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Industry news

Low temperature ITO thin films are usually prepared on glass substrates using Ion Beam Technology (IBT)

Time:2023-03-14Number:1224
     Low temperature ITO filmIt is a transparent film with conductivity, mainly made of indium tin oxide (ITO). Its characteristic is that it is prepared at low temperatures, usually using radio frequency magnetron sputtering or direct current magnetron sputtering methods. It has the characteristics of high transmittance, low resistivity, excellent mechanical strength and durability, and is widely used in displays, solar cells LED、 Touchscreen and other fields. Compared to traditional high-temperature ITO films, low-temperature ITO films do not require high-temperature annealing treatment and can be prepared at lower temperatures, reducing production costs.

Low temperature ITO thin films (TINOs) are a new type of semiconductor material that is a multifunctional thin film material with multiple application fields. Low temperature ITO thin films are typically prepared on glass substrates using Ion Beam Technology (IBT).

低温ITO薄膜是一种具有导电性的透明薄膜,主要由铟锡氧化物(ITO)制成

IBT technology is a technique used to prepare thin film semiconductor devices, which utilizes ion beam bombardment of glass as a substrate to deposit ITO thin films onto the surface of the glass. IBT technology can prepare high-quality low-temperature ITO films at lower temperatures, thereby achieving advantages such as high transparency, low resistance, and high carrier mobility.

Specifically, low-temperature ITO films have the following applications:

● Used for making transparent electrodes: Low temperature ITO film has excellent transparency and conductivity, so it can be used as a transparent electrode to achieve good photoelectric performance.

● Used for making solar cells: Low temperature ITO film has excellent transparency and conductivity, which can effectively improve the efficiency of solar cells.

● Used for making surface decorations of other materials: Low temperature ITO film has excellent transparency and conductivity, and can be used for making surface decorations of other materials.

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