Aug 2026· Polymers· Vol 18, pp. 1987· 0 citations· 25 references
Medicine
Abstract
Polyimide (PI) film is a widely used insulation material in high-frequency power equipment, yet its frequency–lifetime relation and terminal discharge features have rarely been resolved together over a complete ageing trajectory. This paper reports three contributions. First, a condition-specific frequency–lifetime relation for PI surface insulation is presented, in which the discharge inception voltage is frequency-invariant while the flashover voltage and the surface lifetime both fall with frequency. Second, a stage-resolved discharge morphology derived from phase-resolved patterns is proposed, in which a late-stage finger-like cluster serves as a candidate flashover precursor, complemented by a count-aware, time-normalised discharge activity proxy. Third, a space-charge interpretation linking the per-cycle charge injection budget growth at high frequency to the suppressed inter-cycle dissipation, jointly accounting for the lifetime relation and the non-dendritic damage morphology, is presented. The fitted lifetime relation provides a quantitative planning basis over the tested 10–40 kHz grid for insulation design of high-frequency power equipment, and the finger signature provides a candidate device-level morphological criterion for online monitoring.
Silicon carbide (SiC) power metal-oxide-semiconductor field-effect transistors are increasingly operated under high-frequency pulse-width-modulated (PWM) gate drive, yet gate-oxide reliability is still qualified almost exclusively under direct-current (DC) stress. This work reports a controlled comparison of gate-oxide...
Jia-Hui Yan, Fa-Ci Cheng, Xi Luo et al.· Journal of Physics D: Applie...· 0 citations
With the evolution of power electronic system to high frequency and high efficiency, the degradation of dynamic onresistance of 1200V gallium nitride devices has become a key technical bottleneck restricting its reliability. This article focuses on this problem, aiming at revealing the dynamic mechanism of carrier capt...
Jin-Yu Zhao, Lin Pang, Wang-Xing Yuan· European Conference on Elect...· 0 citations
A fundamental understanding of repetitive dielectric barrier discharge (DBD) is crucial for advancing plasma physics and related applications. This study investigates a single-filament DBD driven by a sinusoidal voltage at 100 kHz in atmospheric-pressure air. The repetitive filamentary discharge is simulated using a si...
Li-Yang Zhang, Jia-Cun Wu, Dong Yang et al.· Plasma Sources Science & Tec...· 0 citations
During load start‐up, capacitor charging, pulsed‐power output and inverse‐time protection delay in dc solid‐state circuit breakers (DC‐SSCBs), SiC MOSFETs are subjected to short‐duration overcurrent (OC) stress. Ultrahigh gate voltage (UHGV) driving can reduce thermo‐mechanical stress during OC operation. However,...
Bin Yu, Jia-Wei Qin, Liang Chen et al.· IET Smart Energy Systems· 0 citations
While two-dimensional materials like vertically aligned molybdenum disulfide (VA-MoS2) have emerged as promising candidates for next-generation memristors, their dynamic alternating current characteristics remain largely underexplored compared to static direct current (dc) operations. In this study, we systematically...
Supercapacitors have emerged as a vital component in electrochemical energy storage, owing to their compelling advantages including high power density, long cycle life, fast charge/discharge capability, wide operating temperature range, high safety, and environmental friendliness. However, the severe self-discharge phe...
Si-Ying Wu, Yue Wu, Ting-Hao Zhang et al.· The chemical record· 0 citations
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