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WM8750CLSEFL/R Datasheet(PDF) 22 Page - Wolfson Microelectronics plc |
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WM8750CLSEFL/R Datasheet(HTML) 22 Page - Wolfson Microelectronics plc |
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22 / 65 page ![]() WM8750L Production Data w PD, Rev 4.4, August 2012 22 REGISTER ADDRESS BIT LABEL DEFAULT DESCRIPTION R1 (01h) Right Channel PGA 8 RIVU 0 Right Volume Update 0 = Store RINVOL in intermediate latch (no gain change) 1 = Update left and right channel gains (right = RINVOL, left = intermediate latch) 7 RINMUTE 1 Right Channel Input Analogue Mute 1 = Enable Mute 0 = Disable Mute Note: RIVU must be set to un-mute. 6 RIZC 0 Right Channel Zero Cross Detector 1 = Change gain on zero cross only 0 = Change gain immediately 5:0 RINVOL [5:0] 010111 ( 0dB ) Right Channel Input Volume Control 111111 = +30dB 111110 = +29.25dB . . 0.75dB steps down to 000000 = -17.25dB R23 (17h) Additional Control (1) 0 TOEN 0 Timeout Enable 0 : Timeout Disabled 1 : Timeout Enabled Table 9 Input PGA Software Control ANALOGUE TO DIGITAL CONVERTER (ADC) The WM8750L uses a multi-bit, oversampled sigma-delta ADC for each channel. The use of multi-bit feedback and high oversampling rates reduces the effects of jitter and high frequency noise. The ADC Full Scale input level is proportional to AVDD. With a 3.3V supply voltage, the full scale level is 1.0 Volts r.m.s. Any voltage greater than full scale may overload the ADC and cause distortion. ADC DIGITAL FILTER The ADC filters perform true 24 bit signal processing to convert the raw multi-bit oversampled data from the ADC to the correct sampling frequency to be output on the digital audio interface. The digital filter path is illustrated in Figure 9. FROM ADC DIGITAL HPF DIGITAL FILTER TO DIGITAL AUDIO INTERFACE DIGITAL DECIMATOR ADCHPD Figure 9 ADC Digital Filter The ADC digital filters contain a digital high pass filter, selectable via software control. The high-pass filter response is detailed in the Digital Filter Characteristics section. When the high-pass filter is enabled the dc offset is continuously calculated and subtracted from the input signal. By setting HPOR, the last calculated dc offset value is stored when the high-pass filter is disabled and will continue to be subtracted from the input signal. If the DC offset is changed, the stored and subtracted value will not change unless the high-pass filter is enabled. This feature can be used for calibration purposes. In addition the highpass filter may be enabled separately on the left and right channels (see Table 11). |
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