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    • 4. 发明专利
    • ID18420A
    • 1998-04-09
    • ID972483
    • 1997-07-16
    • TOSHIBA KK
    • MIYAGAWA MASARUYOSHIDA TETSUOSATOU AKIRAHORIKIRI KAZUHITOSAKAGUCHI OSAMUHIRAMOTO TAKESHIMASAKI NOBUOGOU TOMIOKODAMA RYOICHIIKEDA JUNICHI
    • H02B13/02H01R4/00H01R9/00H02B1/20
    • A gas-insulated metal enclosed switchgear including: a housing for housing a plurality of circuit equipments; at least three first insulating bushings penetrating through an outer wall of the housing; at least three second insulating bushings penetrating through an outer wall of the housing; and at least three cables positioned in parallel with each other adjacent to the outer wall of the housing, each connecting between one of the first insulating bushings and one of the second insulating bushings, respectively; in which; each of the first and second insulating bushings has a head with trapezoidal portions formed at both sides thereof and connected to one of the cable at at least one side of the trapezoidal portions for connecting the circuit equipments, respectively; a side face of a first side of the trapezoidal portions of a first-phase insulating bushing out of the first and second insulating bushings is set adjacent to a side face of a second side of the trapezoidal portions of a second-phase insulating bushing out of the first and second insulating bushings, respectively; and a side face of a first side of the trapezoidal portions of a second-phase insulating bushing out of the first and second insulating bushings is set adjacent to a side face of a first side of the trapezoidal portions of a third-phase insulating bushing of the first and second insulating bushings, respectively.
    • 10. 发明专利
    • DISCONNECTOR-FITTED VACUUM BREAKER
    • MY123118A
    • 2006-05-31
    • MYPI9703506
    • 1997-07-31
    • TOSHIBA KK
    • IKEDA JUNICHIUEDA KATSUYUKIMIYAGAWA MASARUSAKAGUCHI OSAMUNOMIYA SHIGEONAGATA TAKAFUMIGOU TOMIO
    • H01H3/40H02B13/02H01H33/66H01H33/666
    • PROBLEM TO OBTAIN A DISCONNECTOR-FITTED VACUUM BREAKER WHICH CAN BE HOUSED IN MULTIPLE STAGES VERTICALLY IN A BOX. METHOD OF SOLUTION SECURE FIXED RODS(21)VERTICALLY ON THE FRONT FACE OF MOUNTING PLATE(3)AND PROVIDE SLIDING RODS (20A AND 20B) VERTICALLY THROUGH ITS CENTRAL PART. SECURE THE REAR END OF MECHANISM FRAME (4) TO THE FRONT ENDS OF SLIDING RODS (20A AND 20B,) AND SECURE INSULATING FRAME(13) TO THE REAR ENDS OF SLIDING RODS (20A AND 20B). HOUSE MULTIPLE VACUUM BULBS 1 HORIZONTALLY IN GROOVES FORMED ON THE BACK OF INSULATING FRAME (13), AND SECURE THEIR FIXED SIDE CONDUCTIVE SHAFTS TO THE REAR END OF INSULATING FRAME 13 WITH FIXED SIDE CONDUCTORS (6B). SECURE MOVABLE SIDE CONTACT BASES(8)TO THE REAR FACES OF FIXED SIDE CONDUCTORS (6B). PROVIDE SUPPORTING FRAMES(11)ON THE REAR SURFACE SIDES OF THE UPPER AND LOWER ENDS OF MECHANISM FRAME 4, AND PROVIDE DRIVING SHAFT(7)VERTICALLY BETWEEN THESE SUPPORTING FRAMES (11). SECURE SUPPORTING FRAME(10) IN THE CENTRAL PART OF MECHANISM FRAME(4), SUPPORT THE CENTRAL PART OF DRIVING SHAFT(7) WITH BEARINGS AND, AT THE SAME TIME, INSERT SCREW GEAR(23B). MOUNT A MOTOR ON THE LEFT SIDE FACE OF SUPPORTING FRAME(L0), AND CAUSE DRIVING SCREW GEAR(23A)WHICH IS PRESS-FITTED TO ITS SHAFT TO ENGAGE WITH SCREW GEAR (23B). INSERT SCREW GEARS( 23C) ON THE UPPER AND LOWER ENDS OF DRIVING SHAFT(7), AND, BY CAUSING THEM TO ENGAGE WITH SCREW GEARS 23D INSERTED ON FIXED RODS 21, DRIVE INSULATING FRAME 13 BY DRIVING MECHANISM FRAME(4) FORWARDS AND BACKWARDS. CLOSE AND OPEN THE DISCONNECTORS WITH CONTACT PIECES 8A MOUNTED ON THE MOVABLE CONTACT BASES BY DRIVING INSULATING FRAME (13) FORWARDS AND BACKWARDS.