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JGS2 Quartz Carrier Substrate

Specific Information
JGS2 is a quartz material made from either natural or synthetic sources, featuring excellent thermal stability, chemical inertness, and a low coefficient of thermal expansion. It also provides good infrared transmittance and can withstand harsh thermal environments without deformation. These characteristics make it ideal for use in optical systems, wafer carriers, and high-temperature industrial applications.
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  • specification
  • Properties
  •                               
     
    Item JGS2 Quartz Carrier Substrate
    Diameter 50.8±0.3mm 100±0.3mm 101.4±0.3mm 150±0.5mm 159±0.5mm 200±0.5mm
    Thickness 500μm 500μm 500μm 1000μm 1000μm 1000μm
    Primary Flat Length 16mm 32.5mm N/A 47.5mm N/A Notch
    Surface Finish S/D  60/40

    Customization specifications:
    * Various diameters:10~300mm .
    * Ultra-thin wafers can be customized,thicknesses ≥0.1mm.
    * Custom shapes available, including square windows or other forms for optical applications.
     
  • Quartz exhibits excellent optical transparency, especially in the UV to IR spectral range, making it ideal for precision optics. It has a very low thermal expansion coefficient, high thermal stability (softening point around 1700°C), and outstanding chemical resistance to most acids and alkalis. Additionally, quartz is mechanically strong, electrically insulating, and highly durable under extreme environmental conditions.
     
    Property JGS1  Quartz  JGS2  Quartz Borosilicate Glass BF33
    Material High-purity(synthetic ) Medium-purity(natural or synthetic) Borosilicate glass (contains boron oxide)
    Main Composition SiO₂ (>99.99%) SiO₂ (>99.9%) SiO₂ (~81%), B₂O₃ (~13%)
    Hydroxyl  ~1000 ppm ~200 ppm <10 ppm
    Thermal Expansion Coefficient 0.55 × 10⁻⁶ /K 0.55 × 10⁻⁶ /K 3.25 × 10⁻⁶ /K 
    Heat Resistance softening point ~1700°C softening point ~1700°C softening point ~820°C
    Transmission Range 185–2500 nm 220–2500 nm 300–2500 nm
    UV Transmission Excellent (high transmittance>185 nm) Poor (low transmittance < 220 nm) Poor (low transmittance < 300 nm)
    IR Transmission Poor (affected by absorption at 2.7 µm) Good (high transmittance at 2.7 µm) Good (high transmittance at 2.7 µm)
    Chemical Stability Excellent Excellent Good 
    Mechanical Strength High High High
    Main Applications UV optics, lasers, semiconductors IR optics, general optics, laser windows Optical windows, lab equipment, display panels

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