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    • 84. 发明申请
    • IMAGE READING APPARATUS, MOVING BODY FIXING STRUCTURE, AND ELECTRONIC EQUIPMENT
    • 图像读取装置,移动体固定结构和电子设备
    • US20120257260A1
    • 2012-10-11
    • US13443379
    • 2012-04-10
    • Takahiro YAGIHiroyuki OKADA
    • Takahiro YAGIHiroyuki OKADA
    • H04N1/04
    • G03G15/605G03G2215/00185H04N1/00549H04N2201/0444H04N2201/045
    • An image reading apparatus includes: a moving body on which a catch receiving portion is formed and which is movable in a predetermined direction; a fixing body on which a catching portion is formed to catch the catch receiving portion, and which is movable in a direction substantially orthogonal to the predetermined direction; a first position retaining portion for engaging a projected portion, formed on either one of a housing and the fixing body, with a first recessed portion formed on the other so that the fixing body can be retained in a position in which the catching portion catches the catch receiving portion; and a second position retaining portion for engaging the projected portion with a second recessed portion, formed on either the housing or the fixing body on which the first recessed portion is formed.
    • 图像读取装置包括:移动体,其上形成有可沿预定方向移动的捕获器接收部分; 固定体,其上形成有捕获部分以捕获所述捕获接收部分,并且可沿与所述预定方向大致正交的方向移动; 第一位置保持部分,用于接合形成在壳体和固定体中的任一个上的突出部分,其中第一凹部形成在另一个上,使得固定体能够保持在捕获部分抓住该位置的位置 抓住接收部分; 以及第二位置保持部分,用于将突出部分与形成有第一凹部的壳体或固定体上形成的第二凹部接合。
    • 85. 发明申请
    • A/D CONVERTER AND SEMICONDUCTOR DEVICE
    • A / D转换器和半导体器件
    • US20120200440A1
    • 2012-08-09
    • US13359310
    • 2012-01-26
    • Hiroyuki OKADANaohiro MATSUI
    • Hiroyuki OKADANaohiro MATSUI
    • H03M3/02H03M1/12
    • H03M3/38H03M3/382H03M3/43H03M3/456
    • An A/D converter and a semiconductor device simple in configuration are provided which can keep a constant noise shaping characteristic without depending on manufacturing variations or a temperature change. A semiconductor device includes a delta-sigma modulator, an input changeover switch, and a control logic circuit. The delta-sigma modulator can change a time constant of an internal circuit according to a control signal. The input changeover switch selectively inputs any one of an input amplitude voltage and a reference voltage to the delta-sigma modulator. A control logic circuit is coupled to an output of the delta-sigma modulator, and generates the control signal.
    • 提供一种A / D转换器和简单构造的半导体器件,其可以保持恒定的噪声整形特性而不依赖于制造变化或温度变化。 半导体器件包括Δ-Σ调制器,输入转换开关和控制逻辑电路。 Δ-Σ调制器可以根据控制信号改变内部电路的时间常数。 输入切换开关选择性地将输入幅度电压和参考电压中的任何一个输入到Δ-Σ调制器。 控制逻辑电路耦合到Δ-Σ调制器的输出,并产生控制信号。
    • 86. 发明授权
    • Thin-film laminate and organic transistor using the same
    • 薄膜层压板和使用其的有机晶体管
    • US08178868B2
    • 2012-05-15
    • US12565010
    • 2009-09-23
    • Hiroyuki OkadaShigeki Naka
    • Hiroyuki OkadaShigeki Naka
    • H01L29/08
    • H01L51/0533H01L51/0545H01L51/0558
    • An organic transistor includes a semiconductor section that includes a thin-film laminate in which a first organic thin film and a second organic thin film are alternately stacked. The thin-film laminate includes at least two layers of the first organic thin film. The first organic thin film is a pentacene thin film, and the second organic thin film is an amorphous organic thin film. The pentacene thin film may be a pentacene bilayer thin film, and the amorphous organic thin film may be a tetraaryldiamine thin film. The tetraaryldiamine thin film may be an α-NPD thin film. The organic transistor has improved transistor characteristics (e.g., mobility, ON/OFF ratio, or threshold value control).
