Literatura científica selecionada sobre o tema "Amplifiers"
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Artigos de revistas sobre o assunto "Amplifiers"
Zygarlicki, Jarosław, e Janusz Mroczka. "Method of testing and correcting signal amplifiers’ transfer function using prony analysis". Metrology and Measurement Systems 19, n.º 3 (1 de outubro de 2012): 489–98. http://dx.doi.org/10.2478/v10178-012-0042-7.
Texto completo da fonteWang, Haishuo, Tiancheng Yu e Zhe Yang. "Design and output spectral peak power optimization of E-band fiber-amplified spontaneous emission spectra". Highlights in Science, Engineering and Technology 72 (15 de dezembro de 2023): 624–31. http://dx.doi.org/10.54097/4w1mdt53.
Texto completo da fonteKumar, Sunil, e Arun Kr Chatterjee. "Comparative study of different Sense Amplifiers in 0.18um technology". INTERNATIONAL JOURNAL OF COMPUTERS & TECHNOLOGY 7, n.º 3 (10 de junho de 2013): 615–19. http://dx.doi.org/10.24297/ijct.v7i3.3440.
Texto completo da fonteSadegh Kazempourfard, Mohammad, Hamid Nadgaran e Seyed Mahdi Mousavi. "The effects of pump pulse fluence on the output energy and amplified spontaneous emission of a femtosecond regenerative amplifier". Laser Physics 32, n.º 1 (14 de dezembro de 2021): 015002. http://dx.doi.org/10.1088/1555-6611/ac3ee8.
Texto completo da fonteBorel, Andžej. "DEVELOPMENT AND INVESTIGATION OF INPUT AMPLIFIER FOR THE OSCILOSCOPE". Mokslas - Lietuvos ateitis 12 (20 de janeiro de 2020): 1–5. http://dx.doi.org/10.3846/mla.2020.11420.
Texto completo da fonteKitsios, E. E., e R. F. Boucher. "The Dynamics of Vortex Amplifiers. Part 1: Analytical Model". Journal of Dynamic Systems, Measurement, and Control 107, n.º 3 (1 de setembro de 1985): 176–81. http://dx.doi.org/10.1115/1.3140717.
Texto completo da fonteSUDO, SHOICHI. "PROGRESS IN OPTICAL FIBER AMPLIFIERS". International Journal of High Speed Electronics and Systems 07, n.º 01 (março de 1996): 1–35. http://dx.doi.org/10.1142/s0129156496000025.
Texto completo da fonteIsmail, Khadijah, P. S. Menon, Sahbudin Shaari, Abang Annuar Ehsan, Norhana Arsad e A. Ashrif A. Bakar. "Link Power Level Improvements in an Amplified 8-Channel CWDM System with Hybrid EDFA-SOA Pre-Amplifier". Applied Mechanics and Materials 799-800 (outubro de 2015): 1361–65. http://dx.doi.org/10.4028/www.scientific.net/amm.799-800.1361.
Texto completo da fonteMei, Shangming, Yihua Hu, Hui Xu e Huiqing Wen. "The Class D Audio Power Amplifier: A Review". Electronics 11, n.º 19 (9 de outubro de 2022): 3244. http://dx.doi.org/10.3390/electronics11193244.
Texto completo da fonteSullivan, J. A. "Simplified model for designing large KrF amplifiers". Laser and Particle Beams 11, n.º 1 (março de 1993): 241–56. http://dx.doi.org/10.1017/s0263034600007084.
Texto completo da fonteTeses / dissertações sobre o assunto "Amplifiers"
Shao, Jin. "Advanced Power Amplifiers Design for Modern Wireless Communication". Thesis, University of North Texas, 2015. https://digital.library.unt.edu/ark:/67531/metadc804973/.
Texto completo da fonteHur, Joonhoi. "A highly linear and efficient out-phasing transmitter for multi-band, multi-mode applications". Diss., Georgia Institute of Technology, 2010. http://hdl.handle.net/1853/42823.
Texto completo da fonteKim, Moonil. "Grid amplifiers". Diss., Pasadena, Calif. : California Institute of Technology, 1993. http://resolver.caltech.edu/CaltechETD:etd-08292007-104142.
Texto completo da fonteTalli, Giuseppe. "Amplified spontaneous emission and gain dynamics in semiconductor optical amplifiers". Thesis, University of Essex, 2004. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.397730.
