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首页> 外文期刊>Microelectronics journal >A 1.5-2.8 GHz current-mode LNTA achieving >25 dBm IIP3 and +8 dBm P-1dB gain compression
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A 1.5-2.8 GHz current-mode LNTA achieving >25 dBm IIP3 and +8 dBm P-1dB gain compression

机译:1.5-2.8 GHz电流模式LNTA,可实现> 25 dBm IIP3和+8 dBm P-1dB增益压缩

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To meet the requirements of future SAW-less frequency-division duplexing (FDD) and phased-array receivers, the linearity of the Low-Noise Transconductance-Amplifier (LNTA) should be considerably improved. In this paper, a highly-linear common-gate (CG) amplifier is presented that can be directly connected to the antenna. The LNTA operates in current-mode and is not power-matched to the antenna. In this way, noise and distortion of the active devices are strongly suppressed. Optimum LNTA driving impedance is provided by a transformer-based LC resonant network, while the LNTA core consists of a complementary cross-coupled CG stage to save power. The impact of passive losses is minimized using the noise-matching technique. Furthermore, the effect of source impedance variation on IIP3, NF and gain is also investigated. The measured IIP3 of the LNTA is more than 25 dBm from 1.5 to 2.8 GHz. The P-1dB gain compression is also +8 dBm. The chip is implemented in 28 nm CMOS and has an active area of 0.29 mm(2) and draws only 8 mA from a 1.8 V supply.
机译:为了满足未来的无声表面波分频双工(FDD)和相控阵接收机的要求,低噪声跨导放大器(LNTA)的线性度应得到很大改善。在本文中,提出了一种可以直接连接到天线的高线性共栅(CG)放大器。 LNTA在电流模式下工作,与天线功率不匹配。这样,可以有效地抑制有源器件的噪声和失真。最佳的LNTA驱动阻抗由基于变压器的LC谐振网络提供,而LNTA内核由互补的交叉耦合CG级组成,以节省功耗。使用噪声匹配技术可将无源损耗的影响降至最低。此外,还研究了源阻抗变化对IIP3,NF和增益的影响。 LNTA的测得IIP3在1.5至2.8 GHz范围内大于25 dBm。 P-1dB增益压缩也为+8 dBm。该芯片采用28 nm CMOS封装,有效面积为0.29 mm(2),从1.8 V电源仅消耗8 mA电流。

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