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    • 31. 发明申请
    • Sheet eject device, fullness detecting method, and computer-readable recording medium
    • 记录纸排出装置,丰满度检测方法和计算机可读记录介质
    • US20110316225A1
    • 2011-12-29
    • US13067524
    • 2011-06-07
    • Satoshi Takahashi
    • Satoshi Takahashi
    • B65H33/00B65H31/00
    • B65H43/06B65H2301/541B65H2511/30B65H2511/40B65H2513/511B65H2513/53B65H2557/24B65H2801/06G06M9/00B65H2220/01
    • A sheet eject device is provided for detecting whether a sheet eject tray is filled with ejected sheets. The sheet eject device includes an ejecting unit that ejects sheets onto the sheet eject tray; a counting unit that counts an accumulated eject number every time a sheet is ejected by the ejecting unit; a storing unit that stores a defined eject number threshold and a defined eject interval time; a fullness detecting unit that detects that the sheet eject tray is filled with ejected sheets when the accumulated eject number counted by the counting unit exceeds the defined eject number threshold; and a reset unit that resets the accumulated eject number counted by the counting unit when an eject interval time exceeds the defined eject interval time, the eject interval time extending from when one sheet is ejected until a next sheet is ejected by the ejecting unit.
    • 提供一种纸张排出装置,用于检测纸张排出盘是否被排出的纸张填充。 纸张排出装置包括将片材排出到出纸盘上的排出单元; 计数单元,其在每次由所述排出单元弹出片材时对累计喷射数进行计数; 存储单元,其存储定义的喷射数阈值和定义的喷射间隔时间; 当由计数单元计数的累积喷射数超过限定的喷射数阈值时,检测出纸盘排出托盘填充有喷射纸张的饱和度检测单元; 以及复位单元,当喷射间隔时间超过限定的喷射间隔时间时,复位由计数单元计数的累积喷射数,喷射间隔时间从弹出一张纸张延伸到下一张纸由喷射单元喷射。
    • 32. 发明授权
    • Photometric instrument
    • 光度仪
    • US08004673B2
    • 2011-08-23
    • US12292444
    • 2008-11-19
    • Tsuyoshi SoneharaSatoshi TakahashiTomoyuki Sakai
    • Tsuyoshi SoneharaSatoshi TakahashiTomoyuki Sakai
    • G01J3/30
    • G01N21/648G01N21/6456G01N2021/6423
    • A metallic structure is provided on a surface of a substrate. A component having a longer wavelength than excitation light is detected from luminescence from fixation positions of biomolecules and emitted from a material other than the biomolecules, and is used for photometrical analysis. As the structure, usable is a particulate (a metallic structure of a size not larger than a wavelength of the excitation light), a minute protrusion, or a thin film with minute apertures, which are made of a metal such as gold, chrome, silver or aluminum. In the case of the particulate or the minute protrusion, photoluminescence of the structure is detected with a biomolecule being fixed thereon. In the case of the thin film with minute apertures, Raman scattered light of specimen solution around the biomolecules, and photoluminescence of the metallic structure near the biomolecules are detected with biomolecules being fixed in the apertures.
    • 金属结构设置在基板的表面上。 从生物分子的固定位置的发光和从生物分子以外的材料发射的发光中检测到具有比激发光更长波长的成分,并用于光度分析。 作为结构,可以使用由金,铬等金属制成的颗粒(不大于激发光的波长的金属结构),微小突起或微小孔的薄膜, 银或铝。 在颗粒或微小突起的情况下,通过固定有生物分子来检测结构的光致发光。 在具有微小孔径的薄膜的情况下,拉曼散射生物分子周围的样品溶液的光,并且用生物分子固定在孔中来检测生物分子附近的金属结构的光致发光。
    • 34. 发明授权
    • Amplification control device, test signal generation module, test device, amplification control method, program, and recording medium
    • 放大控制装置,测试信号产生模块,测试装置,放大控制方法,程序和记录介质
    • US07973599B2
    • 2011-07-05
    • US12523395
    • 2008-01-24
    • Satoshi Takahashi
    • Satoshi Takahashi
    • H03G3/20
    • H03G3/001H03G3/20H03G3/3036H03G3/3052
    • An amplification control device for controlling a variable-gain amplifier the amplification factor of which is controlled based on an analog control signal, and which amplifies an analog input signal and outputs an analog output signal, includes component acquisition means that transforms, by the discrete Fourier transform, a digital output signal converted from the analog output signal into digital form by an A/D converter, thereby acquiring a desired frequency component of the digital output signal, differentiating means that acquires a difference between the electric power of the frequency component acquired by the component acquisition means and a target value of the electric power of the frequency component, and digital control signal output means that outputs a digital control signal, based on the difference acquired by the differentiating means, for controlling the amplification factor of the variable-gain amplifier, in which the analog control signal is obtained by converting the digital control signal into analog form by the D/A converter.
