Showing 321 - 335 results of 335 for search '"integrated circuit design"', query time: 0.14s Refine Results
  1. 321

    Open innovation in the semiconductor industry: analysis of Brazilian design houses by Xênia L'amour Campos Oliveira, Maria Elena Leon Olave, Edward David Moreno, Glessia Silva

    Published 2019-12-01
    “…Purpose – This study aims to understand how Brazilian design houses (DHs) use open innovation in joint development projects for integrated circuits. Design/methodology/approach – As a research strategy, qualitative research using multiple case studies was made. …”
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    Article
  2. 322

    6.012 Microelectronic Devices and Circuits, Spring 2003 by Del Alamo, Jesus, Scholvin, Jorg

    Published 2003
    “…Use of incremental and large-signal techniques to analyze and design bipolar and field effect transistor circuits, with examples chosen from digital circuits, single-ended and differential linear amplifiers, and other integrated circuits. Design project. From the course home page: Course Description 6.012 is the header course for the department's "Devices, Circuits and Systems" concentration. …”
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  3. 323

    6.012 Microelectronic Devices and Circuits, Fall 2003 by Fonstad, Clifton G., Akinwande, Akintunde, Perrott, Michael H.

    Published 2010
    “…Use of incremental and large-signal techniques to analyze and design bipolar and field effect transistor circuits, with examples chosen from digital circuits, single-ended and differential linear amplifiers, and other integrated circuits. Design project. From the course home page: Course Description 6.012 is the header course for the department's "Devices, Circuits and Systems" concentration. …”
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  4. 324

    Ultra-optimized demultiplexer unit design in quantum-dot cellular automata nanotechnology by Vijay Kumar Sharma, Neeraj Kaushik

    Published 2024-03-01
    “…Integrated circuit designers face challenges in using complementary metal oxide semiconductor (CMOS) technology as it has a large leakage current and scalability challenge in ultra-nanoscale regime. …”
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    Article
  5. 325

    A fast transient digital low dropout voltage regulator by Heng, Amos Kai Xiang

    Published 2018
    “…A voltage regulator is an important device block when it comes to power management in integrated circuits design for system-on-chip applications. …”
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    Final Year Project (FYP)
  6. 326

    Low‐complexity neuron for fixed‐point artificial neural networks with ReLU activation function in energy‐constrained wireless applications by Wen‐Long Chin, Qinyu Zhang, Tao Jiang

    Published 2021-04-01
    “…The fixed‐point binary numbers and ReLU activation function are used in most application‐specific integrated circuit designs and artificial neural networks (ANN), respectively. …”
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    Article
  7. 327

    Thermo-optic epsilon-near-zero effects by Jiaye Wu, Marco Clementi, Chenxingyu Huang, Feng Ye, Hongyan Fu, Lei Lu, Shengdong Zhang, Qian Li, Camille-Sophie Brès

    Published 2024-01-01
    “…Our work provides references for packaged ENZ-enabled photonic integrated circuit designs, as well as a new platform for nonlinear photonic applications and emulations.…”
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    Article
  8. 328

    Voltage-controlled oscillator based analog-to-digital converter in 130-nm CMOS for biomedical applications by Dina M. Ellaithy

    Published 2023-08-01
    “…Consequently, energy efficiency integrated circuits designs must be put to higher attention. …”
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    Article
  9. 329

    An improved non-local awareness of congestion and load balanced algorithm for the communication of on chip 2D mesh-based network by Munib Ahmed, Muhammad Iram Baig

    Published 2023-04-01
    “…Due to advancements in multi-core design technology, IC (Integrated Circuits) designers have expanded the single chip multi-core design. …”
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    Article
  10. 330

    Using of asynchronous circuits to increase protection against side channels attacks by Igor A. Danilov, Pavel S. Dolotov

    Published 2022-06-01
    “…One of the methods to counter side-channel attacks is the use of asynchronous circuits, which main distinguishing feature is the refusal from the use of a global clock signal to synchronize individual elements of an integrated circuit in favour of local synchronization provided by the "handshake" mechanism. Integrated circuits designed using asynchronous circuitry have a number of unique benefits that make it possible to effectively resist side-channel attacks, such as timing attacks and attacks with using power consumption analysis. …”
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    Article
  11. 331

    Comparison of Metal-Based PZT and PMN–PT Energy Harvesters Fabricated by Aerosol Deposition Method by Chao-Ting Chen, Shun-Chiu Lin, Urška Trstenjak, Matjaž Spreitzer, Wen-Jong Wu

    Published 2021-07-01
    “…Thus, these devices exhibited promising properties, meeting the high current and low voltage requirements in integrated circuit designs.…”
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    Article
  12. 332

    Co-packaged optics (CPO): status, challenges, and solutions by Min Tan, Jiang Xu, Siyang Liu, Junbo Feng, Hua Zhang, Chaonan Yao, Shixi Chen, Hangyu Guo, Gengshi Han, Zhanhao Wen, Bao Chen, Yu He, Xuqiang Zheng, Da Ming, Yaowen Tu, Qiang Fu, Nan Qi, Dan Li, Li Geng, Song Wen, Fenghe Yang, Huimin He, Fengman Liu, Haiyun Xue, Yuhang Wang, Ciyuan Qiu, Guangcan Mi, Yanbo Li, Tianhai Chang, Mingche Lai, Luo Zhang, Qinfen Hao, Mengyuan Qin

    Published 2023-03-01
    “…Leading international companies (e.g., Intel, Broadcom and IBM) have heavily investigated in CPO technology, an inter-disciplinary research field that involves photonic devices, integrated circuits design, packaging, photonic device modeling, electronic-photonic co-simulation, applications, and standardization. …”
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    Article
  13. 333

    A 66–76 GHz Wide Dynamic Range GaAs Transceiver for Channel Emulator Application by Peigen Zhou, Chen Wang, Jin Sun, Zhe Chen, Jixin Chen, Wei Hong

    Published 2022-05-01
    “…In this study, we developed a single-channel channel emulator module with an operating frequency covering 66–67 GHz, including a 66–76 GHz wide dynamic range monolithic integrated circuit designed based on 0.1 µm pHEMT GaAs process, a printed circuit board (PCB) power supply bias network, and low-loss ridge microstrip line to WR12 (60–90 GHz) waveguide transition structure. …”
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    Article
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