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Design of Tiny High-Power Motor Driver without Liquid Cooling for Humanoid JAXON

机译:人形机器人JAXON的无液冷微型大功率电机驱动器设计

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In this paper, we present the design of a tiny high-power motor driver without a liquid cooling system. A high-power humanoid robot JAXON developed in our laboratory has a liquid cooling system for cooling motors and motor drivers. Thanks to the liquid cooling system, JAXON realizes high-power motion. However, the liquid cooling system makes the robot heavy. Hence, we designed a motor driver which is air cooling and smaller than the existing one while keeping its performance. There are two key points to realize tiny high-power motor driver. One is absorbing temperature rise due to instantaneous high current by using a heavy copper circuit board as a thermal buffer. The other is keeping steady board temperature low by reducing power consumption of motor driver. By applying developed motor driver to JAXON1, JAXON1 was able to reduce the weight of 7.1 [kg].
机译:在本文中,我们介绍了一种不带液体冷却系统的微型大功率电机驱动器的设计。我们实验室开发的大功率人形机器人JAXON具有用于冷却电机和电机驱动器的液体冷却系统。得益于液体冷却系统,JAXON实现了大功率运动。但是,液体冷却系统使机器人变得笨重。因此,我们设计了一种电机驱动器,该驱动器是空气冷却的,并且比现有的驱动器小,同时又保持其性能。实现微型大功率电机驱动器有两个关键点。一种是通过使用沉重的铜电路板作为热缓冲器来吸收由于瞬时大电流而引起的温度上升。另一种是通过降低电机驱动器的功耗来保持稳定的板级温度较低。通过将开发的电机驱动器应用于JAXON1,JAXON1可以减轻7.1 [kg]的重量。

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