CMOS voltage-controlled oscillator with high-performance MEMS tunable inductor

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作者
Uikyu Chae
Jeongsoo Park
Jeong-Geun Kim
Hyun-Yong Yu
Il-Joo Cho
机构
[1] Korea Institute of Science and Technology (KIST),Center for BioMicrosystems, Brain Science Institute
[2] Korea University,School of Electrical Engineering
[3] Kwangwoon University,Department of Electronic Engineering
[4] Yonsei University,School of Electrical and Electronics Engineering
[5] Yonsei University,Yonsei
关键词
CMOS VCO; MEMS tunable inductor; RF MEMS;
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摘要
LC CMOS voltage-controlled oscillators (VCOs) with tunable inductors are essential for high-performance, multi-band communication systems, such as IoT applications and 5G communication. However, VCOs that use CMOS tunable inductors have difficulty in achieving high RF performance due to the low Q-factor of the inductor. In addition, previously reported CMOS VCOs integrated with MEMS inductors have used CMOS switches for tuning frequency bands, but they also had large signal losses on the switch. Herein, we propose a CMOS VCO that is integrated with a MEMS tunable inductor that tunes the frequency band with three MEMS switches. The proposed MEMS tunable inductor enables us to achieve high RF performance due to the suspended structure, and RF MEMS switches enable lower signal loss than CMOS switches. In this work, we successfully fabricated the proposed CMOS VCO integrated with a MEMS tunable inductor using the flip-chip bonding process, and we measured oscillation frequencies according to the actuation of the three switches. The oscillation powers were measured as − 3.03 dBm @ 1.39 GHz, − 5.80 @ 1.98 GHz, − 7.44 dBm @ 2.81 GHz, and − 8.77 dBm @ 3.68 GHz.
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