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    • 1. 发明申请
    • DIGITAL CAMERA
    • 数码相机
    • US20120293701A1
    • 2012-11-22
    • US13520049
    • 2011-04-15
    • Masato TobinagaHirotsugu FusayasuMasafumi KumoiShinkuro Fujino
    • Masato TobinagaHirotsugu FusayasuMasafumi KumoiShinkuro Fujino
    • H04N5/222
    • G03B17/02G03B17/14H04N5/23209H04N5/3577
    • Provided is a digital camera including: a camera body (1) that includes a body mount to which a lens unit, which forms an optical image of a subject, can be attached; an image sensor (8) that is disposed in a body chassis (3) of the camera body (1) to convert the optical image of the subject into image data; a main circuit board (11) to which an image sensor (8) is electrically connected; and an electronic viewfinder (6) that includes a monitor on which a through image captured by the image sensor (8) is displayed, wherein a conductive shielding member (33) is disposed in the body chassis (3) in order to electromagnetically shield a region between a space in which the image sensor (8) and the main circuit board (11) are disposed from a space in which the electronic viewfinder (6) is disposed.
    • 本发明提供一种数码相机,包括:照相机主体(1),其包括:主体安装体,能够安装形成被摄体的光学图像的透镜单元; 设置在所述照相机主体(1)的车身底盘(3)中以将被摄体的光学图像转换为图像数据的图像传感器(8) 图像传感器(8)电连接到的主电路板(11); 以及电子取景器(6),其包括显示由图像传感器(8)捕获的通过图像的监视器,其中,导体屏蔽构件(33)设置在主体框架(3)中,以便电磁屏蔽 在图像传感器(8)和主电路板(11)的空间之间设置有从设置有电子取景器(6)的空间的区域。
    • 3. 发明申请
    • SIGNAL TRANSMISSION SYSTEM
    • 信号传输系统
    • US20100027706A1
    • 2010-02-04
    • US12513009
    • 2007-10-03
    • Shin-ichi TanimotoSeiji HamadaHirotsugu FusayasuRyo Matsubara
    • Shin-ichi TanimotoSeiji HamadaHirotsugu FusayasuRyo Matsubara
    • H04L27/18H04L27/20
    • H04L25/0272
    • A signal transmitter apparatus generates three phase-shifted signals by shifting three transmission signals by predetermined phase shift amounts so that the phase shift amounts of the transmission signals are different from each other by 120 degrees. The signal transmitter apparatus generates three combined transmission signals and outputs the three combined transmission signals to the three transmission conductors, respectively, by combining each of pairs of the phase-shifted signals such that an inverted signal of a first phase-shifted signal is combined with a second phase-shifted signal, when each of the pairs of the phase-shifted signals includes the first and second phase-shifted signals among the three phase-shifted signals and phase shift amounts of the first and second phase-shifted signals are different from each other by 120 degrees. The signal receiver apparatus generates three receiving signals based on received three combined transmission signals, and detects the decoded signals of the transmission signals based on the receiving signals.
    • 信号发送装置通过将三个发送信号移动预定的相移量来产生三个相移信号,使得发送信号的相移量彼此相差120度。 信号发送装置生成三个组合的发送信号,并通过组合各对的相移信号,将三个组合的发送信号分别输出到三个发送导体,使得第一相移信号的反相信号与 第二相移信号,当三个相移信号中的每一对包括三个相移信号中的第一和第二相移信号时,第一和第二相移信号的相移量不同于 彼此相差120度。 信号接收装置基于接收到的三个组合发送信号生成三个接收信号,并且基于接收信号检测发送信号的解码信号。
    • 5. 发明申请
    • System and method for checking decoupling of power supply in printed wiring board
    • 检查印刷电路板电源脱扣的系统和方法
    • US20070052439A1
    • 2007-03-08
    • US10557989
    • 2005-02-14
    • Seiji HamadaHirotsugu FusayasuShoichi MimuraMiyoko Irikiin
    • Seiji HamadaHirotsugu FusayasuShoichi MimuraMiyoko Irikiin
    • G01R31/12G01R31/36
    • G06F17/5081G06F17/5036
    • A checking unit includes a power net extracting means for extracting a power net with power attribution, which is segmented by a power-decoupling element, with reference to circuit design data of the printed wiring board; a parts number extracting means for extracting a parts number of an integrated circuit which is connected to the extracted power net; a parts headcount calculating means for calculating a headcount of the extracted parts; a judging means for comparing the extracted parts headcount with a predetermined reference value; and a representing means for representing a name of the power net and the parts number of the integrated circuit as an unprocessed location of power decoupling when the headcount is larger than the reference value, whereby inspecting quickly whether or not a power supply in use, which is shared by each of the integrated circuits, is decoupled at higher frequencies by the power-decoupling element.
