Drive Circuit Design of H-Bridge Permanent-Magnet DC Moment Motor Based on HIP4081 Chip

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Abstract:

In order to achieve reliable drive for Permanent-magnet DC moment motor and high-precision control, we use special chips designed HIP4081 H-bridge PWM motor drive circuit bipolar reversible, with DSP as the controller completed a two-way rotation and permanent magnet DC motor speed control . Experiments show that the circuit is safe, reliable, environmental adaptability, good thermal conductivity, high efficiency, applicable to Permanent-magnet DC moment motor powered a variety of control systems.

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Advanced Materials Research (Volumes 986-987)

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1086-1089

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July 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Intersil. Application Note AN9325[Z]. (2003).

Google Scholar

[2] Intersil. HIP4081 Data Sheet[Z]. (1996).

Google Scholar

[3] DIAO Xiao-ling. Hybrid Integrated Technology H Bridge Motor Driver Based on the HIP4081 [J]. Modern Electronics Technique, 2009(4): 8-10.

Google Scholar

[4] QIAN W, GUO X, JIANG Y, et al. Design of the DC-DC Converter Control with Phase-Shift Full-Bridge Based on HIP4081[J]. Measurement & Control Technology, 2011(12): 13.

Google Scholar

[5] ZHOU Shao-lei, PENG Xian, ZHANG Yu-tong, et al. Design of A PWM Drived Card for DC Torque Motor [J]. Journal of Naval Aeronautical and Astronautical University. 2008, 23(1):. 83-85.

Google Scholar

[6] Kazmierkowski M P, Dzieniakowski M A. Review of Current ControlRegulation Techniques for 3-phase PWM Inverters[J]. IEEE IECON conf. 1994: 567~575.

DOI: 10.1109/iecon.1994.397839

Google Scholar

[7] Kiyoshi Ohishi, Tomoniri Mashimo. Digital Robust Speed Servo Systemwith Complete Avoidance of Output Saturation Effect[C], Power Conversion Conference,1997, (1): 501~506.

DOI: 10.1109/pccon.1997.645662

Google Scholar