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    • 112. 发明申请
    • Correction of level difference between signals output from split read-out type image sensing apparatus
    • 从分离式读出型图像感测装置输出的信号之间的电平差的校正
    • US20050030397A1
    • 2005-02-10
    • US10913852
    • 2004-08-06
    • Satoshi Nakayama
    • Satoshi Nakayama
    • H04N5/225H04N5/20H04N5/335H04N5/341H04N5/369H04N5/372
    • H04N5/3653
    • Disclosed is an sensing apparatus using an image sensing device having at least first and second output terminals, comprising first and second amplifiers that independently amplify signals output from the first and second output terminals, respectively; a first gain controller that controls gain applied to the first amplifier; memory that stores data, which relates to gain to be applied to the second amplifier, that corresponds to respective ones of a plurality of different gains to be applied to the first amplifier; and a second gain controller that controls gain applied to the second amplifier in accordance with the data relating to gain to be applied to the second amplifier, obtained from the memory, corresponding to the gain applied to the first amplifier.
    • 公开了一种使用具有至少第一和第二输出端的图像感测装置的感测装置,包括分别独立地放大从第一和第二输出端子输出的信号的第一和第二放大器; 第一增益控制器,其控制施加到第一放大器的增益; 存储器,其存储与要施加到第二放大器的增益相关的数据,其对应于要施加到第一放大器的多个不同增益中的相应的增益; 以及第二增益控制器,其根据与应用于第一放大器的增益对应的从存储器获得的与要施加到第二放大器的增益有关的数据来控制施加到第二放大器的增益。
    • 114. 发明授权
    • Flow control valve
    • 流量控制阀
    • US5865418A
    • 1999-02-02
    • US964827
    • 1997-11-05
    • Satoshi NakayamaYoshie WatariTakahiro Kurihara
    • Satoshi NakayamaYoshie WatariTakahiro Kurihara
    • F16K31/00G05D23/02F16K31/02
    • G05D23/026F16K31/002
    • A compact fluid control valve effects a reliable fluid flow regulation by the use of a shape memory alloy wire. The valve comprises a barrel provided with a base member and a valve body. The valve body is cooperative with the base member to define therebetween a valve opening in the course of an internal flow path through the valve for a fluid. The valve body is movable towards and away from the base member to vary the valve opening for regulating the flow of the fluid. A bias spring urges the valve body for varying the valve opening in one direction. The shape memory alloy wire connects the valve body to the barrel to move the valve body against the bias spring for varying the valve opening when heated. The barrel has anchor members for securing the ends of the wire. The anchor members are disposed on the exterior of the barrel and at such a portion that the wire stretches between the barrel and the valve body exteriorly of the barrel in an overlapping relation with a major portion of the barrel along the axial length thereof. Thus, the wire can be kept substantially away from the internal flow path of the fluid and consequently kept thermally unaffected thereby for a reliable flow regulation. Further, since the wire overlaps with the barrel, the entire valve can have a reduced axial dimension and be therefore made compact enough to be installed in a limited space.
    • 紧凑的流体控制阀通过使用形状记忆合金线来实现可靠的流体流动调节。 阀包括设置有基部构件和阀体的筒体。 阀体与基座构件协作以在其间限定通过用于流体的阀的内部流路的过程中的阀开口。 阀体可以朝向和远离基部构件移动以改变用于调节流体流动的阀开口。 偏压弹簧促使阀体在一个方向上改变阀开口。 形状记忆合金线将阀体连接到筒体上,以将阀体抵靠偏压弹簧移动,以在加热时改变阀门开口。 枪管具有用于固定线的端部的锚定构件。 锚固构件设置在筒的外部上,并且在这样的部分处,该线在筒的外部在筒的外部沿着其轴向长度与筒的主要部分重叠的关系延伸在筒体和阀体之间。 因此,电线可以保持基本上远离流体的内部流动路径,并因此保持热不受影响,从而实现可靠的流量调节。 此外,由于线与筒重叠,所以整个阀可以具有减小的轴向尺寸,并且因此被制成足够紧凑以安装在有限的空间中。