Thermal expansion | E7.8x10-6 /K <111> |
Conduction type | N |
Density | 4.56g/cm3 |
crystal structure | Cubic Crystal System |
Available surface area | 90% |
Refractive index | 1.82 |
Lattice constant | 12.01Å |
Melt point | 1970°C |
Brand Name | ZMSH |
Model Number | Ce+ doped YAG |
Place of Origin | China |
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Product Specification
Thermal expansion | E7.8x10-6 /K <111> | Conduction type | N |
Density | 4.56g/cm3 | crystal structure | Cubic Crystal System |
Available surface area | 90% | Refractive index | 1.82 |
Lattice constant | 12.01Å | Melt point | 1970°C |
Brand Name | ZMSH | Model Number | Ce+ doped YAG |
Place of Origin | China | ||
High Light | Ce+ Doped YAG Crystal ,Detector YAG Crystal ,Ce+ Doped YAG Synthetic Gem Stone |
Ce:YAG single crystal is renowned for its outstanding optical performance and stability. It efficiently converts the energy of incident particles into light signals, boasting a high light yield (20000 photons/MeV) and a rapid light decay time (70ns), making it excel in particle detection.
Furthermore, Ce:YAG single crystal exhibits exceptional thermomechanical properties, enabling it to function in extreme environments. With a peak light emission wavelength of 540nm, it perfectly matches the receiving wavelengths of traditional photomultiplier tubes (PMT) and silicon photodiodes (PD).
Ce:YAG single crystals find extensive applications in electron microscopy, beta and X-ray counting, electron and X-ray imaging screens, among other fields. Its exceptional performance and versatility make it the ideal choice for particle detection and imaging applications.
Ce:YAG single crystal provides a reliable, high-performance scintillation material solution for your scientific research and engineering needs.
Parameter | Value |
---|---|
Melt point | 1970°C |
Available surface area | 90% |
Crystal structure | Cubic Crystal System |
Thermal expansion (C-1) | 8.5*10-6 |
Density | 4.56g/cm3 |
Conduction type | N |
Lattice constant | 12.01Å |
Refractive index | 1.82 |
Thermal conductivity (w/m/k) | 14W/m/K, 20°C 10.5W/m/K, 100°C |
Thermal expansion | E7.8x10-6 /K <111> |
Synthetic Gem Stone is a premium product from ZMSH that features Ce+ doped YAG from China with N conduction type. It has an excellent thermal conductivity of 14W/m/K at 20°C and 10.5W/m/K at 100°C with an impressive melt point at 1970°C. It offers a single crystal purity of 99.99% with thermal expansion of 8.5*10-6. It is perfect for applications such as flamed granite stone, cultured stone brick, and colorful quartz stone.
We provide technical support and services for Synthetic Gem Stone products. Our experienced customer service team can provide you with help and advice on product selection, installation, maintenance and repair. We have a range of online resources, including product manuals, technical documents, online tutorials and FAQs, so you can get up and running quickly. If you need more help, our engineers are available to answer your questions by phone or email.
Synthetic gem stones are packaged and shipped with care in order to minimize any damage during transit. The packages are made of strong cardboard and are sealed with bubble wrap inside for extra protection. All packages are shipped via a trusted shipping service and are typically delivered within 5-7 business days.
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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