A Four-Channel 32-Gb/s Transceiver With Current-Recycling Output Driver and On-Chip AC Coupling in 65-nm CMOS Process

IEEE Trans. on Circuits and Systems(2014)

引用 13|浏览19
暂无评分
摘要
This brief describes the design of a four-channel 32-Gb/s serial link transmitter with a current-recycling output driver and an on-chip ac-coupled receiver. The proposed output driver significantly reduces power dissipation in the final stage of the transmitter by reusing the natural current flow through the four-channel outputs. It also eliminates the voltage regulation circuit and the current source circuitry for generating low-swing outputs. Since the four-channel outputs are stacked from the ground to the supply rail with different common-mode output levels, the receiver should include an ac-coupling circuit to establish the desired common-mode voltage level for the receive amplifier in each channel. A long-time constant is realized in the ac-coupling circuit with small on-chip capacitors. The prototype chip has been fabricated in the 65-nm low-power CMOS process, and the transmitter supports an output swing of 300 mVpp, diff at a data rate of 8 Gb/s. The four stacked output drivers only consume a total static power of 1.8 mW, and the overall transceiver, including an equalization of 7 dB, exhibits a normalized power dissipation of 2.04 mW/Gb/s.
更多
查看译文
关键词
power 1.8 mw,cmos integrated circuits,transceivers,bit rate 8 gbit/s,integrated circuit technology,integrated circuit manufacture,driver circuits,power dissipation,on-chip ac-coupled receiver,bit rate 32 gbit/s,high-speed serial link,size 65 nm,current-recycling output driver,amplifiers,recycling,constant current sources,voltage 300 mv,receive amplifier,current source circuitry,capacitors,current recycling,voltage regulation circuit,gain 7 db,small on-chip capacitor,low-swing output generation,transceiver,low-power cmos process,four-channel transceiver,four-channel serial link transmitter,on-chip ac coupling,voltage control,common-mode voltage level,output driver,resistors,transmitters,system on chip,couplings
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要