
Mirrored Force Resonance First Edition
The Mirrored Force Resonance is our take on a fascinating watchmaking phenomenon: resonance. This physical effect has capti vated watchmakers since the 17th century. It occurs when two balances oscillate next to each other. They then regulate each other th rough their emitted vibrations. In theory, this produces significantly more reliable timing rates, aka greater chronometric stabilit y. In reality, and especially in watches, maintaining resonance is very challenging. Wrist movements or minor shocks can easily disr upt it. We created our patented system to solve this problem. It makes resonance more stable and less prone to disturbances. With th is, we have achieved something rare: introducing reliability into the unpredictable world of physics.
The Mirrored Force Resonance is our take on a fascinating watchmaking phenomenon: resonance. This physical effect has capti vated watchmakers since the 17th century. It occurs when two balances oscillate next to each other. They then regulate each other th rough their emitted vibrations. In theory, this produces significantly more reliable timing rates, aka greater chronometric stabilit y. In reality, and especially in watches, maintaining resonance is very challenging. Wrist movements or minor shocks can easily disr upt it. We created our patented system to solve this problem. It makes resonance more stable and less prone to disturbances. With th is, we have achieved something rare: introducing reliability into the unpredictable world of physics.
Description
The Mirrored Force Resonance is our take on a fascinating watchmaking phenomenon: resonance. This physical effect has capti vated watchmakers since the 17th century. It occurs when two balances oscillate next to each other. They then regulate each other th rough their emitted vibrations. In theory, this produces significantly more reliable timing rates, aka greater chronometric stabilit y. In reality, and especially in watches, maintaining resonance is very challenging. Wrist movements or minor shocks can easily disr upt it. We created our patented system to solve this problem. It makes resonance more stable and less prone to disturbances. With th is, we have achieved something rare: introducing reliability into the unpredictable world of physics.























