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First realization of the piezoelectronic stress-based transduction device

机译:压电应力基传感装置的首次实现

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We present the first realization of a monolithically integrated piezoelectronic transistor (PET), a new transduction-based computer switch which could potentially operate conventional computer logic at 1/50 the power requirements of current Si-based transistors (Chen 2014 Proc. IEEE ICICDT pp 1-4; Mamaluy et al 2014 Proc. IWCE pp 1-2). In PET operation, an input gate voltage expands a piezoelectric element (PE), transducing the input into a pressure pulse which compresses a piezoresistive element (PR). The PR resistance goes down, transducing the signal back to voltage and turning the switch 'on'. This transduction physics, in principle, allows fast, low-voltage operation. In this work, we address the processing challenges of integrating chemically incompatible PR and PE materials together within a surrounding cage against which the PR can be compressed. This proof-of-concept demonstration of a fully integrated, stand-alone PET device is a key step in the development path toward a fast, low-power very large scale integration technology.
机译:我们展示了单片集成压电晶体管(PET)的首次实现,这是一种基于换能的新型计算机开关,该开关有可能以现有硅基晶体管功率需求的1/50运行常规计算机逻辑(Chen 2014 Proc。IEEE ICICDT pp 1-4; Mamaluy et al 2014 Proc.IWCE pp 1-2)。在PET操作中,输入栅极电压会使压电元件(PE)膨胀,将输入转换为压力脉冲,从而压缩压阻元件(PR)。 PR电阻下降,将信号转换回电压并打开开关。原则上,这种转换物理学允许快速,低压操作。在这项工作中,我们解决了将化学不相容的PR和PE材料整合到可压缩PR的周围笼子中的工艺难题。完全集成的独立PET设备的概念验证演示是朝着快速,低功耗超大规模集成技术发展的关键一步。

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