 
            | Marchio: | Crystro | 
| Numero di modello: | 3inch SGGG/GGG | 
The Single Crystal Substrates product offers high-quality materials with a lattice constant of 12.383A, making it ideal for various applications in the field of epitaxial growth. With a maximum size of 4-inch diameter, these substrates provide ample surface area for experimentation and research purposes.
One of the key features of the Single Crystal Substrates is the customizable angle direction, allowing researchers and scientists to tailor the substrate to their specific experimental needs. This flexibility is crucial for ensuring accurate and reliable results in the epitaxial growth process.
For added convenience and assurance, each Single Crystal Substrate comes with a comprehensive test report, providing detailed information on the quality and characteristics of the material. This test report is essential for researchers looking to validate their findings and ensure the reproducibility of their experiments.
The primary application of the Single Crystal Substrates is in the epitaxial growth of YIG and BIG films. These materials are essential for various electronic and magnetic applications, making the Single Crystal Substrates a valuable tool for researchers in these fields.
In addition to its standard 4-inch diameter size, the Single Crystal Substrates are also available in a 3-inch diameter option, providing researchers with more flexibility in their experimental setups. This 3-inch diameter variant is particularly suitable for experiments requiring smaller sample sizes or specific spatial constraints.
Furthermore, the Single Crystal Substrates are highly suitable for the epitaxial growth of YSGG films, thanks to their high lattice constant of 12.383A. This characteristic makes them particularly well-suited for applications that require precise crystallographic alignment and structural integrity.
| Maximum Size | 4 Inch Diameter | 
| Lattice Constant | 12.383A | 
| Dielectric Constant | 30 | 
| Doping Type | No-doped | 
| Dia | Up To 3'' | 
| Angle Direction | Customized | 
| Mineralogical | Garnet | 
| Length Tolerance | ±0.2mm | 
| Type | Cubic/Round | 
| Polish | EPI Polished | 
Crystro's 3inch SGGG/GGG Single Crystal Substrates, originating from China, are a top-tier product suitable for a wide range of applications due to their exceptional quality and unique attributes.
With a provided test report, customers can trust the reliability and performance of these substrates. The 0.5mm thickness and precise length tolerance of ±0.2mm ensure consistency and accuracy in various processes.
The chemical formula of Substituted GGG and the no-doped doping type make these substrates stand out in terms of purity and stability. The high lattice constant of the crystals further enhances their suitability for demanding applications.
These single crystal substrates find their ideal application occasions in advanced fields such as semiconductor technology, optics, and electronics. The high lattice constant of the crystals makes them particularly suitable for applications requiring precise crystalline structures and exceptional performance.
Scenarios where these substrates excel include thin film deposition, epitaxial growth, and crystal growth experiments. Their high lattice constant ensures superior crystal quality and growth stability, making them a preferred choice for research institutions and high-tech industries.
Whether used in academic research or industrial production, Crystro's Single Crystal Substrates offer unmatched quality, reliability, and performance. Their high lattice constant sets them apart in the market, making them a valuable asset for any application requiring top-notch crystal substrates.
Customize your Single Crystal Substrates from Crystro to meet your specific needs:
- Brand Name: Crystro
- Model Number: 3inch SGGG/GGG
- Place of Origin: China
- Thermal Conductivity: 7.4W M-1k-1
- Dia: Up To 3''
- Angle Direction: Customized
- Maximum Size: 4 Inch Diameter
- Lattice Constant: 12.383A
Product Attributes: 3inch diameter, SGGG, Ra≤1nm
 
            | Marchio: | Crystro | 
| Numero di modello: | 3inch SGGG/GGG | 
The Single Crystal Substrates product offers high-quality materials with a lattice constant of 12.383A, making it ideal for various applications in the field of epitaxial growth. With a maximum size of 4-inch diameter, these substrates provide ample surface area for experimentation and research purposes.
One of the key features of the Single Crystal Substrates is the customizable angle direction, allowing researchers and scientists to tailor the substrate to their specific experimental needs. This flexibility is crucial for ensuring accurate and reliable results in the epitaxial growth process.
For added convenience and assurance, each Single Crystal Substrate comes with a comprehensive test report, providing detailed information on the quality and characteristics of the material. This test report is essential for researchers looking to validate their findings and ensure the reproducibility of their experiments.
The primary application of the Single Crystal Substrates is in the epitaxial growth of YIG and BIG films. These materials are essential for various electronic and magnetic applications, making the Single Crystal Substrates a valuable tool for researchers in these fields.
In addition to its standard 4-inch diameter size, the Single Crystal Substrates are also available in a 3-inch diameter option, providing researchers with more flexibility in their experimental setups. This 3-inch diameter variant is particularly suitable for experiments requiring smaller sample sizes or specific spatial constraints.
Furthermore, the Single Crystal Substrates are highly suitable for the epitaxial growth of YSGG films, thanks to their high lattice constant of 12.383A. This characteristic makes them particularly well-suited for applications that require precise crystallographic alignment and structural integrity.
| Maximum Size | 4 Inch Diameter | 
| Lattice Constant | 12.383A | 
| Dielectric Constant | 30 | 
| Doping Type | No-doped | 
| Dia | Up To 3'' | 
| Angle Direction | Customized | 
| Mineralogical | Garnet | 
| Length Tolerance | ±0.2mm | 
| Type | Cubic/Round | 
| Polish | EPI Polished | 
Crystro's 3inch SGGG/GGG Single Crystal Substrates, originating from China, are a top-tier product suitable for a wide range of applications due to their exceptional quality and unique attributes.
With a provided test report, customers can trust the reliability and performance of these substrates. The 0.5mm thickness and precise length tolerance of ±0.2mm ensure consistency and accuracy in various processes.
The chemical formula of Substituted GGG and the no-doped doping type make these substrates stand out in terms of purity and stability. The high lattice constant of the crystals further enhances their suitability for demanding applications.
These single crystal substrates find their ideal application occasions in advanced fields such as semiconductor technology, optics, and electronics. The high lattice constant of the crystals makes them particularly suitable for applications requiring precise crystalline structures and exceptional performance.
Scenarios where these substrates excel include thin film deposition, epitaxial growth, and crystal growth experiments. Their high lattice constant ensures superior crystal quality and growth stability, making them a preferred choice for research institutions and high-tech industries.
Whether used in academic research or industrial production, Crystro's Single Crystal Substrates offer unmatched quality, reliability, and performance. Their high lattice constant sets them apart in the market, making them a valuable asset for any application requiring top-notch crystal substrates.
Customize your Single Crystal Substrates from Crystro to meet your specific needs:
- Brand Name: Crystro
- Model Number: 3inch SGGG/GGG
- Place of Origin: China
- Thermal Conductivity: 7.4W M-1k-1
- Dia: Up To 3''
- Angle Direction: Customized
- Maximum Size: 4 Inch Diameter
- Lattice Constant: 12.383A
Product Attributes: 3inch diameter, SGGG, Ra≤1nm