Place of Origin: | China |
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Brand Name: | ANGELS |
Certification: | TUV CE, ISO13485, ISO9001 |
Model Number: | Medentis Medical ICX® |
Minimum Order Quantity: | 10pcs |
Price: | USD1.5~3.5/pc |
Packaging Details: | 10pcs/bag |
Delivery Time: | 3~5 Days |
Payment Terms: | T/T, Western Union, MoneyGram |
Supply Ability: | 500,000pcs/month |
Material: | Titanium GR5 | Warranty: | 12 Months |
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After-sale Service: | Online Technical Support | Size: | Standard |
Hex: | 1.40mm | Properties: | Implant Materials & Artificial Organs |
Product Tolerance: | +-0.01mm | ||
High Light: | Hex 1.4mm Dental Implant Titanium Screw,Medentis Medical ICX Implant Screw,Titanium GR5 Implant Screw |
Medentis Medical ICX Hex 1.4mm Dental Implant Titanium Screw
Dental Implant Titanium Screw Hex 1.40mm Compatible with Medentis Medical ICX®
Compatible driver = Screwdriver 1.40mm Hex
Material:
Ti 6AI-4V ELI (Supply from Germany)
Feature:
- Accuracy, lighting intensity
- Identical to the original screw design
- Tool inspection with 150% of the original torque value
- Hand inspection of the threaded part
Their design ensures a perfect fit with standard accessories as well as with special CAD / CAM systems for structures, bridges and special abutments, bridges, bars, etc.
Approved by CE, ISO 9001, ISO 13485
Points of Medentis Medical ICX Dental Implant:
ICX-Implants are manufactured by Medentis Medical GmbH in Germany with years of experience. The surface of the ICX-Implants is sandblasted and high temperature etched, allowing osteophilic surface morphology with bimodal structuring for reliable biological and mechanical anchoring of the bone with the material in the micro level.
The entire implant geometry of the ICX implant system is designed according to the latest design and functional principles. The self-tapping apical thread achieves a high primary stability. The unique, protected condensation thread in the middle to upper implant area ensures good compression of the cancellous bone.
The micro-thread in the area of the implant neck produces the desired cortical bone contact and thus ensures an optimized, physiological introduction of force in this area.