    • 检查单元包括电源网提取装置,参考印刷电路板的电路设计数据,提取由功率分离元件分段的功率归属的电网; 零件号提取装置,用于提取连接到所提取的电力网的集成电路的零件号; 零件人数计算装置,用于计算提取部件的人数; 判断装置,用于将提取的部分人数与预定的参考值进行比较; 以及用于在人数大于参考值时将电力网名称和集成电路的部件号表示为电源去耦的未处理位置的代表装置,从而快速检查是否使用电源,其中 由每个集成电路共享,通过功率分离元件在较高频率上解耦。
    • 6. 发明申请
    • Radiation noise suppression circuit for differential transmission line
    • 差动传输线辐射噪声抑制电路
    • US20060125570A1
    • 2006-06-15
    • US11297288
    • 2005-12-08
    • Seiji HamadaHirotsugu FusayasuShinichi TanimotoRyo Matsubara
    • Seiji HamadaHirotsugu FusayasuShinichi TanimotoRyo Matsubara
    • H04B3/28
    • H04B3/30
    • A radiation noise suppression circuit for a differential transmission line includes a differential transmission line which has plus line signal wiring of a differential signal and minus line signal wiring of the differential signal, and connects a differential driver and a differential receiver; signal GND wiring one end of which is connected to the differential driver, and is wired outside along the differential transmission line; a coil unit in which each of the plus line signal wiring, the minus line signal wiring, and said signal GND wiring is wound in the same winding direction; a first impedance element and a second impedance element which have substantially the same impedance value, and which are connected in series between the plus line signal wiring and the minus line signal wiring at a location nearer to the differential receiver than the coil unit; and, a third impedance element one end of which is connected to a junction point, where the first impedance element and the second impedance element are connected, and another end of which is connected to another end of the signal GND wiring.
    • 用于差动传输线的辐射噪声抑制电路包括具有差分信号的正线信号布线和差分信号的负线信号布线的差分传输线,并连接差分驱动器和差分接收器; 信号GND布线,其一端连接到差分驱动器,并沿着差动传输线接线到外部; 线圈单元,其中正线信号布线,负线信号布线和所述信号GND布线中的每一个以相同的卷绕方向缠绕; 第一阻抗元件和第二阻抗元件,其具有基本相同的阻抗值,并且在比线圈单元更靠近差分接收器的位置处串联连接在正线信号布线和负线信号布线之间; 以及第三阻抗元件,其一端连接到第一阻抗元件和第二阻抗元件连接的接合点,并且另一端连接到信号GND布线的另一端。
    • 7. 发明授权
    • Magnetic head
    • 磁头
    • US06795263B2
    • 2004-09-21
    • US10262121
    • 2002-10-01
    • Akio KuroeSayuri MuramatsuHirotsugu FusayasuAkio Murata
    • Akio KuroeSayuri MuramatsuHirotsugu FusayasuAkio Murata
    • G11B533
    • G11B5/332
    • In a high-frequency impedance type magnetic head having high impedance and capable of efficiently detecting a change in impedance, an electrically conductive metal film is sandwiched between two soft magnetic films, and the two soft magnetic films form a portion of a magnetic path. The thickness of one soft magnetic film is smaller than the thickness of the other soft magnetic film. The electrically conductive metal thin film has a pair of electrodes at respective ends thereof, to which are connected an oscillator for applying a high frequency carrier signal to the electrodes and a high frequency amplifier having a demodulator circuit. Further, an electrically conductive metal film winding is provided, and a DC current is applied to the electrically conductive metal film winding at the time of reproduction, while on the other hand, a signal current is applied to the electrically conductive metal film winding at the time of recording.
    • 在具有高阻抗且能够有效地检测阻抗变化的高频阻抗型磁头中,导电金属膜被夹在两个软磁膜之间,并且两个软磁膜形成磁路的一部分。 一个软磁膜的厚度小于另一软磁膜的厚度。 导电性金属薄膜的各自的端部具有一对电极,连接有用于向电极施加高频载波信号的振荡器和具有解调电路的高频放大器。 此外,提供导电金属膜绕组,并且在再现时将DC电流施加到导电金属膜绕组,而另一方面,信号电流施加到导电金属膜绕组上的导电金属膜绕组 录音时间
    • 8. 发明申请
    • Imaging Device
    • 成像设备
    • US20120314118A1
    • 2012-12-13
    • US13391388
    • 2011-04-27
    • Masato TobinagaHirotsugu FusayasuMasafumi Kumoi
    • Masato TobinagaHirotsugu FusayasuMasafumi Kumoi
    • H04N5/225
    • H04N5/2253G03B9/08G03B17/14G03B2206/00G03B2217/002H04N5/2254
    • An imaging device of the present invention includes: an imaging element for taking an optical image of a photographic subject and generating image data therefrom; a main circuit board for conducting signal processing on the image data, an imaging element flexible cable on which the imaging element is mounted and that has a ground potential; a shutter that opens and closes timed on the shooting of images or video of the photographic subject; a shutter flexible cable that transfers a control signal for controlling the shutter and that has a ground potential; a mount for fixing the imaging element and that includes a metallic component; and a metal plate that is connected to the mount and is disposed between the imaging element and the main circuit board. Therein, the ground potential of the imaging element and the shutter flexible cable are connected.
