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Im3 Cancellation Method Using Current Feedback Suitable For A Multi-stage Rfic Amplifier

机译:适用于多级Rfic放大器的使用电流反馈的Im3消除方法

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A new method of cancellation of IM3 using current feedback has been proposed for a multi-stage RFIC amplifier. In order to cancel the IM3 present in an output signal of the amplifier, the IIP3 level and IM3 phase of the amplifier are adjusted by means of feedback circuit techniques, so that the target specification is satisfied. By estimating the IIP3 level and IM3 phase variations for two states in situations with and without feedback possessing linear factors, the parameters of a feedback circuit can be calculated. To confirm the validity of the method, we have investigated two approaches; one including an analytical approach to designing a two-stage feedback amplifier, achieving an IIP3 level improvement of 14.8 dB. The other method involves the fabrication of single-stage amplifiers with and without feedback, operating at 850 MHz, both of which were designed as an integrated circuit using a 0.18μm SiGe BiCMOS process. The fabricated IC's were tested using a load-pull measurement system, and a good agreement between the estimated and measured IIP3 level and IM3 phase variations has been achieved. Further studies show that the error in these variations, as estimated by the method, has been found to be less than 1.5 dB and 15 degrees, respectively, when the load admittance at 1701 MHz was greater than 1/50 S.
机译:对于多级RFIC放大器,已经提出了一种使用电流反馈消除IM3的新方法。为了消除存在于放大器的输出信号中的IM3,借助于反馈电路技术来调节放大器的IIP3电平和IM3相位,从而满足目标规格。通过估计在有和没有反馈都具有线性因子的情况下两种状态下的IIP3电平和IM3相位变化,可以计算出反馈电路的参数。为了确认该方法的有效性,我们研究了两种方法。其中包括一种用于设计两级反馈放大器的分析方法,可将IIP3电平提高14.8 dB。另一种方法涉及制造具有和不具有反馈的单级放大器,它们在850 MHz的频率下工作,二者均采用0.18μmSiGe BiCMOS工艺设计为集成电路。使用负载拉力测量系统对制造的IC进行了测试,并且在估算和测量的IIP3电平与IM3相位变化之间达成了良好的一致性。进一步的研究表明,当在1701 MHz处的负载导纳大于1/50 S时,通过该方法估算的这些变化中的误差分别小于1.5 dB和15度。

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