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    • 51. 发明申请
    • SCAN-LINE ADJUSTING DEVICE, OPTICAL SCANNING DEVICE, AND IMAGE FORMING APPARATUS
    • 扫描线调整装置,光学扫描装置和图像形成装置
    • US20150124039A1
    • 2015-05-07
    • US14522751
    • 2014-10-24
    • Daisuke YOSHIDA
    • Daisuke YOSHIDA
    • B41J2/385
    • G03G15/043G03G15/04045G03G21/1666
    • A scan-line adjusting device includes a first biasing unit which applies a first biasing force in biasing direction to a longitudinal one end of an optical unit, a second biasing unit which applies a second biasing force in the biasing direction to a longitudinal other end of the optical unit, a support unit which supports the optical unit at a position between a position where the first biasing force is applied and a position where the second biasing force is applied while allowing the optical unit to pivot against the biasing force, a position limiter which limits a position of the longitudinal one end against the first biasing force and can change the position in the biasing direction, and a vibration damping member which damps vibration transmitted from the second biasing unit to the optical unit.
    • 扫描线调整装置包括:第一偏压单元,其向偏振方向的偏压方向施加第一偏压力到光学单元的纵向一端;第二偏压单元,其将偏压方向上的第二偏压力施加到光学单元的纵向另一端; 光学单元,支撑单元,其支撑光学单元在施加第一偏压力的位置与施加第二偏压力的位置之间的位置,同时允许光学单元抵抗偏压力枢转;位置限制器 其限制纵向一端的位置抵抗第一偏置力并且可以改变偏置方向上的位置;以及减振构件,其阻止从第二偏压单元传递到光学单元的振动。
    • 53. 发明授权
    • Image pickup apparatus, image pickup system, and control method thereof
    • 摄像装置,摄像系统及其控制方法
    • US08928779B2
    • 2015-01-06
    • US12824082
    • 2010-06-25
    • Katsuro TakenakaDaisuke YoshidaToshio KameshimaTomoyuki YagiKeigo YokoyamaSho Sato
    • Katsuro TakenakaDaisuke YoshidaToshio KameshimaTomoyuki YagiKeigo YokoyamaSho Sato
    • H04N5/217H04N5/335H04N5/378
    • H04N5/335H04N5/378
    • An image pickup apparatus includes a detection unit in which a matrix of pixels converts radiation or light into analog electrical signals, a reading circuit configured to perform signal processing operation by reading the analog electric signals on a row-by-row basis, an A/D converter configured to convert a pixel signal output from the reading circuit into pixel data, and a correction processing unit configured to correct the pixel data. A control unit performs control processing so that the reading circuit outputs reset signals to the A/D converter in a period in which the signal processing operation of a predetermined row is performed, the A/D converter converts the reset signals into pieces of reset data in the period, and the correction processing unit averages the pieces of reset data output from the A/D converter and performs subtraction with the averaged reset data and the pixel data output from the A/D converter.
    • 一种图像拾取装置,包括:检测单元,其中像素矩阵将辐射或光转换为模拟电信号;读取电路,被配置为通过逐行读取模拟电信号来执行信号处理操作; A / D转换器,被配置为将从读取电路输出的像素信号转换为像素数据;以及校正处理单元,被配置为校正像素数据。 控制单元执行控制处理,使得读取电路在执行预定行的信号处理操作的时段中将复位信号输出到A / D转换器,A / D转换器将复位信号转换成多个复位数据 并且校正处理单元对从A / D转换器输出的复位数据进行平均,并且利用平均的复位数据和从A / D转换器输出的像素数据进行减法。
    • 54. 发明申请
    • OPTICAL SCANNING APPARATUS, METHOD FOR PERFORMING THE SAME AND IMAGE FORMING APPARATUS
    • 光学扫描装置,其执行方法和图像形成装置
    • US20140146121A1
    • 2014-05-29
    • US14073960
    • 2013-11-07
    • Hiroshi JOHNOKeiichi SERIZAWADaisuke YOSHIDAKazunori WATANABE
    • Hiroshi JOHNOKeiichi SERIZAWADaisuke YOSHIDAKazunori WATANABE
    • B41J2/385
    • G03G15/0435G03G15/14H04N1/047H04N1/113
    • An optical scanning apparatus for optically scanning at least one scanning target surface, the optical scanning apparatus including: a light source; a light-flux dividing unit disposed on a main optical path of a main light flux emitted from the light source, and the light-flux dividing unit configured to spatially divide the main light flux; an optical deflector disposed on a divided optical path of the divided light flux, and the optical deflector configured to deflect the divided optical path; an optical path opening/closing switch unit disposed on the divided optical path between the light-flux dividing unit and the optical deflector, and the optical path opening/closing switch unit configured to interrupt or pass at least one of the divided optical path; and a controller configured to control operation of interrupting or passing the at least one of the divided optical path by the optical path opening/closing switch unit.
