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Design challenges and methodology for developing new integrated circuits for the robotics exploration of the solar system

机译:为开发新集成电路开发新型集成电路的设计挑战和方法

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Next generation space-based robotics systems will be constructed using distributed architectures where electronics capable of working in the extreme environments of the planets of the solar system are integrated with the sensors and actuators in plug-and-play modules and are connected through common multiple redundant data and power buses. Challenges for development of integrated circuits for these robotic systems deal with the reliable operation of these systems under extreme planetary environments. These challenges are compounded by a complementary set of packaging and assembly issues that address the reliability of the system from the mechanical point of view. Without exception integrated electronics developed for space systems will have to use existing commercial device and VLSI manufacturing technologies. Because of the severe difference between the extreme environment of the solar system planets and Earth, IC designers of space systems have to examine the performance of all the devices in the extreme environment conditions and define a new set of design rules and models that predicts the performance and life cycle of these technologies.
机译:下一代基于空间的机器人系统将使用分布式体系结构,其中能够在太阳系行星的极端环境下工作的电子器件集成与传感器和致动器在插头和播放模块,并通过共同的多个冗余连接来构建数据和电源总线。对于这些机器人系统集成电路的发展挑战,应对这些系统在极端的行星环境中可靠运行。这些挑战是由一组互补的包装和从机械观点解决系统的可靠性装配问题加剧。没有空间系统开发的例外集成电子产品将必须使用现有的商用设备和超大规模集成电路制造技术。由于太阳系行星和地球极端环境之间的严重差异,IC设计空间系统已检查在极端环境条件下的所有设备的性能和定义一组新的设计规则和模型预测的性能这些技术和生命周期。

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