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EMC filtering design of biasing circuit for broadband active device

机译:宽带有源器件偏置电路的EMC滤波设计

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摘要

Broadband transceiver circuits are so important for the realization of microwave instruments and radar systems that may have decisive influence on the performance of the whole product. Because of very wide frequency range, transceiver frontend circuits in microwave apparatus covering from DC to microwave band, broadband active devices are widely applied in the circuits. And the leakage of useful signal and noise arising from the improper bias circuit design for these active devices may not only decline the system's sensitivity, but also even make it unworkable at the worst. At the same time, the reasonable design of bias circuit for these active devices is the very important technique for avoiding electromagnetic interference (EMI) and improving electromagnetic compatibility (EMC). In this paper, the filtering features of capacitor, the traditionally filter component, and EMI filter are discussed and better filter performance can achieved when applying the EMI filter to microwave broadband active devices' biasing circuits. Cooperate with the resistor, this kind of filter circuit can completely satisfy the bias circuit requirements of active devices for high sensitivity circuit and enhance the system's electromagnetic compatibility.
机译:宽带收发器电路对于实现微波仪器和雷达系统非常重要,这可能会对整个产品的性能产生决定性影响。由于很宽的频率范围,微波设备中的收发器前端电路覆盖了从直流到微波频带,因此宽带有源器件在电路中得到了广泛的应用。由于这些有源器件的偏置电路设计不当而导致有用信号和噪声的泄漏,不仅可能降低系统的灵敏度,而且在最坏的情况下甚至使其无法工作。同时,针对这些有源器件的偏置电路的合理设计是避免电磁干扰(EMI)和提高电磁兼容性(EMC)的非常重要的技术。本文讨论了电容器,传统滤波器元件和EMI滤波器的滤波特性,将EMI滤波器应用于微波宽带有源器件的偏置电路可以实现更好的滤波性能。配合电阻器,这种滤波电路可以完全满足有源器件对高灵敏度电路的偏置电路要求,并增强系统的电磁兼容性。

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