"Most RF is really analog
Why most?"
Because things like Bluetooth, which are RF are simply digital, not modulated
"Digital is discrete states and levels
It's not what Al said or even books."
Of course not, but discrete levels is how it is detected and treated. All electrical phenomena are analog.
"Before it forms "square wave" there's a process and certainly components that build it step by step so nothing is discrete for sure."
The serial signals are discrete and detected as such and the parallel digital words that are saved in registers are discrete. These discrete words are presented to the D/A circuit at discrete time intervals. Only then can the D/A output an analog waveform, which still needs filtering to resemble the original analog waveform.
The square-wave that we are talking about here is an analog waveform and treated as such by the analog circuits that follow. There is no switching and no discrete states as there is prior to the D/A conversion.
Steve N.
Empirical Audio
Why most?"
Because things like Bluetooth, which are RF are simply digital, not modulated
"Digital is discrete states and levels
It's not what Al said or even books."
Of course not, but discrete levels is how it is detected and treated. All electrical phenomena are analog.
"Before it forms "square wave" there's a process and certainly components that build it step by step so nothing is discrete for sure."
The serial signals are discrete and detected as such and the parallel digital words that are saved in registers are discrete. These discrete words are presented to the D/A circuit at discrete time intervals. Only then can the D/A output an analog waveform, which still needs filtering to resemble the original analog waveform.
The square-wave that we are talking about here is an analog waveform and treated as such by the analog circuits that follow. There is no switching and no discrete states as there is prior to the D/A conversion.
Steve N.
Empirical Audio