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An Improved-Linearity, Single-Stage Variable-Gain Amplifier Using Current Squarer for Wider Gain Range

机译:使用电流平方器的改进线性度,单级可变增益放大器,增益范围更大

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A novel single-stage variable-gain amplifier (VGA) based on transconductance -ratio amplifier is analyzed and designed with wider linear-in-dB gain range and improved linearity. The variable-gain amplifier proposed here consists of an exponential control block, a current squarer and an amplifier block with both input and load degeneration. With the help of current squarer which gets square function of the output current from exponential control block, the VGA achieves the maximum linear gain range in single stage. Current squarer is proposed, which is designed with compensation technique to minimize the second-order effect caused by carrier mobility reduction in short channel MOSFET. To avoid the poor linearity performance of the -ratio amplifiers, the distortion is analyzed and the linearity is improved by applying input and load degenerating technique. At the same power consumption, the input 1 dB compression point can be improved by nearly 8.78 dB. Simulation results show that the VGA can provide a gain variation range of 64.09 dB (from to 28.5 dB) with a 3-dB bandwidth from 47 to 640 MHz. The circuit consumes the maximum power 3.5 mW from a 1.8-V supply.
机译:对基于跨导比放大器的新型单级可变增益放大器(VGA)进行了分析和设计,使其具有更宽的dB线性增益范围和更高的线性度。这里提出的可变增益放大器包括一个指数控制模块,一个电流平方器和一个同时具有输入和负载退化的放大器模块。借助电流平方器,该平方器从指数控制模块获得输出电流的平方函数,VGA在单级中实现了最大线性增益范围。提出了电流平方器,该电流平方器采用补偿技术进行设计,以最小化短沟道MOSFET中由于载流子迁移率降低而引起的二阶效应。为避免-比例放大器的较差的线性性能,可以通过应用输入和负载简并技术来分析失真并改善线性度。在相同功耗下,输入1 dB压缩点可以提高近8.78 dB。仿真结果表明,VGA的增益变化范围为64.09 dB(从28.5 dB到28.5 dB),带宽从47 MHz到640 MHz为3 dB。该电路从1.8V电源消耗的最大功率为3.5 mW。

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