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Design of a Ka-Band Cascode Power Amplifier Linearized With Cold-FET Interstage Matching Network

机译:用冷FET型号匹配网络线性化的KA频段Cascode功率放大器设计

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A Ka-band CMOS cascode power amplifier (PA) linearized with a cold-FET-based interstage matching network is presented, which is designed in a 65-nm CMOS process. Since it is difficult to make a cascode PA matched to the optimum output and input impedances at high frequencies, a matching network has to be introduced at the node between the commonsource (CS) and common-gate (CG) stages. The cold-FET-based matching network improves the linearity and the input and output impedance matchings, which is analyzed and optimized with its simple model. It makes the PA have gain expansion and phase lag with the power, which allows the PA to have less amplitude-to-amplitude (AM-AM) and amplitude-to-phase (AM-PM) distortions. In addition, it improves the return losses of the PA by making the impedances for power matching and conjugate matching located closely. The implemented PA achieves the peak power-added efficiency (PAE) of 38.2% and the saturated output power (P-sat) of 17.1 dBm at 31 GHz while occupying the chip area of 0.16 mm(2). It is also shown that the OP1dB is improved by 1.7 dB, and the AM-PM distortion is reduced to only 1.1 degrees due to the linearization technique. It is tested with 64-quadrature amplitude modulation (QAM) signals, which has a 400-MHz channel bandwidth (BW) and a 9.7-dB peak-to-average power ratio (PAPR). It achieves average output powers of 9.6/7.7 dBm with error vector magnitudes (EVMs) of -25/-30 dB for 64-QAM OFDM signals, efficiencies of 17.7%/12%, and the adjacent channel leakage ratio (ACLR) of -28.2/-32.8 dBc, respectively.
机译:介绍了具有基于冷FET的竞争网络的KA频段CMOS CASCODE功率放大器(PA),采用65纳米CMOS工艺设计。由于难以使Cascode Pa与高频处的最佳输出和输入阻抗匹配,因此必须在致态源(CS)和公共门(CG)级之间的节点处引入匹配网络。基于冷FET的匹配网络可提高线性度和输入和输出阻抗匹配,并通过其简单的模型进行分析和优化。它使PA具有增益的扩展和相位滞后,其允许PA具有较少的幅度 - 幅度(AM-AM)和幅度与阶段(AM-PM)失真。此外,它通过使能电力匹配和缀合物匹配的阻抗来提高PA的回报损耗。实施的PA实现了38.2%的峰值电力增加效率(PAE)和31GHz的饱和输出功率(P-SAT),同时占据0.16mm(2)的芯片面积。还示出了OP1DB的提高了1.7dB,并且由于线性化技术,AM-PM失真降低到仅1.1度。它用64正交幅度调制(QAM)信号进行了测试,该信号具有400 MHz通道带宽(BW)和9.7dB峰平均功率比(PAPR)。它实现了9.6 / 7.7 dBm的平均输出功率,误差矢量幅度为-25 / -30 dB,对于64-QAM OFDM信号,效率为17.7%/ 12%,以及相邻的信道泄漏比(ACLR)的 - 分别为28.2 / -32.8 DBC。

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