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RTG4 RADIATION-TOLERANT FPGAs FOR HIGH-SPEED SIGNAL-PROCESSING APPLICATIONS

机译:适用于高速信号处理应用的RTG4耐辐射FPGA

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Microsemi Corp. recently announced availability of its RTG4 high-speed, signal-processing radiation-tolerant FPGA family. The RTG4's reprogrammable flash technology offers complete immunity to radiation-induced configuration upsets in the harshest radiation environments, requiring no configuration scrubbing, unlike SRAM FPGA technology. RTG4 supports space applications requiring up to 150,000 logic elements and up to 300 MHz of system performance. Typical uses for RTG4 include remote sensing space payloads, such as radar, imaging and spectrometry in civilian, scientific and commercial applications. These applications span across weather forecasting and climate research, land use, astronomy and astrophysics, planetary exploration, and earth sciences. Other applications include mobile satellite services (MSS) communication satellites, as well as high altitude aviation, medical electronics and civilian nuclear power plant control. Such applications have historically used expensive radiation-hardened ASICs, which force development programs to incur substantial cost and schedule risk. RTG4 allows programs to access the ease-of-use and flexibility of FPGAs without sacrificing reliability or performance.
机译:Microsemi Corp.最近宣布了其RTG4高速,信号处理耐辐射FPGA系列的可用性。与SRAM FPGA技术不同,RTG4的可重编程闪存技术可在最恶劣的辐射环境中完全抵抗辐射引起的配置混乱,无需进行配置清理。 RTG4支持需要多达150,000个逻辑元件和高达300 MHz系统性能的空间应用。 RTG4的典型用途包括民用,科学和商业应用中的遥感空间有效载荷,例如雷达,成像和光谱法。这些应用程序涵盖天气预报和气候研究,土地使用,天文学和天体物理学,行星探索和地球科学。其他应用包括移动卫星服务(MSS)通信卫星,以及高空航空,医疗电子和民用核电站控制。此类应用历来使用昂贵的辐射硬化ASIC,这迫使开发程序招致大量成本和进度风险。 RTG4允许程序访问FPGA的易用性和灵活性,而不会牺牲可靠性或性能。

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    《Circuit cellar》 |2015年第299期|16-16|共1页
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