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    • 51. 发明授权
    • Functional device, function maintaining method and function maintaining program
    • 功能设备,功能维护方法和功能维护程序
    • US07434086B2
    • 2008-10-07
    • US11023011
    • 2004-12-28
    • Jin AbeHirokazu FukuiKazuhiro Kaneko
    • Jin AbeHirokazu FukuiKazuhiro Kaneko
    • G06F11/00
    • G06F11/20G06F11/142
    • This invention relates to a functional device such as an FPGA carrying out a necessary function by programming, and provides a functional device, a function maintaining method and a function maintaining program which can maintain a function continuously. A plurality of function parts (FPGAs) is provided, and a function is maintained by switching from a function part, in which a failure is occurring, to a function part under stand-by. The plurality of function parts, a failure detection part (failure detection circuits) and a switching part (switching circuits) are provided, and a function part under operation and a function part under stand-by a reset. That is, the function part in which the failure is occurring is made into a stand-by state, and the function part which is under stand-by is made to operate. Therefore, the continuous function can be maintained without stopping the operation of a system due to the failure occurring in the function part, and the reliability of the system is heightened by the maintenance of the function.
    • 本发明涉及通过编程实现必要功能的FPGA等功能装置,提供可以连续地保持功能的功能装置,功能维护方法和功能维护程序。 提供多个功能部件(FPGA),并且通过从发生故障的功能部件切换到待机功能部件来维护功能。 提供多个功能部件,故障检测部件(故障检测电路)和开关部件(开关电路),以及正在运行的功能部件和备用复位功能部件。 也就是说,发生故障的功能部件成为待机状态,使待机的功能部件工作。 因此,由于功能部件发生故障,可以维持连续功能而不停止系统的运转,并且通过维护功能来提高系统的可靠性。
    • 52. 发明申请
    • Functional device, function maintaining method and function maintaining program
    • 功能设备,功能维护方法和功能维护程序
    • US20060036912A1
    • 2006-02-16
    • US11023011
    • 2004-12-28
    • Jin AbeHirokazu FukuiKazuhiro Kaneko
    • Jin AbeHirokazu FukuiKazuhiro Kaneko
    • G06F11/00
    • G06F11/20G06F11/142
    • This invention relates to a functional device such as an FPGA carrying out a necessary function by programming, and provides a functional device, a function maintaining method and a function maintaining program which can maintain a function continuously. A plurality of function parts (FPGAs) is provided, and a function is maintained by switching from a function part, in which a failure is occurring, to a function part under stand-by. The plurality of function parts, a failure detection part (failure detection circuits) and a switching part (switching circuits) are provided, and a function part under operation and a function part under stand-by a reset. That is, the function part in which the failure is occurring is made into a stand-by state, and the function part which is under stand-by is made to operate. Therefore, the continuous function can be maintained without stopping the operation of a system due to the failure occurring in the function part, and the reliability of the system is heightened by the maintenance of the function.
    • 本发明涉及通过编程实现必要功能的FPGA等功能装置,提供可以连续地保持功能的功能装置,功能维护方法和功能维护程序。 提供多个功能部件(FPGA),并且通过从发生故障的功能部件切换到待机功能部件来维护功能。 提供多个功能部件,故障检测部件(故障检测电路)和开关部件(开关电路),以及正在运行的功能部件和备用复位功能部件。 也就是说,发生故障的功能部件成为待机状态,使待机的功能部件工作。 因此,由于功能部件发生故障,可以维持连续功能而不停止系统的运转,并且通过维护功能来提高系统的可靠性。
    • 55. 发明授权
    • Monolithic varistor
    • 单片变阻器
    • US06184769B2
    • 2001-02-06
    • US09276149
    • 1999-03-26
    • Kazutaka NakamuraKazuhiro KanekoTsuyoshi KawadaKenjiro Hadano
    • Kazutaka NakamuraKazuhiro KanekoTsuyoshi KawadaKenjiro Hadano
    • H01C710
    • H01C7/112H01C17/06546H01C17/285
    • A monolithic varistor includes a sintered layered body and a pair of external electrodes disposed on opposite ends of the layered body. The layered body is composed of a plurality of varistor sheets and a plurality of valistor electrodes, which are layered on one another and integrally fired. T is defined as the distance between the varistor electrodes, and Ty is defined as the distance between an outermost varistor electrode and the upper surface of the sintered layered body. Further, Tx is defined as the distance between the external electrodes and the corresponding edges of the varistor electrodes. The varistor is designed in order to satisfy one of the following three conditions: Condition (A) 1.5≦(Tx/T)≦3.0 Condition (B) (Ty/T)≧1.0 Condition (C) 1.5≦(Tx/T)≦3.0 and (Ty/T)≧1.0
    • 单片变阻器包括烧结层叠体和设置在层叠体的相对端的一对外部电极。 层叠体由多个压敏电阻片和多个彼此层叠并整体烧制的晶体管电极组成。 T定义为变阻器电极之间的距离,Ty被定义为最外面的变阻器电极与烧结层叠体的上表面之间的距离。 此外,Tx被定义为外部电极与压敏电阻电极的对应边缘之间的距离。 设计变阻器以满足以下三个条件之一:条件(A)1.5 <=(Tx / T)<= 3.0条件(B)(Ty / T)> = 1.0条件(C)1.5 <=( Tx / T)<= 3.0和(Ty / T)> = 1.0