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    • 4. 发明申请
    • Parameter setting device, parameter setting method and program
    • 参数设定装置,参数设定方法及程序
    • US20070038312A1
    • 2007-02-15
    • US11475168
    • 2006-06-27
    • Yoshihiro FujitaChiaki ItoMakoto MurataIsao UchidaTetsuya Ohtani
    • Yoshihiro FujitaChiaki ItoMakoto MurataIsao UchidaTetsuya Ohtani
    • G05B15/00
    • G05B17/02G05B13/042
    • There are provided a parameter setting device capable of cutting down development costs, and various social costs by reducing the burden on work for optimizing parameter values, and so forth. An acquisition means acquires output results while varying parameter values of parameters. A determination means determines optimum parameter values on the basis of the output results acquired by the acquisition means. An acceptance means accepts a user's instruction for determining a procedure of acquiring the output results by the acquisition means, and a method of determining the optimum parameter values by the determination means. A storage means stores the output results acquired by the acquisition means. According to the parameter setting device of the invention, since the user's instruction for determining a procedure of acquiring the output results by the acquisition means, and a method of determining the optimum parameter values by the determination means is accepted, it is adaptable to various systems while reducing the burden on work for optimizing the parameter values.
    • 提供了能够通过减少优化参数值的工作负担等来降低开发成本和各种社会成本的参数设置装置。 采集装置在改变参数的参数值的同时获取输出结果。 确定装置基于由获取装置获取的输出结果确定最佳参数值。 接受装置接受用户确定由获取装置获取输出结果的过程的指令,以及由确定装置确定最佳参数值的方法。 存储装置存储由获取装置获取的输出结果。 根据本发明的参数设定装置,由于接收到用户用于确定由获取装置获取输出结果的过程的指令和由确定装置确定最佳参数值的方法,所以可以适应各种系统 同时减轻了优化参数值的工作负担。
    • 7. 发明申请
    • NETWORK CONTROL SYSTEM
    • 网络控制系统
    • US20110044331A1
    • 2011-02-24
    • US12740175
    • 2008-09-29
    • Akira NagashimaTetsuya OhtaniRyutaro Okano
    • Akira NagashimaTetsuya OhtaniRyutaro Okano
    • H04L12/56
    • G05B9/02G05B2219/31243G05B2219/31258G05B2219/31457
    • A network control system enabling stable plant control thanks to controller compensation made in view of a packet loss. In the network control system, the amount of operation of a controller for computing the difference between the controlled variable from a sensor for measuring a physical quantity of a controlled plant and a target value is transmitted by means of a packet through a network to an actuator provided in the controlled plant, and the actuator inputs the amount of operation into the controlled plant. The network control system comprises MV complementing means for giving the actuator a complement value of the amount of operation if a packet transmission error occurs, MV buffer means for back-answering trend data on the inputted amount of operation or the complement value given to the actuator through the network to the controller, and MV compensating means for correcting the calculation of the amount of operation of the controller according to the back-answered trend data or complement value.
    • 一种网络控制系统,由于考虑到分组丢失而进行控制器补偿,从而能够实现稳定的设备控制。 在网络控制系统中,用于计算来自用于测量受控设备的物理量的传感器的受控变量与目标值之间的差异的控制器的操作量通过网络通过分组传送到致动器 提供在受控设备中,并且致动器将操作量输入到受控设备中。 网络控制系统包括MV补充装置,用于如果发生分组传输错误,给予致动器的补充量的补偿值; MV缓冲器装置,用于根据输入的操作量回答趋势数据或者给予致动器的补码值 通过网络连接到控制器,以及MV补偿装置,用于根据回答趋势数据或补码值来校正控制器的操作量的计算。
    • 8. 发明授权
    • Interface circuit and semiconductor integrated circuit
    • 接口电路和半导体集成电路
    • US07595656B2
    • 2009-09-29
    • US11998399
    • 2007-11-29
    • Kazunori HayamiTetsuya Ohtani
    • Kazunori HayamiTetsuya Ohtani
    • H03K19/003
    • H03K19/00384H03K19/0005H04L25/0278H04L25/028
    • An interface circuit includes a driver circuit (12) made up of a combination of a plurality of transistors, a calibration circuit (14) for performing selection of on and off of one or more of the plurality of transistors for adjusting on-resistance thereof, and a terminating resistor (13) that is connected to an output side of the driver circuit (12). One or more of the transistors are turned on based on an output of the calibration circuit (14), so that a combination resistance value of the on-resistance and the terminating resistor matches characteristic impedance of the transmission line. The driver circuit (12), the calibration circuit (14) and the terminating resistor (13) are formed on the same semiconductor integrated circuit SK, and the calibration circuit (14) detects process variation and temperature variation of the transistor and the resistor formed on the semiconductor integrated circuit (SK).
