Sapphire and Ruby
Precision Bearing Component for the Balance Pivot
The ruby cap jewel is an essential part of the balance pivot bearing in watch movements. Together with the hole jewel, it forms a precise bearing that minimizes friction and ensures long-term durability.
🔹 Integral part of high-precision bearings – provides smooth and stable balance wheel motion.
🔹...
Precision Bearing Component for the Balance Pivot
The domed ruby cap jewel is an essential part of the balance pivot bearing in watch movements. Together with the hole jewel, it forms an ultra-precise bearing that minimizes friction and ensures smooth operation.
Precision Bearing for Gear Train Pivot Support
The ruby hole jewel with a cylindrical bore serves as a bearing for the gear train pivot in mechanical and electric watch movements, as well as in electronic movements with an analog display.
🔹 Exceptional durability thanks to the extreme hardness of ruby.
🔹 High resistance to shocks and vibrations for...
Essential Component of the Balance Wheel Mechanism
The ruby impulse jewel is pressed into the balance wheel roller of a mechanical watch movement. As it moves, it alternately enters the pallet fork, causing it to shift to its extreme positions.
🔹 Ensures precise synchronization of the escapement mechanism.
🔹 Minimal friction and extreme durability thanks...
A precise component of the balance pivot bearing
The watch jewel with an olive hole and domed shape is a key part of the balance pivot bearing in watch movements. Together with the cap jewel in a shared setting, it ensures smooth and precise movement of the balance wheel, contributing to the long life and reliability of the entire mechanism.
A precise component of the balance pivot bearing
The watch jewel with an olive hole and flat shape is a key part of the balance pivot bearing in watch movements. Together with the cap jewel in a shared setting, it ensures smooth and precise movement of the balance wheel, contributing to the long life and reliability of the entire mechanism.
A key component of the escapement mechanism
The exit pallet jewel is a precision ruby component in mechanical watch movements. These jewels are fixed in the pallet fork arm and alternately engage with the teeth of the escape wheel in synchronization with the balance wheel. Their function is to regulate the even transfer of energy and stabilize the...
Precision Ruby Jewel for Watch Movements
The watch pallet input jewel is an essential component of the escapement mechanism in mechanical watch movements. It is fixed in the anchor arm and, with each oscillation of the balance wheel, it engages with the teeth of the escape wheel. This regulates the gear train and ensures the accurate operation of the...
High-precision bearing for fine mechanics
The sapphire jewel with a cylindrical hole and no cups is a key component of high-precision bearings. It serves as a support for a rotating steel shaft within a device, ensuring minimal friction and extreme wear resistance.
This jewel is designed to absorb both radial and axial loads, ensuring smooth and stable...
High-precision bearing for fine mechanics
The sapphire jewel with an olive hole and no cups is a key component of high-precision bearings. It serves as a support for a rotating steel shaft, ensuring minimal friction and extreme wear resistance.
Thanks to the olive hole design, lubrication is optimized, reducing friction and extending the lifespan of the...
A key component of precision bearings
The sapphire cap (cover) jewel is an essential part of high-precision bearings. Together with a hole jewel, it forms a pivot bearing for gear trains, where its main function is to absorb axial loads and ensure stable and precise movement of the mechanism.
Thanks to the extreme hardness and durability of sapphire, it...
High-precision bearing component for fine mechanics
The sapphire cap jewel, polished on both sides, is a key part of precision bearings. Together with a hole jewel, it forms a pivot bearing for gear trains, where its main function is to absorb axial loads and ensure smooth and stable movement of the mechanism.
Thanks to double-sided polishing, it...