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Microsemi Chip Scale Atomic Clock (CSAC) technical status, applications, and future plans

机译:Microsemi芯片级原子钟(CSAC)的技术状态,应用和未来计划

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Microsemi's CSAC was developed from 2001 to 2011 and represented revolutionary technology for atomic clocks. The use of Coherent Population Trapping, pioneered at NIST, enabled a significant reduction in size, weight, and power compared to conventional gas cell clocks. Last year, Microsemi released an updated version of CSAC that improved the operating temperature range and reliability. Development of the technology continues at Microsemi to meet the current and future applications. This paper provides some historical background, design description, a detailed technical status of CSAC including performance data from production testing. Also, the paper will contain a description of both the original and future applications. Finally, a description of the future development plans with the goals of increased performance, further reliability improvements, and wider environmental tolerances. The improvements include wider temperature range from -40°C to 80 °C, improved drift and temperature stability, radiation tolerance and RoHS 6/6 compliance.
机译:美高森美的CSAC于2001年至2011年开发,代表了原子钟的革命性技术。与传统的气室时钟相比,NIST首创的相干人口陷阱技术的使用大大减少了尺寸,重量和功率。去年,Microsemi发布了CSAC的更新版本,该版本改进了工作温度范围和可靠性。 Microsemi将继续开发该技术,以满足当前和未来的应用。本文提供了一些历史背景,设计说明以及CSAC的详细技术状况,包括来自生产测试的性能数据。另外,本文还将包含原始应用程序和将来的应用程序的描述。最后,描述未来的发展计划,目标是提高性能,进一步提高可靠性并扩大环境容忍度。这些改进包括从-40°C到80°C的更宽温度范围,改善的漂移和温度稳定性,辐射耐受性以及符合RoHS 6/6的要求。

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