Our Emax crowns are high-strength restorations crafted from IPS Emax lithium disilicate ceramic providing superior marginal fit.
Our E-Max veneers are ultra-thin, wafer-like layers of IPS E-Max ceramic, manufactured by hand pressing or CAD/CAM methods.
Our Emax crowns are high-strength restorations crafted from IPS Emax lithium disilicate ceramic providing superior marginal fit.
Our E-Max veneers are ultra-thin, wafer-like layers of IPS E-Max ceramic, manufactured by hand pressing or CAD/CAM methods.
IPS E-Max is made of a highly advanced monolithic lithium disilicate glass-ceramic material. It is composed of a fine and interconnected network of plate-like crystals, which are embedded in a glass-like matrix. This unique microstructure effectively prevents cracks and significantly increases the durability of the material.
Our E-Max restorations are made exclusively from the premium IPS E-Max lithium disilicate glass-ceramic material. It is manufactured using sophisticated methods such as heat-pressing or CAD/CAM milling, which ensures its uniform density and homogeneity. E-Max is available in blocks and ingots, which support various opacity levels and shade gradients.
Due to its finely crafted transparency, which is available in various opacity levels, E-Max offers an extremely natural appearance. It blends easily with tooth shades and its unique "umbrella effect" enhances realism by transmitting natural light, making your smile look wonderfully realistic and attractive.
Our E-Max crowns are made with the utmost precision from IPS E-Max lithium disilicate glass-ceramic. For this, we use advanced CAD/CAM or heat-pressed techniques. These monolithic and metal-free crowns have exceptional translucency and opalescence, which perfectly match natural teeth. With a flexural strength of around 400-500 MPa, they are an excellent choice for both anterior and posterior teeth. Their uniform microstructure ensures precise milling, minimal preparation, and seamless aesthetic integration with the tooth.
Our E-Max veneers are ultra-thin, wafer-like layers of IPS E-Max ceramic, manufactured by hand pressing or CAD/CAM methods. These veneers combine high translucency with subtle light diffusion, resulting in a beautiful and natural smile even in extremely thin thicknesses (~0.3–0.5 mm). Emax veneers require minimal enamel reduction and provide excellent shade matching, making them ideal for aesthetic improvement with gentle tooth preservation
Our E-Max veneers are ultra-thin, wafer-like layers of IPS E-Max ceramic, manufactured by hand pressing or CAD/CAM methods. These veneers combine high translucency with subtle light diffusion, resulting in a beautiful and natural smile even in extremely thin thicknesses (~0.3–0.5 mm). Emax veneers require minimal enamel reduction and provide excellent shade matching, making them ideal for aesthetic improvement with gentle tooth preservation.
IPS E-Max uses lithium disilicate, which has the same transparency and light refraction ability as natural teeth. It blends perfectly with the surrounding teeth, so there is no appearance of artificial teeth.
It has excellent flexural strength, which provides high resistance to cracking and chipping. Lasts a long time and maintains daily functionality.
Designed and manufactured using state-of-the-art CAD/ CAM technology. Ensuring exceptional precision and a perfect fit for every crown and veneer.
Contains materials that are well tolerated by the human body, reducing the risk of allergic reactions. Providing a more comfortable and safe experience.
ADE E-Max dental solutions are considered the gold standard in the dental industry because they combine aesthetic excellence, unmatched strength, and cutting-edge technology. We ensure that every restoration is not only beautiful but also extremely durable and reliable, making it an ideal choice for both dentists and patients.
We use only 100% Ivoclar-origin E-Max lithium disilicate. No generic or cheap alternatives are used, ensuring premium aesthetics and predictable performance.
Indian dentists appreciate ADE for our precision, service response, and superior fit. Over 15 years of collaborative feedback confirm our reliability.
Our products carry FDA registration and CE marking, which demonstrates compliance with international quality standards. With a strong support system, we offer unmatched guarantees and reliable assurance in the Indian market.
Our fully digital workflow, from intraoral scanning to CAD design and CAM milling, delivers consistently high-precision results, requiring fewer rework and adjustments.
With proper care and oral hygiene, E-Max restorations have a very long lifespan. Our E-Max restorations can last 10 to 15 years or more. In some cases, they can even last more than 20 years. However, longevity depends on factors such as the patient's oral hygiene, chewing habits (such as teeth grinding), and regular dental check-ups.
E-Max is a highly versatile material that is commonly used for a variety of restorations including veneers, crowns, inlays, onlays, and even short-span bridges, offering excellent aesthetic and functional outcomes.
Emax offers unparalleled aesthetics with natural translucency, superior strength, perfect fit through digital precision, and high biocompatibility, making it an ideal choice for durable and beautiful restorations.
E-Max lithium disilicate is incredibly strong, typically boasting a flexural strength of around 400 to 500 MPa, which provides high resistance to cracking and chipping under normal biting forces.
E-Max is primarily made of lithium disilicate, a specialized glass-ceramic material that is highly prized in dentistry for its unique combination of strength and natural-looking translucency.
In dentistry, Emax refers to the IPS E.max system, which is a state-of-the-art all-ceramic system used for fabricating high-strength, aesthetic dental restorations like crowns, veneers, and bridges.
We provide comprehensive warranty-backed professionalism for our authentic IPS e.max restorations. Specific terms may vary based on the restoration type and your treating clinician's guidelines.