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Audio Gain Control Using Digital Potentiometers - Tutorial ...
https://pdfserv.maximintegrated.com/en/an/AN1828.pdf#:~:text=There%20is%20a%20follow-on%20issue.%20While%20the%20digital,matching%20between%20two%20channels%20using%20separate%20digital%20pots.
Audio Gain Control Using Digital Potentiometers
https://content.instructables.com/ORIG/FS9/Z554/JVKSRSU8/FS9Z554JVKSRSU8.pdf
constrained by the mechanical pot's audio taper. There is a follow-on issue. While the digital pot steps are usually designed to give equal-value resistive increments, a by-product of the process variation is that the total end-to-end resistance varies widely from part to …
Audio Gain Control Using Digital Potentio | Maxim …
https://www.maximintegrated.com/en/design/technical-documents/tutorials/1/1828.html
Recall now that we are no longer constrained by the mechanical pot's audio taper. There is a follow-on issue. While the digital pot steps are usually designed to give equal-value resistive increments, a by-product of the process variation is that the total end-to-end resistance varies widely from part to part, as much as ±30% in some types.
Audio Gain Control Using Digital Potentiometers - …
https://pdfserv.maximintegrated.com/en/an/AN1828.pdf
Audio Gain Control Using Digital Potentiometers Dec 26, 2002 Abstract: Digital potentiometers (pots) offer advantages for audio volume (gain) control applications and can replace bulky mechanical pots, especially in handheld portable devices such as MP3 players, PDAs, cell phones, mobile Internet devices, or stereo AM/FM radios.
Calculating Gain for Audio Amplifiers (Rev. A)
https://www.ti.com/lit/an/sloa105a/sloa105a.pdf
Gain = (Output signal is 180O out of phase, versus the input signal) Therefore, for a voltage gain of 10 V/V or 20 dB, R F is 10 times larger than R I. Typical value for these resistors would be R I = 10 kΩ and R F = 100 kΩ. The following is an example for the gain calculation for a …
amplifier - Digital gain control with a digital pot ...
https://electronics.stackexchange.com/questions/263827/digital-gain-control-with-a-digital-pot
End-to-End Resistance: R EE +25 °C: 45: kΩ: End-to-End Resistance Tolerance +25 °C-20 +20 % Ratiometric Temperature Coefficient: 30: ppm/°C: End-to-End Resistance Temperature Coefficient: 750: ppm/°C: Wiper Resistance: R W: 160: 250: Ω
Potentiometers (Beginners' Guide to Pots)
https://www.sound-au.com/pots.htm
The source impedance should normally be no greater than 1/10th (0.1) of the pot's stated resistance. Further, the load resistance or impedance should be 10 times the pot's resistance to prevent the taper from being adversely affected.
Potentiometer Resistance Taper
https://www.potentiometers.com/potcomFAQ.cfm?FAQID=29
A 15% audio curve would measure 15% of the total resistance of the potentiometer when the shaft is at the midpoint. If the shaft has a slot in it, then simply line up the slot with the center terminal of the potentiometer for the midpoint of the rotation. Most off-shore manufacturers use a 15% audio taper for their audio taper designs.
EPOT Applications: Gain Adjustment in Op- | Maxim …
https://www.maximintegrated.com/en/design/technical-documents/tutorials/8/864.html
For example, in a linear taper EPOT with 256 taps a setting of n = 89 would give N = 0.3490, which is 89/255. "Re" refers to the total end-to-end resistance of the EPOT, thus an EPOT can be thought of as 2 resistors with values N × Re and (1-N) × Re. Furthermore, gain equations are shown in this article as a function of the variable "N" as G(N).
What Is A Gain Control? (It's NOT a Volume ... - Extreme …
https://www.extremeaudio.org/what-is-a-gain-control/
Enter the gain control. The purpose of a gain control is to tune the amp’s input stage to accept the head unit’s voltage level. Think about it like a cellphone conversation. Your job is to listen to the person on the other end. With phone turned down too low, you can’t hear the other person over the background noise around you.
Potentiometer type for op-amp gain | All About Circuits
https://forum.allaboutcircuits.com/threads/potentiometer-type-for-op-amp-gain.51119/
You cannot use an "ordinary" logarithmic audio pot for the gain control because its response will be backwards. It should be linear or reverse-log type. If you use a linear pot for a volume control and turn it down to half then the volume will be reduced only a little. If you turn it down from half to 1/4 then the volume will be reduced a ...
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