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EdgeEndo Edge Sequel Sapphire NiTi Rotary Files - 4% 25

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EdgeEndo Edge Sequel Sapphire NiTi Rotary Files - 4% 25

₹2,054

₹2,465

17% Off

Exclusive of 12% GST

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Size

25

Taper

4%

6%

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Product Details

What is in the box

4 Edge Sequel Sapphire File

Description: The EdgeEndo Edge Sequel Sapphire NiTi Rotary Files epitomize the next frontier in endodontic instrumentation. Merging advanced metallurgy with intricate design, these files redefine precision in root canal shaping. Crafted to the exacting standards of contemporary endodontics, the Edge Sequel Sapphire files seamlessly elevate the practitioner's ability to achieve exceptional results in root canal procedures.

Key Features:

  1. Sapphire Enhanced Surface: The files boast a sapphire-enhanced surface, harnessing the hardness of sapphire to enhance file durability and cutting efficiency.

  2. Progressive Taper Design: A progressive taper design ensures efficient debris removal and optimal canal shaping, adapting to the intricate anatomy of root canals.

  3. Thermally Treated NiTi Alloy: The files feature a thermally treated NiTi alloy, combining flexibility and strength to navigate complex canal geometries while minimizing the risk of file separation.

  4. Color-Coded System: A color-coded system facilitates easy identification of file sizes, streamlining the workflow and ensuring precise instrument selection.

Benefits:

  1. Enhanced Cutting Efficiency: The sapphire-enhanced surface augments cutting efficiency, optimizing the shaping of root canals and ensuring thorough cleaning.

  2. Adaptable to Diverse Canal Morphologies: The progressive taper design adapts to diverse canal morphologies, providing versatility in addressing the unique challenges presented by each case.

  3. Reduced Risk of File Separation: The thermally treated NiTi alloy reduces the risk of file separation, ensuring the durability and longevity of the instruments.

  4. Efficient Workflow: The color-coded system simplifies file identification, contributing to an efficient workflow and minimizing the potential for procedural errors.

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