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Predicting the Impact of Magnetic Components Used for EMI Suppression on the Base-Band of a Power Amplifier

机译:预测用于EMI抑制的磁性元件对功率放大器基带的影响

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Class-D audio amplifiers are switching circuits that produce serious Electromagnetic (EM) emissions and disturb the surrounding electronics. In order to reduce these emissions, electromagnetic compatibility (EMC) filters with ferrite beads are used. However, ferrite beads contain magnetic materials that have a nonlinear behavior. Thus, they have an unfavorable impact on the system audio quality. The common ferrite bead models do not take into account nonlinear phenomena. Thus, to predict the impact on the signal quality, this paper models the ferrite bead using the Jiles–Atherton magnetic material theory. The presented model provides the designers with a tool to quantify the effect of EMC filters on the total harmonic distortion (THD) of audio amplifiers. The simulated and measured results show that the tested ferrite bead have a negative effect on the audio signal for a wide range of amplitudes and can increase the THD up to 37 dB. Finally, this paper highlights the impact of the magnetic material type on the audio distortion by simulating the same component with different types of materials.
机译:D类音频放大器是会产生严重电磁(EM)辐射并干扰周围电子设备的开关电路。为了减少这些排放,使用了带有铁氧体磁珠的电磁兼容性(EMC)滤波器。但是,铁氧体磁珠包含具有非线性行为的磁性材料。因此,它们对系统音频质量有不利影响。常见的铁氧体磁珠模型没有考虑非线性现象。因此,为了预测对信号质量的影响,本文使用吉尔斯-阿瑟顿磁性材料理论对铁氧体磁珠进行建模。提出的模型为设计人员提供了一种工具,可以量化EMC滤波器对音频放大器的总谐波失真(THD)的影响。仿真和测量结果表明,测试的铁氧体磁珠在较大幅度范围内都会对音频信号产生负面影响,并且可以将THD提升至37dB。最后,本文通过用不同类型的材料模拟相同的组件来突出磁性材料类型对音频失真的影响。

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