Baggage management gate
    1.
    发明授权
    Baggage management gate 有权
    行李管理门

    公开(公告)号:US08018321B2

    公开(公告)日:2011-09-13

    申请号:US12073784

    申请日:2008-03-10

    CPC classification number: G01R33/04 G01R33/02

    Abstract: A baggage management gate including an exciting coil, a detecting coil and signal processing unit. The exciting coil forms an alternating magnetic field in a passage to an area from which manages objects to be carried in or carried out. The detecting coil detects a variation in the alternating magnetic field when magnetization of a magnetic material showing a large Barkhausen effect is reversed in the alternating magnetic field. The signal processing unit determines as to whether the magnetization reversal occurs in the alternating magnetic field due to the large Barkhausen effect or not, based on a signal detected by the detecting coil. The signal processing unit includes amplifier that amplifies the signal detected by the detecting coil with plural different amplification factors and output the amplified signals with each of the plural different amplification factors.

    Abstract translation: 包括励磁线圈,检测线圈和信号处理单元的行李管理门。 励磁线圈在通过管道运送或执行物体的区域中形成交变磁场。 当在交变磁场中表现出大的巴克豪森效应的磁性材料的磁化反转时,检测线圈检测交变磁场的变化。 信号处理单元基于由检测线圈检测到的信号,确定由于大的巴克豪森效应而导致的交变磁场中的磁化反转是否发生。 信号处理单元包括放大器,其放大由多个不同放大系数由检测线圈检测的信号,并以多个不同放大系数中的每一个输出放大的信号。

    Baggage management gate
    3.
    发明申请
    Baggage management gate 有权
    行李管理门

    公开(公告)号:US20090072969A1

    公开(公告)日:2009-03-19

    申请号:US12073784

    申请日:2008-03-10

    CPC classification number: G01R33/04 G01R33/02

    Abstract: A baggage management gate including an exciting coil, a detecting coil and signal processing unit. The exciting coil forms an alternating magnetic field in a passage to an area from which manages objects to be carried in or carried out. The detecting coil detects a variation in the alternating magnetic field when magnetization of a magnetic material showing a large Barkhausen effect is reversed in the alternating magnetic field. The signal processing unit determines as to whether the magnetization reversal occurs in the alternating magnetic field due to the large Barkhausen effect or not, based on a signal detected by the detecting coil. The signal processing unit includes amplifier that amplifies the signal detected by the detecting coil with plural different amplification factors and output the amplified signals with each of the plural different amplification factors.

    Abstract translation: 包括励磁线圈,检测线圈和信号处理单元的行李管理门。 励磁线圈在通过管道运送或执行物体的区域中形成交变磁场。 当在交变磁场中表现出大的巴克豪森效应的磁性材料的磁化反转时,检测线圈检测交变磁场的变化。 信号处理单元基于由检测线圈检测到的信号,确定由于大的巴克豪森效应而导致的交变磁场中的磁化反转是否发生。 信号处理单元包括放大器,其放大由多个不同放大系数由检测线圈检测的信号,并以多个不同放大系数中的每一个输出放大的信号。

    Baggage management gate
    4.
    发明授权
    Baggage management gate 有权
    行李管理门

    公开(公告)号:US07834739B2

    公开(公告)日:2010-11-16

    申请号:US12076337

    申请日:2008-03-17

    CPC classification number: G01R33/02

    Abstract: A baggage management gate includes a first reading device and a second reading device, a detecting device, a determining unit, a first opening and closing device and a second opening and closing device. The baggage management gate manages baggage that is restricted to be carried in or out from a predetermined region. And in order away from the region in which the baggage is managed, the first reading device, the second opening and closing device, the detecting device for both the first person and the second person, the first opening and closing device, and the second reading device are arranged in an entrance direction from the passage to the management region in which the baggage is managed.