Texto completo da fonteLee, Ockgoo. "High efficiency switching CMOS power amplifiers for wireless communications". Diss., Georgia Institute of Technology, 2009. http://hdl.handle.net/1853/37145.
Texto completo da fonteKunarajah, Enoch Arumaishanth. "Distributed Raman amplifiers". Thesis, University of Essex, 2004. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.399979.
Texto completo da fonteBarradas, Filipe Miguel Esturrenho. "RF parametric amplifiers". Master's thesis, Universidade de Aveiro, 2012. http://hdl.handle.net/10773/10198.
Texto completo da fonteRecentemente tem-se feito um esforço no sentido de aumentar a eficiência em aplicadores de RF, no entanto, o transístor é um dispositivo intrinsecamente ineficiente. Utilizando amplificadores paramétricos pode-se teoricamente chegar a 100% de eficiência mesmo operando em modo linear. A razão desta elevada eficiência é o dispositivo activo utilizado, já que os amplificadores paramétricos utilizam uma reactância controlada, que não consome potência. Esta mudança de elemento activo modifica completamente o princípio de funcionamento dos amplificadores. Neste trabalho este tipo de amplificação é estudado, relações e transformações conhecidas são examinadas primeiro para obter propriedades limite gerais. Depois é feita análise de pequeno sinal para se obterem outras características importantes. Finalmente, um novo modelo de grande sinal é derivado e apresentado. Este modelo é capaz de prever algumas características do amplificador, tal como o AM/AM. Utilizando o modelo de grande sinal apresentado projecta-se um amplificador, sendo este posteriormente simulado.
In recent years a significant effort has been made towards efficiency increase in RF amplifiers. The transistor is, however, an intrinsically inefficient device. Parametric amplification can theoretically be 100% efficient even operating in linear mode. The reason behind this efficiency is the active device. These amplifiers forget the transistor to use a controlled reactance, which cannot consume power. This switch in active element changes the whole principle of operation of the amplifiers. In this work this type of amplification is studied. Known relations and transformations are first examined to obtain general limit properties of the used elements. Then small-signal analysis is performed to obtain other important characteristics. Finally, a novel large signal model is developed and presented. This model is capable of accurately predicting the non-linear responses of the amplifier, such as the AM/AM. Using the presented large-signal model, an amplifier is designed and simulated.
Al, Tanany Ahmed. "A Study of Switched Mode Power Amplifiers using LDMOS". Thesis, University of Gävle, Department of Technology and Built Environment, 2007. http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-701.
Texto completo da fonteThis work focuses on different kinds of Switch Mode Power Amplifiers (SMPAs) using LDMOS technologies. It involves a literature study of different SMPA concepts. Choosing the suitable class that achieves the high efficiency was the base stone of this
work. A push-pull class J power amplifier (PA) was designed with an integrated LC resonator inside the package using the bondwires and die capacitances. Analysis and motivation of the chosen class is included. Designing the suitable Input/Output printed circuit board (PCB) external circuits (i.e.; BALUN circuit, Matching network and DC
bias network) was part of the work. This work is done by ADS simulation and showed a simulated result of about 70% drain efficiency for 34 W output power and 16 dB gain at 2.14 GHz. Study of the losses in each part of the design elements is also included.
Another design at lower frequency (i.e.; at 0.94 GHz) was also simulated and compared to the previous design. The drain efficiency was 83% for 32 W output power and 15.4 dB Gain.
Gray, Blake Raymond. "Design of RF and microwave parametric amplifiers and power upconverters". Diss., Georgia Institute of Technology, 2012. http://hdl.handle.net/1853/43613.
Texto completo da fonteGordienko, Vladimir. "Broadband fibre parametric amplifiers". Thesis, Aston University, 2018. http://publications.aston.ac.uk/37690/.
Texto completo da fonteLivros sobre o assunto "Amplifiers"
Jones, Morgan. Valve amplifiers. 2a ed. Oxford: Newnes, 1999.
Encontre o texto completo da fonteHuijsing, Johan. Operational Amplifiers. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-28127-8.
Texto completo da fonteHuijsing, Johan. Operational Amplifiers. Dordrecht: Springer Netherlands, 2011. http://dx.doi.org/10.1007/978-94-007-0596-8.
Texto completo da fonteStarič, Peter, e Erik Margan, eds. Wideband Amplifiers. Boston, MA: Springer US, 2006. http://dx.doi.org/10.1007/978-0-387-28341-8.
