Alternative Methods for Determining Chip Inductor Parameters

W. Mańka
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引用次数: 3

Abstract

For high density packaging applications, it is not sufficient to know only the inductance, Q, and dc resistance of a chip inductor. The self-resonant frequency, coupling coefficient, working voltage, and rated current are important parameters that must also be known to properly utilize these components. However, the small size and shielding of chip inductors make it difficult to determine these parameters by conventional means. This paper suggests possible alternative methods. The advantages; disadvantages, and precautions of the conventional and alternative methods for determining the self-resonant frequency, coupling coefficient, working voltage, and rated current are discussed and compared. It is intended that this paper will prove to be useful source of practical information to engineers, enabling them to utilize chip inductors and other magnetic components more effectively.
确定芯片电感器参数的备选方法
对于高密度封装应用,仅知道电感、Q和芯片电感的直流电阻是不够的。自谐振频率、耦合系数、工作电压和额定电流是正确使用这些元件必须知道的重要参数。然而,由于片式电感的体积小,且有屏蔽作用,用常规方法难以确定这些参数。本文提出了可能的替代方法。优势;讨论和比较了确定自谐振频率、耦合系数、工作电压和额定电流的常规方法和替代方法的缺点和注意事项。本文旨在为工程师提供有用的实用信息,使他们能够更有效地利用芯片电感器和其他磁性元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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