Precision
For
Optical
Care
medical
Precision
Shaped for
Ophthalmology Optics
Diamond tooling solutions for IOL and contact lens machining, where complex freeform geometry, surface quality, and repeatable dimensional control are essential
Discuss Your ApplicationOphthalmology Optics Applications
Diamond tooling solutions for ophthalmic lenses and IOLs with exceptional precision and surface quality
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IOL
Ultra-precision machining for intraocular lens surfaces, delivering controlled curvature, smooth finishes, and consistent dimensional accuracy
- Complex Optical Profile
- High Surface Quality
- Dimensional Consistency
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Contact Lens / Ortho-K
Precision diamond tooling for contact lens surfaces, built for controlled surface complexity, precise edge profiles, and consistent optical finish
- Freeform Surface Control
- Edge & Profile Accuracy
- Smooth Optical Finish
Corresponding Tool Solutions
Precision diamond tool designed for ophthalmic lens machining
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MCD Tool for IOL
Precision single-crystal diamond tooling for ophthalmic lens machining, designed to deliver controlled geometry and exceptionally smooth optical surfaces
- Aspheric surface machining
- High form accuracy
- Step-shape surface endmilling
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Pointed MCD Turning Tool
Pointed monocrystalline diamond turning tool for fine-feature machining, edge definition, and controlled lens geometry
- Fine-feature machining
- Sharp edge & profile control
- Repeatable dimensional accuracy
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MCD Insert, Rounded Tip
Rounded MCD Inserts Compatible with ISO standards can be used in turning or milling handles in ultra precision machining
- Flank face could be Conical or Cylindrical
- Rounded tip down to 0.002mm
- Multi-purposed with turning and milling
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MCD Insert, Pointed Tip
MCD Inserts with sharped tip Compatible with ISO standards can be used in turning or milling handles in ultra precision machining
- Replacement with existing ISO inserts.
- Various tip angles
- Multi-purposed with turning and milling
Gamma Tooling Approach
From application requirement to a proven tool solution
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Material Analysis
Evaluate material, properties, and machining behavior
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Geometry Analysis
Analyze functional requirements, lens profile, and critical geometric features
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Surface Requirements
Define tool form accuracy, surface finish, and surface requirements
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Tool & Edge Design
Design & Optimize tool geometry and cutting edge for the required lens profile
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Verification
Verify tool geometry, surface quality, and repeatability against specification


