Academic literature on the topic 'Electromagnetic interference. Mixed signal circuits'
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Journal articles on the topic "Electromagnetic interference. Mixed signal circuits"
Luo, Ming, and Ka-Ma Huang. "AN EXTENDED DELAY-RATIONAL MACROMODEL FOR ELECTROMAGNETIC INTERFERENCE ANALYSIS OF MIXED SIGNAL CIRCUITS." Progress In Electromagnetics Research 127 (2012): 189–210. http://dx.doi.org/10.2528/pier12022406.
Full textBarylo, Gryhoriy, Oksana Boyko, Ihor Helzhynskyy, Tetyana Marusenkova, Yurii Kryvenchuk, and Roman Holyaka. "HARDWARE-SOFTWARE EMBEDDED SYSTEM OF SIGNAL FREQUENCY SELECTION ON GYRATOR." Measuring Equipment and Metrology 82, no. 1 (2021): 37–42. http://dx.doi.org/10.23939/istcmtm2021.01.037.
Full textSun, Guo Qiang, Gang Guo, Yong Bo Yang, Dong Ping Yang, and Jian Feng Zhang. "Analysis of Electromagnetic Compatibility about Air-Power-Off of Aircraft Power System." Advanced Materials Research 503-504 (April 2012): 983–86. http://dx.doi.org/10.4028/www.scientific.net/amr.503-504.983.
Full textPerez, Daniel, Ignacio Gil, Javier Gago, Raúl Fernandez-Garcia, Josep Balcells, David Gonzalez, Néstor Berbel, and Juan Mon. "Reduction of Electromagnetic Interference Susceptibility in Small-Signal Analog Circuits Using Complementary Split-Ring Resonators." IEEE Transactions on Components, Packaging and Manufacturing Technology 2, no. 2 (February 2012): 240–47. http://dx.doi.org/10.1109/tcpmt.2011.2172442.
Full textLi, Yanchu, Qingqing Ding, Keyue Li, Stanimir Valtchev, Shufang Li, and Liang Yin. "A Survey of Electromagnetic Influence on UAVs from an EHV Power Converter Stations and Possible Countermeasures." Electronics 10, no. 6 (March 17, 2021): 701. http://dx.doi.org/10.3390/electronics10060701.
Full textWang, Ching Sung, Chien Wei Liu, and Teng Hui Wang. "Implement a Low Noise Portable ECG Circuit." Advanced Materials Research 301-303 (July 2011): 1327–32. http://dx.doi.org/10.4028/www.scientific.net/amr.301-303.1327.
Full textSaiapina, Inna, Mykhailo Babaiev, and Olha Аnanіevа. "Reducing noise influence on an audio frequency track circuit." MATEC Web of Conferences 294 (2019): 03015. http://dx.doi.org/10.1051/matecconf/201929403015.
Full textHuang, Hsieh Chang, Ching Tang Hsieh, and Guang Lin Hsieh. "An Ultra-Low Power Holter and Low Complexity Design Using Mixed Signal Processor." Applied Mechanics and Materials 284-287 (January 2013): 1627–32. http://dx.doi.org/10.4028/www.scientific.net/amm.284-287.1627.
Full textWeng, T., S. Stegemann, W. John, and W. Mathis. "An identification procedure of multi-input Wiener models for the distortion analysis of nonlinear circuits." Advances in Radio Science 11 (July 4, 2013): 165–70. http://dx.doi.org/10.5194/ars-11-165-2013.
Full textPoymalin, V. E., A. V. Buyankin, A. A. Nelin, L. E. Ragulina, and M. V. Ryzhakov. "Shielding Device for Microwave Electronic Components of a Multilayer Board for the AFAR Transceiver Module for Space Purposes." Rocket-space device engineering and information systems 8, no. 2 (2021): 82–87. http://dx.doi.org/10.30894/issn2409-0239.2021.8.2.82.87.
Full textDissertations / Theses on the topic "Electromagnetic interference. Mixed signal circuits"
Bayram, Yakup. "Hybrid methods for mixed signal circuits subject to on & off - board electromagnetic interference." Columbus, Ohio : Ohio State University, 2006. http://rave.ohiolink.edu/etdc/view?acc%5Fnum=osu1158616495.
Full textHuh, Suzanne Lynn. "Design of power delivery networks for noise suppression and isolation using power transmission lines." Diss., Georgia Institute of Technology, 2011. http://hdl.handle.net/1853/42842.
Full textKim, Tae Hong. "Electromagnetic Band Gap (EBG) synthesis and its application in analog-to-digital converter load boards." Diss., Georgia Institute of Technology, 2007. http://hdl.handle.net/1853/22712.
Full textDeobarro, Mikaël. "Etude de l'immunité des circuits intégrés face aux agressions électromagnétiques : proposition d'une méthode de prédiction des couplages des perturbations en mode conduit." Thesis, Toulouse, INSA, 2011. http://www.theses.fr/2011ISAT0002/document.
