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Design of a Sub-6 GHz CMOS Power Amplifier with a High-Q Glass Transformer for Off-Chip Output-Matching Networks
- Lee, Jaeyong;
- Yook, Jong-Min;
- Yoo, Jinho;
- Park, Changkun
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0초록
This paper investigates and evaluates a compact, high-Q glass transformer with a 3D spiral structure that offers low loss and high area efficiency. Furthermore, we designed a CMOS power amplifier (PA) with an output-matching network implemented using an off-chip high-Q glass transformer to validate its operation. Two transformer types were developed: a five-port transformer with a center-tap and a four-port transformer without a center tap. The high-Q property of the transformer leads to low loss and tight coupling, as evidenced by an increase in maximum available gain (MAG). Compared with an integrated CMOS transformer, the high-Q transformer exhibits significantly lower loss while maintaining similar area and inductance, despite being an external component. A test PA comprising the CMOS PA and the off-chip transformer was evaluated with simulations and measurements, and it was also compared with a fully integrated PA at the simulation level to verify performance improvements. The proposed PA achieved a saturation power of 29.8 dBm, which was 1.7 dB higher than that of the fully integrated PA. The PAE also improved by 11 percentage points, from 32.1% to 43.1% in simulation. The results show substantial performance gains in simulation, while the total area increases only slightly. Measurements show the same trend as the simulations; with shorter bond-wire lengths, the measured results are expected to approach the simulated performance. These findings demonstrate the feasibility of an ultra-compact CMOS-off-chip hybrid PA that delivers high performance while maintaining a footprint comparable to that of a fully integrated PA, enabling applications in compact devices including mobile products.
키워드
- 제목
- Design of a Sub-6 GHz CMOS Power Amplifier with a High-Q Glass Transformer for Off-Chip Output-Matching Networks
- 저자
- Lee, Jaeyong; Yook, Jong-Min; Yoo, Jinho; Park, Changkun
- 발행일
- 2025-10
- 유형
- Article
- 저널명
- ELECTRONICS
- 권
- 14
- 호
- 21