Proton-induced single event upset characterization of a 1 Giga-sample per second analog to digital converter

R. Reed, P. Marshall, M. Carts, G.L. Henegar, R. Katz
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引用次数: 6

Abstract

Some high-speed space-borne data acquisition and dissemination systems require conversion of an analog data signal into a digital signal for on-board digital processing. The NASA Geoscience Laser Altimeter System (GLAS) is one such instrument. It uses the Signal Processing Technologies SPT7760 to convert an analog signal from the laser altimeter. The analog data is converted by the SPT7760 at 1 Giga-sample per second (Gsps). These types of data handling applications can typically withstand a relatively high bit error ratio (BER). In this paper, we describe the a novel approach for proton-induced single event upset characterization of the SPT760. Data is given for operating sample rates from 125 Msps to 1 Gsps.
质子诱导的单事件扰动表征每秒1千兆样本的模数转换器
一些高速星载数据采集和传播系统需要将模拟数据信号转换为数字信号,以便进行星载数字处理。NASA地球科学激光测高仪系统(GLAS)就是这样一种仪器。它使用信号处理技术SPT7760转换来自激光高度计的模拟信号。模拟数据由SPT7760以每秒1千兆采样(Gsps)的速度转换。这些类型的数据处理应用程序通常可以承受较高的误码率(BER)。在本文中,我们描述了一种质子诱导单事件扰动表征SPT760的新方法。数据给出了从125 Msps到1 Gsps的操作采样率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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