUS, AND METHOD FOR ZOOMING THE ZOOM LENS SYSTEM
    • 变焦镜头系统,成像装置和使变焦镜头系统变焦的方法
    • US20120275032A1
    • 2012-11-01
    • US13545651
    • 2012-07-10
    • SATORU SHIBATATakeshi SuzukiHiroshi Yamamoto
    • SATORU SHIBATATakeshi SuzukiHiroshi Yamamoto
    • G02B15/177
    • G02B13/04G02B13/18G02B15/14G02B15/177G02B27/646
    • Providing a zoom lens system having excellent optical performance with a high zoom ratio, an imaging apparatus, and a method for zooming the zoom lens system. The system including, in order from an object, a first group G1 having negative refractive power, a second group G2 having positive refractive power, a third group G3 having negative refractive power, and a fourth group G4 having positive refractive power. An aperture stop S is disposed between the second group G2 and the fourth group G4. Upon zooming from a wide-angle end state to a telephoto end state, each group is moved such that a distance between the second group G2 and the third group G3 increases, a distance between the third group G3 and the fourth group G4 decreases, and the aperture stop S is moved together with the third group G3. Given conditions are satisfied.
    • 提供具有高变焦比的优异光学性能的变焦透镜系统,成像装置和用于变焦变焦透镜系统的变焦方法。 该系统从物体起依次包括具有负折光力的第一组G1,具有正屈光力的第二组G2,具有负折光力的第三组G3和具有正屈光力的第四组G4。 孔径光阑S设置在第二组G2和第四组G4之间。 在从广角端状态变焦到望远端状态时,各组移动使得第二组G2和第三组G3之间的距离增加,第三组G3和第四组G4之间的距离减小,并且 孔径光阑S与第三组G3一起移动。 给定条件满意。
    • 5. 发明授权
    • Controller for relay
    • 继电器控制器
    • US6137193A
    • 2000-10-24
    • US297902
    • 1999-06-11
    • Mitsuhiko KikuokaSatoru Shibata
    • Mitsuhiko KikuokaSatoru Shibata
    • H01H3/00H01H47/00H01H47/04H01H47/32H01H47/12
    • H01H47/002H01H2047/003H01H3/001
    • A relay control circuit enables releasing of welding of contacts in a short period by applying an bombardment pulse effective for welded contacts of the relay. Welded contacts of a relay are detected and subsequently input a signal to a microcomputer. A first driver is connected to an output port of the microcomputer which controls the relay, and a second driver is provided to another output port for driving the relay in parallel. This configuration allows to drive the first and second drivers alternately when contacts of the relay are welded, in order to apply an effective bombardment pulse for ensuring rapid separation of the welded contacts.
    • PCT No.PCT / JP98 / 03995 Sec。 371日期1999年6月11日第 102(e)日期1999年6月11日PCT提交1998年9月7日PCT公布。 公开号WO99 /​​ 13482 日期1999年3月18日继电器控制电路通过对继电器的焊接触点施加有效的轰击脉冲,能够在短时间内释放触点的焊接。 检测继电器的焊接触点,然后将信号输入到微型计算机。 第一驱动器连接到控制继电器的微型计算机的输出端口,第二驱动器被提供给并行驱动继电器的另一个输出端口。 这种构造允许在继电器的触点被焊接时交替地驱动第一和第二驱动器,以便施加有效的轰击脉冲以确保焊接触点的快速分离。
    • 10. 发明申请
    • IMAGE PROCESSING APPARATUS AND IMAGE FORMING APPARATUS
    • 图像处理装置和图像形成装置
    • US20120218573A1
    • 2012-08-30
    • US13371266
    • 2012-02-10
    • Shuji OtsukaRyuichi TsujiKeita MaezaKazusei ObikawaSatoru Shibata
    • Shuji OtsukaRyuichi TsujiKeita MaezaKazusei ObikawaSatoru Shibata
    • H04N1/60
    • H04N1/4052H04N1/52
    • An image processing apparatus includes a plurality of cores that carry out binarization processes while shifting a target pixel from the first pixel in a processing line in order toward the last pixel in the processing line in accordance with a diffusion of error that takes unprocessed pixels surrounding the target pixel including the pixels of the following line of the processing line as a diffusion range; of the plurality of cores, the core that processes the following line carries out the binarization process in order while delaying the target pixel at least by an amount equivalent to the diffusion range relative to the target pixel of the core that processes the previous line. Accordingly, the lines can be processed in parallel while reflecting the error appropriately on the unprocessed pixels, and thus the binarization process using error diffusion can be carried out more quickly.
    • 图像处理装置包括多个核,其执行二值化处理,同时根据处理线中的最后一个像素偏移来自处理行中的第一像素的目标像素,从而根据错误的扩散,该漫反射扩散使得处理线周围的未处理像素 包括处理线的下一行的像素的目标像素作为扩散范围; 处理以下行的核心依次执行二值化处理,同时延迟目标像素至少相当于处理前一行的核心的目标像素的扩散范围的量。 因此,可以并行处理这些行,同时在未处理的像素上适当地反映错误,因此可以更快地执行使用误差扩散的二值化处理。