聚焦激光源和重离子回旋加速器对单事件效应灵敏度参数的最优估计——以模拟IP单元库为例

A. Y. Borisov, A. A. Novikov, Natalia L. Petrun, Anastasia A. Nefedova, G. Chukov
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引用次数: 1

摘要

基于单事件效应(SEE)的灵敏度参数对51个模拟和模数IP单元组成的库进行了评估,该库采用CMOS/SOI技术制造,设计标准为180 nm。使用脉冲皮秒聚焦激光设备“PICO-4”来确定灵敏度参数,可以最大限度地减少重离子回旋加速器的使用。当聚焦激光源和重离子回旋加速器一起使用时,可以确定晶体上最敏感区域的位置,这在单独使用回旋加速器时是不可能的,同时减少了确定SEE发生的阈值线性能量转移的误差。利用聚焦激光源,确定了在重离子回旋加速器上进行实验时无法达到的具有线性能量损失阈值的IP单元的敏感区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Optimal Estimation of Single Event Effects Sensitivity Parameters Using a Focused Laser Source and Heavy Ion Cyclotron on Example of a Library of Analog IP Units
The sensitivity parameters based on the single event effects (SEE) for a library consisting of 51 analog and analog-to-digital IP units manufactured using CMOS/SOI technology with design standards of 180 nm were evaluated. The use of a pulsed picosecond focused laser facility "PICO-4" in determining the sensitivity parameters made it possible to minimize the use of a heavy ion cyclotron. When a focused laser source and a heavy ion cyclotron are used together, the location of the most sensitive areas on the crystal is determined, which is impossible when using only a cyclotron, while the error in determining the threshold linear energy transfer for the occurrence of SEE is reduced. Using a focused laser source, sensitive regions of IP units with threshold values of linear energy losses that are unattainable when conducting an experiment on a heavy ion cyclotron are determined.
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