The Small Locking T Plate Right Angled Titanium 60 Pcs is a compact orthopedic fixation system designed for selected surgical procedures requiring a small locking T-plate configuration. The right-angled plate profile, multiple hole options, and included screws provide orthopedic surgical teams with a versatile selection of fixation components for different anatomical and operative requirements.
The T-shaped configuration is designed to provide a transverse plate profile combined with a shaft, making it suitable for selected fixation applications where this geometry corresponds with the anatomy and surgical approach. The right-angled design provides a defined 90-degree-style plate configuration, while the specific suitability of the implant depends on the anatomical location, fracture pattern, bone dimensions, and manufacturer’s approved indications.
A key feature of this system is the availability of 3-hole through 10-hole configurations. Different hole counts provide different plate lengths and fixation-point options, allowing the surgeon to select an appropriate configuration based on the amount of bone available for fixation and the intended surgical construct. The number of holes alone should not determine implant selection; patient anatomy, fracture characteristics, bone quality, reduction requirements, and surgical technique should also be considered.
The locking design is intended to work with compatible locking screws that engage with the plate’s locking interfaces. When properly assembled according to the manufacturer’s specifications, locking screws can establish a fixed-angle relationship between the screw and plate. This type of fixation can provide a stable plate-and-screw construct while allowing the surgeon to select an appropriate plate configuration for the clinical situation.
Manufactured from Titanium Grade 5, the system uses a titanium alloy widely recognized for orthopedic implant applications. Titanium Grade 5 provides a favorable combination of mechanical strength, relatively low density, and corrosion resistance. Titanium alloys are established materials for orthopedic implants, although actual clinical performance depends on the specific implant design, dimensions, manufacturing process, surface characteristics, and intended application.
The 60-piece system provides multiple small locking T-plate configurations together with screws in one consolidated set. A multi-component system can be useful for orthopedic trauma departments, hospitals, surgical centers, and specialty orthopedic facilities that require several fixation options available during surgical procedures. It can also assist with implant inventory organization and surgical preparation.
The small profile of the T-plate may be appropriate for selected fixation procedures involving smaller or anatomically restricted bone surfaces, depending on the specific plate dimensions and approved indications. The surgeon should evaluate the anatomical site and choose the appropriate plate configuration based on imaging, bone morphology, fracture pattern, and the desired fixation strategy.
Before implantation, each plate and screw should be inspected for visible damage, deformation, contamination, compromised threads, or other abnormalities. Particular attention should be given to the locking interfaces and screw threads, which should be protected from damage during handling and insertion. Only compatible plates, screws, and approved surgical instruments should be used together.
Correct screw selection and positioning are essential to the intended performance of a locking plate construct. The surgeon should verify screw compatibility, dimensions, available bone stock, and planned fixation before implantation. Surgical technique should follow the manufacturer’s instructions and established orthopedic fixation principles.
Cleaning and sterilization must follow the manufacturer’s validated instructions for use (IFU). Although Titanium Grade 5 is widely used for orthopedic implants, the material designation alone does not establish a universal sterilization cycle. Healthcare facilities should use validated processing procedures and the manufacturer’s specified sterilization parameters where applicable.
The Small Locking T-Plate Right-Angled system combines a compact T-shaped profile, multiple 3–10 hole configurations, Titanium Grade 5 construction, and compatible screws in a 60-piece orthopedic fixation set. It provides qualified orthopedic professionals with a versatile selection of fixation components for selected surgical applications requiring small locking plate technology.
Key Features
- Small locking T-plate design for selected orthopedic bone fixation applications.
- Right-angled configuration provides a defined angular plate profile.
- Available in 3 to 10 hole configurations for different fixation and plate-length requirements.
- Titanium Grade 5 construction provides a strong and lightweight material platform.
- Supplied with compatible screws as part of the 60-piece system.
- Locking interfaces are designed for compatible screw engagement and fixed-angle fixation.
- Multiple plate configurations support different anatomical and surgical requirements.
- Compact T-plate geometry can be suitable for selected anatomically restricted fixation sites.
- 60-piece orthopedic fixation system supports surgical preparation and implant inventory management.
- Suitable for professional use in selected orthopedic trauma and bone fixation procedures.
- Components should be inspected for integrity and compatibility before implantation.
- Cleaning and sterilization should follow the manufacturer’s validated instructions for use.
Product Specifications
| Specification | Details |
|---|---|
| Product Name | Small Locking T-Plate |
| Plate Configuration | Right-Angled |
| Plate Design | T-Plate |
| Hole Options | 3–10 Holes |
| Screws | Included |
| Total Set Quantity | 60 Pieces |
| Material | Titanium Grade 5 |
| Fixation Type | Locking Plate and Screw System |
| Primary Application | Orthopedic Bone Fixation |
| Surgical Specialty | Orthopedic Surgery / Orthopedic Trauma |
| Plate Profile | Small T-Plate |
| Intended Users | Qualified Orthopedic and Surgical Professionals |
| Component Compatibility | Use specified compatible screws and instrumentation |
| Sterilization | Follow manufacturer’s validated sterilization instructions |
| Implant Selection | Based on anatomy, fracture characteristics and surgeon assessment |
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 clinical applications depend on the implant design and manufacturer’s approved indications.
2. What does right-angled T-plate mean?
A right-angled T-plate refers to the geometry of the plate, in which the T-shaped head and shaft are arranged at a right-angle configuration. The exact dimensions and anatomical suitability should be confirmed using the manufacturer’s technical specifications.
3. What hole configurations are available?
This system is specified with 3-hole through 10-hole configurations, providing multiple plate-length and fixation-point options.
4. What material is the small locking T-plate made from?
The plate is manufactured from Titanium Grade 5, a titanium alloy commonly used in orthopedic implant applications because of its strength, relatively low density, and corrosion resistance.
5. Are screws included with the T-plate system?
Yes. The product specification states that screws are included in the 60-piece system. Exact screw quantities, sizes, and compatibility should be verified against the manufacturer’s component list.
6. How does a locking T-plate work?
A locking T-plate uses compatible screws that engage with designated locking interfaces in the plate. When correctly assembled, the screw can form a fixed-angle relationship with the plate according to the implant system’s design.
7. Why are different hole configurations available?
Different hole counts provide different plate lengths and available fixation points. This allows the surgeon to select a suitable configuration based on the patient’s anatomy, fracture characteristics, and required fixation construct.

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