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Insert earphone modeling and measurement by IEC-60711 coupler

机译:通过IEC-60711耦合器插入耳机建模和测量

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摘要

In this study, an analytical model based on the equivalent circuit method is developed to simulate the frequency response of an insert earphone. This earphone incorporates a miniature loudspeaker commonly used in computer, communication, consumer, and car electronics. Through the laser triangulation method, electroacoustic parameters of a miniature loudspeaker are obtained. Several earphone design configurations are analyzed in accordance with the open and closed states of front leakage hole, vent, and back leakage hole. To validate the analysis, an insert earphone that is attached to IEC-60711 coupler and a specially designed fixture tube is experimentally measured for frequency response using electroacoustic equipment in the air. Simulation and experimental results show good agreement over the complete audible frequency range. Analysis indicates that states of front leakage hole, vent, and back leakage hole of an insert earphone have significant effects on frequency response. The front leakage hole affects the low frequency response, whereas the vent affects the fundamental resonance. Detailed analysis has been provided to further improve the design of insert earphones.
机译:在这项研究中,基于等效电路方法的分析模型被开发来模拟插入式耳机的频率响应。该耳机具有微型扬声器,通常在计算机,通信,消费类和汽车电子产品中使用。通过激光三角测量法,可以获得微型扬声器的电声参数。根据前泄漏孔,通风孔和后泄漏孔的打开和关闭状态,分析了几种耳机设计配置。为了验证分析结果,使用空气中的电声设备,通过实验测量了连接到IEC-60711耦合器的插入式耳机和专门设计的固定管的频率响应。仿真和实验结果表明,在整个可听频率范围内都具有良好的一致性。分析表明,插入式耳机的前漏孔,通风孔和后漏孔的状态对频率响应有重大影响。前泄漏孔会影响低频响应,而通风孔会影响基本共振。提供了详细的分析以进一步改善插入式耳机的设计。

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