Alliance of Infinity Trade
SMALL DCP FOR 3.5 MM SCREWS
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Alliance of Infinity Trade Orthopedic Implants Non-Locking Plate System
“SMALL DCP FOR 3.5 MM SCREWS”
Alliance of Infinity Trade
Slogan: Alliance of Excellence
Product Overview
The Alliance of Infinity Trade Orthopedic Implants Non-Locking Plate System “SMALL DCP FOR 3.5 MM SCREWS” is a superior orthopedic solution engineered by our expert R&D Department. As part of our renowned Non-Locking Plate System SS Series, this product underscores our commitment to excellence and innovation in the field of medical technology.
Product Description
The SMALL DCP (Dynamic Compression Plate) for 3.5 mm Screws is designed for robust fixation and stability in orthopedic surgeries. Crafted from High-Grade SS Stainless Steel, this non-locking plate ensures remarkable strength, durability, and biocompatibility, making it an ideal choice for a wide range of fracture fixations.
Importance and Usage
The SMALL DCP for 3.5 mm Screws is critical for the treatment of bone fractures, particularly in small bone structures. Its dynamic compression capabilities promote faster, more efficient healing by providing stability and support at the fracture site. This implant is vital for orthopedic surgeons working with delicate fractures, enabling precise screw placement for enhanced patient outcomes.
Specifications
- SMALL DCP for 3.5 mm Screws – 05 Holes, Length: 62 mm
- SMALL DCP for 3.5 mm Screws – 06 Holes, Length: 77 mm
- SMALL DCP for 3.5 mm Screws – 07 Holes, Length: 86 mm
- SMALL DCP for 3.5 mm Screws – 08 Holes, Length: 98 mm
- SMALL DCP for 3.5 mm Screws – 09 Holes, Length: 110 mm
- SMALL DCP for 3.5 mm Screws – 10 Holes, Length: 122 mm
- SMALL DCP for 3.5 mm Screws – 11 Holes, Length: 134 mm
- SMALL DCP for 3.5 mm Screws – 12 Holes, Length: 146 mm
- SMALL DCP for 3.5 mm Screws – 13 Holes, Length: 158 mm
- SMALL DCP for 3.5 mm Screws – 14 Holes, Length: 170 mm
High-Grade SS Stainless Steel
The SMALL DCP for 3.5 mm Screws is made from High-Grade SS Stainless Steel, ensuring superior strength, excellent corrosion resistance, and biocompatibility. This material selection is crucial for the durability and longevity of the implant, helping to minimize postoperative complications and ensure a smooth recovery for patients.
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