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Contactless Capacitive Adiabatic Logic

机译:非接触电容绝热逻辑

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摘要

CMOS technology allows a femto Joule energy dissipation per logic operation, if operated at optimal frequency and voltage. However, this value remains orders of magnitude above the theoretical limit predicted by Lan-dauer. In this work, we present a new paradigm for low power computation, based on variable capacitors. Such components can be implemented with existing MEMS technologies. We show how a smooth capacitance modulation allows an energy-efficient transfer of information through the circuit. By removing electrical contacts, our method limits the current leakages and the associated energy loss. Therefore, capacitive logic must be able to achieve extremely low power dissipation when driven adiabatically. Contactless capacitive logic also promises a better reliability than systems based on MEMS nanorelays.
机译:如果在最佳频率和电压下运行,CMOS技术可允许每个逻辑操作消耗毫微微焦耳的能量。但是,该值仍比Lan-dauer预测的理论极限高几个数量级。在这项工作中,我们提出了一种基于可变电容器的低功耗计算新范例。这样的组件可以利用现有的MEMS技术来实现。我们展示了平滑的电容调制如何允许能量有效地通过电路传输信息。通过去除电触点,我们的方法可以限制电流泄漏和相关的能量损失。因此,绝热驱动时,电容逻辑必须能够实现极低的功耗。与基于MEMS纳米继电器的系统相比,非接触式电容逻辑还具有更好的可靠性。

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