    • 一种用于光学扫描至少一个扫描目标表面的光学扫描装置,所述光学扫描装置包括:光源; 设置在从光源发射的主光束的主光路上的光束分割部,以及构成为在空间上分割主光束的光束分割部; 设置在所述分割光束的分割光路上的光学偏转器,所述光学偏转器构造成偏转所述分割光路; 光路打开/关闭开关单元,设置在光束分配单元和光学偏转器之间的分割光路上,光路打开/关闭开关单元被配置为中断或通过分割光路中的至少一个; 以及控制器,被配置为控制通过所述光路打开/关闭开关单元中断或通过所述划分的光路中的至少一个的操作。
    • 56. 发明申请
    • GAS CIRCUIT BREAKER
    • 气体断路器
    • US20140069891A1
    • 2014-03-13
    • US14119635
    • 2011-08-30
    • Daisuke YOSHIDAHirokazu OTANIToru YAMASHITAMitsubishi Electric Corporation
    • Hirokazu OtaniToru YamashitaDaisuke YoshidaHaruhiko Koyama
    • H01H33/56
    • H01H33/56H01H33/14H01H33/7046H01H33/88
    • A gas circuit breaker includes a sealed tank that includes first and second conductor containers with an insulating tube therebetween and is filled with insulating gas; a fixed arcing contact on the first conductor container side; a movable arcing contact that is provided on the second conductor container side and moves to be able to contact and separate from the fixed arcing contact; a fixed conductive contact on the first conductor container side; a movable conductive contact that moves in accordance with contact and separation of the movable arcing contact and contacts and separates from the fixed conductive contact; and a puffer unit that is provided on the second conductor container side and has a mechanical puffer chamber accommodating the movable conductive contact formed therein, wherein the puffer unit is arranged between the insulating tube and the second conductor container and is exposed to the periphery of the sealed tank.
    • 气体断路器包括:密封箱,其包括在其间具有绝缘管的第一和第二导体容器,并填充绝缘气体; 在第一导体容器侧上具有固定的电弧触点; 可动电弧触点,其设置在第二导体容器侧并移动以能够与固定的电弧触点接触和分离; 第一导体容器侧上的固定导电接触; 可移动导电触点,其根据可动电弧触点的接触和分离而移动,并且与固定导电触点分离; 以及设置在第二导体容器侧并具有容纳形成在其中的可动导电接头的机械吹气室的吹气单元,其中,所述吹气单元布置在所述绝缘管和所述第二导体容器之间,并暴露于所述第二导体容器的周边 密封罐。
    • 58. 发明授权
    • Clock generation circuit and integrated circuit
    • 时钟发生电路和集成电路
    • US08237480B2
    • 2012-08-07
    • US13104771
    • 2011-05-10
    • Daisuke Yoshida
    • Daisuke Yoshida
    • H03H11/16
    • H03K5/133H03K5/1515H03K2005/00039H03K2005/00202H03L7/0805H03L7/0812H03L7/0995
    • A clock generation circuit comprises: a first generation unit; a second generation unit; and a control unit that, using a plurality of third delay elements that respectively have a propagation delay time that correlates with the propagation delay time of a first delay element, and correlates with the propagation delay time of a second delay element, generates a control signal for controlling the third delay elements such that a total of propagation delay times of the plurality of third delay elements corresponds to a target value depending on a cycle of the external clock, and controls the propagation delay time of the first delay element, the propagation delay time of the second delay element, and the propagation delay times of the third delay elements using the control signal.
