Uncoated / Coated SapphireTech Precision Windows High Transparency Precision Engineering
Product Details:
Place of Origin: | China |
Brand Name: | ZMSH |
Model Number: | sapphire windows |
Payment & Shipping Terms:
Minimum Order Quantity: | 1 |
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Delivery Time: | 2-4 weeks |
Payment Terms: | T/T |
Detail Information |
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Window Shape: | Flat Circular, Flat Rectangular, Wedge, Step, Tube, And Other Special Shapes | Materials: | Optical Grade Single Crystal Sapphire |
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Aperture: | >90% | Dimension Tolerance: | +0.0/-0.2mm |
Thickness Tolerance: | ±5μm Or More Precise | Surface Quality: | Optional 80/50, 60/40, 40/20, 20/10, 10/5 S/D |
Parallelism: | 30 Arcsec | Coating Options: | Uncoated, Single Layer MgF2 AR Coating, And Other Custom Options |
High Light: | High Transparency SapphireTech Precision Windows,Engineering SapphireTech Precision Windows,Uncoated Coated SapphireTech Precision Windows |
Product Description
SapphireTech Precision Windows High Transparency Precision Engineering uncoated coated
SapphireTech Precision Windows' abstarct
apphireTech Precision Windows are advanced transparent panels engineered with meticulous precision to provide exceptional clarity and durability. These windows boast high transparency, allowing maximum light transmission and visibility while maintaining structural integrity across various environmental conditions. Crafted with precision engineering techniques, they ensure uniformity in thickness and dimensions, guaranteeing optimal performance. Their chemical resistance makes them suitable for industrial and laboratory applications, where exposure to corrosive substances is common. Versatile in sizes and shapes, they can be customized to meet specific requirements and seamlessly integrated into existing structures or equipment. Easy to maintain and compatible with different mounting systems, SapphireTech Precision Windows offer a reliable solution for diverse applications demanding superior transparency and durability.
SapphireTech Precision Windows' applications
SapphireTech Precision Windows find applications in various industries and settings due to their exceptional properties. Some common applications include:
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Research Laboratories: Used in laboratory equipment such as spectroscopes, laser systems, and optical instruments due to their high transparency and chemical resistance.
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Semiconductor Manufacturing: Employed in cleanroom environments for viewing and inspecting semiconductor wafers and electronic components due to their durability and precision engineering.
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Aerospace and Defense: Utilized in aircraft windows, cockpit displays, and surveillance systems for their ability to withstand harsh environmental conditions and maintain clarity under extreme temperatures and pressures.
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Medical Devices: Integrated into medical imaging equipment such as X-ray machines, CT scanners, and endoscopes for their optical clarity and compatibility with sterilization processes.
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Industrial Machinery: Installed in equipment used for inspection, quality control, and material processing to provide clear viewing windows while withstanding exposure to chemicals, abrasion, and high temperatures.
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Energy Sector: Used in solar panels, optical sensors, and inspection systems for renewable energy production and monitoring applications due to their high light transmission and durability.
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Marine Exploration: Employed in underwater observation systems, submersibles, and remotely operated vehicles (ROVs) for their ability to withstand water pressure and maintain optical clarity in aquatic environments.
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Automotive Industry: Integrated into vehicle headlamps, dashboard displays, and camera systems for their optical properties and resistance to environmental factors such as UV radiation and temperature fluctuations.
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Consumer Electronics: Incorporated into smartphones, tablets, and wearable devices for their scratch-resistant surfaces and high-resolution displays.
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Architecture and Construction: Used in building facades, skylights, and interior partitions to provide natural lighting, thermal insulation, and aesthetic appeal while ensuring long-term durability and maintenance-free operation.
SapphireTech Precision Windows' properties
The properties of SapphireTech Precision Windows include:
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High Transparency: These windows offer exceptional clarity, allowing for maximum light transmission and visibility of objects through the window.
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Chemical Resistance: They exhibit resistance to a wide range of chemicals, making them suitable for use in environments where exposure to corrosive substances is common.
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Durability: Constructed from high-quality materials, SapphireTech Precision Windows are highly durable and resistant to scratching, abrasion, and damage.
