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RF CONDITIONING AND TESTING OF FUNDAMENTAL POWER COUPLERS FOR SNS SUPERCONDUCTING CAVITY PRODUCTION

机译:用于SNS超导腔生产的基本功率耦合器的RF调节和测试

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The Spallation Neutron Source (SNS) makes use of 33 medium beta (0.61) and 48 high beta (0.81) superconducting cavities. Each cavity is equipped with a fundamental power coupler, which should withstand the full klystron power of 550 kW in full reflection for the duration of an RF pulse of 1.3 msec at 60 Hz repetition rate. Before assembly to a superconducting cavity, the vacuum components of the coupler are submitted to acceptance procedures consisting of preliminary quality assessments, cleaning and clean room assembly, vacuum leak checks and baking under vacuum, followed by conditioning and RF high power testing. Similar acceptance procedures (except clean room assembly and baking) were applied for the airside components of the coupler. All 81 fundamental power couplers for SNS superconducting cavity production have been RF power tested at JLAB Newport News and, beginning in April 2004 at SNS Oak Ridge. This paper gives details of coupler processing and RF high power-assessed performances.
机译:散裂中子源(SNS)利用33介质β(0.61)和48高β(0.81)超导腔的。每个空腔都配有基本功率耦合器,其应能承受550千瓦的全部速调管功率在1.3毫秒的RF脉冲的以60Hz的重复率的持续时间充分反射。在组装之前的超导腔,耦合器的真空组件被提交到由初步质量评估,清洗和洁净室组装,真空泄漏检查并在真空下烘烤验收程序,随后调理和射频高功率测试。类似验收程序(除了清洁室组件和烘焙)施加于耦合器的空气侧组件。所有81个根本动力耦合器SNS超导腔的生产一直处于JLAB纽波特纽斯测试RF功率,并在SNS橡树岭于2004年4月开始。本文给出了耦合器的处理和射频高功率评估的性能的详细信息。

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