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  2. Calculate reflectance due to thin-film interference by entering your films below. Reflectance at wavelengths from 200 nm to 2000 nm may be calculated. Up to 20 films may be entered. Our Reflectance Calculator uses the same calculation engine that our thin-film measurement systems do, which is based on the complex-matrix form of the Fresnel ...

  3. As IC technology advances to 16/14 nm and beyond, FinFET architecture with advantage of excellent leakage performance becomes main stream in IC industry. However, it also brings big challenges for integration and processes due to its very aggressive structure and profile, CD shrinkage, shadow effect and gap-fill difficulty. In this work, atomic layer deposition (ALD) metal films, including TaN ...

  4. 15. Sept. 2020 · Coming to you from Ben Horne, this neat video shows the process of combining a digital and large format film workflow to focus-stack a subject.One of the great things about large format is the ...

  5. 1. Jan. 2017 · Thermoplastic-based so-called Fibre Metal Laminates, consisting of fibre reinforced plastics foils and metal sheets in an alternating structure, can be efficiently produced via a continuous film stacking process of a Fibre-Foil-Tape Unit (FFTU) and subsequently thermoforming process. These materials combine the advantages of the individual material groups and offer a great potential for ...

  6. 22. Feb. 2024 · This results in more orderly molecular stacking, longer exciton lifetimes, and higher diffusion lengths. The promoted long-range exciton diffusion leads to high power conversion efficiencies of 19.05% and 18.15% for PM6+PS:L8-BO blend films with 100 and 300 nm thickness, respectively, as well as a respectable 16.00% for 500 nm. These insights ...

  7. PLA films and industrial hemp fiber-based biocomposites were then prepared by the film stacking process at varying fiber weight fractions (30, 35, and 40%). The PLA films and industrial hemp fiber mats were then alternately stacked in a mold (220 X 150 X 3.5 mm 3 ) and precompressed (2 MPa) at 185°C for 5 min using a compression molder.