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    • 1. 发明授权
    • Camera capable of displaying the level of visual effect
    • 相机能够显示视觉效果的水平
    • US6097898A
    • 2000-08-01
    • US227080
    • 1999-01-05
    • Masataka HamadaTakehiro KatohKeiji TamaiTatsuya Suzuki
    • Masataka HamadaTakehiro KatohKeiji TamaiTatsuya Suzuki
    • G03B7/08G03B13/30G03B17/20
    • G03B17/20G03B7/0807G03B2207/005G03B2217/005G03B2217/185
    • A camera is provided with a photographing device for setting various photographing conditions which determine a state of a subject image to be obtained as a picture, the photograph device including an exposure device having a plurality of selectively settable exposure modes for automatically setting at least one exposure value based on brightness of a subject, a mode selector for selecting one of the plurality of exposure modes, a calculations unit for calculating an amount indicative of the state of the subject image in accordance with the photographing conditions set by the photography device, an estimation unit for estimating visual effects which the subject image provides based on the calculated state amount, and a display device for displaying the visual effect corresponding to the exposure mode selected by the mode selection means in accordance with the estimated visual effects. Accordingly, an operator of the camera is allowed to conceive before an exposing operation what the final picture will look like in accordance with the photographing conditions set in a variety of exposure modes.
    • 相机设置有拍摄装置,用于设置确定作为图像获得的被摄体图像的状态的各种拍摄条件,所述照片装置包括具有多个可选择设置的曝光模式的曝光装置,用于自动设定至少一个曝光 基于被摄体的亮度的值,用于选择多个曝光模式之一的模式选择器,计算单元,用于根据由摄影装置设置的拍摄条件计算指示被摄体图像的状态的量,估计 用于基于计算出的状态量估计被摄体图像提供的视觉效果的单元,以及用于根据估计的视觉效果显示与由模式选择装置选择的曝光模式相对应的视觉效果的显示装置。 因此,根据在各种曝光模式中设置的拍摄条件,允许相机的操作者在曝光操作之前构想最终图像将看起来像什么。
    • 6. 发明授权
    • Laser working method
    • 激光加工方式
    • US09012805B2
    • 2015-04-21
    • US12444119
    • 2007-09-26
    • Kazuhiro AtsumiKoji KunoTatsuya Suzuki
    • Kazuhiro AtsumiKoji KunoTatsuya Suzuki
    • B23K26/00B23K26/04B23K26/40
    • B23K26/046B23K26/048B23K26/40B23K26/53B23K2103/50
    • A converging point of processing laser light is made to accurately follow a laser light irradiation surface of an object to be processed. An object to be processed 1 is irradiated with measuring laser light along a line to cut 5, astigmatism is added to a reflected light component of the measuring laser light reflected by a front face 3 of the object 1 irradiated with the measuring laser light, a displacement sensor signal corresponding to a converged light image of the reflected light component having the astigmatism added thereto is detected, and the displacement sensor signal is made to become a feedback reference value corresponding to the quantity of the reflected light component, so as to locate the converging point of the processing laser light at a predetermined position with respect to the front face 3. This allows tire converging point of the processing laser light to follow the front face 3 of the object 1 reliably and accurately even when an area exhibiting an extremely low reflectance to the measuring laser light exists in a part of the front face 3 and lowers the quantity of the reflected light component of the measuring laser light.
    • 使处理激光的会聚点精确地跟随被处理物体的激光照射面。 将被处理物体1沿着被切割线5的测量用激光照射,对被照射测量用激光的被检体1的正面3反射的测定用激光的反射光成分加上像散, 检测与加有像散的反射光分量的会聚光图像相对应的位移传感器信号,使位移传感器信号成为与反射光分量的量对应的反馈基准值, 处理激光的会聚点相对于前面3在预定位置。即使当显示极低的区域时,处理激光的轮胎会聚点可靠地准确地跟随物体1的正面3 在前表面3的一部分中存在对测量激光的反射率,并且降低了反射光分量的量 测量激光。
    • 7. 发明授权
    • Laser processing method and device
    • 激光加工方法及装置
    • US08993922B2
    • 2015-03-31
    • US10585451
    • 2004-12-13
    • Kazuhiro AtsumiKoji KunoMasayoshi KusunokiTatsuya Suzuki
    • Kazuhiro AtsumiKoji KunoMasayoshi KusunokiTatsuya Suzuki
    • B23K26/14B23K26/00B23K26/04B23K26/40
    • B23K26/53B23K26/046B23K26/048B23K26/40B23K2103/50
    • A laser processing method which can efficiently perform laser processing while minimizing the deviation of the converging point of a laser beam is provided.This laser processing method comprises a displacement acquiring step (S07 to S11) of irradiating an object to be processed with a rangefinding laser beam for measuring a displacement of a main surface of the object while converging the laser beam with a lens and acquiring the displacement of the main surface along a line to cut while detecting reflected light reflected by the main surface in response to the irradiation; and moves the processing objective lens and the object relative to each other along the main surface, while adjusting the gap between the processing objective lens and the surface according to the displacement acquired by the displacement acquiring step, thereby forming the modified region along the line to cut.
    • 提供一种可以有效地执行激光加工同时最小化激光束的会聚点的偏差的激光加工方法。 该激光加工方法包括:位移获取步骤(S07至S11),用用于测量物体的主表面的位移的测距激光束照射被处理物体,同时将激光束与透镜一起收敛,并获得 沿着切割线的主表面,同时响应于照射检测由主表面反射的反射光; 并且沿着主表面相对于彼此移动处理物镜和物体,同时根据由位移获取步骤获取的位移调节处理物镜与表面之间的间隙,从而沿着线形成修改区域 切。
    • 8. 发明授权
    • Signal processing circuit for electrostatic capacity type touch sensor
    • 静电电容型触摸传感器信号处理电路
    • US08878812B2
    • 2014-11-04
    • US12837029
    • 2010-07-15
    • Kazuyuki KobayashiTatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • Kazuyuki KobayashiTatsuya SuzukiKumiko FukaiYasuhiro Kaneta
    • G06F3/045G06F3/044G06F3/0354
    • G06F3/044G06F3/03547
    • There is offered a signal processing circuit for an electrostatic capacity type touch sensor capable of detecting a larger number of locations with a smaller number of touch pads as well as improving noise immunity. A selection circuit selects either a signal from a combination of the first and second kinds of touch pads outputted through the first and second output terminals CO1 and CO2 in a touch panel or a signal from a combination of the third and fourth kinds of touch pads outputted through the third and fourth output terminals CO3 and CO4. An electric charge amplifier outputs first and second output voltages V1 and V2 corresponding to a difference between capacitances of the touch pads on the touch panel based on the signals from the selected combination. A delta sigma type A/D converter converts the first and second output voltages V1 and V2 into digital signals.
    • 提供了一种用于静电容量型触摸传感器的信号处理电路,其能够用较少数量的触摸板检测更大数量的位置以及提高抗噪声性。 选择电路选择来自触摸面板中通过第一和第二输出端子CO1和CO 2输出的第一和第二种触摸板的组合的信号或来自第三和第四种触摸板的组合的信号输出 通过第三和第四输出端子CO3和CO4。 电荷放大器基于来自所选择的组合的信号输出与触摸面板上的触摸板的电容之差相对应的第一和第二输出电压V1和V2。 Δ西格玛型A / D转换器将第一和第二输出电压V1和V2转换成数字信号。