Full textWith technological advances in recent decades, the complexity and operating speeds of integrated circuits have greatly increased. While these developments have reduced dimensions and supply voltages of circuits, electromagnetic compatibility (EMC) of components has been highly degraded. Identified as a technological lock, EMC is now one of the main causes of circuits re-designs because issues related to generating and coupling noise mechanisms are not sufficiently studied during their design. This manuscript introduces a methodology to study propagation of electromagnetic disturbances through integrated circuits by measurements and simulations. To improve our knowledge about propagation of electromagnetic interferences (EMI) and coupling mechanisms through integrated circuits, we designed a test vehicle developed in the SMOS8MV® 0.25µm technology from Freescale Semiconductor. In this circuit, several basic functions such as I/O bus and digital blocks have been implemented. Asynchronous on-chip voltage sensors have also been integrated on different supplies of the chip to analyze propagation of disturbances injected on supply pins and wires of the component (DPI and BCI injection). In addition, we propose various tools to facilitate modeling and simulations of Integrated Circuit’s immunity (PCB model extraction, injection systems modeling approaches, innovative method to predict and correlate levels of voltage / power injected during conducted immunity measurements, modeling flow). Each tool and modeling method proposed is evaluated on different test cases. To assess our modeling approach, we finally apply it on a digital block of our test vehicle and compare simulation results to various internal and external measurements performed on the circuit
Huang, Pao-Shu, and 黃寶樹. "Effectively Reduced Radiated Electromagnetic Interference for Emission Source of High-Frequency Signal Circuits Using the Filter." Thesis, 2008. http://ndltd.ncl.edu.tw/handle/44369029146505243380.
Full text輔仁大學
電子工程學系
96
Now, the high-speed signal of printed circuit board of electronic product usually exceeds 100MHz, moreover, the nonideal behavior of the circuit makes the high-speed signal produce radiated electromagnetic interference (radiated EMI) easily, however, the radiated EMI are mostly coming from higher frequency harmonic of high-speed signal, So this thesis proposes four kinds of different structure EMI filters and then using Pspice to simulate EMI filter’s circuit and using derived transfer function to calculate EMI filter’s parameters, finally, put electronic product into EMI chamber and actually measure radiated EMI, it can prove that radiated EMI produced by high-speed signal can be suppress and enable the electronic product to pass the regulation of EMI (CISPR 22).
(11178318), Debayan Das. "Advanced EM/Power Side-Channel Attacks and Low-overhead Circuit-level Countermeasures." Thesis, 2021.
Find full textBooks on the topic "Electromagnetic interference. Mixed signal circuits"
Caniggia, Spartaco. Signal integrity and radiated emissions of high-speed digital systems. Chichester, West Sussex, England: Wiley, 2008.
Find full textSmaini, Lydi. RF analog impairments modeling for communication systems simulation: Application to OFDM-based transceivers. Chichester, West Sussex: Wiley, 2012.
Find full textRF analog impairments modeling for communication systems simulation: Application to OFDM-based transceivers. Chichester, West Sussex: Wiley, 2012.
Find full textBrooks, Douglas. Signal Integrity Issues and Printed Circuit Board Design (paperback). Prentice Hall PTR, 2012.
Find full textHigh-Speed Circuit Board Signal Integrity (Artech House Microwave Library). Artech House Publishers, 2004.
Find full textBrooks, Douglas. Signal Integrity Issues and Printed Circuit Board Design. Prentice Hall PTR, 2003.
Find full textConference papers on the topic "Electromagnetic interference. Mixed signal circuits"
Kapora, Sergei, Marcel Hanssen, Jan Niehof, and Quino Sandifort. "Methodology for interference analysis during early design stages of high-performance mixed-signal ICs." In 2015 10th International Workshop on the Electromagnetic Compatibility of Integrated Circuits (EMC Compo). IEEE, 2015. http://dx.doi.org/10.1109/emccompo.2015.7358332.
Full textPloder, Oliver, Christian Motz, Thomas Paireder, Christina Auer, Harald Pretl, and Mario Huemer. "Digitally Intensive Mixed-Signal Approach for Self-Interference Cancellation in LTE-A/5G-Transceivers." In 2021 IEEE International Symposium on Circuits and Systems (ISCAS). IEEE, 2021. http://dx.doi.org/10.1109/iscas51556.2021.9401650.
Full textPrasopsin, Pakorn, Bhirawich Pholpoke, Samattachai Tepwimonpetkun, and Woradorn Wattanapanitch. "A compact low-power mixed-signal architecture for powerline interference rejection in biopotential analog front ends." In 2014 IEEE Biomedical Circuits and Systems Conference (BioCAS). IEEE, 2014. http://dx.doi.org/10.1109/biocas.2014.6981696.
Full textJoshi, Siddharth, Chul Kim, Sohmyung Ha, Yu Mike Chi, and Gert Cauwenberghs. "21.7 2pJ/MAC 14b 8×8 linear transform mixed-signal spatial filter in 65nm CMOS with 84dB interference suppression." In 2017 IEEE International Solid- State Circuits Conference - (ISSCC). IEEE, 2017. http://dx.doi.org/10.1109/isscc.2017.7870412.
Full textWu, Wei. "Electromagnetic Interference (EMI) as Spark-Ignited Combustion Engines Diagnostic Parameter and Its Wireless Measurement and Wavelet Analysis." In ASME 2002 Internal Combustion Engine Division Fall Technical Conference. ASMEDC, 2002. http://dx.doi.org/10.1115/icef2002-500.
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