matrixofdynamism
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The digital interpolation filter increases the sample rate, Fs, by a factor of 4 and is followed by a 32× digital sample-and-hold (16× in HRM). This filter eliminates images of the baseband audio signal which exist at multiples of the input sample rate. The resulting frequency spectrum has images of the input signal at multiples of 4 Fs. These images are easily removed by the on-chip analog low-pass filter and a simple external analog filter.
4.7 Analog Output and Filtering
The analog filter present in the CS4334 family is a switched-capacitor filter followed by a continuous time
low pass filter. Its response, combined with that of the digital interpolator, is given in Figures 15 - 22.
3.4 Analog Low-Pass Filter
The final signal stage consists of a continuous-time low-pass filter which serves to smooth the output and
attenuate out-of-band noise
4.7 Analog Output and Filtering
The analog filter present in the CS4334 family is a switched-capacitor filter followed by a continuous time
low pass filter. Its response, combined with that of the digital interpolator, is given in Figures 15 - 22.
I already gave an answer in post #3If someone asks why a specific value of 267kohm (which is quite big), how would you answer?
Please notice that the datasheet Analog Characteristics are referring to simplified Figure 2 rather than Figure 1 schematic. Which can be read like, the "recommended connection" is not required to achieve the specified behavior, but has been considered somehow useful, without further explanation.The circuit details don't look particularly meaningful to me.
As said, I'm generally skeptical against the application circuit because the low-pass filter contradicts the intended overall frequency characteristic. It's not unusual to have low-passes here and there in an audio signal chain, but you won't place it particularly in a DAC application circuit promising 0.1 dB pass band flatness.
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