High aesthetic value and 5 translucenies in one milling block
Amber Mill from HASS Bio is an advanced lithium disilicate CAD/CAM material specifically developed for the fabrication of durable and natural-looking dental restorations. Thanks to its innovative composition, the block combines exceptional strength with outstanding aesthetics and optimal workability.
The translucency can be flexibly adjusted through the firing temperature, allowing five different translucency levels (HT+, HT, MT, LT and MO) to be achieved from a single block. This makes the material highly efficient in use and reduces inventory requirements.
After crystallization, Amber Mill reaches a high biaxial flexural strength of 450 MPa, ensuring reliable and long-lasting restorations. The excellent edge stability and significantly reduced risk of chipping highlight the material’s superior machinability during the milling process.
Thanks to is opalescence and fluorescence, Amber Mill delivers highly aesthetic results, making it particularly suitable for monolithic restorations. in addition, the material is compatible with a wide range of veneering materials, offering extra flexibility in the final outcome.
Amber Mill is available in a variety of block sizes ensuring the right dimensions for every indication. The blocks are available in formats such as C12 (10 x 12 x 15 mm), C14 (12 x 14 x 18 mm), C32 (14 x 14 x 32 mm), and C40 (15 x 15 x 38 mm). Depending on the size, the blocks are supplied in packs of 3 or 5 units. A disc version (Ø98 x 12 mm) is also available for broader laboratory applications.
In terms of shades, Amber Mill offers a comprehensive range based on te VITA shade system, including A, B, C and D shades, complemented by bleach shades W1-W4. In combination with the adjustable translucency levels (HT+, HT, MT, LT, MO), this enables accurate reproduction of virtually any clinical situation.
Thanks to this wide range of sizes and shades, Amber Mill provides maximum flexibility to meet both aesthetic and functional requirements within a single material.



