Payment Terms | T/T |
Supply Ability | By case |
Delivery Time | 2-4 months |
Packaging Details | custom cartons |
Processing Method | Ion sputtering material removal under vacuum |
Processing Type | Non-contact surface figuring & polishing |
Available Materials | Quartz, microcrystalline glass, K9, sapphire, YAG, silicon carbide, single-crystal silicon carbide, silicon, germanium, aluminum, stainless steel, titanium alloy, etc. |
Max Workpiece Size | Φ4000 mm |
Motion Axes | 3-axis / 5-axis |
Removal Stability | ≥95% |
Brand Name | ZMSH |
Place of Origin | China |
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Product Specification
Payment Terms | T/T | Supply Ability | By case |
Delivery Time | 2-4 months | Packaging Details | custom cartons |
Processing Method | Ion sputtering material removal under vacuum | Processing Type | Non-contact surface figuring & polishing |
Available Materials | Quartz, microcrystalline glass, K9, sapphire, YAG, silicon carbide, single-crystal silicon carbide, silicon, germanium, aluminum, stainless steel, titanium alloy, etc. | Max Workpiece Size | Φ4000 mm |
Motion Axes | 3-axis / 5-axis | Removal Stability | ≥95% |
Brand Name | ZMSH | Place of Origin | China |
High Light | SiC sapphire ion beam polisher ,ion beam polishing machine for semiconductors ,scientific lab equipment with ion beam |
Ion Beam Polishing Machine
Atomic-Level Precision · Non-Contact Processing · Ultra-Smooth Surfaces
Product Overview of Ion Beam Polishing Machine
The CNC Ion Beam Figuring/Polishing Machine operates on the principle of ion sputtering. Under vacuum conditions, the ion source generates a plasma beam, which is accelerated into an ion beam that bombards the workpiece surface for atomic-level material removal, enabling ultra-precise fabrication of optical components.
This technology offers non-contact processing, free from mechanical stress or subsurface damage, and is ideal for high-precision optics in astronomy, aerospace, semiconductors, and scientific research.
Non-contact processing – Capable of handling all surface shapes
Stable removal rate – Sub-nanometer figure correction accuracy
No subsurface damage – Preserves optical integrity
High consistency – Minimal fluctuation across materials of varying hardness
Low/Medium frequency correction – No mid-high frequency error generation
Low maintenance cost – Long-term continuous operation with minimal downtime
Available Surfaces:
Simple Optical Components: Plane, sphere, prism
Complex Optical Components: Symmetric/asymmetric asphere, off-axis asphere, cylindrical surface
Special Optical Components: Ultra-thin optics, slat optics, hemispherical optics, conformal optics, phase plates, freeform surfaces, other custom shapes
Available Materials:
Common optical glass: Quartz, Microcrystalline, K9, etc.
Infrared optics: Silicon, Germanium, etc.
Metals: Aluminum, Stainless Steel, Titanium Alloy, etc.
Crystal materials: YAG, Single-crystal Silicon Carbide, etc.
Other hard/brittle materials: Silicon Carbide, etc.
Surface Quality / Accuracy:
PV < 10 nm
RMS ≤ 0.5 nm
Atomic-level removal precision – Enables ultra-smooth surfaces for demanding optical systems
Versatile shape compatibility – From flat optics to complex freeforms
Broad material adaptability – From precision crystals to hard ceramics and metals
Large aperture capability – Processes optics up to Φ4000 mm
Extended stable operation – Runs 3–5 weeks without vacuum chamber maintenance
IBF350 / IBF750 / IBF1000 / IBF1600 / IBF2000 / IBF4000
Motion Axes: 3-axis / 5-axis
Max Workpiece Size: up to Φ4000 mm
Item | Specification |
---|---|
Processing Method | Ion sputtering material removal under vacuum |
Processing Type | Non-contact surface figuring & polishing |
Available Surfaces | Plane, sphere, prism, asphere, off-axis asphere, cylindrical surface, freeform surface |
Available Materials | Quartz, microcrystalline glass, K9, sapphire, YAG, silicon carbide, single-crystal silicon carbide, silicon, germanium, aluminum, stainless steel, titanium alloy, etc. |
Max Workpiece Size | Φ4000 mm |
Motion Axes | 3-axis / 5-axis |
Removal Stability | ≥95% |
Surface Accuracy | PV < 10 nm; RMS ≤ 0.5 nm (typical RMS < 1 nm; PV < 15 nm) |
Processing Capability | Corrects low–medium frequency errors without introducing mid-high frequency errors |
Continuous Operation | 3–5 weeks without vacuum chamber maintenance |
Maintenance Cost | Low |
Typical Models | IBF350 / IBF750 / IBF1000 / IBF1600 / IBF2000 / IBF4000 |
Case 1 – Standard Flat Mirror
Workpiece: D630 mm Quartz flat
Case 2 – X-ray Reflective Mirror
Workpiece: 150 × 30 mm Silicon flat
Result: PV 8.3 nm; RMS 0.379 nm; Slope 0.13 µrad
Case 3 – Off-Axis Mirror
Workpiece: D326 mm Off-axis ground mirror
Result: PV 35.9 nm; RMS 3.9 nm
Astronomical optics – Large telescope primary/secondary mirrors
Space optics – Satellite remote sensing, deep-space imaging
High-power laser systems – ICF optics, beam shaping
Semiconductor optics – Lithography lenses & mirrors
Scientific instrumentation – X-ray/neutron mirrors, metrology standard components
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About Us
Company Details
Business Type:
Manufacturer,Agent,Importer,Exporter,Trading Company
Year Established:
2013
Total Annual:
1000000-1500000
Ecer Certification:
Verified Supplier
SHANGHAI FAMOUS TRADE CO.,LTD. locates in the city of Shanghai, Which is the best city of China, and our factory is founded in Wuxi city in 2014. We specialize in processing a varity of materials into wafers, substrates and custiomized optical glass parts.components widely used in electronics, op... SHANGHAI FAMOUS TRADE CO.,LTD. locates in the city of Shanghai, Which is the best city of China, and our factory is founded in Wuxi city in 2014. We specialize in processing a varity of materials into wafers, substrates and custiomized optical glass parts.components widely used in electronics, op...
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