由单个MOSFET组成的具有速度和方向控制能力的直流电机驱动器

G. Mulay, Akshay Yembarwar, Surabhi Raje
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引用次数: 9

摘要

一般来说,直流电动机驱动电路由四个mosfet组成h桥。这种类型的电机驱动器可以控制电机的速度和旋转方向。然而,这两种功能都可以使用仅由一个MOSFET和两个继电器组成的另一种类型的电机驱动器来执行。本文演示了所提出的电机驱动电路具有双向调速特性。该电路由一对继电器(代替四个MOSFET)构成,有利于方向控制和单个MOSFET,可以控制电机的速度。此外,这种类型的电机驱动电路比前一种有几个优点。在设计h桥时,我们在高侧使用继电器而不是传统使用的MOSFET,因此也消除了相应的复杂MOSFET驱动电路。因此,电机驱动电路结构紧凑,价格低廉。由于我们不包括MOSFET驱动电路,如自举ic,晶体管电路等,这有助于不可靠性,所提出的电机驱动器具有更高的可靠性。与mosfet相比,继电器作为一种机械器件,在相同的工作条件下不易因静电放电(ESD)而失效。本文阐述了该电机驱动器的设计、测试及性能评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A DC motor driver consisting of a single MOSFET with capability of speed and direction control
Generally, a DC motor driver circuit consists of four MOSFETs forming an H-bridge. This type of motor driver can control the speed as well as the direction of rotation of the motor. However, both the functions can be performed using another type of motor driver consisting only one MOSFET and two relays. This paper demonstrates the proposed motor driver circuit having bidirectional speed controllability for motors. The circuit is constructed with a pair of relay (in place of four MOSFETs) that facilitate the direction control and a single MOSFET which enables the speed control of the motor. Moreover, this type of motor driver circuit provides several advantages over the former one. While designing the H-bridge, we have used relays for the High-side instead of the traditionally used MOSFETs and thus, the corresponding intricate MOSFET driving circuitry is also eliminated. As a result, the motor driver circuit is compact and low-priced. Since we do not include the MOSFET driving circuitries such as bootstrapping ICs, transistor circuit, etc., which contribute to the unreliability, the proposed motor driver possess increased reliability. Relays, being mechanical devices, are less prone to the failure due to Electrostatic Discharge (ESD) as compared to the MOSFETs under the same operating conditions. We have illustrated in the paper the designing and testing of this motor driver along with its performance evaluation.
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