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AN4426 데이터시트(PDF) 13 Page - STMicroelectronics |
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AN4426 데이터시트(HTML) 13 Page - STMicroelectronics |
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13 / 18 page ![]() DocID025704 Rev 1 13/18 AN4426 Acoustic parameters 18 2.6 Frequency response The frequency response of a microphone in terms of magnitude indicates the sensitivity variation across the audio band. This parameter also describes the deviation of the output signal from the reference 0 dB. Typically, the reference for this measurement is exactly the sensitivity of the microphone @ 0 dB = 94 dBSPL @ 1 kHz. The frequency response of a microphone can vary across the audio frequency band depending on three parameters: the ventilation hole, the front chamber geometry, and back chamber geometry. The ventilation hole and the back chamber geometry have an impact on the behavior at low frequencies while the behavior at high frequencies depends on the geometry of the front chamber only. Behavior at high frequencies can be a resonance peak caused by the Helmholtz effect. This resonance is the phenomenon of air resonance in a cavity. As a matter of fact, it depends on the dimension of the front chamber of the microphone, representing the sound cavity in which the air resonates. A microphone with a flat frequency response is suitable when natural sound and high intelligibility of the system is required. The following figure shows the response of the MP45DT02. It shows a roll-off at low frequencies and a peak around 18 kHz caused by the large front chamber (b) of this microphone. Figure 16. MP45DT02 frequency response The frequency response of a microphone in terms of phase indicates the phase distortion introduced by the microphone. In other words, the delay between the sound wave moving the microphone membrane and the electrical signal at the microphone output results in that this parameter includes both the distortion due to the membrane and the ASIC. b. A detailed explanation of the Helmholtz resonance principle and its effect on the chambers of the microphone is given in Section 2: Acoustic parameters. |
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