Texto completo da fonteHuijsing, Johan. Operational Amplifiers. Boston, MA: Springer US, 2001. http://dx.doi.org/10.1007/978-1-4757-3341-9.
Texto completo da fonteJones, Morgan. Valve amplifiers. 3a ed. Amsterdam: Elsevier/Newnes, 2003.
Encontre o texto completo da fonteSteve, Winder, ed. Operational amplifiers. 4a ed. Oxford: Newnes, 2000.
Encontre o texto completo da fonteSteve, Winder, ed. Operation amplifiers. 5a ed. Oxford: Newnes, 2003.
Encontre o texto completo da fonteG, Newby B. W., ed. Operational amplifiers. 3a ed. Oxford: Newnes, 1992.
Encontre o texto completo da fonteClayton, G. B. Operational amplifiers. Birkenhead: Megacycal Software Ltd, 1986.
Encontre o texto completo da fonteCapítulos de livros sobre o assunto "Amplifiers"
Blackburn, James A. "Amplifiers". In Modern Instrumentation for Scientists and Engineers, 37–56. New York, NY: Springer New York, 2001. http://dx.doi.org/10.1007/978-1-4613-0103-5_5.
Texto completo da fonteWatson, John. "Amplifiers". In Mastering Electronics, 113–25. London: Macmillan Education UK, 1996. http://dx.doi.org/10.1007/978-1-349-14210-1_12.
Texto completo da fonteGraziane, Nicholas, e Yan Dong. "Amplifiers". In Neuromethods, 33–53. New York, NY: Springer New York, 2016. http://dx.doi.org/10.1007/978-1-4939-3274-0_3.
Texto completo da fonteMagrab, Edward B. "Amplifiers". In Computer Integrated Experimentation, 87–111. Berlin, Heidelberg: Springer Berlin Heidelberg, 1991. http://dx.doi.org/10.1007/978-3-642-95638-6_4.
Texto completo da fonteHuber, David Miles, e Robert E. Runstein. "Amplifiers". In Modern Recording Techniques, 389–95. Edition 9. | New York; London : Routledge, 2017.: Routledge, 2017. http://dx.doi.org/10.4324/9781315666952-13.
Texto completo da fonteTietze, Ulrich, Christoph Schenk e Eberhard Gamm. "Amplifiers". In Electronic Circuits, 269–482. Berlin, Heidelberg: Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-78655-9_4.
Texto completo da fonteLewis, Barry, e Tim Strickland. "Amplifiers". In The Electronics Pathway, 144–93. London: Macmillan Education UK, 1996. http://dx.doi.org/10.1007/978-1-349-13300-0_7.
Texto completo da fonteLipton, Richard J. "Amplifiers". In The P=NP Question and Gödel’s Lost Letter, 195–99. Boston, MA: Springer US, 2010. http://dx.doi.org/10.1007/978-1-4419-7155-5_40.
Texto completo da fontevan de Roer, Theo G. "Amplifiers". In Microwave Electronic Devices, 255–86. Boston, MA: Springer US, 1994. http://dx.doi.org/10.1007/978-1-4615-2500-4_9.
Texto completo da fonteGraziane, Nicholas, e Yan Dong. "Amplifiers". In Neuromethods, 33–53. New York, NY: Springer US, 2022. http://dx.doi.org/10.1007/978-1-0716-2589-7_3.
Texto completo da fonteTrabalhos de conferências sobre o assunto "Amplifiers"
Laming, R. I., D. N. Payne, F. Meli, G. Grasso e E. J. Tarbox. "Saturated Erbium-Doped Fibre Amplifiers". In Optical Amplifiers and Their Applications. Washington, D.C.: Optica Publishing Group, 1990. http://dx.doi.org/10.1364/oaa.1990.mb3.
Texto completo da fonteWay, W. I., A. C. Von Lehman, M. J. Andrejco, M. A. Saifi e C. Lin. "Noise Figure of a Gain-Saturated Erbium-Doped Fiber Amplifier Pumped at 980 nm". In Optical Amplifiers and Their Applications. Washington, D.C.: Optica Publishing Group, 1990. http://dx.doi.org/10.1364/oaa.1990.tub3.
Texto completo da fonteFleming, G. R., A. J. Ruggiero e N. F. Scherer. "Impulsive Phase Coherent Femtosecond Spectroscopy of Molecular Transients at Repetition Rates in the 100kHz Range". In International Conference on Ultrafast Phenomena. Washington, D.C.: Optica Publishing Group, 1990. http://dx.doi.org/10.1364/up.1990.thd3.
