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A 20.7–43.8-GHz Low Power Reconfigurable ×2/×3 Frequency Multiplier for Multiple 5G-mm-Wave Bands Zhipeng Wang
提出一种可重构注入锁定频率倍增器,支持倍频和三次倍频模式,提高工作频率范围和功率效率。
带宽20.7-43.8 GHz,谐波抑制优于27 dB,功耗12 mW(28 GHz)和9.6 mW(39 GHz)
频率倍增器5G毫米波注入锁定谐波抑制低功耗
▸创新点1:可重构注入锁定频率倍增器(RE-ILFM):该方法创新通过切换×2倍频模式和×3倍频模式,实现了宽频带操作和高功率效率,无需校准,显著提升了频率倍增器的灵活性和性能。
▸创新点2:谐波抑制技术(HST):电路创新结合陷波滤波器和变压器注入耦合网络,优化了谐波抑制,实现了优于27-dB的谐波抑制效果,提升了信号纯净度。
▸创新点3:双核多谐振腔设计:系统创新首次将双核多谐振腔引入注入锁定频率倍增器,与传统方法相比,有效提高了输出信号的幅度,增强了整体性能。
▸创新点4:低功耗设计:电路创新通过采用类C工作的推挽对注入器件,降低了功耗,同时提高了二阶谐波电流,实现了12mW和9.6mW的低功耗运行。
Abstract
A reconfigurable injection-locked frequency multi- plier (RE-ILFM) wi th both frequency ×2 doubler mode (DM) and ×3 tripler mode (TM) is proposed to increase both the operation frequency range and power efficiency. The proposed wideband RE-ILFM has common input and output ports by switching the working DM and TM without any calibration. For TM, harmonic suppression technology (HST) composed of notch filtering and transformer injection-coupling network is presented to optimize the harmonic rejection. For DM, an injection device composed of push-push pair operates in class-C to reduce power consumption and improve second-order harmonic current. More- over, the concept of a dual core with multiple tanks is first intro- duced into ILFM, which can effectively improve the magnitude of output signal compared with traditional methods. The proposed RE-ILFM is designed and fabricated in a 55-nm CMOS process. The measurement results show that under a 0-dBm differential injection power, the RE-ILFM can achieve the bandwidth from 20.7 to 43.8 GHz, i.e., 71.6% with a good harmonic rejection of better than 27-dB using HST. From 22 to 30 GHz and 35.4 to 42 GHz for 28 and 39-GHz mm-wave fifth-generation bands, the RE-ILFM can achieve a differential output power of −5.9 to −14.06 dBm and −9.38 to −13.48 dBm with a low power consumption of 12 and 9.6 mW, respectively. The measured phase noise degradation is around 9.5 and 6 dB, which is close to the theoretical value.