    • 本发明的成像装置包括:摄像元件,用于拍摄摄影对象的光学图像并从中产生图像数据; 用于对图像数据进行信号处理的主电路板,安装有成像元件并具有地电位的成像元件柔性电缆; 对拍摄对象的图像或视频拍摄进行定时打开和关闭的快门; 传送用于控制快门并具有地电位的控制信号的快门柔性电缆; 用于固定所述成像元件并且包括金属部件的安装件; 以及连接到安装件并且设置在成像元件和主电路板之间的金属板。 其中,成像元件和快门柔性电缆的接地电位连接。
    • 9. 发明授权
    • Signal transmission system for transmitting transmission signals via a transmission line including transmission conductors
    • 用于经由包括传输导体的传输线传输传输信号的信号传输系统
    • US08259838B2
    • 2012-09-04
    • US12513009
    • 2007-10-03
    • Shin-ichi TanimotoSeiji HamadaHirotsugu FusayasuRyo Matsubara
    • Shin-ichi TanimotoSeiji HamadaHirotsugu FusayasuRyo Matsubara
    • H04L27/18
    • H04L25/0272
    • A signal transmitter apparatus generates three phase-shifted signals by shifting three transmission signals by predetermined phase shift amounts so that the phase shift amounts of the transmission signals are different from each other by 120 degrees. The signal transmitter apparatus generates three combined transmission signals and outputs the three combined transmission signals to the three transmission conductors, respectively, by combining each of pairs of the phase-shifted signals such that an inverted signal of a first phase-shifted signal is combined with a second phase-shifted signal, when each of the pairs of the phase-shifted signals includes the first and second phase-shifted signals among the three phase-shifted signals and phase shift amounts of the first and second phase-shifted signals are different from each other by 120 degrees. The signal receiver apparatus generates three receiving signals based on received three combined transmission signals, and detects the decoded signals of the transmission signals based on the receiving signals.
    • 信号发送装置通过将三个发送信号移动预定的相移量来产生三个相移信号,使得发送信号的相移量彼此相差120度。 信号发送装置生成三个组合的发送信号,并通过组合各对的相移信号,将三个组合的发送信号分别输出到三个发送导体,使得第一相移信号的反相信号与 第二相移信号,当三个相移信号中的每一对包括三个相移信号中的第一和第二相移信号时,第一和第二相移信号的相移量不同于 彼此相差120度。 信号接收装置基于接收到的三个组合发送信号生成三个接收信号,并且基于接收信号检测发送信号的解码信号。
    • 10. 发明授权
    • Plasma display panel display device
    • 等离子显示面板显示装置
    • US08077121B2
    • 2011-12-13
    • US12327160
    • 2008-12-03
    • Kei IchikawaHirotsugu FusayasuHiroshi KunimotoSeiji HamadaRyo Matsubara
    • Kei IchikawaHirotsugu FusayasuHiroshi KunimotoSeiji HamadaRyo Matsubara
    • G09G3/34
    • G09G3/296G09G2330/06H01J11/44H01J2211/446
    • The present invention sufficiently reduces unwanted radiation in a plasma display panel (PDP) display device. The display device includes a PDP having a pair of electrodes, a first, a second, and a third conductive member, and a pair of driving circuits used to apply a voltage to their respective electrodes. Each conductive member has substantially the same width and height as the PDP, and the first, second, third conductive members are disposed on the rear surface of the PDP, in this order on the rear side of the PDP. The PDP and the conductive members are connected electrically to one another in the end portions of these elements, either directly or via the driving circuits, so that the direction of the current flowing in the PDP during driving and discharge coincides with the direction of the current flowing in the third conductive member, and is opposite from the direction of the current flowing in the first conductive member and the second conductive member.
    • 本发明足以减少等离子体显示面板(PDP)显示装置中的不需要的辐射。 显示装置包括具有一对电极,第一,第二和第三导电构件的PDP和用于向其各自的电极施加电压的一对驱动电路。 每个导电构件具有与PDP基本上相同的宽度和高度,并且第一,第二,第三导电构件以PDP的后侧依次设置在PDP的后表面上。 PDP和导电构件在这些元件的端部中直接或经由驱动电路彼此电连接,使得在驱动和放电期间在PDP中流动的电流的方向与电流的方向一致 在第三导电构件中流动,并且与在第一导电构件和第二导电构件中流动的电流的方向相反。