100% Original Fused Silica Slides - Glazing Alumina Laser Ceramic Cavity Reflector – LZY
100% Original Fused Silica Slides - Glazing Alumina Laser Ceramic Cavity Reflector – LZY Detail:
The ceramic reflector green body is made of 99% Al2O3, and the green body is fired at an appropriate temperature to retain proper porosity and proper green strength. The surface of the reflector is fully coated with high-reflectivity ceramic glaze. Compared with the gold-plated reflector, the biggest advantage lies in its extremely long service life and diffuse reflection.
Main features:
1. Dimensional tolerance in height direction can achieve tolerance ≤1.0mm, other dimensional tolerances can reach ≤0.5mm
2. The surface is fully glazed to achieve maximum reflectivity and easy to clean
3. The reflectivity reaches 97% at the wavelength of 600-1000nm
4. The reflectivity exceeds 95% in the wavelength range of 380-1100nm
5. The body has proper porous and high strength characteristics
Applications
Single Rod Single Lamp
Nd YAG Laser Welding Machine
Medical Equipment or Skin Care
Pump Chambers
Solid State and CO2 Laser Systems
Laser Reflectors
Products shown
Product detail pictures:
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We pursue the administration tenet of "Quality is exceptional, Assistance is supreme, Reputation is first", and will sincerely create and share success with all clients for 100% Original Fused Silica Slides - Glazing Alumina Laser Ceramic Cavity Reflector – LZY , The product will supply to all over the world, such as: Swansea, Guyana, Kuala Lumpur, If you give us a list of products you are interested in, along with makes and models, we can send you quotations. Please email us directly. Our goal is to establish long-term and mutually profitable business relationships with domestic and overseas clients. We look forward to receiving your reply soon.
By Monica from Madras - 2018.11.28 16:25
This manufacturer can keep improving and perfecting products and service, it is in line with the rules of market competition, a competitive company.
By Deirdre from Belgium - 2018.09.23 17:37