基于28nm CMOS的4- 9ghz IEEE 802.15.4z兼容超宽带数字发射机,可重构脉冲整形

Huajun Chen, Zhenqi Chen, Rongde Ou, Run Chen, Zhaohui Wu, Bin Li
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引用次数: 4

摘要

本文提出了一种符合IEEE 802.15.4z标准的超宽带数字发射机,具有可重构脉冲整形的特点。提出的超宽带脉冲整形技术利用可编程延迟线实现高频谱效率和显著的旁瓣抑制。为了保护由薄栅极晶体管实现的数字功率放大器(DPA),设计了一种带二次谐波陷阱的片上宽带匹配网络。该原型芯片采用28nm CMOS工艺,电源电压为0.9V,可以在1至249.6 MHz的各种脉冲重复率(PRF)下工作在4至9 GHz,信号带宽可编程(500 ~ 1331 MHz)。所测传输波形符合IEEE 802.15.4z标准,频谱效率高达59%。输出功率具有高度可编程性,峰值为14.5 dBm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 4-to-9GHz IEEE 802.15.4z-Compliant UWB Digital Transmitter with Reconfigurable Pulse-Shaping in 28nm CMOS
This paper presents an IEEE 802.15.4z standard-compliant UWB digital transmitter that features reconfigurable pulse-shaping. The proposed UWB pulse-shaping technique exploits programmable delay lines to achieve high spectrum efficiency and significant sidelobe suppression. An on-chip broadband matching network with a second-harmonic trap is implemented to protect the digital power amplifier (DPA) realized by thin-gate transistors. Implemented in a 28nm CMOS process with a supply voltage of 0.9V, the prototype chip can operate from 4 to 9 GHz at various pulse repetition rates (PRF) from 1 to 249.6 MHz with programmable signal bandwidths (500 ∼ 1331 MHz). The measured transmitted waveform meets with IEEE 802.15.4z standard, and its spectrum efficiency is up to 59%. The output power is highly programmable with a peak value of 14.5 dBm.
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