Aesthetic
Amber Mill
Five translucency levels in a single block
Amber Mill is a lithium disilicate–based CAD/CAM block that allows the fabrication of restorations with different translucency levels through controlled crystallization temperatures using a single block.
Aesthetic
Amber press master
Pressing ingot designed for high-end lithium disilicate restorations
Amber Press Master is a lithium disilicate–based press ingot developed for consistent use across standard laboratory environments, with a focus on restorations requiring a high level of aesthetic refinement.
Aesthetic
Amber press
Amber Press is a lithium disilicate pressing ingot designed to offer processing stability, broad compatibility and high aesthetic performance.
The ingot features a crystallized, cross-linked microstructure that reduces chipping and minimizes post-pressing adjustments
Aesthetic
Rosetta SM
Lithium disilicate CAD/CAM block balancing practicality and aesthetics
Rosetta SM is an entry-level lithium disilicate CAD/CAM block offering a balance between cost efficiency and stable quality.
Aesthetic
Rosetta SP
Lithium disilicate pressing ingot for practical and aesthetic restorations
Rosetta SP is an entry-level lithium disilicate pressing ingot offering a balance between cost-efficiency and stable quality.
For big laboratories
Amber Mill Disk
Five translucency levels in a single block
Amber Mill is a lithium disilicate–based CAD/CAM block that allows the fabrication of restorations with different translucency levels through controlled crystallization temperatures using a single block.
For big laboratories
Rosetta SM Disk
Lithium disilicate CAD/CAM block balancing practicality and aesthetics
Rosetta SM is an entry-level lithium disilicate CAD/CAM block offering a balance between cost efficiency and stable quality
For big laboratories
Amber Mill H
Ceramic-based hybrid CAD/CAM block combining strength and aesthetics
The innovative Amber Mill H uses a unique bonding technology, which incorporates fine crystalline ceramic particles with polymers.
Alternative for cases
Amber Lisi-POZ
An ideal press-over solution for zirconia frameworks
Amber Lisi-POZ is designed to replace conventional veneering powders when applied over zirconia frameworks.
Alternative for cases
Amber Lisi-POM
Lithium Disilicate Layering Solution for Metal-Ceramic Restorations
Amber Lisi-POM is a high-strength lithium disilicate material designed for layering on metal frameworks in metal-ceramic restorations.
One-visit solution
Amber Mill DIRECT
Pre-crystallised lithium disilicate block for chairside restorations.
Amber Mill Direct, a pre-crystallised lithium disilicate-based millable glass ceramic block that helps dental professionals deliver chairside restorations within 1 hour, as only plishing is required after milling.
One-visit solution
Amber Mill H
Ceramic-based hybrid CAD/CAM block combining strength and aesthetics
The innovative Amber Mill H uses a unique bonding technology, which incorporates fine crystalline ceramic particles with polymers.
Implant system
Amber Mill Meso
Lithium Disilicate Block for Implant Prostheses
Amber Mill Meso is a highly aesthetic nano-lithium disilicate CAD/CAM block designed for abutment crowns on metal links. It offers natural opalescence and fluorescence, multiple translucency options in a single block, and stable strength for reliable edge stability.
Implant system
Amber Mill Q
Innovative CAD/CAM Blocks for Implant Abutment Solutions
Amber Mill Q is an implant-focused CAD/CAM block featuring a zirconia core, designed to provide both structural stability and aesthetic performance for implant restorations.
Implant system
Amber Mill Abut-Crown
Integrated Abutment Crown Solution for Implant Restorations
With Amber Mill Abut-Crown, lithium disilicate, zirconia coping, and a titanium link are combined into a single integrated structure. As the first one-body abutment crown, it simplifies the manufacturing process and reduces patient chair time while providing highly aesthetic and stable implant restorations.
Implant system
Hole keeper
Hole Keeper improves the appearance of screw access holes while ensuring stable retention.