Hi Mceljo,
Assuming that the impedance mismatches are within limits that are not totally unreasonable (such as might occur if the connection of the shield in a coaxial cable were broken), the resulting reflections will not cause any errors whatsoever in the digital data as received by the dac.
The issue is that the waveform distortion caused by reflections, in combination with noise that will invariably be riding on the signal to some degree, will result in small but significant fluctuations in the TIMING at which the dac senses the transitions between bit intervals. That is what the term "jitter" refers to. Depending on the jitter rejection capabilities of the dac, that can and often will have audible consequences, even though all the bits will be correct. See this paper for further explanation.
Best regards,
-- Al
Assuming that the impedance mismatches are within limits that are not totally unreasonable (such as might occur if the connection of the shield in a coaxial cable were broken), the resulting reflections will not cause any errors whatsoever in the digital data as received by the dac.
The issue is that the waveform distortion caused by reflections, in combination with noise that will invariably be riding on the signal to some degree, will result in small but significant fluctuations in the TIMING at which the dac senses the transitions between bit intervals. That is what the term "jitter" refers to. Depending on the jitter rejection capabilities of the dac, that can and often will have audible consequences, even though all the bits will be correct. See this paper for further explanation.
Best regards,
-- Al