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WM8993 датащи(PDF) 36 Page - Wolfson Microelectronics plc |
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WM8993 датащи(HTML) 36 Page - Wolfson Microelectronics plc |
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36 / 229 page ![]() WM8993 Production Data w PD, November 2010, Rev 4.0 36 MICROPHONE INPUTS Up to four microphones can be connected to the WM8993, either in single-ended or differential mode. A dedicated PGA is provided for each microphone input. Two low noise microphone bias circuits are provided, reducing the need for external components. For single-ended microphone inputs, the microphone signal is connected to the inverting input of the PGAs (IN1LN, IN2LN, IN1RN or IN2RN). The non-inverting inputs of the PGAs are internally connected to VMID in this configuration. The non-inverting input pins IN1LP, IN2LP, IN1RP and IN2RP are free to be used as line connections to the input or output mixers in this configuration. For differential microphone inputs, the non-inverted microphone signal is connected to the non- inverting input of the PGAs (IN1LP, IN2LP, IN1RP or IN2RP), whilst the inverted (or ‘noisy ground’) signal is connected to the inverting input pins (IN1LN, IN2LN, IN1RN and IN2RN). The gain of the input PGAs is controlled via register settings, as defined in Table 4. Note that the input impedance of both inverting and non-inverting inputs changes with the input PGA gain setting, as described under “Electrical Characteristics”. See also the “Applications Information” for details of input resistance at all PGA Gain settings. The microphone input configurations are illustrated in Figure 8 and Figure 9. Note that any PGA input pin that is used in either microphone configuration is not available for use as a line input path at the same time. MICBIAS MIC GND To input mixers PGA Line Input VMID IN1LN, IN2LN, IN1RN, IN2RN IN1LP, IN2LP, IN1RP, IN2RP MIC GND To input mixers PGA VMID MICBIAS IN1LN, IN2LN, IN1RN, IN2RN IN1LP, IN2LP, IN1RP, IN2RP Figure 8 Single-Ended Microphone Input Figure 9 Differential Microphone Input MICROPHONE BIAS CONTROL There are two MICBIAS generators which provide low noise reference voltages suitable for biasing electret condenser (ECM) type microphones via an external resistor. Note that an external decoupling capacitor is also required on each of the MICBIAS outputs. A suitable capacitor must be connected whenever the associated MICBIAS output is enabled. Refer to the “Applications Information” section for recommended external components. The MICBIAS voltages can be enabled using the MICB1_ENA and MICB2_ENA control bits; the voltage of each can be selected using the MICB1_LVL and MICB2_LVL register bits as detailed in Table 1. REGISTER ADDRESS BIT LABEL DEFAULT DESCRIPTION R1 (01h) Power Managem ent (1) 5 MICB2_ENA 0b Microphone Bias 2 Enable 0 = OFF (high impedance output) 1 = ON 4 MICB1_ENA 0b Microphone Bias 1 Enable 0 = OFF (high impedance output) 1 = ON R58 (3Ah) MICBIAS 1 MICB2_LVL 0b Microphone Bias 2 Voltage Control 0 = 0.9 * AVDD1 1 = 0.65 * AVDD1 0 MICB1_LVL 0b Microphone Bias 1 Voltage Control 0 = 0.9 * AVDD1 1 = 0.65 * AVDD1 Table 1 Microphone Bias Control |
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