一种用于先进光子源的分频射频源生成系统

D. Horan, F. Lenkszus, R. Laird
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引用次数: 1

摘要

Argonne国家实验室设计并建造了一个分频射频源系统,用于在APS 352mhz存储环和增压器同步加速器射频系统以及9.77 mhz和117 mhz正电子累加环射频系统之间提供谐波相关和锁相射频源信号。该设计为每个射频合成器提供了快速切换回单个射频合成器的能力。该系统还包含一个数字桶相移器,用于选择注入桶。输入352mhz射频从主合成器提供给一个基于vxi的ECL分频板,产生117-MHz和9.77-MHz方波输出。这些输出通过低通滤波器产生所需基频的纯信号。这些信号,加上来自独立合成器的相同频率的信号,被馈送到接口机箱,其中通过同轴继电器的本地/远程控制进行源选择。该底盘还在每个频率上产生缓冲输出,用于监控和同步辅助设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A divide-down RF source generation system for the Advanced Photon Source
A divide-down RF source system has been designed and built at Argonne National Laboratory to provide harmonically-related and phase-locked RF source signals between the APS 352-MHz storage ring and booster synchrotron RF systems and the 9.77-MHz and 117-MHz positron accumulator ring RF systems. The design provides rapid switching capability back to individual RF synthesizers for each one. The system also contains a digital bucket phase shifter for injection bucket selection. Input 352-MHz RF from a master synthesizer is supplied to a VXI-based ECL divider board which produces 117-MHz and 9.77-MHz square-wave outputs. These outputs are passed through low-pass filters to produce pure signals at the required fundamental frequencies. These signals, plus signals at the same frequencies from independent synthesizers, are fed to an interface chassis where source selection is made via local/remote control of coaxial relays. This chassis also produces buffered outputs at each frequency for monitoring and synchronization of ancillary equipment.
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