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Design Considerations for Image-Rejection Enhancement of Quadrature Mixers

机译:正交混频器的图像抑制增强的设计注意事项

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In this letter, the influences of local oscillator (LO) reflections of the in-phase (I) and quadrature-phase (Q) mixers and limited isolations between the I/Q LO ports on the image-rejection ratio (IRR) performances of quadrature mixers are investigated and analyzed for the first time. The analysis reveals that, in addition to generating well-balanced quadrature LO signals, a good LO impedance matching and/or high electrical isolation between the LO ports of the I and Q mixers are required to obtain a high IRR over a wide bandwidth. To verify the analysis, a quadrature mixer with carefully designed wideband LC-ladder matching networks for the I/Q LO ports is implemented in a 65-nm CMOS technology. Under 1-V supply voltage and 3-dBm LO power, the proposed quadrature mixer exhibits 3.3 +/- 1.5 dB conversion gain and better than 30-dBc IRR across the 20-25-GHz band.
机译:在这封信中,同相(I)和正交相(Q)混频器的本地振荡器(LO)反射以及I / Q LO端口之间的有限隔离对图像抑制比(IRR)性能的影响正交混频器首次得到研究和分析。分析表明,除了产生均衡的正交本振信号之外,还需要在I和Q混频器的本振端口之间实现良好的本振阻抗匹配和/或电气隔离,以在较宽的带宽上获得较高的IRR。为了验证分析,在65 nm CMOS技术中实现了具有针对I / Q LO端口精心设计的宽带LC梯形匹配网络的正交混频器。在1V电源电压和3dBm LO功率下,拟议的正交混频器在20-25GHz频段内具有3.3 +/- 1.5dB的转换增益,并具有优于30dBc的IRR。

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