Original Magnetic Gland Support (Left Side, Ø17mm) for Briot
Maintain the edging precision of your optical equipment with this original Magnetic Gland Support (Small Model), specifically designed for Briot machines.
Located on the left side of the edging system, this crucial 17mm magnetic receiver is responsible for securely holding the lens blocks in place during the cutting cycle. A worn or demagnetized support can lead to lens axis slippage, resulting in costly cutting errors.
This pre-owned, thoroughly inspected replacement part offers a highly cost-effective solution to restore your edger’s holding power. Bearing the exact OEM reference 1190521, it guarantees a perfect mechanical fit and optimal magnetic adherence.
⚠️ Important: Verify Diameter and Position
Please note that this is the Small Model (17mm diameter) specifically designed for the Left Side of the machine. Ensure these specifications match your current setup before ordering, as right-side or larger diameter models are not interchangeable.
Key Features at a Glance
- Secure Lens Blocking: Provides strong magnetic adherence to prevent lens slippage and axis rotation during the edging process.
- Cost-Effective Replacement: A budget-friendly, fully inspected pre-owned alternative to purchasing a brand-new factory part.
- Direct OEM Match: Genuine original component bearing the exact reference 1190521.
- Multi-Brand Compatibility: Designed for seamless integration into compatible Briot optical edgers.
Technical Specifications
| Feature | Specification |
|---|---|
| Component Type | Magnetic Gland Support / Block Receiver |
| Size / Diameter | 17mm (Small Model) |
| Machine Position | Left Side |
| OEM Reference | 1190521 |
| Compatibility | Briot Optical Edgers |
| Condition | Used / Pre-Owned (Inspected & Functional) |
💡 Pro Tip: Maintenance for Optimal Grip
To ensure the longevity of your new magnetic support and prevent axis issues, make it a daily habit to clean the magnetic surface. Polycarbonate dust, water, and glass slurry can build up and significantly reduce the magnetic attraction between the block and the gland.











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