A 24.9~34.5 GHz Injection-Locked Frequency Tripler Based on Top Differential Injection of Resonator

Z. Zhong, Zhizhe Liu, Hong Mu, Z. Hu, Anan Li, T. Yang
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Abstract

This paper proposes a broadband injection locking scheme to solve the problem of narrow locking bandwidth of traditional injection-locked frequency Tripler (ILFT). The scheme utilizes the differential injection technology to improve the even-order harmonics rejection ratio and injection signal current. The top injection technology of resonant tank based on transformer coupling is adopted to avoid the loop gain deterioration with using traditional source nodes injection and extend the locking bandwidth. The circuit is designed in a 55-nm CMOS process. The simulation results show that a 24.9~ 34.5 GHz (32.3% bandwidth) locking range has been achieved with the condition of lv supply voltage and 5dBm injected power. The DC power consumption of the core circuit of ILFT is 5. 07mW. The first, second, and fourth harmonic rejection ratio in the lock center is greater than 40 dBc.
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一种基于谐振腔顶差动注入的24.9~34.5 GHz锁注入三倍频器
针对传统注入锁定三频器(ILFT)锁频带宽过窄的问题,提出了一种宽带注入锁定方案。该方案利用差分注入技术提高了偶次谐波抑制比和注入信号电流。采用基于变压器耦合的谐振槽顶部注入技术,避免了传统源节点注入导致的环路增益恶化,延长了锁定带宽。该电路采用55纳米CMOS工艺设计。仿真结果表明,在电源电压为低压、注入功率为5dBm的情况下,实现了24.9~ 34.5 GHz(32.3%带宽)的锁定范围。ILFT核心电路的直流功耗为5。07年兆瓦。锁中心的一、二、四次谐波抑制比大于40dbc。
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