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Arya Audio Revopod Damping Feet
Arya Audio Revopod Damping Feet
Arya Audio Revopod Damping Feet
Arya Audio Revopod Damping Feet

Arya Audio

Arya Audio Revopod Damping Feet

Sale price$1,812.00

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Ayra Audio Revopod


With our expert team of sound and vibration specialists we set out to redefine a component that is very important but often overlooked – the damping foot. 

We have analysed the vibration patterns of various audio equipment including loudspeakers, amplifiers and turntables, and evaluated the effectiveness of different vibration control strategies. To our surprise the best strategy turned out to be one that is not usually used in audio but is rather found in civil engineering. For the vibration control of heavy structures such as bridges, civil engineers make use of so-called pot bearings. This type of bearing is very compact and provides efficient damping through compression of a confined elastomeric disc whilst allowing displacement in the horizontal plane. This strategy is particularly interesting for audio applications because, as our research has shown, the best approach to deal with vibrations is not by trying to fix the components rigidly in place but rather allowing limited movement in all directions. By damping this motion through dedicated measures the vibration can then be effectively controlled to significantly reduce unwanted distortion.

After countless prototypes, we have successfully adapted and refined the pot bearing concept to broad-band audio applications and implemented it in the RevOpod damper. It is the first product to feature our proprietary vibration control system offering superb damping performance.

All structural parts of the RevOpod damper are precision CNC machined from highest quality stainless steel while the contact element to the floor is madeout of Delrin®. For perfect levelling RevOpod features a unique height controlling mechanism that offers a precise adjustment in 50µm steps. By rotating the outer ring, an inner element starts to move up or down translating the rotary motion of the ring into linear movement of the inner cylinder.