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  • KTN Crystal (KTa₀.₅Nb₀.₅O₃) – 001 Orientation, 10 × 10 × 0.5 mm - Tinsan MaterialsTinsan Materials KTN Crystal (KTa₀.₅Nb₀.₅O₃) – 001 Orientation, 10 × 10 × 0.5 mm

    KTN Crystal (KTa₀.₅Nb₀.₅O₃) – <001> Orientation, 10 × 10 × 0.5 mm

    $1,285.00
    • Single crystal KTN with composition KTa₀.₅Nb₀.₅O₃
    • <001> crystallographic orientation for optimal electro-optic performance
    • Size: 10 × 10 × 0.5 mm
    • High electro-optic coefficient (r33 ≈ 30–50 pm/V)
    • Strong photorefractive effect
    • Excellent dielectric tunability
    • Wide optical transparency (~350 nm – 5500 nm)
    • Low defect density and high optical uniformity
  • LiTaO₃ Crystal – Lithium Tantalate Single CrystalLiTaO₃ Crystals – Lithium Tantalate Single Crystals

    LiTaO₃ Crystal – Lithium Tantalate Single Crystal

    • Wide optical transparency range: 280 nm – 5.5 μm
    • Excellent electro-optic and piezoelectric properties
    • High Curie temperature (~605 °C)
    • Outstanding pyroelectric performance for IR sensing
    • Good thermal and chemical stability
    • Low dielectric loss and low optical absorption
    • Suitable for SAW and RF filter devices
    • High resistance to optical damage compared with LiNbO₃
    • Available in multiple orientations (X, Y, Z-cut)
  • SBN Crystals (Strontium Barium Niobate, SrxBa1-xNb2O6) - Tinsan MaterialsSBN (Strontium Barium Niobate, SrxBa1-xNb2O6) Crystals - Tinsan Materials

    SBN (Strontium Barium Niobate, SrxBa1-xNb2O6) Crystals

    • Exceptional Photorefractive Effect: Superior for dynamic holography and real-time optical data storage.
    • High Electro-optic Coefficient: Enabling efficient light modulation.
    • Low Optical Damage Threshold: Excellent for high-sensitivity photorefractive applications.
    • Piezoelectric and Pyroelectric Properties: Supporting applications in sensors and transducers.
    • Nonlinear Optical Response: Suitable for second harmonic generation (SHG) and other nonlinear optical processes.
    • Broad Transmission Range: Transparent from visible to near-infrared wavelengths.