    Abstract translation: 行李管理门包括第一读取装置和第二读取装置,检测装置,确定装置,第一打开和关闭装置以及第二打开和关闭装置。 行李管理门管理被限制在预定区域内进出的行李。 并且为了远离管理行李的区域,第一读取装置,第二打开和关闭装置,用于第一人和第二人的检测装置,第一打开和关闭装置以及第二读取 设备沿着通道行进管理区域的入口方向排列。

    Method for producing apoprotein
    5.
    发明申请
    Method for producing apoprotein 审中-公开
    生产脱蛋白的方法

    公开(公告)号:US20100036103A1

    公开(公告)日:2010-02-11

    申请号:US11794642

    申请日:2005-12-28

    Abstract: A method and an apparatus for producing an apoprotein with which the apoprotein can be efficiently produced from a protein associated with cofactors such as metal ions. The method includes the step of adding an acid to a solution which contains a holoprotein, which is associated with a cofactor which is to be released under acidic conditions, and concentrating the solution with an ultrafiltration membrane. Accordingly, an apoprotein, which has released its cofactor, is produced, and the released cofactor is removed through the membrane along with the acid without reassociating with the apoprotein.

    Abstract translation: 用于产生脱辅基蛋白的方法和装置,通过该载体蛋白可以从与诸如金属离子的辅因子相关联的蛋白质有效地产生脱辅基蛋白。 该方法包括将酸添加到含有与在酸性条件下释放的辅因子相关联的蛋白质的溶液中,并且用超滤膜浓缩该溶液的步骤。 因此,产生已经释放其辅因子的脱辅基蛋白,并且释放的辅因子与酸一起通过膜除去而不与脱辅基蛋白重新结合。

    Method for separating/refining cationic protein
    6.
    发明申请
    Method for separating/refining cationic protein 审中-公开
    阳离子蛋白分离/精制方法

    公开(公告)号:US20070170061A1

    公开(公告)日:2007-07-26

    申请号:US10588403

    申请日:2005-01-31

    Inventor: Hiroyoshi Inoue

    Abstract: The method of the present invention for separating and purifying a cationic protein is performed by using an electrodialysis apparatus. The electrodialysis apparatus used herein includes an electrodialysis bath having an anode and a cathode. The electrodialysis bath includes an anode compartment, a raw material loading compartment, a concentration compartment, and a cathode compartment in this order from the anode side. The anode compartment and the raw material loading compartment are divided from each other by a porous membrane made of a polymer having an anion exchange group, the raw material loading compartment and the concentration compartment are divided from each other by a porous membrane made of a polymer having a cation exchange group, and the concentration compartment and the cathode compartment are divided from each other by a microporous membrane. The method of the present invention includes the steps of, in this electrodialysis apparatus, (1) loading a cationic protein-containing aqueous solution into the raw material loading compartment and loading an electrolytic solution into the anode compartment, the concentration compartment, and the cathode compartment, (2) applying a current to the electrodialysis apparatus, and (3) collecting a solution containing a cationic protein from the concentration compartment.

    Abstract translation: 通过使用电渗析装置进行本发明的阳离子蛋白质的分离纯化方法。 本文所用的电渗析装置包括具有阳极和阴极的电渗析浴。 该电渗析浴从阳极侧依次包括阳极室,原料装载室,浓缩室和阴极室。 阳极室和原料装载室通过由具有阴离子交换基团的聚合物制成的多孔膜彼此分开,原料装载室和浓缩室通过由聚合物制成的多孔膜彼此分开 具有阳离子交换基团,并且浓缩室和阴极室由微孔膜彼此分开。 本发明的方法包括以下步骤:在该电渗析装置中,(1)将含阳离子蛋白质的水溶液装入原料装载室,将电解液装入阳极室,浓缩室和阴极 隔室,(2)向电渗析装置施加电流,(3)从浓缩室收集含有阳离子蛋白质的溶液。

    Body fat meter
    7.
    发明授权
    Body fat meter 失效
    身体脂肪计

    公开(公告)号:US06456873B1

    公开(公告)日:2002-09-24

    申请号:US09509056

    申请日:2000-05-08

    CPC classification number: A61B5/0537 A61B5/4872

    Abstract: A first current path forming electrode, a first measuring electrode, a second current path forming electrode and a second measuring electrode which serve to measure an impedance of a human body of a subject for a body fat ratio are formed on an electronic circuit board.

