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HSB - CAD /inLab LT D2 C14 5/Pk (Equiv Ivoclar 626389)
- Includes C14 size, D2 shade
- Lithium disilicate material offers superior strength
- Low Translucency masks discolored tooth preparations
- Provides stable, predictable, long-lasting dental restorations
- Quantity: 5 blocks per pack
The Aira IPS e.max Type CAD /inLab LT D2 C14 blocks are advanced materials specifically engineered for the fabrication of precise, high-strength dental restorations using CAD/CAM technology, particularly within the CEREC and inLab milling units. These blocks are composed of lithium disilicate glass-ceramic, renowned globally for its exceptional combination of superior aesthetics and impressive clinical performance.
With the Low Translucency (LT) designation, these blocks ensures the necessary chroma and value to effectively mask slightly discolored preparations or foundations while still maintaining excellent light-optical properties essential for natural-looking anterior and posterior restorations, including crowns, veneers, inlays, and onlays. The precise engineering ensures optimal milling efficiency and integrity during the CAD/CAM process. This Aira product is an Equivalent (substitute) for the same Ivoclar Vivadent product, serving exceptional strength and precision for your milling needs.
If you are searching for the best IPS e.max Type CAD /inLab LT blocks then choose Aira IPS e.max Type CAD /inLab LT D2 C14; it is a meticulously manufactured lithium disilicate material offering predictable milling and outstanding long-term stability, is best for you. This package contains 5 blocks, providing reliable inventory for high-volume practices or labs. The specific shade D2 and size C14 ensure versatility for common clinical scenarios requiring balanced translucency and inherent strength.
Utilizing these blocks allows dental professionals to deliver predictable, aesthetically pleasing, and functionally sound outcomes that meet the highest standards of modern restorative dentistry. The Aira manufacturing process ensures minimal internal stresses, contributing to the integrity and durability of the final restoration post-crystallization.