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COMPLEX LOGIC OPERATIONS BASED ON MEMS RESONATORS

机译:基于MEMS谐振器的复杂逻辑运算

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Complex logic functions based on micro electromechanical resonators has recently attracted significant attention. Realization of complex logic functions through cascading micro resonators has been deterred by challenges involved in their interconnections and the large required array of resonators. This paper presents a micro electromechanical system MEMS resonator with multiple input (actuation) and output (detection) that enables the realization of complex logic operations. The devices are based on a compound resonator consisting of an in-plane clamped-guided arch beam that is mechanically coupled from its guided side to two flexure beams and to another T-shaped resonant beam. As examples, we experimentally demonstrate using the device to realize a half adder and a 1:2 DEMUX, based on electrothermal and electrostatic tuning of the arch beam and side resonant beam. The logic operation is based on the linear frequency modulation. This paper demonstrates that with such compound MEMS resonators, it is possible to build more complex logic functionalities.
机译:基于微机电谐振器的复杂逻辑功能最近引起了极大的关注。通过级联的微型谐振器实现复杂的逻辑功能已受到其互连和谐振器所需的大型阵列所面临的挑战的阻碍。本文提出了一种具有多个输入(驱动)和输出(检测)的微机电系统MEMS谐振器,该谐振器能够实现复杂的逻辑运算。这些设备基于复合谐振器,该复合谐振器由面内夹紧导向拱形梁组成,该拱形梁从其导向侧机械耦合到两个挠曲梁和另一个T形谐振梁。作为示例,我们通过实验对基于弓形梁和侧共振梁的电热和静电调谐,使用该器件实现半加法器和1:2 DEMUX。逻辑运算基于线性频率调制。本文证明,利用这种复合MEMS谐振器,可以构建更复杂的逻辑功能。

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