    Abstract translation: 在电子电路板上形成第一电流路径形成电极,第一测量电极,第二电流路径形成电极和第二测量电极,其用于测量人体对身体体脂肪比的阻抗。

    Object detecting apparatus
    8.
    发明授权
    Object detecting apparatus 有权
    物体检测装置

    公开(公告)号:US08193806B2

    公开(公告)日:2012-06-05

    申请号:US12557923

    申请日:2009-09-11

    CPC classification number: G01R33/0029 G01V3/08 G01V3/10 G01V15/00

    Abstract: An object detecting apparatus that detects an object including a magnetic body including: a detection signal acquiring unit that acquires a detection signal based on a magnetic signal; a disturbance source detection signal storage unit that stores a detection signal of a disturbance source that generates a disturbance component with respect to the detection signal; a determining unit that determines whether the detection signal acquired by the detection signal acquiring unit contains the disturbance component; an amplitude correction unit that corrects an amplitude of the disturbance source detection signal and generates an amplitude-corrected disturbance source detection signal; a disturbance component suppression unit that generates a determination signal by suppressing the disturbance component contained in the detection signal; and an object determination unit that determines whether the object is the object to be detected based on the determination signal.

    Abstract translation: 一种检测包括磁体的物体的物体检测装置,包括:检测信号获取单元,其基于磁信号获取检测信号; 干扰源检测信号存储单元,其存储相对于所述检测信号产生干扰成分的干扰源的检测信号; 确定单元,确定由检测信号获取单元获取的检测信号是否包含干扰分量; 幅度校正单元,其校正所述干扰源检测信号的幅度并产生振幅校正的干扰源检测信号; 干扰分量抑制单元,其通过抑制检测信号中包含的干扰分量来产生确定信号; 以及对象确定单元,其基于所述确定信号来确定所述对象是否是所述被检测对象。

    CONTROL GATE
    10.
    发明申请
    CONTROL GATE 审中-公开
    控制门

    公开(公告)号:US20090026261A1

    公开(公告)日:2009-01-29

    申请号:US12179155

    申请日:2008-07-24

    CPC classification number: G08B13/2434 G08B13/2408 G08B13/2445 G08B13/2471

    Abstract: A control gate includes a first exciting coil, a first detection coil, a second exciting coil, a second detection coil, a signal determination unit and an amplification factor setting unit. The first exciting coil forms a first alternating magnetic field in a passage. The first detection coil detects a variation in the first alternating magnetic field. The second exciting coil forms a second alternating magnetic field in the passage. The second detection coil that detects a variation in the second magnetic field. The signal determination unit includes a first amplifier which (i) amplifies a first detection signal of the first detection coil and (ii) determines a passage of the magnetic material based on the amplified first detection signal. The amplification factor setting unit sets a first amplification factor for the first amplifier based on a second detection signal of the second detection coil.

    Abstract translation: 控制门包括第一激励线圈,第一检测线圈,第二激励线圈,第二检测线圈,信号确定单元和放大因子设置单元。 第一激励线圈在通道中形成第一交变磁场。 第一检测线圈检测第一交变磁场的变化。 第二激励线圈在通道中形成第二交变磁场。 检测第二磁场变化的第二检测线圈。 信号确定单元包括:第一放大器,其(i)放大第一检测线圈的第一检测信号,以及(ii)基于放大的第一检测信号确定磁性材料的通过。 放大率设定单元基于第二检测线圈的第二检测信号设定第一放大器的第一放大系数。

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