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    • 8. 发明授权
    • Diagnosis system
    • 诊断系统
    • US5748496A
    • 1998-05-05
    • US700043
    • 1996-08-20
    • Fuminobu TakahashiMasahiro KoikeShunsuke UchidaHaruo FujimoriIzumi YamadaTakaharu FukuzakiMakoto Nagase
    • Fuminobu TakahashiMasahiro KoikeShunsuke UchidaHaruo FujimoriIzumi YamadaTakaharu FukuzakiMakoto Nagase
    • G01M99/00G05B23/02G21C17/00G21C7/36
    • G21C17/00G05B23/0227G05B23/0272Y10S706/912Y10S706/915
    • A diagnosis system having sensors for supervising a plant, signal processors for processing signals of the sensors, and a state quantity arithmetic operation unit. The state quantity arithmetic operation unit calculates a quantity of state expressing the environment of the plant on the basis of supervisory information inputted through the signal processors. A state quantity prediction unit predictively calculates a quantity of state after a predetermined time on the basis of the quantity of state, supervisory information and a time change of the quantity of state inputted through the state quantity arithmetic operation unit. A future event prediction unit predicts a future event on the basis of predicted information of the quantity of state inputted through the state quantity prediction unit. An image information processor converts the quantity of state given by the state quantity arithmetic operation unit into image information and indicates the image information on a display unit. An image information processor converts the predicted quantity of state after the predetermined time, given by the state quantity prediction unit, into image information and indicates the image information on a display unit. An image information processor converts the future event predicted by the future event prediction unit into image information and indicates the image information on a display unit.
    • 具有用于监视设备的传感器,用于处理传感器的信号的信号处理器以及状态量算术运算单元的诊断系统。 状态量算术运算部根据通过信号处理部输入的监视信息来计算表示工厂环境的状态量。 状态量预测单元基于通过状态量算术运算单元输入的状态量,监视信息和状态量的时间变化,预测计算了预定时间之后的状态量。 未来事件预测单元基于通过状态量预测单元输入的状态量的预测信息来预测未来事件。 图像信息处理器将由状态量算术运算单元给出的状态量转换为图像信息,并在显示单元上指示图像信息。 图像信息处理器将由状态量预测单元给出的预定时间之后的预测状态量转换为图像信息,并在显示单元上指示图像信息。 图像信息处理器将未来事件预测单元预测的未来事件转换成图像信息,并在显示单元上指示图像信息。
    • 10. 发明申请
    • AXIAL FLOW FAN
    • 轴流风扇
    • US20110097226A1
    • 2011-04-28
    • US13001503
    • 2009-06-15
    • Toshiyuki NakamuraMasahiro KoikeNaoya Inada
    • Toshiyuki NakamuraMasahiro KoikeNaoya Inada
    • F04D25/08
    • F04D25/08F04D25/0613F04D25/0693F04D29/52
    • An axial flow fan provided herein allows for a wide range of selection for placement of the fan and wiring of the lead wires. The axial flow fan includes a first lead wire engaging portion 17 configured to be engaged with a plurality of lead wires 15 such that the lead wires are pulled out therefrom into an outer space OS defined between a first flange 21 and a second flange 23 of a fan housing 3, a second lead wire engaging portion 19 configured to be engaged with the plurality of lead wires 15 such that the lead wires, which have been engaged with the first lead wire engaging portion 17 and pulled out therefrom into the outer space OS, are then pulled out toward the other side in the axial direction where the second flange 23 is positioned, and a third lead wire engaging portion 27 configured to be engaged with the plurality of lead wires 15 such that the lead wires, which have been engaged with the first lead wire engaging portion 17 and pulled out therefrom into the outer space OS, are then pulled out in the axial direction toward one side where the first flange 21 is positioned. The third lead wire engaging portion 27 is formed in the first flange 21 at a given distance from the first lead wire engaging portion 17.
    • 这里提供的轴流风扇允许宽范围的选择用于布置风扇和引线的布线。 轴流风扇包括第一引线接合部分17,其被配置为与多个引线15接合,使得引线从其中被拉出到限定在第一凸缘21和第二凸缘21之间的外部空间OS中 风扇壳体3,第二引线接合部分19,被配置为与多个引线15接合,使得已经与第一引线接合部分17接合并从其中被拉出到外部空间OS中的引线, 然后在第二凸缘23所在的轴向方向上向另一侧拉出,以及第三引线接合部27,其被构造成与多根引线15接合,使得已经与 然后将第一引线接合部17从外部空间OS中拉出,然后沿着轴向向第一凸缘21的一侧被拉出。 第三引线接合部分27以与第一引线接合部分17相距给定的距离形成在第一凸缘21中。