ChenboLin
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회로 설계5 min read

모든 각도에서 검증된 스위칭 동작.

과도 응답(Transient), AC 및 DC 조건에서 엄격하게 테스트된 와이드 밴드갭 스위치 및 자기 소자를 이용한 전력 관리 시뮬레이션입니다.

게시됨
2026-08-18
업데이트됨
2026-08-18

프로젝트 범위

2025 여름 / CADENCE VIRTUOSO

Circuit design internship

Environment
Cadence Virtuoso
Analysis
Transient, AC and DC simulation
Design focus
Switching behaviour, efficiency and high-frequency loss
긴 기술 본문은 현재 영어와 중국어로 제공됩니다. 이 언어에서는 탐색, 메타데이터와 프로젝트 요약을 현지화했습니다.

주제

Cadence Virtuoso포괄적 시뮬레이션효율성 최적화
01

The simulation question

Power-management design is not captured by one operating point. A useful model needs to show start-up and switching behaviour, small-signal response, steady-state operating conditions and the losses that become important at high frequency.

This project examined Buck/Boost power-management modules using GaN switching devices and magnetic components, with simulation used to compare behaviour across several analysis domains.

02

Why transient, AC and DC views all matter

Transient analysis shows time-domain behaviour: switching events, settling and responses to changing conditions. AC analysis helps examine frequency response and stability-related behaviour. DC analysis provides operating-point and sweep information that anchors the other interpretations.

Looking at the three together reduces the risk of optimising one attractive waveform while missing a limitation elsewhere in the circuit.

03

GaN changes the emphasis, not the need for discipline

Wide-bandgap switches make faster operation and higher power density possible, but they also increase the importance of parasitics, timing, magnetic behaviour and layout-aware reasoning.

The optimisation focus was therefore not a single headline number. It was the relationship between topology, switching behaviour, conversion efficiency and high-frequency loss under the simulated conditions.

04

What I carried forward

Simulation is most valuable when every plot answers a defined engineering question. A waveform without its conditions, assumptions and comparison point is difficult to use in a design decision.

The project strengthened my preference for multi-view verification: connect time, frequency and operating-point evidence before deciding that a circuit behaviour is understood.

공개 증거의 경계

This page describes simulation work only. It does not claim a measured hardware efficiency, production qualification, proprietary topology, or performance beyond the public project scope.

이 페이지는 검토 가능한 엔지니어링 범위와 사고 과정을 공개합니다. 프로젝트 증거는 공유할 준비가 되었을 때만 추가합니다.

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