The Small Locking T Plate Titanium Grade 5 58 Pcs is a versatile orthopedic bone fixation system designed for surgical applications requiring a compact locking plate configuration. The system combines small locking T-plates with an oblique-angle design, multiple hole configurations from 3 to 8 holes, shaft components, and screws, providing orthopedic surgical teams with a selection of fixation components for different operative requirements.
The T-plate configuration is designed to provide a plate geometry suitable for fixation around anatomically challenging areas where a transverse or T-shaped plate profile may be appropriate. The oblique-angle configuration provides an angled plate geometry that can assist with positioning according to the anatomy and surgical approach. Exact indications, compatible anatomy, and permitted screw trajectories should always be determined according to the manufacturer’s technical documentation and the surgeon’s clinical judgment.
A major feature of this system is its locking plate and screw configuration. Locking fixation systems are designed so that compatible screws engage with the plate’s locking interface, creating a fixed-angle relationship between the screw and plate when used according to the manufacturer’s specifications. This can provide a stable construct while allowing the surgeon to select an appropriate plate configuration and fixation strategy for the procedure.
The system includes 3-hole through 8-hole configurations, providing multiple options for selecting the appropriate plate length and number of fixation points. Different shaft lengths and hole counts can be useful when adapting the fixation construct to the available bone surface, fracture characteristics, and surgical requirements. The exact components included in each configuration should be verified against the manufacturer’s product catalog or implant set documentation.
Manufactured from Titanium Grade 5, the plates and associated components offer a high-performance material platform widely recognized for its strength-to-weight characteristics and suitability for orthopedic implant applications. Titanium-based orthopedic components can provide a favorable combination of mechanical performance and relatively low density compared with many traditional metallic implant materials. Material compatibility and implant performance remain dependent on the specific manufacturing process, dimensions, design, and intended use of the product.
The 58-piece orthopedic fixation set provides a consolidated selection of plates and screws, supporting efficient surgical preparation and inventory management. A multi-component set can be particularly useful for orthopedic trauma departments, surgical hospitals, specialty orthopedic centers, and operating rooms that require multiple plate configurations available during a procedure.
The small locking T-plate design may be considered for selected orthopedic fixation procedures involving smaller bones or anatomically restricted fixation sites, depending on the specific implant design and manufacturer’s approved indications. Plate selection should take into consideration bone anatomy, fracture pattern, bone quality, required fixation points, surgical approach, and the surgeon’s preferred fixation technique.
For safe clinical use, all components should be inspected before use for damage, deformation, corrosion, compromised threads, or other abnormalities. Plates and screws should only be combined when their compatibility has been confirmed. Surgical personnel should follow the manufacturer’s instructions for use, recommended instrumentation, approved surgical technique, and applicable implant handling requirements.
Cleaning and sterilization must follow the manufacturer’s validated instructions. Titanium Grade 5 construction alone does not establish a universal sterilization cycle, so healthcare facilities should use the specific validated sterilization parameters supplied for the product. Appropriate handling, cleaning, sterilization, storage, and inspection practices are important for maintaining implant integrity and supporting safe surgical workflows.
With its oblique-angle T-plate profile, multiple 3–8 hole configurations, shaft options, compatible screws, and Titanium Grade 5 construction, this Small Locking T-Plate system provides orthopedic professionals with a versatile option for selected bone fixation procedures requiring compact locking plate technology.
Key Features
- Small locking T-plate design intended for selected orthopedic fixation applications.
- Oblique-angle configuration provides an angled plate profile for adaptable surgical positioning.
- 3–8 hole configurations provide multiple options for selecting plate length and fixation points.
- Titanium Grade 5 construction offers a strong and lightweight material platform for orthopedic implant applications.
- Locking screw technology creates a fixed-angle plate-and-screw relationship when compatible components are used correctly.
- Includes shaft and screws as part of the 58-piece orthopedic fixation system.
- Multiple configurations support different anatomical and surgical fixation requirements.
- Compact T-plate geometry can be suitable for fixation in anatomically restricted areas, subject to approved indications.
- Designed for professional use in orthopedic trauma and bone fixation procedures.
- Consolidated 58-piece system supports surgical preparation and orthopedic inventory management.
- Components should be inspected and confirmed for compatibility before implantation.
- Cleaning and sterilization should follow the manufacturer’s validated instructions for use (IFU).
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Small Locking T-Plate |
| Plate Design | T-Plate |
| Configuration | Oblique Angle |
| Hole Options | 3–8 Holes |
| System Type | Locking Plate and Screw System |
| Shaft | Included |
| Screws | Included |
| Total Set Quantity | 58 Pieces |
| Material | Titanium Grade 5 |
| Primary Application | Orthopedic Bone Fixation |
| Surgical Specialty | Orthopedic Surgery / Orthopedic Trauma |
| Plate Profile | Small T-Plate Configuration |
| Fixation Technology | Locking Plate System |
| Intended Users | Qualified Orthopedic and Surgical Professionals |
| Sterilization | Follow manufacturer’s validated sterilization instructions |
| Compatibility | Use only specified compatible plates, screws and instrumentation |
FAQs
1. What is a small locking T-plate used for?
A small locking T-plate is an orthopedic fixation implant designed for selected bone stabilization procedures where a compact T-shaped plate configuration is appropriate. Specific indications depend on the implant design and manufacturer’s approved applications.
2. What does the oblique-angle design mean?
An oblique-angle design refers to the angled geometry of the plate. This configuration can provide an alternative positioning profile for adapting the implant to particular anatomical and surgical requirements.
3. What hole sizes are available in this T-plate system?
The product is specified with 3-hole through 8-hole configurations, providing multiple plate options for different fixation requirements.
4. What material is the small locking T-plate made from?
The system is specified as Titanium Grade 5. This titanium alloy is widely used in medical and orthopedic implant applications because of its favorable strength-to-weight characteristics and biocompatibility profile.
5. How many pieces are included in the orthopedic fixation set?
The complete system contains 58 pieces, including the specified locking T-plates, shaft components, and screws.
6. Are screws included with the small locking T-plate?
Yes. The product specification identifies the system as including shaft and screws within the 58-piece set. Exact screw quantities and dimensions should be verified against the manufacturer’s component list.
7. What are locking orthopedic plates?
Locking orthopedic plates use compatible screws that engage with threaded or locking interfaces in the plate. When correctly assembled, the screw and plate form a fixed-angle construct according to the design specifications of the implant system.

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