Stable Placement
Optimized thread geometry supports primary stability and efficient osseointegration across common bone conditions.
DTDental Implants
—High-quality implant solutions combining precise structures and practical design for stable clinical performance, long-term function, and esthetic restoration.
Optimized thread geometry supports primary stability and efficient osseointegration across common bone conditions.
Internal connection design helps restorative components fit accurately and reduces micro-movement risk.
A practical portfolio supports routine implantation, esthetic restoration, and limited-space indications.

Imported Carpenter Cold-Worked Grade 4 Pure Titanium
Made with Grade 4 cold-worked titanium from Carpenter (USA), with excellent biocompatibility, effectively reducing tissue rejection and inflammation risk, achieving tight integration with alveolar bone, and minimizing the need for bone augmentation surgery through minimally invasive techniques.
All four implant models use Grade 4 cold-worked titanium from Carpenter (USA).









S.L.A. Surface Treatment
The surface uses S.L.A. (large-grit sandblasting and acid etching) treatment to form a micron-level rough structure and increase implant surface roughness. Super S.L.A. hydrophilic surface treatment better promotes bone cell attachment and osseointegration, accelerates bone bonding, shortens the healing cycle, and reduces peri-implantitis risk.
All four implant models use S.L.A. (large-grit sandblasting and acid etching) and Super S.L.A. hydrophilic surface treatment.









Tapered Neck Design
Tapered neck design improves soft tissue support and maximizes alveolar bone volume. The tapered expansion implant with double-thread design gradually compresses bone and provides high primary stability even in compromised bone conditions. The internal tapered connection with hexagonal interlock helps ensure tight abutment sealing and firm positioning.









Morse Taper Connection
The tapered cylindrical implant body uses Morse taper and cross-locking to ensure a tight implant-abutment fit, strong anti-rotation and anti-loosening performance, and high chewing-force resistance. It can achieve excellent primary stability in soft bone and fresh extraction sockets, while the tapered cylindrical body provides suitable bone compression in alveolar bone that has not been precisely prepared.








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