Showing 241 - 260 results of 289 for search '"Solid state (electronics)"', query time: 0.18s Refine Results
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    Influence of vacuum-plasma treatment modes on the surface photo-EMF of single-crystal silicon by R.R. Nagaplezheva, M.M. Orakova, M.Yu. Kushkhova, F.M. Tseeva, H.A. Mishaev

    Published 2022-12-01
    “…The 21st century, undoubtedly, began and proceeds under the sign of the improvement of such technologies in solid-state electronics. Plasma technologies include a set of methods for depositing thin and ultrathin layers on a semiconductor substrate, as well as a set of methods for dimensional etching of such layers with specified etching parameters. …”
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  12. 252

    Features of the receiving of piezoelectric thin films by plasma spraying of powdery AlN by V. S. Feshchenko, K. N. Zyablyuk, E. A. Senokosov, V. I. Chukita, D. A. Kiselev

    Published 2020-03-01
    “…Оne of the promising materials in solid state electronics is the AlN compound. A wide range of semiconductor devices are produced from it, such as photodetectors, LEDs, piezoelectric converters, etc. …”
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    Problems of Masking and Anti-Reflective SiO2 in Silicon Technology by Mykola S. Kukurudziak

    Published 2023-06-01
    “…Oxidation plays an important role in planar technology, which in turn is the basis of the technology of silicon integrated circuits, photodetectors and other solid-state electronics. During our production of silicon p-i-n photodiodes, a number of systematic types of defects and deterioration of product parameters caused by the degradation of masking or anti-reflective coatings during the manufacturing process were observed. …”
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    Coupled Resonator Acoustic Waveguides‐Based Acoustic Interferometers Designed within 2D Phononic Crystals: Experiment and Theory by David Martínez‐Esquivel, Rafael Alberto Méndez‐Sánchez, Hyeonu Heo, Angel Marbel Martínez‐Argüello, Miguel Mayorga‐Rojas, Arup Neogi, Delfino Reyes‐Contreras

    Published 2024-03-01
    “…This successful implementation of FEM and TB calculations in investigating CRAWs systems within PnCs paves the way for designing advanced acoustic devices with desired functionalities for various practical applications, demonstrating the application of solid‐state electronics principles to underwater acoustic devices description.…”
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