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Magico Q Pod
![Magico Q Pod](https://i0.wp.com/scottwalkeraudio.com/wp-content/uploads/2022/11/Screen-Shot-2022-11-02-at-1.49.17-PM.png?w=1080&ssl=1)
![Magico Q Pod](https://i0.wp.com/scottwalkeraudio.com/wp-content/uploads/2022/11/Screen-Shot-2022-11-02-at-1.49.17-PM.png?w=1080&ssl=1)
![Magico Q Pod](https://i0.wp.com/scottwalkeraudio.com/wp-content/uploads/2022/11/Screen-Shot-2022-11-02-at-1.50.06-PM.png?fit=300%2C169&ssl=1)
![Magico Q Pod](https://i0.wp.com/scottwalkeraudio.com/wp-content/uploads/2022/11/Screen-Shot-2022-11-02-at-1.49.17-PM.png?w=1080&ssl=1)
![Magico Q Pod](https://i0.wp.com/scottwalkeraudio.com/wp-content/uploads/2022/11/Screen-Shot-2022-11-02-at-1.49.17-PM.png?w=1080&ssl=1)
![Magico Q Pod](https://i0.wp.com/scottwalkeraudio.com/wp-content/uploads/2022/11/Screen-Shot-2022-11-02-at-1.50.06-PM.png?fit=300%2C169&ssl=1)
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Magico Q-Pod
Throughout the development process of the Q platform numerous advances in the area of resonance management were made.
Originally developed for internal R&D, Magico is introducing the QPods to maximize front-end system performance. The pods themselves are CNC-turned and milled from hardened stainless-steel, oxygen-free copper, and hard black-anodized aircraft-grade aluminum. These materials create the constraining layers for the damping material that is alternately clamped between to create a single traverse dissipating unit, which we call the QPod.
Vibrational wave propagation through the floor, stands, and the equipment itself is converted into heat energy through the side-to-side movement (known as “shear deformation”) within each layer of the pod.By adding a multi-leveled constraining layer mechanism to equipment standoffs, electrical and mechanical vibration-induced artifacts are acutely reduced, ultimately resulting in marked improvements to signal fidelity.