This paper presents the design of a voltage controlled oscillator (VCO) which is one of the key building blocks in modern wireless communication systems with small VCO gain (K<sub>vco</sub>) variation. To compensate conventional large K<...

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https://www.riss.kr/link?id=A109052487
이미영 (한남대학교 전기전자공학과) ; Mi-Young Lee
2024
Korean
등재
학술저널
139-145(7쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
This paper presents the design of a voltage controlled oscillator (VCO) which is one of the key building blocks in modern wireless communication systems with small VCO gain (K<sub>vco</sub>) variation. To compensate conventional large K<...
This paper presents the design of a voltage controlled oscillator (VCO) which is one of the key building blocks in modern wireless communication systems with small VCO gain (K<sub>vco</sub>) variation. To compensate conventional large K<sub>vco</sub> variation, a series varactor bank has been added to the conventional LC-tank with parallel capacitor bank array. And also, in order to achieve excellent phase noise performance while maintaining wide tuning range, a mixed coarse/fine tuning scheme(series varactor array and parallel capacitor array) is chosen. The switched varactor array bank is controlled by the same digital code for switched capacitor array without additional digital circuits. For use at a low voltage of 1.2V, the proposed current reference circuit in this paper used a current reference circuit for safety with the common gate removed more safely. Implemented in a TSMC 0.13㎛ CMOS RF technology, the proposed VCO can be tuned from 4.4GH to 5.3GHz with the K<sub>vco</sub> (VCO gain ) variation of less than 9.6%. While consuming 3.1mA from a 1.2V supply, the VCO has -120dBc/Hz phase noise at 1MHz offset from the carrier of the 5.3 GHz.
지능형 NPC의 행동 메커니즘에 따른 계층적 유한 상태 기계와 행동 트리의 효율성 평가
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