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The piezoelectronic stress transduction switch for very large-scale integration, low voltage sensor computation, and radio frequency applications

机译:压电应力转导开关对于非常大规模集成,低压传感器计算和射频应用

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摘要

The piezoelectronic transduction switch is a device with potential as a post–CMOS transistor due to its predicted multi-GHz, low voltage performance on the VLSI-scale. However, the operating principle of the switch has wider applicability. We use theory and simulation to optimize the device across a wide range of length scales and application spaces and to understand the physics underlying its behavior. We show that the four-terminal VLSI-scale switch can operate at a line voltage of 115 mV while as a low voltage-large area device, ≈200 mV operation at clock speeds of ≈2 GHz can be achieved with a desirable 104 On/Off ratio—ideal for on–board computing in sensors. At yet larger scales, the device is predicted to operate as a fast (≈250 ps) radio frequency (RF) switch exhibiting high cyclability, low On resistance and low Off capacitance, resulting in a robust switch with a RF figure of merit of ≈4 fs. These performance benchmarks cannot be approached with CMOS which has reached fundamental limits. In detail, a combination of finite element modeling and ab initio calculations enables prediction of switching voltages for a given design. A multivariate search method then establishes a set of physics-based design rules, discovering the key factors for each application. The results demonstrate that the piezoelectronic transduction switch can offer fast, low power applications spanning several domains of the information technology infrastructure.
机译:所述piezoelectronic转导开关是与潜在的作为后CMOS晶体管的器件中,由于其预测的数GHz,低电压的VLSI规模性能。然而,开关的工作原理有更广泛的适用性。我们用理论和仿真优化设备在广泛的长度尺度和应用空间和理解物理学基本其行为。我们表明,四端子VLSI级开关可以在115 mV的线路电压下工作,而作为低电压大面积器件,在≈2千兆赫的时钟速度≈200MV操作可以与期望的104上实现/关比理想为机载计算在传感器。在又更大的尺度,该装置被预测为快速(≈250PS)的射频(RF)开关表现出高的可循环性,低导通电阻和低的截止电容进行操作,得到具有的优点的RF数字鲁棒开关≈ 4个FS。这些性能基准测试无法与已达到基本限制CMOS接近。详细地,有限元建模和从头计算的组合使得能够开关电压对于给定的设计预测。多变量搜索方法,然后建立了一套基于物理设计规则,发现每个应用的关键因素。结果表明,piezoelectronic转交换机可以提供快速,低功耗应用,包括信息技术基础设施的多个领域。

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