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A Novel Aluminum Electrolytic Capacitor Suitable for High-frequency Power Converters

机译:一种适用于高频电源转换器的新型铝电解电容器

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Aluminum electrolytic capacitors have high capacitance and high volumetric efficiency. Electrolytic capacitors with high rated voltage (> 300 V), however, show large reduction of capacitance in high frequency regions, which is attributable to the long tunnel pit structure of anode foils. To demonstrate the effect of the structure, equivalent circuit simulations focusing on voltage transient phenomena concerning the tunnel pit length were performed. In addition, effective capacitance measurements under current pulse operation were carried out with prototype capacitors with different tunnel length. The test results demonstrated the feasibility of a new concept electrolytic capacitor for high frequency applications. The new concept can provide an advantage in helping in downsizing and increment of ripple current capability at high frequency. The performance of the proposed capacitors utilizing an anode foil with appropriate structure was evaluated. As a result of the high frequency ripple current operation tests, it was found that approximately 30% increase in ripple current capability at high frequency when the capacitor size is held constant, and approximately 25% reduction in capacitor volume when high-frequency capacitance and ripple current capability are held constant can be achieved.
机译:铝电解电容器具有高电容和高容量效率。然而,具有高额定电压(> 300V)的电解电容器在高频区域中显示了大量的电容,这是昂贵的阳极箔的长隧道结构。为了证明结构的效果,进行了专注于隧道凹坑长度的电压瞬态现象的等效电路模拟。此外,使用具有不同隧道长度的原型电容器进行电流脉冲操作下的有效电容测量。测试结果表明了新概念电解电容器用于高频应用的可行性。新概念可以提供高频率下纹波电流能力的缩小和增量的优势。评估利用具有适当结构的阳极箔的所提出的电容器的性能。由于高频纹波电流运行测试,发现当电容器尺寸保持恒定时,高频纹波电流能力的增加大约30%,电容器容量减少约为25%,当高频电容和纹波时可以实现电流能力保持恒定。

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