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A 2.4 GHz double balanced differential input differential output low power high gain Gilbert cell down conversion mixer in TSMC 180nm CMOS RF process

机译:台积电180nm CMOS RF工艺中的2.4 GHz双平衡差分输入差分输出低功率高增益Gilbert单元下变频混频器

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In this paper, a high gain low-power down-conversion Gilbert cell mixer, designed in 180 nm RF CMOS process, is proposed to realize the receiver front-end working at 2.4 GHz frequency. The proposed mixer can convert a 2.4 GHz RF signal into a 100 MHz intermediate frequency (IF) signal to, with a local oscillator power of 5 dBm at 2.3 GHz. A comparison with conventional voltage-mode down-conversion mixer shows that this mixer has advantages of low voltage, low power consumption and high performance. Simulation results demonstrate that at 2.4 GHz, the circuit provides 25.00 dB of conversion gain and the input-referred third-order intercept point (IIP3) of -17.78 dBm. The circuit consumed 8.660 mW power. The chip area is only 0.405 mm ×0.246 mm.
机译:本文提出了一种采用180 nm RF CMOS工艺设计的高增益低功耗下变频吉尔伯特单元混频器,以实现工作在2.4 GHz频率的接收器前端。所提出的混频器可以将2.4 GHz的RF信号转换为100 MHz的中频(IF)信号,并在2.3 GHz时具有5 dBm的本地振荡器功率。与常规电压模式下变频混频器的比较表明,该混频器具有低电压,低功耗和高性能的优点。仿真结果表明,在2.4 GHz频率下,该电路可提供25.00 dB的转换增益和-17.78 dBm的输入参考三阶交调点(IIP3)。该电路消耗了8.660 mW的功率。切屑面积仅为0.405 mm×0.246 mm。

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