首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A 90 nm-CMOS IR-UWB BPSK Transmitter With Spectrum Tunability to Improve Peaceful UWB-Narrowband Coexistence
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A 90 nm-CMOS IR-UWB BPSK Transmitter With Spectrum Tunability to Improve Peaceful UWB-Narrowband Coexistence

机译:具有频谱可调性的90 nm-CMOS IR-UWB BPSK发送器,可改善和平的UWB-窄带共存

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摘要

A new ultra wideband (UWB) pulse generator covering a –10 dB bandwidth of 2.4–4.6 GHz with a tunable center frequency of 5–5.6 GHz to mitigate coexistence issues of impulse radio UWB (IR-UWB) systems and IEEE802.11.a WLAN or other narrowband (NB) systems in 90 nm-CMOS technology is proposed. The UWB pulse is generated based on frequency up-conversion of the first derivative of the Gaussian pulse, which creates an adjustable null in the frequency spectrum. Simulation results show that employing the proposed pulse generator mitigates the mutual interference between UWB and WLAN systems, significantly. The proposed transmitter consists of a low frequency signal generator, an LC oscillator and a mixer, whose output directly drives the antenna using a matching on-chip transformer. Two control signals change the bandwidth and center frequency of the transmitted spectrum depending on the NB frequency and considering process, supply voltage and temperature (PVT) variations. A fast start-up circuit is used in the LC oscillator using current pulse injection and together with the mixer is duty cycled to reduce the power consumption. Post-layout simulation results show a null depth of 23 dB for a null bandwidth of 100 MHz. The energy/pulse and energy/pulse normalized to the output voltage amplitude are 14.4 pJ/pulse and 35.7 pJ/(pulse-V) from a 1-V supply for a pulse rate of 860 Mpulse/s with an active circuit area of only 0.18 mm².
机译:一种新型超宽带(UWB)脉冲发生器,其覆盖2.4-4.6 GHz的–10 dB带宽,并且具有5-5.6 GHz的可调中心频率,以减轻脉冲无线电UWB(IR-UWB)系统和IEEE802.11.a的共存问题。提出了采用90 nm-CMOS技术的WLAN或其他窄带(NB)系统。 UWB脉冲是基于高斯脉冲的一阶导数的频率上变频而生成的,这会在频谱中产生可调整的零点。仿真结果表明,采用所提出的脉冲发生器可以大大减轻UWB与WLAN系统之间的相互干扰。拟议的发射器由低频信号发生器,LC振荡器和混频器组成,其输出使用匹配的片上变压器直接驱动天线。两个控制信号根据NB频率并考虑工艺,电源电压和温度(PVT)的变化来更改传输频谱的带宽和中心频率。 LC振荡器中使用电流脉冲注入来使用快速启动电路,并与混频器一起进行占空比调整以降低功耗。布局后的仿真结果显示,对于100 MHz的零带宽,零深度为23 dB。归一化为输出电压幅度的能量/脉冲和能量/脉冲分别是1-V电源的14.4 pJ / pulse和35.7 pJ /(pulse-V),脉冲速率为860 Mpulse / s,有效电路面积仅为0.18平方毫米。

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