首页> 外文期刊>IEEE Electron Device Letters >Adaptive Dielectric Thin Film Transistors-A Self-Configuring Device for Low Power Electrostatic Discharge Protection
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Adaptive Dielectric Thin Film Transistors-A Self-Configuring Device for Low Power Electrostatic Discharge Protection

机译:自适应介电薄膜晶体管 - 用于低功耗静电放电保护的自配置装置

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摘要

Large area and flexible electronic systems are widely used in applications such as displays, image sensors, wearable electronics and energy harvesting systems. A key element in many of these systems is the electrostatic discharge protection circuit. The conventional protection circuit uses large aspect-ratio diode connected thin film transistors that offer a low resistance path to the surge current but also does the same to signals during normal system operation resulting in power loss. Here we describe as well as demonstrate the feasibility of a novel idea for electrostatic discharge protection involving an adaptive dielectric thin film transistor that self-configures itself to a low resistance state during an electrostatic discharge event and a high resistance state during normal operation without external control. This results in 1000-10000 times the power savings compared to diode connected TFTs.
机译:大面积和柔性电子系统广泛用于诸如显示器,图像传感器,可穿戴电子设备和能量收集系统的应用中。这些系统中的许多关键元件是静电放电保护电路。传统的保护电路使用大的纵横比二极管连接的薄膜晶体管,该薄膜晶体管为浪涌电流提供低电阻路径,但也与正常系统操作期间的信号相同,导致功率损耗。在这里,我们描述了涉及自适应介电薄膜晶体管的静电放电保护的新颖思想的可行性,该自适应介电薄膜晶体管在静电放电事件期间自动配置到低电阻状态和在没有外部控制的正常操作期间的高电阻状态。这导致功率节省1000-10000倍,与二极管连接的TFT相比。

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