Lithium tantalate (LiTaO3) wafers have become essential in the fabrication of several advanced electronic and photonic devices. In recent years, the focus has shifted towards the development of ultra-thin, free-standing lithium tantalate wafers. This evolution meets the increasing demands for high-performance miniaturized components in modern technology sectors, including telecommunications, consumer electronics, and medical instruments. The term "ultra thin" refers to the thickness of the wafers, which can range from a few micrometers to tens of micrometers. This thinness is advantageous for applications requiring lightweight devices, and offers exceptional mechanical flexibility and superior thermal conductivity, enabling advanced heat management solutions in densely packed electronic circuits. Free standing indicates that the wafers are not attached to a substrate, which allows for better flexibility in use and makes them ideal for integration into various systems such as microelectromechanical systems (MEMS) and nanotechnology device. This property is particularly beneficial for applications in waveguides, sensors, and other devices where traditional substrates might be a limitation.
Alfa Chemistry takes pride in being at the forefront of innovation in the manufacturing of free standing ultra thin lithium tantalate wafers. Our ultra-thin wafers are produced using cutting-edge technology and rigorous quality control processes. The resulted product meets the highest standards of purity, thickness uniformity, and surface smoothness. Moreover, each wafer undergoes thorough inspection and testing to ensure it delivers optimal performance in its intended application.
Free Standing Ultra Thin Lithium Tantalate Wafers | |
Catalog | SC-TFW003 |
Diameter | 3/4 inch |
Orientation | X, Y, Z etc. |
Material | LiTaO3 |
Thickness | 10-60 μm |
Surface | Double or single side polished |
Our free standing ultra thin lithium tantalate wafers are recommended for pyroelectric gas detectors and pyroelectric flame detectors. The obtained sensors are extremely sensitive, and exhibit good stability and adaptability.
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