Trauma Surgical Instruments OEM
The Trauma Surgical Instruments OEM Manufacturer!
Founded in 2001, who focus on R&D, manufacturing, sales and services in orthopedics& arthroplasty field, main products range from trauma, spine implants & hip and knee replacement to related surgical instruments.
Why choose us
Rich Experience
Who offers concept development, product design, contract engineering, prototyping, testing, and contract manufacturing for medical devices with rich experience.
Production Equipment
60 CNC turning centres, 30 CNC milling centres as well as laser systems for marking and welding of assembly groups and special machines.
OEM/ODM
We Offer complete solutions and scalable services from concept to commercialization, eg: concept development, product design, contract engineering, prototyping, testing, and contract manufacturing for medical devices etc like OEM/ODM mode.
Production Market
With ISO/CE certified quality, the company's sales network is throughout the country and has exported to different countries and regions in Asia, South America, Middle East, north America.
|
Instrument |
Notable Feature |
|
Osteotome |
Hardened blade edge, ergonomic handle |
|
Bone Holding Clamp |
Ratchet locking mechanism, serrated jaws |
|
Orthopedic Drill |
High-speed, autoclavable handpiece |
|
Intramedullary Nail Set |
Cannulated design, radiolucent aiming jig |
|
Reamer |
Flexible shaft for curved bone canals |
Advantages of Trauma Surgical Instruments
High-quality material and durability
Another very important aspect of the material is performance; it relates to instruments. The best products would be of high-grade stainless steel or even titanium, since they are stronger, resistant to corrosion, and also biocompatible, which means that instruments are reliable and safe for extended periods.
Precision & Ergonomic Design
There is the requirement for many dexterities in trauma surgeries. Ergonomic instruments are designed to provide better grip with optimal control, thus preventing complications due to hand fatigue during long procedures. Fine-tipped smooth-edged instruments handle delicate fractures more precisely.
Versatility and Application
There are some trauma instruments that have specific types of fractures for which they are designed, while others are more multi-purpose. The surgeons are encouraged to use the instruments that can be used in more than one procedure to enjoy the benefits of efficiency and cost-effectiveness.
Conformity to Medical Standards
These need to be the same as their international quality standard such as ISO 13485, and must also have assurance with CE marks as they would be required consistency in safety, reliability, and performance.
Types of Trauma Implants

Locking plates: Internal fixators for stability and bone healing
Locking compression plates
Distal femur locking plates
Reconstruction locking plates
Anatomical plates
Philos plates with locking system

Non-locking plates: Internal fixators for stability and bone healing
Dynamic compression plates
Olecranon plates
DHS plates
L buttress Plates

Bone screws: Used with or without plates to immobilize fractured bones and aid healing
Cortical screws
Cancellous screws
Malleolar screws

Interlocking nail systems: Used in the repair of traumatic fractures in long bones
Halifax Nail
Halder Humeral Nail
Femoral nail
Tibial nail
Humeral nail
Proximal femoral nail

External fixation: Used to immobilize bones and ensure their proper healing
Rods
Screws
Clamps (joint, universal, mini)
Common materials used in the components of trauma instrument sets
Stainless Steel
Stainless steel is one of the most common materials used in surgical instruments, including those found in trauma instrument sets. It is highly resistant to corrosion, which is critical in sterile environments, and can withstand repeated sterilization cycles without rusting or corroding. Stainless steel is also durable and can withstand repeated use without becoming dull or losing its sharpness.
Titanium
Titanium is a lightweight, strong, and corrosion-resistant material commonly used in orthopedic and neurological instruments. It is biocompatible, meaning it is non-toxic and does not cause an adverse reaction in the body. Its strength and durability make it ideal for use in orthopedic instruments such as bone plates and screws.
Tungsten Carbide
Tungsten carbide is a hard, wear-resistant material commonly used in surgical scissors and other cutting instruments. It is highly durable and can withstand repeated use without becoming dull or losing its sharpness. Tungsten carbide is also resistant to corrosion and is easy to clean and sterilize.
Ceramic
Ceramic is a non-metallic, biocompatible material that is becoming increasingly popular in the manufacturing of surgical instruments. It is highly durable and resistant to corrosion, making it an ideal material for use in implants and other long-term medical devices. Ceramic instruments are also lightweight, which can reduce the strain on medical professionals during long procedures.
Carbon Fiber
Carbon fiber is a strong and lightweight material that is commonly used in orthopedic and cardiovascular instruments. It is biocompatible, corrosion-resistant, and can withstand repeated sterilization cycles. Carbon fiber instruments are also less likely to interfere with imaging technology, making them ideal for use in procedures such as MRI and CT scans.
Packaging & Delivery
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Packaging |
Inner: Non-sterile plastic bags Small packing PE/PET, Big packing PVC. External: Standard carton |
|
Lead Time |
7-14 days |
|
Delivery |
≤30kg, Door to door (DHL/TNT/UPS/FEDEX/EMS, etc.) >30 kg, Airport to Airport By air or by sea |
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