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Neural Networks Integrated Circuit for Biomimetics MEMS Microrobot

机译:仿生MEMS微型机器人的神经网络集成电路

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摘要

In this paper, we will propose the neural networks integrated circuit (NNIC) which is the driving waveform generator of the 4.0, 2.7, 2.5 mm, width, length, height in size biomimetics microelectromechanical systems (MEMS) microrobot. The microrobot was made from silicon wafer fabricated by micro fabrication technology. The mechanical system of the robot was equipped with small size rotary type actuators, link mechanisms and six legs to realize the ant-like switching behavior. The NNIC generates the driving waveform using synchronization phenomena such as biological neural networks. The driving waveform can operate the actuators of the MEMS microrobot directly. Therefore, the NNIC bare chip realizes the robot control without using any software programs or A/D converters. The microrobot performed forward and backward locomotion, and also changes direction by inputting an external single trigger pulse. The locomotion speed of the microrobot was 26.4 mm/min when the step width was 0.88 mm. The power consumption of the system was 250 mWh when the room temperature was 298 K.
机译:在本文中,我们将提出神经网络集成电路(NNIC),它是大小为4.0、2.7、2.5 mm,宽度,长度,高度的仿生微机电系统(MEMS)微型机器人的驱动波形发生器。微型机器人由通过微制造技术制造的硅晶片制成。机器人的机械系统配备了小型旋转式执行器,连杆机构和六个支脚,以实现类似蚂蚁的开关行为。 NNIC使用诸如生物神经网络的同步现象生成驱动波形。驱动波形可以直接操作MEMS微型机器人的执行器。因此,NNIC裸芯片无需使用任何软件程序或A / D转换器即可实现机械手控制。微型机器人执行向前和向后移动,并且还通过输入外部单个触发脉冲来改变方向。当步距为0.88 mm时,微型机器人的运动速度为26.4 mm / min。当室温为298 K时,系统的功耗为250 mWh。

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