Quartz Glass Slides Substrate (Purity: >99.99%)

High Purity Substrate

Product: Quartz Glass Slides Substrate (Purity: >99.99%)

Quality Control: Each lot of NANOSHEL Quartz Glass Slides Substrate was tested successfully.


Graph

Product Name Quartz Glass Slide Substrate
Stock No NS6130-10-1101
Purity > 99.99 % Confirm
Density 2.20 g/cm³ Confirm
Abbe Constant 67.6 Confirm
Refractive Index (nd) at 588nm 1.4586 Confirm
Maximum Size <Φ200mm Confirm
Transmission Range 0.17~2.10um Confirm
OH Content 1200 ppm Confirm
Fluorescence (ex 254nm) Virtually Free Confirm
Impurity Content 5 ppm Confirm
Birefringence Constant 2-4 nm/cm Confirm
Melting Method Synthetic CVD Confirm
Hardness 5.5 – 6.5 Mohs’ Scale 570 KHN 100 Confirm
Design Tensile Strength 4.8×107 Pa (N/mm2) (7000 psi) Confirm
Design Compressive Strength Greater than 1.1×109 Pa (160,000 psi) Confirm
Bulk Modulus 3.7×1010 Pa (5.3×106 psi) Confirm
Rigidity Modulus 3.1×1010 Pa (4.5×106 psi) Confirm
Young’s Modulus 7.2×10-10 Pa (10.5×106 psi) Confirm
Poisson’s Ratio 0.17 Confirm
Coefficient of Thermal Expansion 5.5×10-7cm/cm.°C (20°C-320°C) Confirm
Thermal Conductivity 1.4 W/m.°C Confirm
Specific Heat 670 J/kg.°C Confirm
Softening Point 1683°C Confirm
Annealing Point 1215°C Confirm
Strain Point 1120°C Confirm
Electrical Receptivity 7×107 ohm.cm (350°C) Confirm
Velocity of Sound-Shear Wave 3.75×103 m/s Confirm
Velocity of Sound/Compression Wave 5.90×103 m/s Confirm
Sonic Attenuation Less than 11 db/m MHz Confirm
Permeability Constants 700°C (cm3mm/cm2 sec cm of Hg) Confirm
Helium 210×10-10 Confirm
Hydrogen 21×10-10 Confirm
Deuterium 17×10-10 Confirm
Neon 9.5×10-17 Confirm
Chemical Stability (except hydrofluoric) High resistance to water and acids
Applications Laser substrate: Window, lens, prism, mirror…
Main Inspect Verifier Manager QC

Size Available

Round Diameter 200mm, 300mm
Square Side 10mm to 100mm

Dielectric Properties (20°C and 1 MHz)

Constant 3.75
Strength 5×107 V/m
Loss Factor Less than 4×10-4
Dissipation Factor Less than 1×10-4

Experts Review:


Dr. Clive Patterson Ph.D (Moscow Institute of Physics and Technology, Russia)
Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate shapes and sizes. The process is repeatable and can be scaled up from small research and development projects, to production batches involving medium to large substrate areas.


Dr. Ms. Teresa B. (University of San Carlos, Philippines)
High-purity metals for the best results We have the flexibility to produce targets in shapes and sizes, and we never compromise in the purity of our raw materials. Our finished and semi-finished targets and our anodes are all made from the very highest purity of different metals.


Dr. Stew Dean Ph.D (University of Technology Sydney, Australia)
Particulate contamination of thin films is a concern in many industries, including semiconductor manufacturing. Particulates are formed either in the gas phase of the plasma or by flaking off deposited films from wall surfaces. They then become negatively charged and electrostatically trapped in a plasma, where they can increase in size. When the plasma is turned off, or even sooner than that, they can fall onto or be transported otherwise to the substrate. With 0.18 mm feature sizes on a semiconductor wafer, a particle of diameter of 90 nm may result in a killer defect. Particles of this size, and some much larger, are known to grow in plasma processing discharges, including sputtering sources.


Quarts Glass Substrate

Quartz Glass Slides Substrate

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Contact Us for Quartz Glass Slides Substrate
From us, you can easily purchase nano materials at great prices. Place online order and we will dispatch your order through DHL, FedEx, UPS. You can also request for a quote by mailing us at sales@nanoshel.com Contact: +1 302 268 6163 (US and Europe), Contact: +91-9779550077 (India). We invite you to contact us for further information about our company and our capabilities. At Nanoshel, we could be glad to be of service to you. We look forward to your suggestions and feedback.


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