Showing 201 - 220 results of 326 for search '"microelectronics"', query time: 0.04s Refine Results
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    Auricular bioelectronic devices for health, medicine, and human-computer interfaces by William J. Tyler

    Published 2025-02-01
    “…Recent advances in manufacturing of flexible and conformable microelectronics have opened opportunities for health monitoring and disease treatment. …”
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    EQUIPMENT FOR NONDESTRUCTIVE TESTING OF SILICON WAFERS SUBMICRON TOPOLOGY DURING THE FABRICATION OF INTEGRATED CIRCUITS by S. A. Chizhik, S. P. Basalaev, V. A. Pilipenko, A. L. Khudoley, T. A. Kuznetsova, V. V. Chikunov, A. A. Suslov

    Published 2015-03-01
    “…Complex  SPM  200  realizes  nondestructive control of microelectronics elements made on silicon wafers up to 200 mm in diameter and it is introduced by JSC «Integral» for the purpose of operational control, metrology and acceptance of the final product.…”
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  5. 205

    Two-Dimensional Ferroelectric Materials: From Prediction to Applications by Shujuan Jiang, Yongwei Wang, Guangping Zheng

    Published 2025-01-01
    “…Ferroelectric materials hold immense potential for diverse applications in sensors, actuators, memory storage, and microelectronics. The discovery of two-dimensional (2D) ferroelectrics, particularly ultrathin compounds with stable crystal structure and room-temperature ferroelectricity, has led to significant advancements in the field. …”
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    IFDR: An Efficient Iterative Optimization Algorithm for Standard Cell Placement by Feng Cheng, Junfa Mao

    Published 2004-01-01
    “…Experiments on the Microelectronics Center of North Carolina (MCNC) standard cell benchmarks [http://www.cbl.ncsu.edu/pub/Benchmark_ dirs/Layout Synth92/] have been done, and the results show that total wire length is reduced up to 25% and by an average of 16% in comparison with that from the placement algorithm of TimberWolf7.0.…”
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  8. 208

    Porous Silicon Formation by Electrochemical Etching by Оrest Kuntyi, Galyna Zozulya, Mariana Shepida

    Published 2022-01-01
    “…Porous silicon (PSi) is used as an effective material in biomedicine, sensors, solar cells, electrochemical energy, microelectronics, and nanotechnology. Considering the dependence of PSi functional properties on pore geometry and porous layer architecture, it is important to develop methods for controlled pore formation. …”
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    Application of Cad Systems to Accounting for Mechanical Stresses in the Development of Uncooled Thermal Detectors of the Bolometric Type by Tran Van Trieu, I. Yu. Lovshenko, V. R. Stempitsky, K. V. Korsak, Tran Tuan Trung, Dao Dinh Ha, V. V. Kolos

    Published 2023-03-01
    “…By means of computer simulation in modern computer-aided design systems in microelectronics, a static mechanical analysis was performed to assess the effect of mechanical stresses arising in structural materials during their formation on the magnitude of deformation. …”
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    Living labs as orchestrators in the regional innovation ecosystem: a conceptual framework by Janin Fauth, Kevin De Moortel, Dimitri Schuurman

    Published 2024-12-01
    “…Seven expert interviews were conducted to develop the conceptual framework, using the Interuniversity Microelectronics Centre (imec) within the Flemish Innovation Ecosystem as empirical context. …”
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    Degeneracy in Magneto-Active Dense Plasma by Haifa A. Al-Yousef, Sh. M. Khalil

    Published 2020-01-01
    “…Such plasmas have generated a lot of interest in the last decade owing to their importance in many areas of physics such as semiconductors, metals, microelectronics, carbon nanotubes, quantum dots, and quantum wells. …”
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    On Analysis of Topological Properties for Terbium IV Oxide via Enthalpy and Entropy Measurements by Muhammad Kamran Siddiqui, Sana Javed, Lubna Sherin, Sadia Khalid, Muhammad Mathar Bashir, Amir Hassan, Mlamuli Dhlamini

    Published 2021-01-01
    “…Terbium IV oxide has huge application as an insulator in modern technologies such as microelectronics, gas detectors, and luminiferous owing to mechanical and thermal stability, high dielectric constant, radiation resistance, and variable electrical conductivity. …”
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