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Microprocessor-based digitizers combined with preamplifiers and detectors as a solution for EMI suppression

机译:基于微处理器的数字转换器,结合了前置放大器和检测器,可作为EMI抑制的解决方案

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A strong 8-9 MHz noise from the RF plasma heating generators forms additional difficulties in the diagnostic signal measurements in the U-3M and U-2M torsatrons compared with other stellarators and tokamaks. Set of new optical diagnostics (20-channels SXR and bolometers, 12-channels H-alpha) with a temporal resolution of up to 4 microseconds has been designed and is successfully used in the noisy RF plasma conditions of U-3M and U-2M torsatrons as well as in the QSPA Kh-50 plasma accelerator. In the original electronics design all the diagnostics components, including the STM-32-microporcessor-based data acquisition system, are assembled in a single unit (without analog signals or digital interface wires). This design allows one to prevent the ground loop interference, to remove the RF load on diagnostics components and to increase substantially the system protection from different electromagnetic noises.
机译:与其他恒星器和托卡马克机相比,来自RF等离子加热发生器的8-9 MHz强烈噪声在U-3M和U-2M旋风加速器的诊断信号测量中形成了额外的困难。设计了一套新的光学诊断程序(20通道SXR和辐射热测量仪,12通道H-alpha),其时间分辨率高达4微秒,已成功用于U-3M和U-2M嘈杂的RF等离子体环境旋风加速器以及QSPA Kh-50等离子加速器。在原始电子设计中,所有诊断组件(包括基于STM-32-microporcessor的数据采集系统)都组装在一个单元中(没有模拟信号或数字接口线)。这种设计可以防止接地环路干扰,消除诊断组件上的RF负载,并显着提高系统免受各种电磁噪声的影响。

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