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An area-efficient maximum-ratio-combining diversity receiver in 90 nm CMOS for free-space optical links

机译:适用于自由空间光链路的90 nm CMOS面积有效的最大比率组合分集接收机

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This paper presents a low-power imaging diversity front-end receiver employing the maximum-ratio-combining algorithm for free-space optical communication. It consists of seven signal channels and an output stage, each channel has a front-end transimpedance amplifier, a signal-to-noise ratio (SNR) estimator and a variable gain amplifier (VGA). The imaging receiver circuit was implemented in a 90 nm CMOS process. The maximum-ratio weighting is achieved with the SNR estimator and variable gain amplifier (VGA), which provides the signal with a gain proportional to the signal amplitude. The maximum ratio combining feature was demonstrated with two channels driven by photodiode emulation circuits for electrical characterization. The power dissipation for the whole chip is 43 mW from a single 1.2 V supply.
机译:本文提出了一种采用最大比率组合算法的低功率成像分集前端接收机,用于自由空间光通信。它由七个信号通道和一个输出级组成,每个通道都有一个前端跨阻放大器,一个信噪比(SNR)估计器和一个可变增益放大器(VGA)。成像接收器电路以90 nm CMOS工艺实现。最大比重加权是通过SNR估计器和可变增益放大器(VGA)实现的,可变增益放大器(VGA)为信号提供与信号幅度成比例的增益。通过光电二极管仿真电路驱动的两个通道进行了电气比表征,证明了最大比例合并功能。单个1.2 V电源的整个芯片功耗为43 mW。

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