Zinc Antimonide Granule Sputtering Targets (ZnSb, Zn3Sb2, Zn4Sb3) | ||||
Zinc Antimonide Granule Sputtering Targets (ZnSb, Zn3Sb2, Zn3Sb4) Purity--- 99.99%, 99.999% Manufacturing Process Material synthesis ---> Milling ---> HP(Vacuum) ---> Machining ---> Checking ---> Packing Speciafication Planar circular target: Dia ≤480mm, Thickness ≥1mm Planar Rectangle: Length ≤420mm, Width ≤270mm, Thickness ≥1mm) Rotary Target: Diameter≤ 200mm, Thickness >2mm) Applications used for transistors, infrared detectors and thermal imagers, as well as magnetoresistive devices. |
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Our Advantage of Zinc Antimonide Granule Sputtering Targets (ZnSb, Zn3Sb2, Zn3Sb4) China rare metal material co.,limited (CRM) is an experter in manufacture Zinc Antimonide Sputtering Targets as evaporation material . All Zinc Antimonide Sputtering Targets are manufacture by programs with with the highest possible density and smallest possible average grain size.. CRM material co.,limited is specialized in making virous Sputtering Targets . We have many raw material compounds line, such as semiconductor line, chemical compounds line, metallurgy line, powder milling line, etc. Moreover, we introduced many advanced technology and equipments from related companies at home and aborad. We also have an experienced research team who have developed many new and special pellets, and also successfully made many trial orders and received many customers satisfaction and long-term friendship. All Zinc Antimonide Sputtering Targets are analyzed using best detection means including chemical analysis, Crystal phase microscope, x ray diffraction(XRD), X-Ray Fluorescence (XRF), Glow Discharge Mass Spectrometry (GDMS), and Inductively Coupled Plasma (ICP). |
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Base information of Zinc Antimonide Granule Sputtering Targets (ZnSb, Zn3Sb2, Zn3Sb4) Zinc antimonide (ZnSb), (Zn3Sb2), (Zn4Sb3) is an inorganic chemical compound. The Zn-Sb system contains six intermetallics. Like indium antimonide, aluminium antimonide, and gallium antimonide, it is a semiconducting intermetallic compound. It is used in transistors, infrared detectors and thermal imagers, as well as magnetoresistive devices.
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