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首页> 外文期刊>Analog Integrated Circuits and Signal Processing >A CMOS imaging diversity receiver for gigabit free-space optical MIMO
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A CMOS imaging diversity receiver for gigabit free-space optical MIMO

机译:用于千兆位自由空间光学MIMO的CMOS成像分集接收机

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摘要

A 7-channel imaging diversity receiver based on current-summing is implemented in a 180 nm CMOS technology for broadband free-space optical (FSO) multi-input/multi-output (MIMO) communication. Each channel employs a low input-impedance current mirror (CM) as the input stage, which allows the implementation of direct current-summing for equal-gain combining (EGC). The summed current signal drives a second stage transimpedance amplifier (TIA) to generate the output voltage. Electrical characterization was performed using a photodiode emulation circuit and chip-on-board FR-4 assembly, demonstrating a total transimpedance gain of 62 dBΩ, −3 dB bandwidth of 1.2 GHz, and eye diagrams up to 2 Gb/s for 0.25 pF photodiode capacitance. The theoretical sensitivity of the imaging receiver is −16.8 dBm for a bit error rate (BER) of 10−9 at a photodetector responsivity of 0.4 A/W. The simulated power consumption for a single front-end amplifier circuit is 4.2 mW, and for the second stage TIA is 10.3 mW from a single 1.8 V supply. The diversity receiver is flip-chip compatible to enable hybrid integration to a custom InGaAs photodetector array.
机译:在180 nm CMOS技术中实现了基于电流求和的7通道成像分集接收机,用于宽带自由空间光(FSO)多输入/多输出(MIMO)通信。每个通道均采用低输入阻抗电流镜(CM)作为输入级,从而可实现直接电流求和以实现等增益组合(EGC)。求和的电流信号驱动第二级跨阻放大器(TIA)产生输出电压。使用光电二极管仿真电路和板上芯片FR-4组件进行电气表征,展示了62dBΩ的总跨阻增益,1.2 GHz的-3 dB带宽以及0.25 pF光电二极管的眼图高达2 Gb / s电容。在0.4 A / W的光电探测器响应度下,对于10 -9 的误码率(BER),成像接收器的理论灵敏度为-16.8 dBm。单个前端放大器电路的模拟功耗为4.2 mW,而第二级TIA的1.8 V单电源模拟功耗为10.3 mW。分集接收器是倒装芯片兼容的,以实现与定制InGaAs光电探测器阵列的混合集成。

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