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A 16Gb/s 14.7mW tri-band cognitive serial link transmitter with forwarded clock to enable PAM-16 / 256-QAM and channel response detection in 28 nm CMOS

机译:具有转发时钟的16Gb / s 14.7mW三频段认知串行链路发射机,可在28 nm CMOS中启用PAM-16 / 256-QAM和通道响应检测

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A cognitive tri-band transmitter with forwarded clock using multi-band signaling and high-level digital signal modulations is presented for serial link application. The transmitter features learning an arbitrary channel response by sending a sweep of continuous wave, detecting power level, and accordingly adapts modulation scheme, data bandwidth and carrier frequency. The modulation scheme ranges from NRZ/QPSK to PAM-16/256-QAM. The highly re-configurable transmitter is capable of dealing with low-cost serial link cables/connectors or multi-drop buses with deep and narrow notches in frequency domain (e.g. 40dB loss at notches). The adaptive multi-band scheme mitigates equalization requirement and enhances the energy efficiency by avoiding frequency notches and utilizing the maximum available signal-to-noise ratio and channel bandwidth. The implemented transmitter consumes 14.7mW power and occupies 0.016mm2 in 28nm CMOS. It achieves a maximum data rate of 16Gb/s per differential pair and the most energy-efficient FoM (defined in Fig. 8) of 20.4 μW/Gb/s/dB considering channel condition.
机译:提出了一种认知型三频发射机,其具有使用多频信令和高级数字信号调制的转发时钟,用于串行链路应用。该发送器的特征是通过发送连续波扫描,检测功率电平来学习任意信道响应,并相应地调整调制方案,数据带宽和载波频率。调制方案的范围从NRZ / QPSK到PAM-16 / 256-QAM。高度可重新配置的发射机能够处理低成本的串行链路电缆/连接器或频域中具有较深和较窄陷波的多点总线(例如,陷波损耗为40dB)。自适应多频带方案通过避免频率陷波并利用最大可用信噪比和信道带宽,减轻了均衡要求并提高了能效。已实现的发射器消耗14.7mW的功率,并在28nm CMOS中占据0.016mm2的面积。考虑到信道条件,它可实现每个差分对最大数据速率为16Gb / s,最节能的FoM(在图8中定义)为20.4μW/ Gb / s / dB。

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