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Our wafers and substrates include Silicon, GaAs, GaN, and Sapphire materials, ideal for electronics, optoelectronics, and solar applications. Their excellent crystal quality and precise thickness control ensure superior performance in semiconductor devices, integrated circuits, and solar cells.
Our wafers and substrates include Silicon, GaAs, GaN, and Sapphire materials, ideal for electronics, optoelectronics, and solar applications. Their excellent crystal quality and precise thickness control ensure superior performance in semiconductor devices, integrated circuits, and solar cells.
Subcategories
Single crystal substrates are highly pure materials with a uniform atomic structure, providing an ideal foundation for the growth of high-quality thin films and semiconductor devices. These substrates are essential in industries such as electronics, optoelectronics, and photonics, where precise material properties and defect-free surfaces are critical. Common materials for single crystal substrates include silicon, sapphire, and gallium nitride, offering superior performance in applications like LED production, solar cells, and integrated circuits.
Single crystal substrates support epitaxial film growth, oxide electronics, photonics, surface science and materials development. Selection depends on substrate composition, orientation, dimensions, thickness, miscut, polishing sides, roughness, flatness, termination and packaging.
Provide material, orientation, size, thickness, miscut, one-side or double-side polishing, roughness, flatness, surface termination or coating, quantity and intended film or device process.
Thin film substrates are materials designed to support the deposition of thin films, providing a stable and reliable foundation for the fabrication of advanced electronic, optical, and energy devices. These substrates are commonly used in semiconductor manufacturing, solar cells, displays, and sensors, where precise control over surface properties and material compatibility is essential.
Epitaxial thin films are precisely grown layers of material that are deposited on a substrate with a highly ordered crystal structure, ensuring that the thin film's properties align with the underlying substrate. These films offer exceptional electrical, optical, and mechanical properties, and are critical in making advanced semiconductor devices, such as LEDs, solar cells, and integrated circuits. Epitaxial thin films
Epitaxial thin-film products are supplied for semiconductor devices, optoelectronics, heterostructures and materials research. Compare substrate, layer sequence, composition, thickness, doping, orientation and surface quality.
Provide the substrate, epitaxial layer stack, composition, layer thickness, doping or conductivity, orientation, wafer size, surface finish, characterization and quantity.
Conductive Glass Substrates are specially designed materials that combine the transparency of glass with excellent electrical conductivity, making them ideal for use in electronic and optoelectronic devices.
This category includes quartz, optical glass and transparent conductive coated glass for optics, displays, sensors, thin films and electronic devices. Compare glass type, optical quality, coating, transmission and sheet resistance.
Provide glass type, size, thickness, surface quality, flatness, coating and sheet resistance when applicable, transmission range, edge finish, packaging and quantity.
Ceramic substrates offer excellent thermal conductivity, electrical insulation, and mechanical strength. They are particularly essential in high-temperature environments and are widely used in power electronics, automotive components, and LED technology.
Ceramic substrates combine electrical insulation, thermal management and dimensional stability for power electronics, circuits, sensors and semiconductor packaging. Metallized options require controlled patterns and adhesion.
Specify ceramic grade, dimensions, thickness, flatness, surface finish, metallization material and pattern, plating or adhesion requirements, drawing, packaging and quantity.
Yttria Stabilized Zirconia (YSZ) Single Crystal Substrate offers exceptional mechanical and chemical stability, making it suitable for various thin-film applications. Heeger Materials is a professional supplier and manufacturer of high-quality YSZ Crystal Substrates, offering customized solutions and competitive prices.
Titanium Dioxide (TiO2) Crystal is a high-performance material widely used in optical and photonic applications. Known for its excellent optical properties, TiO2 crystal offers superior light scattering and high refractive index. It is commonly used in coatings, photonic devices, and laser technologies. Heeger Materials provides premium TiO2 crystals for...
Neodymium-Doped Strontium Titanate (Nd:SrTiO3) Crystal Substrate is a specialized material with structural properties similar to strontium titanate, ideal for research and electronics. Heeger Materials is a professional supplier and manufacturer of high-quality Nd:SrTiO3 Crystal Substrate, offering customized solutions and competitive prices.
Iron-Doped Strontium Titanate (Fe:SrTiO3) Crystal Substrate features a structure similar to SrTiO3 and is available with 0.05% and 0.04% iron doping. Heeger Materials is a professional supplier and manufacturer of high-quality Fe:SrTiO3 substrate, offering customized solutions and competitive prices.
Niobium-Doped Strontium Titanate (Nb:SrTiO3) Crystal Substrate is a conductive perovskite crystal with adjustable resistivity based on doping levels. It is widely used as an electrode for thin films and electronic devices. Heeger Materials is a professional supplier and manufacturer of high-quality Nb:SrTiO3 Substrate, offering customized solutions and...
Gadolinium Scandium Gallium Garnet (GSGG) Substrate is a high-quality material used in laser and optical applications, offering excellent thermal and mechanical properties. Heeger Materials is a professional supplier and manufacturer of high-quality GSGG Substrates, offering customized solutions and competitive prices.
Gadolinium Gallium Garnet (GGG) Substrate is a specialized crystal for magneto-optical thin films like YIG and BIG, essential in optical isolators for fiber communication. It offers excellent lattice matching, stability, and durability. Heeger Materials is a professional supplier and manufacturer of high-quality GGG Substrate, offering customized...
Sapphire (Al2O3) Crystal is a high-performance material with exceptional hardness, thermal stability, and optical transparency. It is widely used in optics, electronics, and laser systems. Heeger Materials (HM) provides high-quality Sapphire Crystals for advanced scientific and industrial applications.
Gadolinium Scandate (GdScO3) Crystal Substrate is a high-quality material used for epitaxial growth in advanced electronic and optical applications. Heeger Materials is a professional supplier and manufacturer of high-quality GdScO3 Crystal Substrate, offering customized solutions and competitive prices.
Lead Magnesium Niobate-Lead Titanate (PMNT) Substrate is a high-performance crystal material used in piezoelectric and ferroelectric applications. It provides excellent electromechanical properties, making it ideal for sensors, actuators, and transducers. HM is a professional supplier and manufacturer of high-quality PMNT Substrate, offering customized...
Barium Titanate (BaTiO3) Single Crystal Substrate is a high-performance material with excellent photorefractive properties, making it valuable for optical information storage and nonlinear optics. Heeger Materials is a professional supplier and manufacturer of high-quality BaTiO3 Crystal Substrate, offering customized solutions and competitive prices.
Dysprosium Scandate Single Crystal Substrate (DyScO3) is used for epitaxial oxide, magnetic and ferroelectric thin-film research. Heeger Materials supports custom orientation, size, thickness, single- or double-side polishing, surface quality, packaging and documentation.