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A 4.7-Gb/s Reconfigurable CMOS Imaging Optical Receiver Utilizing Adaptive Spectrum Balancing Equalizer

机译:利用自适应频谱平衡均衡器的4.7 Gb / s可重配置CMOS成像光接收器

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This paper presents a fully integrated imaging receiver for high data rate wireless optical communication. A 3 × 3 matrix of Spatially Modulated Light detectors (SML), each with 730-MHz bandwidth followed by on-chip switches are integrated to allow the detection of photodiodes (PDs) in Line of Sight (LOS) with the transmitter. The imaging optical receiver employs a novel adaptive equalizer that uses spectrum reshaping to equalize the low bandwidth of the SML PD and partially compensate for the variable capacitance seen by the transimpedance amplifier resulting from dynamic LOS variations. Implemented in 130-nm CMOS technology, the chip provides an optical sensitivity of -3.5 dBm for λ = 850nm modulated light with 4.7-Gb/s 231-1 random data at BER = 10-10, and -4.4 dBm at 4.5 Gb/s with BER = 10-12, using one activated PD. For the case when all nine PDs are activated, corresponding to 11.5 pF total PDs capacitance at the input of the transimpedance amplifier, measurement results show a sensitivity of -5 dBm for 2-Gb/s data at BER = 10-12. The total power consumption including the differential output buffer is 97 mW from a single 1.5-V supply while providing 750-mV peak to peak output voltage over the 100 Ω differential resistance of the measurement equipment. The total die area including bond pads is 870 × 1400 μm × μm.
机译:本文提出了一种用于高数据速率无线光通信的完全集成的成像接收器。集成了一个3×3的空间调制光检测器(SML)矩阵,每个矩阵具有730 MHz带宽,后跟片上开关,从而可以通过发射器检测视线(LOS)中的光电二极管(PD)。成像光接收器采用了一种新颖的自适应均衡器,该均衡器使用频谱重塑来均衡SML PD的低带宽,并部分补偿跨阻放大器看到的由动态LOS变化引起的可变电容。该芯片采用130 nm CMOS技术实施,对于λ= 850nm调制光提供了-3.5 dBm的光灵敏度,在BER = 10-10时具有4.7 Gb / s 231-1随机数据,在4.5 Gb / s时具有-4.4 dBm。 BER = 10-12,使用一个激活的PD。对于所有九个PD均被激活的情况(对应跨阻放大器输入端的总PD电容为11.5 pF),测量结果显示,对于BER = 10-12的2 Gb / s数据,灵敏度为-5 dBm。单个1.5 V电源的总功耗(包括差分输出缓冲器)为97 mW,同时在100Ω的测量设备差分电阻上提供750 mV峰峰值输出电压。包括焊盘在内的芯片总面积为870×1400μm×μm。

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