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Study of harsh environment operation of flexible ferroelectric memory integrated with PZT and silicon fabric

机译:PZT与硅纤维结合的柔性铁电存储器在恶劣环境下的运行研究

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摘要

Flexible memory can enable industrial, automobile, space, and smart grid centered harsh/extreme environment focused electronics application(s) for enhanced operation, safety, and monitoring where bent or complex shaped infrastructures are common and state-of-the-art rigid electronics cannot be deployed. Therefore, we report on the physical-mechanical-electrical characteristics of a flexible ferroelectric memory based on lead zirconium titanate as a key memory material and flexible version of bulk mono-crystalline silicon (100). The experimented devices show a bending radius down to 1.25 cm corresponding to 0.16% nominal strain (high pressure of ∼260 MPa), and full functionality up to 225 °C high temperature in ambient gas composition (21% oxygen and 55% relative humidity). The devices showed unaltered data retention and fatigue properties under harsh conditions, still the reduced memory window (20% difference between switching and non-switching currents at 225 °C) requires sensitive sense circuitry for proper functionality and is the limiting factor preventing operation at higher temperatures.
机译:灵活的内存可支持以工业,汽车,太空和智能电网为中心的苛刻/极端环境电子应用程序,从而在常见的弯曲或复杂形状的基础设施以及最先进的刚性电子设备上增强操作,安全性和监视能力无法部署。因此,我们报告了基于钛酸铅锆作为关键存储材料和块状单晶硅(100)的柔性版本的柔性铁电存储器的物理机械电气特性。实验装置的弯曲半径低至1.25 cm,相当于标称应变的0.16%(高压约为260 MPa),在环境气体成分中(最高21%的氧气和55%的相对湿度)的最高功能可达225 C的高温。该器件在苛刻的条件下仍显示出不变的数据保留和疲劳特性,但减小的存储窗口(225 C下开关电流和非开关电流之间相差20%)仍需要灵敏的传感电路以实现正常功能,并且是限制器件在更高温度下工作的限制因素温度。

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