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A mixed-signal 32-coefficient RX-FFE 100-coefficient DFE for an 8Gb/s 60GHz receiver in 65nm LP CMOS

机译:用于65nm LP CMOS的8Gb / s 60GHz接收器的混合信号32系数RX-FFE 100系数DFE

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The 60GHz band has opened the opportunity for multi-Gb/s wireless communications, and is being commercially supported by transceiver solutions utilizing the WirelessHD and/or WiGig standards. However, the hundreds of mWs of power consumption associated with today's digital basebands (e.g. [1]) poses a significant barrier to adoption in mobile devices. Mixed-signal basebands have therefore been proposed and demonstrated [2] as an energy efficient (∼50mW) solution for sample rates of up to 5GS/s. However, such mixed-signal designs have so far been incapable of handling non-line-of-sight (NLOS) channels with pre-cursor inter-symbol interference (ISI) and extended channel delay spreads of >10ns. This work therefore presents the design of an efficient receive-side feedforward equalizer (Rx-FFE) for pre-cursor ISI cancelation and a long decision feedback equalizer (DFE) that can efficiently handle NLOS interference profiles.
机译:60GHz频带为多Gb / s无线通信打开了机会,并且利用WirelessHD和/或WiGig标准的收发器解决方案在商业上为其提供了支持。但是,与当今的数字基带相关的数百毫瓦的功耗(例如[1])对在移动设备中的采用构成了很大的障碍。因此,已经提出并证明了混合信号基带[2],它是一种能源效率高(约50mW)的解决方案,采样率高达5GS / s。但是,到目前为止,这种混合信号设计无法处理具有光标前符号间干扰(ISI)和扩展的通道延迟扩展> 10ns的非视距(NLOS)通道。因此,这项工作提出了一种有效的接收侧前馈均衡器(Rx-FFE)的设计,该均衡器用于前体ISI消除和长决策反馈均衡器(DFE),可以有效处理NLOS干扰曲线。

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