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首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Insights Into Tunnel FET-Based Charge Pumps and Rectifiers for Energy Harvesting Applications
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Insights Into Tunnel FET-Based Charge Pumps and Rectifiers for Energy Harvesting Applications

机译:洞察基于隧道FET的能量收集应用中的电荷泵和整流器

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摘要

In this paper, the electrical characteristics of tunnel field-effect transistor (TFET) devices are explored for energy harvesting front-end circuits with ultralow power consumption. Compared with conventional thermionic technologies, the improved electrical characteristics of TFET devices are expected to increase the power conversion efficiency of front-end charge pumps and rectifiers powered at sub-μW power levels. However, under reverse bias conditions the TFET device presents particular electrical characteristics due to its different carrier injection mechanism. In this paper, it is shown that reverse losses in TFET-based circuits can be attenuated by changing the gate-to-source voltage of reverse-biased TFETs. Therefore, in order to take full advantage of the TFETs in front-end energy harvesting circuits, different circuit approaches are required. In this paper, we propose and discuss different topologies for TFET-based charge pumps and rectifiers for energy harvesting applications.
机译:本文针对具有超低功耗的能量收集前端电路,探索了隧道场效应晶体管(TFET)器件的电气特性。与传统的热电子技术相比,改进的TFET器件的电气特性有望提高以低于μW的功率水平供电的前端电荷泵和整流器的功率转换效率。然而,在反向偏置条件下,TFET器件由于其不同的载流子注入机制而呈现出特殊的电气特性。本文表明,通过改变反向偏置的TFET的栅极至源极电压,可以衰减基于TFET的电路中的反向损耗。因此,为了充分利用前端能量收集电路中的TFET,需要使用不同的电路方法。在本文中,我们提出并讨论了用于能量收集应用的基于TFET的电荷泵和整流器的不同拓扑。

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