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ADV-Engineering, Moscow Russia
Manufactures bismuth telluride ingots, wafers, pellets,Peltier modules & thermoelectric cooling & generator devices. In contrast to a number of Russian firms, the task which ADV-ENGINEERING Co., Ltd. has set for themselves is to promote industrial development in Russia using their own scientific and technological achievements. And eventually the activities of ADV-ENGINEERING Co., Ltd. will result in the organization of new productions and new jobs. Manufactures bismuth telluride ingots, waferswith/without metallization, pellets
http://www.adv-engineering.com
GIRMET, Moscow Russia
GIRMET Ltd. offers a wide range of III-V semiconductor materials for electronics and optics: Gallium Arsenide, Gallium Phosphide, Indium Arsenide, Gallium Antimonide, Indium Antimonide. Materials supplied are ingots and single crystal wafers including the "epi-ready" substrates (ready for epitaxial growth) . The high qualified staff and wide experience in field of material science and semiconductor processing provides the competitive products and reasonable prices.
GIRMET provides materials according to Standard Data Sheets as well as customized single crystals and wafers with non-standard specifications. Supplier of BiTe ingots and wafers.
http://www.girmet.com
Marketech, Port Townsend WA
Marketech International, Inc. offers custom fabricated finished components from advanced materials as well as semi-finished stock. Our materials include: Tungsten, refractory metal alloys, heatsinks, alumina and other engineered ceramics, single crystals, sapphire, aerogels, electro chemical compounds, superconductors and scintillators. We serve the research, aerospace, scientific, medical, high-tech and government contract industries Doped BiTe crystals & wafers
http://www.mkt-intl.com
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SCI Engineered Materials, Columbus OH
SCI Engineered Materials is a leader in the production of Source Materials for Photonic, Lithium Thin Film Batteries and other Physical Vapor Deposition applications. SCI produces high purity ceramic and metal targets for the Thin Film Industry. SCI partners with customers to develop innovative material solutions. The company also manufactures targets and powders used in the production of High-Temperature Superconducting DevicesBiTe targets.
http://www.targetmaterials.com
Sputtering Materials, Reno NV
SMI provides a guaranteed metallic bonding process with industry leading thermal transfer efficiency and conductivity. SMI's all-metal process ensures very high mechanical strength, while providing a differential slip plane allowing for differences in thermal expansion between the target and the backing plate without debonding or cracking the target. Sputtering materials & target bonding, including BiTe, Be, Te, & others.
http://www.sputteringmaterials.com
Umicore, Hoboken Belgium
Supplier of Te as raw material for thermoelectric materials. Umicore is a materials technology group. Its activities are centered on four business areas: Advanced Materials, Precious Metals Products and Catalysts, Precious Metals Services and Zinc Specialties. Each business area is divided into market-focused business units.
Umicore focuses on application areas where it knows its expertise in materials science, chemistry and metallurgy can make a real difference, be it in products that are essential to everyday life or those at the cutting edge of new technological developments. Umicore's overriding goal of sustainable value creation is based on this ambition to develop, produce and recycle materials in a way that fulfils its mission: materials for a better life .
The Umicore Group has industrial operations on all continents and serves a global customer base; it generated a turnover of EUR 6.6 billion in 2005 and currently employs some 14,000 people.
Williams Advanced Materials, Brewster NY
Williams has a long and vast history dating back to the Klondike gold mining days. The company was formed in 1907. Through the years Williams has made many significant contributions to the metals industry. In the 1920's Reginald V. Williams developed the first commercial application of induction melting for dental alloys. It was not until the 1970's that this process of melting metal became widespread, and was acknowledged as the premier process for producing consistent high quality homogenous alloys.