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A new high-efficiency stepper motor driver for old technology stepper motors

机译:适用于旧技术步进电机的新型高效步进电机驱动器

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Stepper motors have been used to drive mechanical systems for many decades. Stepper motors require a current-limited multiphase driver, and techniques have evolved from simple resistive drivers to complex high efficiency, high-performance switching devices. The first high-efficiency switching designs were patented over 30 years ago and have become widely used throughout industry. This has caused a shift in driver technology from a quad-drive system to an H-bridge system, and a change in motor design from four windings to two. There are a great many older systems with the earlier motor technology still in use. Retrofitting such systems can take one of several paths: • Replacing the entire mechanical drive motor system, its driver, and reworking all the associated communications protocol between the driver and the outside world; • Choosing a high-efficiency “H”-bridge driver, reworking its communications protocol and raising the drive voltages to hazardous levels to get the older-technology motor to perform adequately; • Designing a high-efficiency, high-performance motor driver system that will work with older-technology motors and existing communications protocols. This paper presents a high-efficiency, high-performance stepper motor driver and that provides all the advantages of a modern motor driver, yet works with existing older-technology stepper motors. It also solves a well-known failure mode of the standard “H” bridge drive system, and will pay for itself in decreased electrical energy costs compared to an old-technology resistive driver. An application-specific communications controller and motor driver will be described to create a drop-in replacement for an existing controller-driver system.
机译:步进电动机已被用于驱动机械系统数十年。步进电机需要电流限制的多相驱动器,并且技术已经从简单的电阻驱动器发展到复杂的高效,高性能开关设备。第一批高效率开关设计已在30年前获得了专利,并已在整个行业中得到广泛使用。这导致驱动器技术从四驱系统转变为H桥系统,并且电机设计从四个绕组变为两个。有许多旧系统仍在使用较早的电动机技术。改造此类系统可以采取以下几种方法之一:•更换整个机械驱动马达系统及其驱动器,并重新构造驱动器与外界之间的所有相关通信协议; •选择一个高效的“ H”桥驱动器,重新设计其通信协议,并将驱动电压提高到危险水平,以使老式技术的电动机能够正常工作; •设计一个高效,高性能的电动机驱动器系统,该系统可与较旧技术的电动机和现有的通信协议配合使用。本文介绍了一种高效,高性能的步进电机驱动器,它提供了现代电机驱动器的所有优点,并且可以与现有的较旧技术的步进电机一起使用。它还解决了标准“ H”桥驱动系统的一种众所周知的故障模式,与旧技术的电阻驱动器相比,它将以降低的电能成本收回成本。将描述专用通信控制器和电动机驱动器,以创建现有控制器驱动器系统的直接替代品。

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