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Precision phase control for the radio frequency system of K500 superconducting cyclotron at Variable Energy Cyclotron Centre, Kolkata

机译:加尔各答可变能量回旋加速器中心的K500超导回旋加速器射频系统的精​​确相位控制

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Variable Energy Cyclotron Centre (VECC) has commissioned K500 Superconducting cyclotron (SCC) based on MSU and Texas A&M university cyclotrons. The radio frequency (RF) system of SCC has been commissioned with the stringent requirement of various RF parameters. The three-phase RF system of Superconducting cyclotron has been developed in the frequency range 9–27 MHz with amplitude and phase stability of 100 ppm and ±0.1°, respectively. The phase control system has the option to change the relative phase difference between any two RF cavities and maintain the phase stability within ±0.1° during round-the-clock cyclotron operation. The said precision phase loop consists of both analogue In-phase/Quadrature modulator to achieve faster response and also Direct Digital Synthesis based phase shifter to achieve wide dynamic range as well. This paper discusses detail insights into the various issues of phase control for the K500 SCC at VECC, Kolkata.
机译:可变能量回旋加速器中心(VECC)已委托基于MSU和德克萨斯A&M大学回旋加速器的K500超导回旋加速器(SCC)。 SCC的射频(RF)系统已根据各种RF参数的严格要求进行了调试。超导回旋加速器的三相射频系统已在9–27 MHz的频率范围内开发,幅度和相位稳定性分别为100 ppm和±0.1°。在全天候回旋加速器操作期间,相位控制系统可以选择更改任何两个RF腔之间的相对相位差,并将相位稳定性保持在±0.1°以内。所述精密相位环路既包括用于实现更快响应的模拟同相/正交调制器,也包括用于实现宽动态范围的基于直接数字合成的移相器。本文讨论了对加尔各答VECC的K500 SCC的各种相位控制问题的详细见解。

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