Surgical Instrument Guide Rail

Medical-Grade Fine Blanking Bracket

Medical Fine Blanking Parts for Surgical Devices - Medical-Grade Fine Blanking Bracket
  • Medical Fine Blanking Parts for Surgical Devices - Medical-Grade Fine Blanking Bracket

Medical Fine Blanking Parts for Surgical Devices

Surgical Instrument Guide Rail

Boomster is a trusted OEM partner for fine blanking metal parts designed for the medical and surgical device industries. This high-precision component—commonly used as a guide rail or support bracket—is made using advanced fine blanking and progressive stamping processes, ensuring tight tolerances, burr-free edges, and excellent repeatability.

Why Choose Boomster?

  • Flexible Customization - Hole pattern, embossing, thickness, and materials tailored to your needs
  • End-to-End Production - From mold fabrication to progressive die manufacturing
  • Strict Quality Assurance - Full in-process inspection for part consistency and traceability under ISO 9001 certified
  • Rapid Prototyping & Mass Production - Agile turnaround for product development and high-volume orders
  • Taiwan-Based Manufacturing Excellence
  • Combining quality, speed, and competitive cost advantages from Taiwan.

Key Features & Benefits:

  • Fine Blanking Accuracy - Achieves ultra-precise edge finish and consistent profile suitable for sliding mechanisms in surgical devices.
  • Medical-Grade Stainless Steel or Alloy Options - Available in SS304, SS316, and biocompatible metals for rust resistance and hygiene compliance.
  • Custom Design & Tooling - Tailored to your CAD drawings and tolerances.
  • Mirror Finish or Electropolishing Optional - Surface treatments enhance corrosion resistance and cleanliness for clinical environments.
  • Integration Ready - Pre-punched slots, holes, or locking features for seamless integration with OEM assemblies.

Applications

  • Surgical equipment rails and tracks
  • Sliding arms for monitors or surgical tools
  • Housing guides for imaging systems
  • Medical trolley and device sliding components
  • Assembly frames in sterilizable instruments

Work with Boomster to develop fine blanking parts that meet the precision, hygiene, and durability needs of the world’s most demanding medical technologies.


Reliable OEM Parts Solutions

Boomster brings 37+ years of one-stop OEM expertise in metal, plastic parts, CNC, forging, casting, molding, wiring, and assembly with ISO-certified quality.

One-stop OEM service

Complete OEM services from material sourcing, fabrication, custom finish, assembly, package, and global delivery.

ISO-Certified OEM Solutions

Reliable Taiwan OEM for metal, plastic, and electronic parts with ISO 9001 certified quality assurance.

Quality You Can Trust

ISO 9001 certified, Boomster delivers strict quality control with inspection reports traceable for 3 years or longer.

Industries We Serve

Supplying high quality to diverse sectors, from electronics and medical to industrial equipment, ensuring precision and reliability for your specialized needs.

Medical Fine Blanking Parts for Surgical Devices | Boomster

Boomster specializes in precision Medical Fine Blanking Parts for Surgical Devices with CNC machined components designed for demanding applications where accuracy and reliability are critical. Our machining capabilities cover diameters from 0.5mm to 65mm and lengths up to 1,000mm, delivering tolerances as tight as ±0.005mm in diameter and ±0.01mm in length.

Each CNC machined part is produced using advanced equipment and controlled processes, including turning, milling, boring, drilling, threading, slotting, and polishing. We work with a broad range of metals and plastics to match your functional requirements, from lightweight aerospace parts to robust automotive and medical components.

To support your quality and compliance needs, Boomster provides full inspection reports, FAI, in-process checks, and documentation such as PPAP and SGS upon request. Whether you require low-volume prototypes or stable mass production, our CNC machined components help you reduce risk, shorten development cycles, and maintain consistent performance in end-use applications.