    • 接口电路包括由多个晶体管的组合构成的驱动电路(12),用于执行选择多个晶体管中的一个或多个用于调节导通电阻的导通和截止的校准电路(14) 以及连接到所述驱动电路(12)的输出侧的终端电阻(13)。 一个或多个晶体管基于校准电路(14)的输出导通,使得导通电阻和终端电阻的组合电阻值匹配传输线的特征阻抗。 驱动电路(12),校准电路(14)和终端电阻(13)形成在相同的半导体集成电路SK上,校准电路(14)检测晶体管的工艺变化和温度变化以及形成的电阻 在半导体集成电路(SK)上。
    • 9. 发明授权
    • Security system in an extend unit for a computer
    • 计算机扩展单元中的安全系统
    • US06442984B1
    • 2002-09-03
    • US09546753
    • 2000-04-11
    • Katsutoshi KatohTetsuya OhtaniShigeru IshiiYoshiharu Uchiyama
    • Katsutoshi KatohTetsuya OhtaniShigeru IshiiYoshiharu Uchiyama
    • E05B6900
    • E05B73/0005E05B73/0082G06F1/1632Y10T70/5009
    • Described is a security mechanism effective in various combinations of a notebook PC and various extend units. An extend unit includes a security slot for attaching a cable lock, a security select which has a plurality of select positions and the select position of which is fixed when the cable lock is attached to the security slot. A linking unit is included for interlocking with the security select switch, disabling a release switch to be operated with fixing the release switch of a subsystem holding bay when the security select switch is positioned at a first select position, disabling the release switch and an eject switch, separating the notebook PC from the extend unit, to be operated when the security select switch is positioned at a second select position, and enabling the release switch and eject switch to be operated without fixing the release switch and eject switch when the security select switch is positioned at a third select position.
    • 描述了一种在笔记本PC和各种扩展单元的各种组合中有效的安全机制。 扩展单元包括用于附接电缆锁的安全插槽,具有多个选择位置的安全选择,并且当电缆锁附接到安全插槽时,其选择位置是固定的。 包括连接单元以与安全选择开关互锁,当安全选择开关位于第一选择位置时,禁止释放开关被操作以固定子系统保持架的释放开关,禁用释放开关和弹出 开关,将笔记本电脑与扩展单元分离,以在安全选择开关位于第二选择位置时操作,并且当安全选择时,使得释放开关和弹出开关能够被操作而不固定释放开关和弹出开关 开关位于第三选择位置。
    • 10. 发明授权
    • Sub-card board connector, sub-card board, modem sub-card, and a computer having this connector
    • 子卡板连接器,子卡板,调制解调器子卡以及具有该连接器的计算机
    • US06270369B1
    • 2001-08-07
    • US09544244
    • 2000-04-05
    • Katsutoshi KatoKazuo FujiiTetsuya OhtaniShigeki MoriThomas Studwell
    • Katsutoshi KatoKazuo FujiiTetsuya OhtaniShigeki MoriThomas Studwell
    • H01R1362
    • H01R12/7005H01R12/721H01R12/83
    • It is to provide a sub-card board connector capable of secure grounding and also easy placement and removal of a card, a sub-card board, a modem sub-card, and a computer having this connector. In sub-card board connector 1 of the present invention, (1) first GND connections 11-1, 11-2 are placed on a surface facing the sub-card board 2 of the latches 7-1, 7-2 and when connecting the sub-card board to the connector, the sub-card board is grounded by having the first GND connections contact the first electrodes provided on the sub-card board; and/or (2) second GND connections 12-1, 12-2 are placed facing the sub-card board on a surface opposite to the latches of the latch supporting parts 6-1, 6-2 and when connecting the sub-card board to the connector, the sub-card board is grounded by having the second GND connections contact the second electrodes provided on the sub-card board. And this connector is incorporated in a computer.
    • 提供一种能够安全接地的子卡板连接器,并且还容易地放置和移除卡,子卡板,调制解调器子卡以及具有该连接器的计算机。 在本发明的子卡板连接器1中,(1)第一GND连接11-1,11-2被放置在与闩锁7-1,7-2的子卡板2相对的表面上,当连接 子卡板连接到连接器,子卡板通过使第一GND连接接触设置在子卡板上的第一电极而接地; 和/或(2)第二GND连接12-1,12-2被放置在与卡锁支撑部分6-1,6-2的闩锁相对的表面上面对副卡板,并且当连接子卡 通过使第二GND连接接触设置在子卡板上的第二电极,子卡板接地。 并且该连接器被并入计算机中。