    • 时钟发生电路包括:第一代单元; 第二代单位; 以及控制单元,使用分别具有与第一延迟元件的传播延迟时间相关的传播延迟时间并与第二延迟元件的传播延迟时间相关联的多个第三延迟元件,生成控制信号 用于控制第三延迟元件,使得多个第三延迟元件的传播延迟时间的总和对应于取决于外部时钟的周期的目标值,并且控制第一延迟元件的传播延迟时间,传播延迟 第二延迟元件的时间,以及使用控制信号的第三延迟元件的传播延迟时间。
    • 59. 发明授权
    • Image signal processing apparatus, image signal processing method and camera using the image signal processing apparatus
    • 图像信号处理装置,图像信号处理方法和使用图像信号处理装置的相机
    • US08223228B2
    • 2012-07-17
    • US12783323
    • 2010-05-19
    • Takahiro ShiraiDaisuke Yoshida
    • Takahiro ShiraiDaisuke Yoshida
    • H04N9/64
    • H04N5/3658
    • When clamping a signal from a solid state image sensor, float of an optical black pixel output due to incoming of infrared light avoids a malfunction of a clamp from occurring. When clamping a signal from the solid state image sensor, the difference between the optical black pixel output and a clamp target level is output as a difference output, the difference output is compared with a comparison level to integrate the number of times larger than the comparison level every horizontal line. When the number of times is equal to or more than a certain rate (⅔) from the number of optical black pixels on the horizontal line, an optical black float state is determined and clamping operation is performed in accordance with a held value immediately before.
    • 当夹持来自固态图像传感器的信号时,由于红外光的入射而导致的光学黑色像素的浮动避免了夹具发生故障。 当从固态图像传感器夹紧信号时,输出光学黑色像素输出和钳位目标电平之间的差作为差分输出,将差分输出与比较电平进行比较,以将比较大于比较的次数 水平每一行。 当从水平线上的光学黑色像素的数量等于或大于一定速率(⅔)时,确定光学黑色浮动状态,并且根据紧接着的保持值执行夹紧操作。
    • 60. 发明授权
    • Integrated circuit device and imaging apparatus using integrated circuit device
    • 集成电路器件和使用集成电路器件的成像设备
    • US08138461B2
    • 2012-03-20
    • US12339169
    • 2008-12-19
    • Daisuke KobayashiDaisuke Yoshida
    • Daisuke KobayashiDaisuke Yoshida
    • H01L27/00
    • H03F3/08H04N5/32H04N5/357H04N5/3742H04N5/378
    • An integrated circuit device of the present invention includes a plurality of signal processing circuits classified into a plurality of groups, each signal processing circuit including an amplifier circuit for amplifying an input electric signal and a bias circuit having an input terminal connected electrically to a bias source and supplying a bias input terminal of the amplifier circuit with an operation bias for an amplifying operation of the amplifier circuit; and a plurality of connection wirings arranged each for each of the groups separately, such that the input terminals of the bias circuits of the signal processing circuits in one of the groups are commonly connected through the connection wirings. This provides an integrated circuit device suppressing the lowering of an image quality in consideration of enabling lower power consumption, a low noise characteristic, and high integration, and an imaging apparatus using the integrated circuit.
    • 本发明的集成电路装置包括分为多个组的多个信号处理电路,每个信号处理电路包括用于放大输入电信号的放大器电路和具有与偏压源电连接的输入端的偏置电路 以及向所述放大器电路的偏置输入端提供用于所述放大器电路的放大操作的操作偏置; 以及分别为每个组分别布置的多个连接配线,使得其中一个组中的信号处理电路的偏置电路的输入端子通过连接布线共同连接。 考虑到能够实现低功耗,低噪声特性和高集成度,以及使用集成电路的成像装置,提供了抑制图像质量降低的集成电路装置。