    • 有机晶体管包括半导体部分,其包括其中第一有机薄膜和第二有机薄膜交替堆叠的薄膜层压体。 薄膜层叠体包括至少两层第一有机薄膜。 第一有机薄膜是并五苯薄膜,第二有机薄膜是无定形有机薄膜。 并五苯薄膜可以是并五苯双层薄膜,无定形有机薄膜可以是四芳基二胺薄膜。 四芳基二胺薄膜可以是α-NPD薄膜。 有机晶体管具有改善的晶体管特性(例如,迁移率,ON / OFF比或阈值控制)。
    • 87. 发明申请
    • CHANGEOVER SUPPORT APPARATUS
    • 更换支持设备
    • US20120048919A1
    • 2012-03-01
    • US13212820
    • 2011-08-18
    • Hiroyuki OkadaMitsuhiro IidaYoshie Miyashita
    • Hiroyuki OkadaMitsuhiro IidaYoshie Miyashita
    • G06F17/00
    • H05K13/0452H05K13/0417H05K13/08H05K13/0857
    • A mounting system includes a jig storage that stores an identifier of a component mounted on a circuit board with an identifier of a jig relative to which the component is provided, a component storage that stores an identifier of a circuit board with an identifier of a component to be mounted on the circuit board, a first identification unit that identifies a new component to be mounted on a new circuit board unit and a current component mounted on a circuit board unit currently being manufactured from the component storage when the new component is to be mounted, a second identification unit that compares the identified new component with the identified current component to identify a current component not included in the new component, and an emitter that causes light to be emitted via a light emitting element on a jig with the identified current component.
    • 安装系统包括夹具存储装置,其存储安装在电路板上的部件的标识符,其具有相对于其提供部件的夹具的标识符;部件存储器,其存储具有部件标识符的电路板的标识符 安装在电路板上的第一识别单元,当新组件将要被安装在新的电路板单元上时,识别要安装在新电路板单元上的新组件和安装在当前正在由组件存储器制造的电路板单元上的电流组件 第二识别单元,其将识别的新组件与所识别的当前组件进行比较,以识别不包括在新组件中的当前组件;以及发射器,其通过具有所识别的电流的夹具上的发光元件发光 零件。
    • 88. 发明申请
    • TRANSCONDUCTANCE AMPLIFIER
    • TRANSCONDUCTANCE放大器
    • US20120001675A1
    • 2012-01-05
    • US13234704
    • 2011-09-16
    • Hiroyuki OKADA
    • Hiroyuki OKADA
    • G06G7/14
    • H03L7/099H03F3/45179H03F3/45197H03F2203/45288H03F2203/45481H03F2203/45494H03L7/0805
    • The present invention is intended to achieve a transconductance amplifier and a voltage/current converting method which can provide a sufficient amplitude and a high degree of design freedom. The method comprises the steps of converting a first voltage signal to a first current signal; converting a second voltage signal to a second current signal; obtaining the common-mode components of the first and second current signals; and subtracting the common-mode components from the first and second current signals to obtain third and fourth signals, and further, subtracting the fourth current signal from the third current signal to generate a first output, while subtracting the third current signal from the fourth current signal to generate a second output.
    • 本发明旨在实现能够提供足够的幅度和高度设计自由度的跨导放大器和电压/电流转换方法。 该方法包括以下步骤:将第一电压信号转换成第一电流信号; 将第二电压信号转换为第二电流信号; 获得第一和第二电流信号的共模分量; 以及从第一和第二电流信号中减去共模分量以获得第三和第四信号,并且还从第三电流信号中减去第四电流信号以产生第一输出,同时从第四电流减去第三电流信号 信号以产生第二输出。
    • 89. 发明授权
    • Shake correction device and imaging apparatus
    • 振动校正装置和成像装置
    • US08086096B2
    • 2011-12-27
    • US12651538
    • 2010-01-04
    • Hiroyuki Okada
    • Hiroyuki Okada
    • G03B17/00
    • G03B17/00
    • A shake correction device includes: a first driving means for driving an imaging component, which is related with either an imaging optical system or an imaging device, in a first direction; a second driving means for driving the imaging component in a second direction which is different from the first direction; and a control means for correcting shake of the imaging apparatus by driving the imaging component on the basis of a detection result of the shake of the imaging apparatus, which is obtained by a shake detection means, using the first and second driving means, wherein the control means sequentially executes first return processing in the first direction using the first driving means and second return processing in the second direction using the second driving means when returning the imaging component to a reference position at a predetermined timing.
    • 抖动校正装置包括:第一驱动装置,用于沿第一方向驱动与成像光学系统或成像装置相关的成像部件; 第二驱动装置,用于沿与第一方向不同的第二方向驱动成像部件; 以及控制装置,用于通过使用第一和第二驱动装置,基于通过抖动检测装置获得的成像装置的抖动的检测结果来驱动成像部件来校正成像装置的抖动,其中, 控制装置使用第一驱动装置在第一方向上执行第一返回处理,并且当在预定定时将成像分量返回到参考位置时,使用第二驱动装置执行第二方向的第二返回处理。