HEXA Pendulum
In a high-end audio system, vibration is not simply a matter of reducing or stopping unwanted movement. The real challenge is how to manage the energy created by vibration and get rid of it as effectively as possible.
HEXA Pendulum was developed as Footer designed to elevate and isolate audio equipment, using a different approach to vibration control. Rather than trying to stop vibration directly, HEXA Pendulum transforms vibration energy into mechanical motion, allowing the energy to be gradually absorbed and dissipated through the system in a more natural way.
Key Features
1. The process begins with the specially designed Hexagonal Structure on the top section. Its geometry helps distribute both the load and vibration energy efficiently. The six-sided structure gathers energy from different directions and directs it toward the six curved edges, where the energy is then transferred down to the layers below.
2. Inside, HEXA Pendulum uses a Multi-Layer Hexa Ball Structure consisting of 18 ball bearings arranged across three layers. Each layer has a specific role in supporting the load and controlling the movement. As vibration energy travels downward, it is not stopped abruptly. Instead, the energy is progressively transformed into continuous mechanical movement as it passes through each layer. Each layer absorbs, transfers, and gradually reduces the energy before passing it on to the next stage.
3. Once the accumulated energy from the movement reaches the center, it enters another critical stage: the Rigid Rod Pendulum mechanism. As the system moves, the Pendulum generates inertia through its swinging motion. The resulting inertial force acts in the opposite direction to the movement of the Pendulum, creating a continuous counteracting effect between the vibration coming from above and the inertia generated by the Pendulum.
4. This allows the entire system to handle complex vibration energy in a more controlled and refined way, from the initial point of contact all the way through to the final stage of energy dissipation.