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0.1–5 GHz wideband ΔΣ fractional-N frequency synthesiser for software-defined radio application

机译:0.1-5 softwareGHz宽带ΔΣ小数N频率合成器,用于软件定义的无线电应用

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This article proposes a wideband Delta sigma fractional-N frequency synthesiser (WBFS) for software-defined radio application. The frequency synthesiser has two modes: the regular mode with low phase noise performance and the low-power mode for the low-power applications at lower frequency band. The authors also propose adjustable replica (AR) bias circuit for the frequency selection multiplexer (FSMUX) in the divide-by-two divider chain to optimise the power consumption at different frequencies while keep the output swing constant at different bias current to achieve robust operation. The FSMUX is implemented in differential structure instead of the widely used quadrature structure to reduce power and area especially at high carrier frequency. Implemented in 65 nm CMOS process with a 1.2-V supply, the WBFS generates frequency from 0.1 to 5 GHz. The maximum power at regular and low-power mode is 21 and 10.2 mW, respectively. The phase noise is -120.3 dBc/Hz at 1 MHz offset (2.75375 GHz) at regular mode and -122.8 dBc/Hz at 1 MHz offset (1.3525 GHz) at low-power mode. Thanks to the differential FSMUX with the proposed AR bias circuit and the low-power mode, the WBFS power is significantly reduced, compared with that of the prior WBFS with comparable frequency range.
机译:本文提出了一种用于软件定义的无线电应用的宽带Delta sigma分数N频率合成器(WBFS)。频率合成器有两种模式:具有低相位噪声性能的常规模式和用于低频段低功率应用的低功率模式。作者还提出了一种用于二分频除法器链中频率选择多路复用器(FSMUX)的可调复制(AR)偏置电路,以优化不同频率下的功耗,同时在不同偏置电流下保持输出摆幅恒定,从而实现稳健的工作。 。 FSMUX以差分结构实现,而不是广泛使用的正交结构,以降低功率和面积,尤其是在高载波频率下。 WBFS采用65 nm CMOS工艺,1.2 V电源实现,可产生0.1至5 GHz的频率。常规和低功耗模式下的最大功率分别为21和10.2 mW。在常规模式下,相位噪声在1 MHz偏移(2.75375 GHz)下为-120.3 dBc / Hz,在低功率模式下为1 MHz偏移(1.3525 GHz)下为-122.8 dBc / Hz。与具有拟议的AR偏置电路和低功耗模式的差分FSMUX相比,与具有相当频率范围的现有WBFS相比,WBFS功率大大降低了。

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