    • 一种放大控制装置,用于控制其放大系数基于模拟控制信号控制的放大因子并放大模拟输入信号并输出​​模拟输出信号的可变增益放大器包括分量获取装置,其通过离散付里叶变换 通过A / D转换器将从模拟输出信号转换成数字形式的数字输出信号变换,从而获取数字输出信号的期望频率分量;微分装置,获取通过以下方式获得的频率分量的电功率之间的差: 分量获取装置和频率分量的电力的目标值,以及数字控制信号输出装置,其基于由微分装置获取的差值输出数字控制信号,以控制可变增益的放大系数 放大器,其中通过转换t获得模拟控制信号 他通过D / A转换器将数字控制信号转换为模拟形式。
    • 37. 发明授权
    • Wave detection device, method, program, and recording medium
    • 波检测装置,方法,程序和记录介质
    • US07783456B2
    • 2010-08-24
    • US10549319
    • 2004-03-16
    • Satoshi Takahashi
    • Satoshi Takahashi
    • G01R23/00
    • G01R27/28
    • It is possible to detect a reception signal at a high speed. A wave detection device includes: a first signal output unit for outputting a first signal s[n] which is a sum of a digital input signal subjected to A/D conversion and an output from a feedback signal output section; a second signal output unit for outputting a second signal s[n−1] which is the first signal s[n] delayed by one sampling timing; and a feedback signal output section for subjecting the second signal s[n−1] to a predetermined calculation. When n=N−1, a frequency region conversion section reads out the first signal s[N−1] and the second signal s[N−2] from registers and subjects them to a predetermined calculation, thereby obtaining the input signal subjected to DFT. Since the wave detection device has a simple configuration, it is possible to rapidly detect the reception signal which is an input signal of the wave detection device.
    • 可以高速地检测接收信号。 波检测装置包括:第一信号输出单元,用于输出作为经过A / D转换的数字输入信号与来自反馈信号输出部分的输出的和的第一信号s [n] 第二信号输出单元,用于输出延迟了一个采样定时的第一信号s [n]的第二信号s [n-1] 以及反馈信号输出部分,用于对第二信号s [n-1]进行预定的计算。 当n = N-1时,频率区域转换部从寄存器读出第一信号s [N-1]和第二信号s [N-2],并将它们进行预定的计算,从而获得经受 DFT。 由于波检测装置具有简单的结构,因此可以快速检测作为波检测装置的输入信号的接收信号。
    • 39. 发明申请
    • NETWORK DEVICE VERIFYING APPARATUS
    • 网络设备验证设备
    • US20090135725A1
    • 2009-05-28
    • US12096676
    • 2006-12-15
    • Kimie TanakaSatoshi Takahashi
    • Kimie TanakaSatoshi Takahashi
    • H04L12/26
    • H04L43/50H04L63/0428H04L63/08H04L69/14H04L69/18
    • In a reception verifying mode, a data transmitting section (106S) transmits prescribed data through a transmission interface (101S), and a controller (102) exchanges prescribed information and verifies an operation status of a device (21) to be verified through the transmission interface. In a transmission verifying mode, a data receiving section (106R) receives prescribed data through a reception interface (101R), and the controller exchanges prescribed information and verifies an operation status of a device to be verified through a reception interface. In a transmission/reception verifying mode, the data transmitting section transmits prescribed data through the transmission interface, and the controller exchanges prescribed information and verifies receiving operation of a device to be verified through the transmission interface. Moreover, the data receiving section receives prescribed data through the reception interface, and the controller exchanges prescribed information and verifies transmitting operation of the device to be verified through the reception interface.
    • 在接收验证模式中,数据发送部(106S)通过发送接口(101S)发送规定的数据,控制器(102)交换规定的信息,并通过发送来验证要被验证的设备(21)的操作状态 接口。 在发送验证模式中,数据接收部(106R)通过接收接口(101R)接收规定的数据,并且控制器交换规定的信息,并且通过接收接口来验证要被验证的设备的操作状态。 在发送/接收验证模式中,数据发送部通过发送接口发送规定的数据,并且控制器交换规定的信息,并通过发送接口来验证要被验证的设备的接收操作。 此外,数据接收部分通过接收接口接收规定的数据,并且控制器交换规定的信息,并通过接收接口验证待验证的设备的发送操作。