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Home > Products > Sapphire Optical Windows > Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃

Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃

Product Details

Place of Origin: CHINA

Brand Name: ZMSH

Certification: rohs

Model Number: Ruby optical window

Payment & Shipping Terms

Price: by case

Payment Terms: T/T

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Highlight:
Material::
Al2O3 Single Crystal
Industry::
Semiconductor Wafer, Optical Glass Wafer
Vision Light Transmittance::
85%
Suraface::
Polished
Coating::
Vision Light Transmittance: 85%
Method::
KY Or Cz
Material::
Al2O3 Single Crystal
Industry::
Semiconductor Wafer, Optical Glass Wafer
Vision Light Transmittance::
85%
Suraface::
Polished
Coating::
Vision Light Transmittance: 85%
Method::
KY Or Cz
Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃

Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃ 0

Custom Ruby optical window

 
 

Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃

 


 

Ruby optical window is a high performance optical component made of artificial ruby (Al₂O₃), with excellent optical, mechanical and chemical properties. Ruby's high hardness, high melting point and excellent light transmission make it ideal for extreme environments and is widely used in laser systems, spectral analysis, industrial sensing and aerospace.

 

 


 

Ruby optical window features

Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃ 1

1. High light transmission

- Rubies have excellent light transmission properties in the visible to near-infrared band (400 nm-5.5 µm), making them suitable for a variety of optical applications.

- The low absorptivity and high refractive index (1.76 @ 600 nm) make it excellent in laser systems.

 

 

2. High hardness and wear resistance

- Mohs hardness of up to 9, second only to diamond, is resistant to scratches and wear, suitable for high-wear environments.

 

 

3. Excellent high temperature resistance

- With a melting point of up to 2050°C, it can work stably in high temperature environments and is suitable for high temperature lasers and industrial heating equipment.

 

 

4. Chemical stability

- Strong corrosion resistance to acids, alkalis and organic solvents, suitable for harsh chemical environments.

 

 

5. High mechanical strength

- High compressive and bending strength, able to withstand high pressure and shock, suitable for high pressure Windows and protection applications.

 

 


 

Ruby optical window Reference Table

 

With its high light transmission, high hardness, high temperature resistance and chemical stability, Ruby optical Windows excel in laser technology, spectral analysis, industrial sensing, aerospace, semiconductor manufacturing and medical devices. Its superior performance is highly suited to the demands of extreme environments and is a key component of high-performance optical systems.

 

 

Chemical Formula Ti3+:Al2O3
Crystal Structure Hexagonal
Lattice Constants a=4.758, c=12.991
Density 3.98 g/cm3
Melting Point 2040℃
Mohs Hardness 9
Thermal Expansion 8.4 x 10-6/℃
Thermal Conductivity 52 W/m/K
Specific Heat 0.42 J/g/K
Laser Action 4-Level Vibronic
Fluorescence Lifetime 3.2μs at 300K
Tuning Range 660nm ~ 1050nm
Absorption Range 400nm ~ 600nm
Emission Peak 795 nm
Absorption Peak 488 nm
Refractive Index 1.76 at 800nm
Peak Cross Section 3.4 x 10-19cm2

 

 


 

Ruby optical window application

 

1. Laser technology

Application scenario: Output window and mirror protection window of high power laser.

Performance correspondence: Ruby's high light transmittance and high temperature resistance ensure laser transmission efficiency while tolerating high energy density.

Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃ 2

 

2. Spectral analysis

Application scenario: Window material for infrared spectrometer and Raman spectrometer.

Performance correspondence: The high transmittance of ruby in a wide band ensures accurate acquisition of spectral signals.

 

 

3. Industrial sensing and detection

Application scenario: Protection window of high temperature sensor and pressure sensor.

Performance: High hardness and high temperature resistance make it work stably in high temperature and high pressure environment.

 

 

4. Aerospace

Application scenarios: spacecraft window, missile fairing.

Performance: High mechanical strength and heat resistance make it able to withstand high temperatures and shocks during high-speed flight.

 

 

5. Semiconductor manufacturing

Application scenario: Observation window of plasma etching equipment.

Performance correspondence: Chemical stability and high temperature resistance make it stable in corrosive gases and high temperature plasma environments.

 

 

6. Medical equipment

Application scenario: Window element of laser surgical equipment.

Performance correspondence: High light transmittance and biocompatibility ensure high efficiency and safety of the equipment.

 

 


 

ZMSH Ruby optical window display

 

ZMSH focuses on the professional custom production and processing of ruby materials, and provides high-precision manufacturing services for ruby rods, ruby tubes, ruby Windows and various custom parts.

 

 

Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃ 3Ruby optical window single crystal Al₂O₃ for high temperature sensor window melting point 2050℃ 4
 

 


 

Q&A​

 

1. Q: What is a ruby optical window used for?
    A: A ruby optical window is primarily used in high-performance applications such as laser systems, spectroscopy, industrial sensors, and aerospace. Its high transparency, hardness, and resistance to extreme temperatures make it ideal for environments requiring durability and precision.

 

 

2. Q: Why is ruby used in optical windows?
    A: Ruby is used in optical windows because of its exceptional properties, including high transparency in visible to near-infrared light, extreme hardness (Mohs 9), and resistance to high temperatures and chemical corrosion. These features make it suitable for demanding applications like laser technology and aerospace.

 


 
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