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首页> 外文期刊>International Journal of Technology >Design of CMOS RFIC UWB Carrier-Less and Carrier-Based Transmitters
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Design of CMOS RFIC UWB Carrier-Less and Carrier-Based Transmitters

机译:CMOS RFIC超宽带无载波发射机的设计

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This paper presents new carrier-based and carrier-less ultra-wideband (UWB) transmitter architectures and their CMOS implementation. The carrier-based transmitter designed using a 0.18-?m CMOS process adopts a double-stage switching to enhance RF-power efficiency, reduce dc-power consumption and circuit complexity, and increase switching speed and isolation. Measurement results show that the generated UWB signal can vary from 2 V peak-to-peak with 3-dB 4-ns pulse width to 1 V with 0.5 ns, covering 10-dB signal bandwidths from 0.5 to 4 GHz, respectively. The generated UWB signal can be tuned to cover the entire UWB frequency range of 3.1 to 10.6 GHz. The carrier-less transmitter integrates tuning delay circuit, square-wave generator, impulse-forming circuit, and pulse-shaping circuit in a single chip using a standard low-cost 0.25-?m CMOS process. It can generate monocycle pulse and Gaussian-type impulse (without the pulse-shaping circuitry) signals with tunable pulse duration. Measured results show that the carrier-less transmitter can produce 0.3–0.6 V peak-to-peak monocycle pulse with 140–350 ps tunable pulse-duration and 0.5–1.3 V peak-to-peak impulse signal with 100–300 ps tunable pulse-duration.
机译:本文介绍了新的基于载波和无载波的超宽带(UWB)发射机架构及其CMOS实现。采用0.18-µm CMOS工艺设计的基于载波的发射器采用双级开关,以提高RF功率效率,降低DC功率消耗和电路复杂性,并提高开关速度和隔离度。测量结果表明,生成的UWB信号的峰峰值范围为2 V,脉冲宽度为3-dB,变化范围为3 ns,0.5 V的峰值电压为1 V,覆盖了0.5 dB至4 GHz的10 dB信号带宽。可以将生成的UWB信号调整为覆盖3.1至10.6 GHz的整个UWB频率范围。无载波发射机使用标准的低成本0.25-μmCMOS工艺在单个芯片中集成了调谐延迟电路,方波发生器,脉冲形成电路和脉冲整形电路。它可以产生单周期脉冲和具有可调脉冲持续时间的高斯型脉冲(无脉冲整形电路)信号。测量结果表明,无载波发射机可以产生0.3–0.6 V峰峰值单周期脉冲,可调脉冲持续时间为140–350 ps,产生0.5–1.3 V峰峰值脉冲信号,可调脉冲为100–300 ps -持续时间。

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