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Indium Tin Oxide (ITO) Sputtering TargetTransparent conductive oxides (TCOs) are integral to numerous modern technologies due to their unique combination of high optical transparency and electrical conductivity. Among TCO materials, indium tin oxide (ITO) has established itself as a cornerstone in a...
Transparent conductive oxides (TCOs) are integral to numerous modern technologies due to their unique combination of high optical transparency and electrical conductivity.
Among TCO materials, indium tin oxide (ITO) has established itself as a cornerstone in applications such as display technologies, touch panels, solar cells, electrochromic devices,
and heatable glass. The exceptional optoelectronic properties of ITO, including a high carrier concentration and low resistivity, make it indispensable for
developing advanced functional glass technologies.
ITO remains the most widely used transparent conductive oxide due to its superior optoelectronic properties.
Its combination of low resistivity and high transmittance surpasses that of alternative TCOs, such as fluorine-doped tin oxide (FTO) or
aluminum-doped zinc oxide (AZO), making it indispensable for advanced applications where performance cannot be compromised.
Although alternative TCOs are actively being researched, their performance often falls short in applications requiring the stringent optoelectronic properties achievable with ITO.
Specifications | |||
Material Type | Indium Tin Oxide | ||
Symbol | In2O3/SnO2 | ||
Purity | 99.99% | ||
Size | 1.00" Dia. x 0.125" Thick ~8.00" Dia x 0.250" Thick / Custom | ||
Package Unit | 1pc | ||
Theoretical Density (g/cc) | 7.14 | ||
Melting Point (°C) | 1,800 | Sputter | RF, DC |
Type of Bond | Indium, Elastomer | Max Power Density (Watts/Square Inch) | 20* |
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