2003•Unpublished venueRequires access

X-Y linear synchronous motor without force ripple and core loss for precision two-dimensional drive

N. Fujii, K. Okinaga

Open publisher page 1 citations

Abstract

Summary form only given. Some two-dimensional movement motors have been developed, in which there is a problem of force ripple in the precise positioning. The authors propose an X-Y linear synchronous motors. The configuration with air-core coil has no core loss and no detent force which accompanies the force ripple. A pair of field permanent magnets (PMs) in each side is always kept at the angle of 45 degrees to the x- and y-axis. The field PMs with yoke are used as a mover.

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What this paper is about

Summary form only given. Some two-dimensional movement motors have been developed, in which there is a problem of force ripple in the precise positioning. The authors propose an X-Y linear synchronous motors. The configuration with air-core coil has no core loss and no detent force which accompanies the force ripple. A pair of field permanent magnets (PMs) in each side is always kept at the angle of 45 degrees to the x- and y-axis. The field PMs with yoke are used as a mover.

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Available abstract

Summary form only given. Some two-dimensional movement motors have been developed, in which there is a problem of force ripple in the precise positioning. The authors propose an X-Y linear synchronous motors. The configuration with air-core coil has no core loss and no detent force which accompanies the force ripple. A pair of field permanent magnets (PMs) in each side is always kept at the angle of 45 degrees to the x- and y-axis. The field PMs with yoke are used as a mover.

Key concepts: Yoke (aeronautics), Ripple, Linear motor, Electromagnetic coil, Control theory (sociology), Core (optical fiber), Magnetic core, Synchronous motor

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