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Precision Engineering: Each window is crafted with meticulous precision, ensuring uniformity in thickness and dimensions for optimal performance.
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Temperature Stability: These windows maintain their structural integrity and optical clarity across a wide range of temperatures, making them suitable for use in diverse environmental conditions.
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Versatility: Available in various sizes and shapes, SapphireTech Precision Windows can be customized to meet specific application requirements.
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Easy Maintenance: Designed for hassle-free upkeep, these windows are easy to clean and maintain, ensuring long-term clarity and functionality.
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Compatibility: They are compatible with different mounting systems and sealing methods, facilitating easy integration into existing structures or equipment.
These properties make SapphireTech Precision Windows suitable for a wide range of applications across industries such as aerospace, automotive, medical, industrial, and consumer electronics.
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Our service
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Uncoated
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Diameter 1/2" (12.7 mm) 1" (25.4 mm) Diameter Tolerance +0.0 / -0.2 mm Thickness 3.0 mm 5.0 mm Thickness Tolerance ±0.3 mm Clear Aperture ≥Ø11.43 mm ≥Ø22.86 mm Parallelism ≤3 arcmin Transmitted Wavefront Errora <λ/4 Over Central Ø5 mm
≤λ/2 Over Full Clear Aperture- Surface Flatnessa λ Over Clear Aperture Surface Quality 60-40 Scratch-Dig Wavelength Range 200 nm - 4.5 μm (Uncoated) Substrate Sapphireb Transmission Data
Raw Data
Sapphire Windows, AR Coated: 1.65 µm - 3.0 µm
Diameter | 1/2" (12.7 mm) | 1" (25.4 mm) |
Diameter Tolerance | +0.0 / -0.2 mm | |
Thickness | 3.0 mm | 5.0 mm |
Thickness Tolerance | ±0.3 mm | |
Clear Aperture | ≥Ø11.43 mm | ≥Ø22.86 mm |
Parallelism | ≤3 arcmin | |
Surface Flatnessa | ≤λ/2 Over Central Ø5 mm ≤λ Over Full Clear Aperture |
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Surface Quality | 60-40 Scratch-Dig | |
AR Coating Range | 1.65 - 3 µm (-D Coating) | |
Reflectance over AR Coating Rangeb | Ravg < 1.0% per Surface; Both Sides are Coated | |
Reflectance Data | Raw Data |
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Substrate | Sapphirec | |
Transmission Data | Raw Data |
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Damage Threshold | 2.00 J/cm2 (2050 nm, 62.5 Hz, 10 ns, Ø339 µm) |
Sapphire Windows, AR Coated: 2.0 - 5.0 µm
Diameter | 1/2" (12.7 mm) | 1" (25.4 mm) |
Diameter Tolerance | +0.0 / -0.2 mm | |
Thickness | 3.0 mm | 5.0 mm |
Thickness Tolerance | ±0.3 mm | |
Clear Aperture | >Ø11.43 mm | >Ø22.86 mm |
Parallelism | <3 arcmin | |
Transmitted Wavefront Errora | ≤λ/2 Over Central Ø5 mm ≤λ Over Full Clear Aperture |
≤λ/2 Over Central Ø10 mm ≤λ Over Full Clear Aperture |
Surface Quality | 60-40 Scratch-Dig | |
AR Coating Range | 2.0 - 5.0 µm (-E1 Coating) | |
Reflectance over AR Coating Rangeb | Ravg < 1.50%, Rabs < 3.0% (per Surface, 2.0 - 5.0 µm) Ravg < 1.75% (per Surface, 2.0 - 4.0 µm) Both Sides are Coated |
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Transmission over AR Coating Rangeb | Tavg > 92% (2.0 - 5.0 µm) Tavg > 94%, Tabs > 92% (2.0 - 4.0 µm) |
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Reflectance Data | Raw Data |
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Substrate | Sapphirec | |
Transmission Data | Raw Data |
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Damage Threshold | 200 J/cm2 (2940 nm, 200 µs, 2 Hz, Ø0.102 mm) |