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A Low Voltage, Low Power and Highly Linear CMOS Down-Conversion Gilbert Cell Mixer Using MGTR Method

机译:使用MGTR方法的低电压,低功耗和高线性度CMOS下变频吉尔伯特单元混频器

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A radio frequency (RF) low voltage and low power down conversion mixer with high linearity using TSMC 0.18-mu m technology is presented which operates in 2.4 GHz Industrial Scientific and Medical (ISM) band. The local oscillator (LO) frequency is 2.1 GHz with an input power of 5 dBm, whereas IF frequency is 300 MHz. Multiple gated transistors (MGTRs) method is used to increase the linearity of Gilbert cell mixer. In this method an auxiliary transistor is used parallel to the transconductance stage transistor. This increases linearity by decreasing of transconductance stage transistor. The simulation results show an HP3 improvement of 16.55 dBm. The proposed low power and highly linear mixer consumes a power of 4.46 mW from 1.8 V a supply voltage. The noise figure (NF) and gain conversion are about 13.8 dB and 9.11 dB, respectively.
机译:提出了一种采用台积电0.18微米技术的高线性度射频(RF)低压低功率下变频混频器,该混频器在2.4 GHz工业科学和医学(ISM)频段工作。本振(LO)频率为2.1 GHz,输入功率为5 dBm,而IF频率为300 MHz。多栅极晶体管(MGTR)方法用于增加吉尔伯特单元混频器的线性度。在这种方法中,与跨导级晶体管并联使用一个辅助晶体管。通过减少跨导级晶体管,可以增加线性度。仿真结果显示HP3改善了16.55 dBm。拟议的低功率和高度线性的混频器从1.8 V的电源电压消耗4.46 mW的功率。噪声系数(NF)和增益转换分别约为13.8 dB和9.11 dB。

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