A 40-Gb/s PAM-4 Transmitter Using a 0.16-pJ/bit SST-CML-Hybrid (SCH) Output Driver and a Hybrid-Path 3-Tap FFE Scheme in 28-nm CMOS
Chao Fan, Wei-Han Yu, Pui‐In Mak, Rui P. Martins
University of Macau University of Lisbon Instituto Politécnico de Lisboa
内容与影响
This paper proposes an SST-CML-Hybrid (SCH) output driver, and its corresponding hybrid-path feed-forward equalization (FFE) scheme, to enhance the energy efficiency of a PAM-4 transmitter (TX). Specifically, the SCH driver features one SST branch + one CML branch to co-synthesize the PAM-4 data, reducing substantially the signaling power, switching power and equalization power. The PAM-4 TX further integrates a half-rate serializer with 4-bit 3-tap FFE, duty-cycle correction circuits and a T-coil output matching network. Prototyped in 28-nm CMOS, the PAM-4 TX achieves a broadband return loss2. Operating at 40 Gb/s and at a 0.9-V supply, the TX dissipates 19.5 mW, of which 6.4 mW is due to the SCH driver. The corresponding energy efficiencies are 0.16 and 0.5 pJ/bit for the SCH driver and TX, respectively; both compare favorably with the prior art.
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