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WM8980CGEFL/V Datasheet(PDF) 48 Page - Wolfson Microelectronics plc |
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WM8980CGEFL/V Datasheet(HTML) 48 Page - Wolfson Microelectronics plc |
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48 / 123 page ![]() WM8980 Pre-Production w PP, Rev 3.8, May 2012 48 Figure 24 DAC Digital Filter Path The analogue outputs from the DACs can then be mixed with the aux analogue inputs and the ADC analogue inputs. The mix is fed to the output drivers for headphone (LOUT1/ROUT1), speaker (LOUT2/ROUT2) or line (OUT3/OUT4). OUT3 and OUT4 have additional mixers which allow them to output different signals to the headphone and speaker outputs. DIGITAL PLAYBACK (DAC) PATH Digital data is passed to the WM8980 via the flexible audio interface and is then passed through a variety of advanced digital filters (as shown in Figure 24) to the hi-fi DACs. The DACs are enabled by the DACENL/R register bits. REGISTER ADDRESS BIT LABEL DEFAULT DESCRIPTION R3 Power Management 3 0 DACENL 0 Left channel DAC enable 0 = DAC disabled 1 = DAC enabled 1 DACENR 0 Right channel DAC enable 0 = DAC disabled 1 = DAC enabled Table 27 DAC Enable Control The WM8980 also has a Soft Mute function, which, when enabled, gradually attenuates the volume of the digital signal to zero. When disabled, the gain will ramp back up to the digital gain setting. This function is enabled by default. To play back an audio signal, this function must first be disabled by setting the SOFTMUTE bit to zero. REGISTER ADDRESS BIT LABEL DEFAULT DESCRIPTION R10 DAC Control 0 DACPOLL 0 Left DAC output polarity: 0 = non-inverted 1 = inverted (180 degrees phase shift) 1 DACPOLR 0 Right DAC output polarity: 0 = non-inverted 1 = inverted (180 degrees phase shift) 2 AMUTE 0 Automute enable 0 = Amute disabled 1 = Amute enabled 3 DACOSR128 0 DAC oversampling rate select: 0=64x (lowest power) 1=128x (best SNR) 6 SOFTMUTE 0 Softmute enable: 0=Enabled 1=Disabled Table 28 DAC Control Register The digital audio data is converted to oversampled bit streams in the on-chip, true 24-bit digital interpolation filters. The bitstream data enters the multi-bit, sigma-delta DACs, which convert it to a high quality analogue audio signal. The multi-bit DAC architecture reduces high frequency noise and sensitivity to clock jitter. It also uses a Dynamic Element Matching technique for high linearity and low distortion. |
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