空间环境下微电路物理过程的仿真

K. Zolnikov, Y. Gromov, S. Evdokimova, Tatyana P. Skvortsova, O. Oksyuta, O. Vikhrova
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引用次数: 0

摘要

本文从电路工程和专用微电路新发展的结构技术基础出发,对专用微电路的发展前景进行了展望。解决问题的复杂性是建立在各种制造设备原理的复杂组合和矛盾消除上的。假设粒子进入电路的时间等于开关的开始时间。该芯片的频率为30兆赫,与航天器使用的大多数频率相对应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SIMULATION OF PHYSICAL PROCESSES IN MICROCIRCUITS IN SPACE ENVIRONMENT
The paper considers the circuit engineering and structural-technological basis of new devel-opments of special-purpose microcircuits, the prospects for its development are determined. The complexity of solving the problem is established, which consists in a complex combination and elimination of contradictions of various principles of creating equipment. It is assumed that the particle enters the circuit at a time equal to the beginning of switching. The frequency of the chip is 30 MHz, which corresponds to most of the frequencies that are used in spacecraft.
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