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    • 32. 发明申请
    • MONITORING AND OPERATION IMAGE INTEGRATING SYSTEM OF PLANTS AND MONITORING AND OPERATION IMAGE INTEGRATING METHOD
    • 植物监测与操作图像集成系统及监控与操作图像整合方法
    • US20080205693A1
    • 2008-08-28
    • US11772849
    • 2007-07-03
    • Masashi KitamuraTadashi Ohi
    • Masashi KitamuraTadashi Ohi
    • G06K9/00
    • G05B23/0267G21C17/00G21D3/008G21Y2002/208G21Y2002/301G21Y2002/304G21Y2004/30G21Y2004/40Y02E30/39
    • A monitoring and operation image integrating system include: a display signal synthesizing unit to which a display signal from a plurality of safety equipments and that from non-safety equipment are inputted, and which synthesizes a display signal from the plural safety equipments and a display signal from the non-safety equipment; display signal switching unit to which a state signal showing an operation state of whether or not each monitoring and operation screen image of the plural safety equipments displays an operating device of the equipment, is inputted, and which switches a display signal from a safety equipment to be synthesized by the display signal synthesizing unit based on the inputted state signals; and an integrated monitoring and operation screen display that displays a display signal synthesized by the display signal synthesizing unit as an integrated monitoring and operation screen of a plant.
    • 监视和操作图像集成系统包括:显示信号合成单元,来自多个安全设备的显示信号和来自非安全设备的显示信号被输入到多个安全设备中并且合成来自多个安全设备的显示信号和显示信号 从非安全设备; 显示表示操作状态的状态信号的显示信号切换单元,其中多个安全设备的每个监视和操作屏幕图像是否显示设备的操作设备,并且将显示信号从安全设备切换到 由显示信号合成部基于输入的状态信号合成; 以及综合监视和操作屏幕显示器,其将由显示信号合成单元合成的显示信号显示为工厂的综合监视和操作屏幕。
    • 34. 发明授权
    • Core, rotating machine using the core and production method thereof
    • 核心,旋转机采用核心及其生产方法
    • US06806615B2
    • 2004-10-19
    • US10107312
    • 2002-03-28
    • Yuuji EnomotoMasashi KitamuraToshimi AbukawaYuji Takagai
    • Yuuji EnomotoMasashi KitamuraToshimi AbukawaYuji Takagai
    • H02K100
    • H02K15/022H02K1/148H02K1/187H02K15/095
    • A core has an annular inner core portion, a rib-shaped core portion extending radially from the annular inner core portion and an outer peripheral core portion. Magnetic pole tooth portions are formed in an annular shape on the outer periphery of the rib-shaped core portion, and the core is composed of a plurality of core blocks having the same shapes as blocks formed by dividing the core in circumferential direction. Each of the plurality of core blocks has a concave/convex engage portion at an inner peripheral portion corresponding to the inner periphery of the annular inner core portion, and the plurality of core blocks gathered so as to form the core are fastened each other by a cylindrical housing having an outer surface formed in concave/convex shape, inserted in the inner peripheral portion so as to engage with each other at the concave/convex engage portions, and changed in diameter relative to the core blocks due to thermal shrinkage or expansion of the cylindrical housing, so that the core blocks are tightly fitted to each other without any gap between adjacent core blocks.
    • 芯具有环形内芯部,从环形内芯部分径向延伸的肋状芯部和外周芯部。 磁极齿部在肋状芯部的外周形成为环状,并且芯由具有与在圆周方向上分割芯形成的块相同形状的多个芯块构成。 所述多个芯块中的每一个在与所述环形内芯部的内周对应的内周部分具有凹凸接合部,并且聚集成形成所述芯的所述多个芯块彼此紧固 圆柱形壳体具有形成为凹/凸形状的外表面,插入在内周部分中以在凹/凸接合部分彼此接合,并且由于热收缩或膨胀而相对于芯块变化 圆柱形壳体,使得芯块彼此紧密配合,而相邻芯块之间没有任何间隙。