TRINAMIC TMC389三相步进马达驱动方案

关键词:工业控制马达控制步进马达

时间:2012-4-9 10:42:21      来源:TMC389

TRINAMIC 公司的TMC389是三相步进马达驱动器,集成了低谐振的三相斩波器用于静态马达工作,能直接驱动三个外接N/P沟双MOSFET,马达电流高达8A和60V,多达171个微步距,采用基于自动负载调整马达电流的coolStep s20,节能高达75%,主要用在精密三相步进马达驱动,医疗和光学应用,机器人和舞台照明.本文介绍了TMC389主要特性和优势,方框图和应用电路图,和高压大电流功率级电路图以及评估板TMC389-EVAL主要特性,应用框图,电路图和PCB元件布局

TRINAMIC 公司的TMC389是三相步进马达驱动器,集成了低谐振的三相斩波器用于静态马达工作,能直接驱动三个外接N/P沟双MOSFET,马达电流高达8A和60V,多达171个微步距,采用基于自动负载调整马达电流的coolStep™s20,节能高达75%,主要用在精密三相步进马达驱动,医疗和光学应用,机器人和舞台照明.本文介绍了TMC389主要特性和优势,方框图和应用电路图,和高压大电流功率级电路图以及评估板TMC389–EVAL主要特性,应用框图,电路图和PCB元件布局图.
The TMC389 is an energy efficient three phase stepper motor driver for high resolution microstepping applications. It integrates a low resonance three phase chopper for quiet motor operation. Its step and direction interface allows simple use. An SPI™ management interface allows for parameterization and diagnostics. The TMC389 directly drives 3 external N/P channel dual MOSFETs for motor currents up to 8A and up to 60V. Protection and diagnostic features further reduce system cost and increase reliability.
TMC389产品亮点:
 Up to 171 microsteps (256 sine wave steps) using step/direction interface or 20 Bit SPI™interface
 High precision sensorless motor load measurement stallGuard2
 Energy efficiency and coolness by automatic load dependant motor current regulation coolStep™s20 : Save up to 75% of energy!
 Internal microstep extrapolation allows 256 wave step smoothness with low frequency step input
 Dual edge step option allows half step frequency requirement, e.g. for opto-couplers
 Up to 8A Motor current using external N&P channel MOSFET pairs
 Synchronous rectification reduces transistor heating
 9V to 60V operating voltage (peak)
 3.3V or 5V interface
 QFN32 package for extremely small solution with superior thermal performance
 EMV optimized current controlled gate drivers – up to 45mA gate current
 Overcurrent, short to GND and overtemperature protection and diagnostics integrated

猜你喜欢

  • 主 题:GMSL 高速串行链路:赋能人形机器人与多传感器视觉系统的下一代连接方案
  • 时 间:2026年6月9日
  • 公 司:ADI
  • 主 题:人形机器人中的电源供应方案介绍
  • 时 间:2026年6月15日
  • 公 司:Texas Instruments
  • 主 题:SAR ADC驱动技术:原理、优势与应用详解
  • 时 间:2026年6月16日
  • 公 司:ADI&DigiKey
Baidu
map