5 ms·
Thanks for the info on ΔΣ converters. It connects several things I knew about. Now I need to study up on the area of computation that clover lives in.
by mchahn 8y ago
Thanks for the info on ΔΣ converters. It connects several things I knew about.
Now I need to study up on the area of computation that clover lives in.
- dragontamer 8y agoJust to note how common delta-sigma converters are: Arduino's got them for voltage sensing. I dare say that the most common AD converters are simply delta-sigma converters, especially if 1MHz conversions is fast enough for your tasks. To get into the 100MHz or above speed (ie: Oscilloscopes, Software defined Radios, etc. etc.) you need to use other techniques.
- mchahn 8y ago> To get into the 100MHz or above speed That gets back to my original point. The spectrum analyzer went into the gigahertz range. I don't think it was delta sigma. It was some multiple sample thing that only worked in the frequency domain.
- kragen 8y agoWhen you say "Arduino's got them for voltage sensing," are you talking about the ADC in the ATMega328 that powers most of the Arduino models from the last decade? Because that ADC isn't a ΔΣ, it's a 10-bit successive-approximation ADC.
- dragontamer 8y agoAh yes, it seems like I've been mistaken :-( I distinctly remember that Delta-Sigma was a slow-type of ADC. And I guess I confused it with the one in the ATMega328p.
- kragen 8y agoYou're right, it's an ATMega328P, not an ATMega328 like I said. The ATMega's ADC is pretty slow, like 15ksps at full precision, so I can see why you'd think that!