Jaw-dropping Mse Pro 4-inch, Near-stoichiometric Lithium Tantalate (litao₃, Nslt) Wafers Quality Assured [t0RLFHni]
MSE PRO 4-inch Near-Stoichiometric Lithium Tantalate (LiTaO₃, NSLT) Wafers The MSE PRO Near-Stoichiometric Lithium Tantalate (LiTaO₃, NSLT) Wafers represent a groundbreaking advancement in electro-optic materials. These premium-grade single-crystal s
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Jaw-dropping Mse Pro 4-inch, Near-stoichiometric Lithium Tantalate (litao₃, Nslt) Wafers Quality Assured [t0RLFHni]
MSE PRO 4-inch Near-Stoichiometric Lithium Tantalate (LiTaO₃, NSLT) Wafers
The MSE PRO Near-Stoichiometric Lithium Tantalate (LiTaO₃, NSLT) Wafers represent a groundbreaking advancement in electro-optic materials. These premium-grade single-crystal substrates are meticulously crafted to deliver superior performance, surpassing conventional congruent compositions. Engineered for demanding photonic and optoelectronic applications, these wafers offer exceptional optical quality and enhanced material properties, making them the ideal choice for cutting-edge technologies.Product Specifications and Features
The MSE PRO NSLT Wafers are available in a 4-inch diameter, with a PF length of 32±2mm and a thickness of 350±20μm. These wafers are precision-cut with X-Cut and Z-Cut orientations, ensuring optimal performance for various applications. Key specifications include a WARP of <25μm, BOW of -25μm<BOW<25μm, and TTV of <5μm. The PLTV (LTV<1μm) is >95% (5mm*5mm), and the number of surface defects (diameter<0.3μm) is <500. The near-stoichiometric ratio of LiTaO₃ (NSLT) provides superior linear and nonlinear optical coefficients, making these wafers highly efficient for electro-optic modulators, terahertz wave generation, and detection, among other applications.Applications and Benefits
The MSE PRO NSLT Wafers are designed for a wide range of applications, including high-efficiency electro-optic modulators for 5G/6G communications, broadband terahertz wave generation and detection, high-power frequency conversion devices, advanced optical waveguide structures, quantum photonic circuits, and precision optical sensors. These wafers offer numerous benefits, such as improved performance, enhanced material properties, and a wide range of applications in the field of optoelectronics. Whether you are a researcher, engineer, or manufacturer, these wafers are the perfect choice to drive innovation and advance your projects.What Our Customers Say
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