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An L-band gain and bandwidth tunable low-noise differential amplifier using varactor-tuned bias circuits and active loads

机译:使用变容二极管调谐偏置电路和有源负载的L波段增益和带宽可调低噪声差分放大器

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An L-band gain and bandwidth tunable low-noise differential amplifier has been developed for the next generation reconfigurable wireless radios. It employs a varactor-tuned base bias circuit for tuning a lower band-edge frequency of the amplifier, a varactor-tuned collector bias circuit for tuning a higher band-edge frequency of the amplifier, an active load for a fine tuning of gain, and a cascode HBT for a coarse tuning of gain. With the use of the varactor-tuned bias circuits, the lower band-edge frequency can be varied from 0.3 to 0.8 GHz for a fixed higher band-edge frequency of 1.7 GHz. On the other hand, the higher band-edge frequency can be varied from 0.7 to 1.7 GHz for a fixed lower band-edge frequency of 0.3 GHz. With the use of an active load and a cascode HBT, a fine tuning range of gain up to 2.8 dB over 1.3 to 1.5 GHz and a coarse tuning range of gain up to 23 dB across 0.7 to 1.5 GHz have been successively achieved. Since the frequency response including lower and higher band-edge frequencies as well as gain level can be tuned independently, the amplifier is considered to greatly contribute to realizing the next generation reconfigurable wireless transceivers.
机译:L波段增益和带宽可调的低噪声差分放大器已经为下一代可重构无线电开发。它采用变容二极管调谐的基极偏置电路来调整放大器的较低频带边沿频率,变容二极管调谐的集电极偏置电路用于调整放大器的较高频带边沿频率,有源负载用于对增益进行微调,并使用共源共栅HBT进行增益的粗调。通过使用变容二极管调谐的偏置电路,对于1.7 GHz的固定较高频带边缘频率,较低频带边缘频率可以在0.3 GHz至0.8 GHz之间变化。另一方面,对于0.3 GHz的固定较低频带边缘频率,较高频带边缘频率可以在0.7至1.7 GHz之间变化。通过使用有源负载和共源共栅HBT,相继实现了在1.3至1.5 GHz范围内增益高达2.8 dB的微调范围和在0.7至1.5 GHz范围内增益高达23 dB的粗调范围。由于可以分别调整包括较低和较高频带边缘频率以及增益水平的频率响应,因此该放大器被认为对实现下一代可重构无线收发器做出了巨大贡献。

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