The basic idea behind sputtering is to pull the material’s atoms one at a time and deposit them on the substrate using the energy of a plasma on a target’s surface. a thorough selection of sputtering targets, evaporation sources, and other deposition materials are provided by material.
Budgetary prices for sputtering targets and deposition materials tailored to your needs are listed below. Because to changes in the market, actual prices could differ.
Please go here to contact a representative about current pricing or to request an estimate for sputtering targets and other deposition products that aren’t listed. The periodic table’s transition group of metals includes the soft, shiny element silver. Its melting point is 962°C, its density is 10.5 g/cc, and at 1,105°C, its vapour pressure is 10-4 Torr. Throughout the beginning of time, silver has been utilised in many items. It is the most electrically conductive of all metals, ductile, malleable, and strong.
The Global Silver Sputtering Target market accounted for $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2023 to 2030.
There are several industrial applications for precious metal thin films. TANAKA provides vapour deposition materials and high-purity silver sputtering targets in a range of sizes and forms to suit a variety of applications.
Pinholes, oxides, and gases are absent from the target materials. Ultrasonic defect checking ensures the backing plate and bonding are of high quality. Granules, blocks, rods, wires, and other shapes are created using high-purity precious metal vapour deposition materials.
Targets can also be produced from precisely cleaned tools, jigs, and repurposed precious metals. Depending on your needs, grain sizes can be changed from fine to coarse particles.
Before being cast into different target shapes, high melting point materials like iridium and rhodium are dissolved using a technique that removes oxides, gases, and pinholes. greater environmental resistance silver alloys Target production for Au-alloys and test production using depositions are both possible. Using quantitative comparisons, it is possible to identify the best material from the deposition samples, etc.
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