CNC Machined Titanium Miniature Locking Clamp for Medical Endoscope Modules
This product page presents a custom CNC machined titanium miniature locking clamp used in medical endoscope modules, diagnostic assemblies and compact positioning mechanisms. Titanium is selected when high strength, low weight and corrosion resistance are needed in a very small component.

Product Overview
The clamp includes a split bore, threaded locking holes, controlled chamfers and a compact body that can hold a shaft, tube or optical subassembly. Dimensions, slot width, bore size and thread details are manufactured according to customer drawings.
Machining Notes
Machining titanium at miniature scale requires rigid fixturing, conservative cutting parameters, sharp tools and careful heat control. Thread milling or tapping is selected based on size and tolerance requirements.

Quality Control
Inspection focuses on bore diameter, split slot width, thread quality, clamp parallelism, edge condition and screw fit. Bore gauges, thread gauges, optical checks and CMM inspection can be used.

Packaging and Delivery
Finished clamps and screws are separated by part number, protected in foam trays or clean bags, and labeled for incoming inspection and assembly.

FAQ
Is this a standard clamp?
No. It is a representative custom CNC machined titanium clamp made according to customer drawings.
Which titanium grade is typical?
Ti-6Al-4V is common, but the final grade should follow the drawing and application requirements.
Can the bore and slot be customized?
Yes. Bore diameter, split slot width, screw size and outer profile can be machined to specification.
What inspection is available?
Bore size, threads, slot width, flatness, edge condition and screw fit can be inspected with reports.
Can screws be supplied together?
Related screws or inserts can be packed together when specified by the customer.
What is needed for an RFQ?
CAD, 2D drawing, material grade, bore size, thread details, quantity, tolerances, finish and packaging instructions.
Email: tanghangyun@oemach.com