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calculating Q for parametric eq formula? | DiyMobileAudio ...
https://www.diymobileaudio.com/threads/calculating-q-for-parametric-eq-formula.36120/#:~:text=Q%20%3D%20center%20frequency%20%2F%20-3db%20point%20to,%2F%201100%20-%20900%20%3D%20Q%20of%2010.
calculating Q for parametric eq formula? | DiyMobileAudio ...
https://www.diymobileaudio.com/threads/calculating-q-for-parametric-eq-formula.36120/
Q = center frequency / -3db point to the right, minus -3db to the left So example, if your center frequency is 1000hz, with the -3db point 500hz to each side (really wide Q), you get 1000 / 1500 - 500 = Q of 1. If you did the same example with a -3db point of only 100hz to each side, you get 1000 / 1100 - 900 = Q of 10.
Calculate Q of Second-Order Crossover (12dB)
http://www.mh-audio.nl/Calculators/CalculateQ12db.html
Calculate Q of Second-Order Crossover (12dB) For optimal filter operation it is important to use the impedance (Z) of the loudspeaker at the cut-off frequency. The DC resistance is NOT optimal to calculate crossover filters! If you don't know the loudspeaker impedance at Crossover frequency use the DC resistance of the loudspeaker,
How to Set the Q of an Equalizer to an Octave — Sage Audio
https://www.sageaudio.com/blog/mixing/how-to-set-the-q-of-an-equalizer-to-an-octave.php
By multiplying the number 2.05 with the first Q setting, .667, you get 1.37. When rounded up, this equates to 1.4 – a number very similar to the Q setting for 1 octave . If you continue multiplying 2.05 by each number that comes after, you’ll be able to equate Q’s that are very closely related to the exact numbers above.
Speaker Q and How it Affects Sound Quality
https://www.bestcaraudio.com/speaker-q-and-how-it-affects-sound-quality/
Most car audio speaker manufacturers don’t fully understand the relationship between Q and frequency response, or they choose to ignore it to deliver a certain “sound.” Unfortunately, when it comes to truly high-end speakers , tailoring the frequency response of the system should be left to an equalizer built into a digital signal ...
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