Li Weizhong, Zhang Hongguang, Hu Xiao, Lu Donglai, Chen Daigao, Chen Sikai, He Jian, Wang Lei, Qi Nan, Xiao Xi, Yu Shaohua
Opt Express. 2021 May 10;29(10):14304-14313. doi: 10.1364/OE.421980.
We demonstrate a co-designed optical receiver, which is hybrid-integrated with a silicon-photonic photodetector (PD) and silicon-germanium (SiGe) trans-impedance amplifier (TIA). Accurate equivalent circuit models of PD and electrical parasitic of chip-on-board (COB) assembly are built for co-simulation with TIA. Inductive peaking and equalizer (EQ) techniques are proposed in the design of TIA to extend the bandwidth of the optical receiver. The measured electrical 3-dB bandwidth of TIA and optical-to-electrical (O-E) 3-dB bandwidth of optical receiver are above 36.8 GHz and 36 GHz, respectively. For the optical receiver, clear eye diagrams up to a data rate of 80 Gbit/s are realized. The bit-error ratios (BER) for the NRZ signal with a different bit rate and received optical power are experimentally measured, and 100 Gbit/s NRZ operation is successfully achieved with a soft-decision forward error correction (SD-FEC) threshold.
我们展示了一种协同设计的光接收器,它与硅光子探测器(PD)和硅锗(SiGe)跨阻放大器(TIA)进行了混合集成。构建了PD的精确等效电路模型以及板上芯片(COB)组件的电气寄生模型,以便与TIA进行协同仿真。在TIA的设计中提出了电感峰值和均衡器(EQ)技术,以扩展光接收器的带宽。TIA测得的电气3dB带宽和光接收器的光电(O-E)3dB带宽分别高于36.8GHz和36GHz。对于该光接收器,实现了高达80Gbit/s数据速率的清晰眼图。通过实验测量了不同比特率和接收光功率下NRZ信号的误码率(BER),并成功实现了100Gbit/s NRZ操作的软判决前向纠错(SD-FEC)阈值。