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A 10-Gb/s Wireline Receiver Using Linear Baud-Rate CDR and Analog Equalizer for Free Space Optical Communication Over 10- and 100-m Distances
一种用于FSO-WDM系统的10Gbps有线接收器,采用线性波特率CDR和模拟均衡器。
3.8 pJ/bit, 0.147 mm²
自由空间光通信波分复用时钟数据恢复模拟均衡器符号间干扰
▸使用积分器生成数据中心的时钟相位,无需参考电压或额外时钟相位
▸前端模拟均衡器通过反馈环路减少ISI
▸在10米和100米距离上实现10^-11的误码率
Abstract
Free-space wireless optical communication (FSO), which adopts the wavelength division multiplexing (WDM) tech- nology, transmits and receives various data and wavelength combinations on a single channel. The mixed data and wave- lengths are separated by WDM demodulation using the different refraction of light. Due to chromatic dispersion, the phase of the arriving optical signal would depend on the wavelength. There- fore, clock and data recovery (CDR) is required to determine the optimum sampling point in FSO-WDM systems. The proposed baud-rate CDR uses an integrator to generate a clock phase at the data center. Because the integrator output determines early or late signals, the proposed CDR does not require any reference voltage or additional clock phase. The proposed analog equalizer (AEQ) of the receiver in the front end compensates for the inter-symbol interference (ISI) caused by the electrical-to- optical converter, atmospheric channel, and optical-to-electrical converter. The AEQ reduces the ISI by using a feedback loop. The prototype receiver achieved a bit error rate (BER) of 10 −11 regardless of the wavelength thanks to the proposed AEQ and baud rate CDR in FSO-WDM system over 10- and 100-m distances. The power efficiency and area of the proposed receiver were 3.8 pJ/bit and 0.147 mm 2, respectively.