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Implementation of an improved active CMOS mixer with high linearity for wideband wireless systems

机译:宽带无线系统中具有高线性度的改进型有源CMOS混频器的实现

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This paper designs and implements an direct up-conversion mixer based on RF CMOS process, which can be used in the up-link radio frequency (RF) front-end of a 2.4GHz wideband wireless system such as multimedia wireless sensor network (WSN). Firstly, Gilbert cell-based double-balanced structure is adopted in this design, which can effectively suppress the feed-through of the local oscillator (LO) signal to the RF port, and as well as that of the intermediate frequency (IF) signal to the RF port. Then, an improved Gilbert cell structure-based circuit is proposed by introducing source degeneration technique to improve the linearity of the up-mixer. LC resonant network is used as load of the mixer to select the first-order mixing items. Finally, the mixer is fabricated in TSMC 0.18μm 1P6M RF CMOS process. Measured results show that the mixer performs well and has better linearity, the input 1dB compression point is −1dBm, and the conversion gain is −0.5dB with the total current (including the mixer core and the buffer) of 16mA. The entire chip area (including the pads) is 780μm×560μm.
机译:本文设计并实现了一种基于RF CMOS工艺的直接上变频混频器,该混频器可用于2.4GHz宽带无线系统的上行链路射频(RF)前端,例如多媒体无线传感器网络(WSN)。 。首先,本设计采用基于吉尔伯特单元的双平衡结构,可以有效抑制本地振荡器(LO)信号到RF端口以及中频(IF)信号的馈通。到射频端口。然后,通过引入源退化技术,提出了一种改进的基于吉尔伯特单元结构的电路,以提高上混频器的线性度。 LC谐振网络用作混频器的负载,以选择一阶混频项。最后,以台积电0.18μm1P6M RF CMOS工艺制造混频器。测量结果表明,在总电流(包括混频器内核和缓冲器)为16mA的情况下,混频器性能良好且具有更好的线性度,输入1dB压缩点为-1dBm,转换增益为-0.5dB。整个芯片面积(包括焊盘)为780μm×560μm。

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