Nov 2, 2017

Audi Q7: The cockpit is a concert hall 1.920 Watt Hi-Fi Audio


The new Audi Q7 a model that comes after eight years of honored career. Redesigned from scratch, the new Ingolstad full size SUV is completely renewed both in aesthetic and technical terms, losing even 325 kg weight compared to the previous model.

 Also great in terms of propulsion with the introduction of the much-anticipated hybrid diesel plug-in . The new Audi Q7 e-tron quattro for the first time in absolute, alongside the V6 3.0 TDI 258 hp, we find a 127 hp electric motor for a total power of ... and average fuel consumption ...

 Even inside the passenger compartment the German brand wanted to leave the mark upgrading the interior equipment. We are talking about the introduction of two premium sound systems : Bang & Olufsen's Advanced Sound System and Bose Surround Sound with 3D technology.

 Audi has recently released new detailed information on these two sound systems that, using sophisticated math algorithms , want to recreate the same environment conditions in which the audio track was recorded. The ultimate goal is therefore to accurately reconstruct the rendering of a closed environment inside the car, exploiting the different sound reflection on the car walls.

23 loudspeakers and 1,920 watts of audio power

To do this, the Bang & Olufsen system uses up to 23 speakers distributed in the four doors, uprights, dashboard and even roof car. Also worth mentioning is the new 250mm subwoofer and the new 1.920 watt power amplifier.

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The Bang & Olufsen system boasts 23 speakers while the Bose brand uses 20 different speakers


The Bose Surround Sound system, on the other hand, guarantees a quality sound through 20 speakers, four of which are installed in the front door, able to reproduce the 3D effect.



"When an artist sings from a stage," says Audi, "the floor, ceiling and walls of the concert hall reflect the sound at different intervals . Bounce from the floor in a few milliseconds, reflecting from a wall 40 meters behind 200 milliseconds. Using these different sound reflections, the algorithm is able to calculate a mathematical model able to reproduce the same conditions as a recording chamber. "

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