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    • 4. 发明授权
    • Adaptive control system
    • 自适应控制系统
    • US5355065A
    • 1994-10-11
    • US60039
    • 1993-05-11
    • Kazushige NarazakiOsamu Ito
    • Kazushige NarazakiOsamu Ito
    • G05B13/02G05B13/00
    • G05B13/0255
    • A control system for a physical plant has a state output detector for detecting operating conditions of the physical plant. A trajectory production unit produces desired operating conditions of the physical plant, and an error production unit produces error signals based on the detected operating conditions and the desired operating conditions. A control signal generator generates a control signal based on the detected operating conditions, the error signals, a control signal generated a predetermined time period ago, an error dynamics adjustment signal, and a control input signal. The control signal generator includes a control input signal generator and an error dynamics signal generator. The control input signal generator generates the control input signal based on a predetermined control relationship. The error dynamics adjustment signal generator generates the error dynamics adjustment signal and the predetermined time period based on a plurality of predetermined error dynamics relationships. A control signal applicator controls the physical plant in accordance with the generated control signal.
    • 用于物理设备的控制系统具有状态输出检测器,用于检测物理设备的运行状况。 轨迹生成单元产生物理设备的期望的操作条件,并且错误产生单元基于检测到的操作条件和期望的操作条件产生误差信号。 控制信号发生器基于检测到的操作条件,误差信号,预定时间段产生的控制信号,误差动力学调节信号和控制输入信号产生控制信号。 控制信号发生器包括控制输入信号发生器和误差动态信号发生器。 控制输入​​信号发生器基于预定的控制关系产生控制输入信号。 误差动力学调节信号发生器基于多个预定的误差动力学关系产生误差动态调整信号和预定时间段。 控制信号施加器根据产生的控制信号控制物理设备。
    • 6. 发明申请
    • CONTACT STRUCTURE UNIT
    • 接触结构单元
    • US20140162503A1
    • 2014-06-12
    • US14233484
    • 2012-07-17
    • Yoshio YamadaOsamu Ito
    • Yoshio YamadaOsamu Ito
    • H01R4/48
    • H01R4/4863G01R1/06722G01R1/06733G01R1/07314
    • A contact structure unit that achieves electrical continuity between a substrate, which includes a plurality of electrodes, and a contact object includes a first-type contact-carrying member including a contact portion which makes contact with the contact object; includes a plurality of second-type contact-carrying members each of which includes a leading end portion formed at one end portion and making contact with the electrodes and each of which makes contact with the first-type contact-carrying member at the other end portion; and includes a plurality of coil springs each of which is disposed between the contact portion and the leading end portions and each of which biases the contact portion and the leading end portions.
    • 一种在包括多个电极的基板和接触物体之间实现电连续性的接触结构单元包括:第一类型接触承载构件,其包括与接触物体接触的接触部分; 包括多个第二接触承载构件,每个第二接触承载构件包括形成在一个端部处并与电极接触的前端部,并且每个与另一端部处的第一类型接触构件接触 ; 并且包括多个螺旋弹簧,每个螺旋弹簧设置在接触部分和前端部分之间,并且每个螺旋弹簧偏压接触部分和前端部分。
    • 7. 发明授权
    • Banknote handling apparatus
    • 钞票处理装置
    • US08464876B2
    • 2013-06-18
    • US13281613
    • 2011-10-26
    • Hirofumi OzakiOsamu Ito
    • Hirofumi OzakiOsamu Ito
    • B07C5/00
    • G07D11/0084G07D11/0063
    • A banknote handling apparatus including a receiving unit that receives banknotes to be counted, a recognition unit that recognizes attributes of the banknotes, a storing unit that stores the banknotes sorted based on a recognition result by the recognition unit, an operation unit for selecting a counting mode and a setting for stacking, and a verification counting process control unit that executes a first counting process when the operation unit selects a verification mode as the counting mode, stores the banknotes in stacking units in a designated first setting for stacking, executes a verification counting process to the banknotes stacked in the first setting for stacking, stores the banknotes in stacking units in a designated second setting for stacking that is different from the first setting for stacking, and determines match/mismatch of the number of banknotes of each denomination in the first counting process and the verification counting process.
    • 一种纸币处理装置,包括:接收单元,其接收要计数的纸币;识别单元,其识别纸币的属性;存储单元,其存储基于识别单元的识别结果分类的纸币;操作单元,用于选择计数 模式和堆叠设置;以及验证计数处理控制单元,其在操作单元选择验证模式作为计数模式时执行第一计数处理,将堆积单元中的纸币以指定的第一设置进行堆叠,执行验证 对堆叠的第一设置中堆叠的纸币进行计数处理,将堆积单元中的纸币以与用于堆叠的第一设置不同的堆叠的指定的第二设置存储,并且确定每个面值的纸币数量的匹配/不匹配 第一个计数过程和验证计数过程。
    • 9. 发明申请
    • Light emitting device
    • 发光装置
    • US20120250329A1
    • 2012-10-04
    • US13373095
    • 2011-11-04
    • Yoshinobu SuehiroKoji TasumiOsamu Ito
    • Yoshinobu SuehiroKoji TasumiOsamu Ito
    • F21V29/00
    • G02B6/0085F21V29/76F21Y2103/10F21Y2115/10G02B6/0021G02B6/0031G02B6/0078H01L2224/14H01L2224/16225H01L2924/181H01L2924/00012
    • A light emitting device includes a light source including an inorganic material substrate, a light emitting element mounted on a mounting surface of the inorganic material substrate, and a metalized pattern formed on a non-mounting surface of the inorganic material substrate on which the light emitting element is not mounted, a mounting substrate including an mounting surface on which the light source is mounted, and a conductor pattern formed on the mounting surface and bonded to the metalized pattern, and an optical member disposed on the mounting surface of the mounting substrate so as to guide a light emitted from the light source in a predetermined direction. The optical member includes a heat absorbing surface at least a part of which faces the conductor pattern of the mounting substrate, and a heat radiating surface that radiates heat of the light source conducted from the conductor pattern via the heat absorbing surface.
    • 发光装置包括:光源,其包括无机材料基板,安装在无机材料基板的安装面上的发光元件和形成在无机材料基板的非安装面上的金属化图案, 元件没有安装,安装基板包括其上安装有光源的安装表面和形成在安装表面上并结合到金属化图案的导体图案,以及设置在安装基板的安装表面上的光学构件, 以引导从光源发射的光沿预定方向。 光学构件包括至少一部分面向安装基板的导体图案的吸热表面,以及散热表面,其辐射从导体图案经由吸热表面传导的光源的热量。