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Driver circuit for a PAM-4 optical transmitter using 65 nm CMOS and silicon photonic technologies

机译:使用65 nm CMOS和硅光子技术的PAM-4光发射机的驱动器电路

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A push-pull silicon photonic Mach-Zehnder modulator (MZM) driver is presented which uses a switched capacitor approach to generate a ~2 V peak-to-peak differential 4-level pulse amplitude modulation (PAM-4) signal. The driver chip includes a Gray encoder and retiming flip-flops. The switched capacitor approach allows driving the lumped silicon photonic MZM with reduced power consumption compared with the conventional approach of driving MZMs (with transmission line based electrodes) with a power amplifier. This is critical for upcoming short-reach link standards such as 400 Gbit/s 802.3 Ethernet. The chip was fabricated using a 65 nm CMOS technology and flip-chipped on top of the silicon photonic chip (fabricated using IMEC's ISIPP25G technology) that contains the MZM. Open eyes with 4 dB extinction ratio for a 36 Gbit/s (18 Gbaud) PAM-4 signal are experimentally demonstrated. The electronic driver chip has a core area of 0.11 mm2 and consumes 236 mW from 1.2 to 2.4 V supply voltages. This corresponds to an energy efficiency of 6.55 pJ/bit including Gray encoder and retiming, or 5.37 pJ/bit for the driver circuit only.
机译:提出了一种推挽式硅光子Mach-Zehnder调制器(MZM)驱动器,该驱动器使用开关电容器方法生成〜2 V峰峰值差分4级脉冲幅度调制(PAM-4)信号。驱动器芯片包括格雷编码器和重定时触发器。与使用功率放大器驱动MZM(基于传输线的电极)的常规方法相比,开关电容器方法允许以降低的功耗来驱动集总硅光子MZM。这对于即将到来的短距离链路标准(例如400 Gbit / s 802.3以太网)至关重要。该芯片使用65 nm CMOS技术制造,并倒装在包含MZM的硅光子芯片(使用IMEC的ISIPP25G技术制造)的顶部。实验证明了对于36 Gbit / s(18 Gbaud)PAM-4信号具有4 dB消光比的睁眼。电子驱动器芯片的核心面积为0.11 mm2,在1.2至2.4 V的电源电压下消耗236 mW。包括格雷编码器和重定时在内,这相当于6.55 pJ /位的能量效率,或者仅对于驱动器电路而言为5.37 pJ /位。

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