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A 0.6-0.8 GHz CMOS Frequency-Tunable Nonmagnetic Circulator With Digital Predistortion-Based Linearity Enhancement for in-Band Full-Duplex Radios
- Lee, Donggu;
- Cho, Chanhee;
- Kim, Taekyu;
- Kim, Seungyeon;
- Yun, Sukju;
- ... Park, Seungyoung;
- ... Hwang, In-Chul;
- ... Ko, Kabseok;
- ... Kwon, Kuduck
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0초록
In this article, a 0.6-0.8 GHz CMOS frequency-tunable nonmagnetic circulator employing a hybrid-capacitor-based C-L-C transmission line and digital-predistortion (DPD)-assisted linearization is presented for advanced in-band full-duplex (IBFD) radios. Each transmission line uses hybrid-capacitors composed of metal-insulator-metal (MIM) capacitors and varactors, providing voltage-controlled tunability and enabling multi-band operation across 5G New Radio (NR) low-band frequencies. An N-path gyrator provides non-reciprocity, while the hybrid-capacitor structure extends the 90 degrees phase-shift bandwidth for adaptive frequency control. To mitigate the intrinsic nonlinearities of the CMOS switches, a DPD algorithm based on the memory-polynomial (MP) model and indirect-learning architecture (ILA) is applied for the first time to a CMOS circulator. Fabricated in a 65-nm CMOS process, the proposed DPD-assisted circulator achieves transmitter and receiver insertion losses of 3.1-3.7 dB and 2.6-3.0 dB, respectively, while maintaining >30 dB isolation across 600-800 MHz. With a 1024-quadrature amplitude modulation (QAM) 5G NR modulation signal (20 MHz bandwidth, peak-to-average power ratio of 11.6 dB) at + 10 dBm input power, the DPD improves the error vector magnitude (EVM) from -24.1 dB to -42.8 dB and the adjacent-channel leakage ratio (ACLR) from -26.1 dBc to -44.6 dBc. The circulator consumes 18.1 mW and occupies an active area of 0.34 mm(2).
키워드
- 제목
- A 0.6-0.8 GHz CMOS Frequency-Tunable Nonmagnetic Circulator With Digital Predistortion-Based Linearity Enhancement for in-Band Full-Duplex Radios
- 저자
- Lee, Donggu; Cho, Chanhee; Kim, Taekyu; Kim, Seungyeon; Yun, Sukju; Park, Seungyoung; Hwang, In-Chul; Ko, Kabseok; Kwon, Kuduck
- 발행일
- 2026
- 유형
- Article
- 저널명
- IEEE Access
- 권
- 14
- 페이지
- 38251 ~ 38263