Texto completo da fonteMehuys, D., D. F. Welch, R. G. Waarts, R. Parke, A. Hardy e W. Streifer. "Modal analysis of monolithically integrated, surface-emitting, master oscillator power amplifiers". In OSA Annual Meeting. Washington, D.C.: Optica Publishing Group, 1990. http://dx.doi.org/10.1364/oam.1990.mk4.
Texto completo da fonteKoo, Joonhoi, Dong Joon Kim, Seung Won Jun, Hwanseong Jeong, Kwanghyun Lee, Jung Hwan Lee e Minsik Jo. "Narrow Linewidth, Filtered-Superfluorescent High Power Source with Linear Polarization". In Advanced Solid State Lasers. Washington, D.C.: Optica Publishing Group, 2022. http://dx.doi.org/10.1364/assl.2022.jm4a.2.
Texto completo da fonteJopson, R. M., e G. Eisenstein. "Optical Amplifiers for Photonic Switches". In Photonic Switching. Washington, D.C.: Optica Publishing Group, 1987. http://dx.doi.org/10.1364/phs.1987.fc1.
Texto completo da fonteAuge, J., B. Clesca, B. Biotteau, P. Bousselet, A. Dursin, C. Clergeaud, P. Kretzmeyer et al. "Repeaterless Transmission With 62.9 dB Power Budget Using A Highly Efficient Erbium-Doped Fiber Amplifier Module". In Optical Amplifiers and Their Applications. Washington, D.C.: Optica Publishing Group, 1990. http://dx.doi.org/10.1364/oaa.1990.tuc3.
Texto completo da fonteRhoads, Jeffrey F., e Steven W. Shaw. "The Effects of Nonlinearity on Parametric Amplifiers". In ASME 2008 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. ASMEDC, 2008. http://dx.doi.org/10.1115/detc2008-49594.
Texto completo da fonteGiles, C. Randy. "Signal propagation and noise accumulation in amplified lightwave systems". In OSA Annual Meeting. Washington, D.C.: Optica Publishing Group, 1990. http://dx.doi.org/10.1364/oam.1990.tha4.
Texto completo da fonteIzadpanah, H., A. Elrefaie, W. Sessa, Chinlon Lin, S. Tsuji e H. Inoue. "A Multi-Gb/s Self-Synchronized Optical Regenerator Using a 1.55 μm Traveling-Wave Semiconductor Optical Amplifier". In Optical Amplifiers and Their Applications. Washington, D.C.: Optica Publishing Group, 1990. http://dx.doi.org/10.1364/oaa.1990.wc5.
Texto completo da fonteRelatórios de organizações sobre o assunto "Amplifiers"
Rutledge, David. Grid Amplifiers. Fort Belvoir, VA: Defense Technical Information Center, julho de 1995. http://dx.doi.org/10.21236/ada300131.
Texto completo da fonteCottingham, J. G. RF Cavities and Amplifiers. Office of Scientific and Technical Information (OSTI), julho de 1988. http://dx.doi.org/10.2172/1119130.
Texto completo da fonteCheung, Chun-Tung, Blythe Deckman, James J. Rosenberg e David B. Rutledge. Progress in Grid Amplifiers. Fort Belvoir, VA: Defense Technical Information Center, maio de 2003. http://dx.doi.org/10.21236/ada413414.
Texto completo da fonteAlaniz, Gabriel. Tuning Broadband Microwave Amplifiers. Office of Scientific and Technical Information (OSTI), setembro de 2003. http://dx.doi.org/10.2172/815637.
Texto completo da fonteSutton, S., C. Marshall, C. Petty, L. Smith, B. van Wonterghem e S. Mills. Thermal recovery of NIF amplifiers. Office of Scientific and Technical Information (OSTI), fevereiro de 1997. http://dx.doi.org/10.2172/562469.
Texto completo da fonteTeegarden, Kenneth J. Fiber Laser Amplifiers and Oscillators. Fort Belvoir, VA: Defense Technical Information Center, setembro de 1993. http://dx.doi.org/10.21236/ada274231.
Texto completo da fonteKircher, C. J. Tunnelling Hot Electron Transfer Amplifiers. Fort Belvoir, VA: Defense Technical Information Center, outubro de 1993. http://dx.doi.org/10.21236/ada275529.
Texto completo da fonteDelagrange, Arthur D. An Alternative to Operational Amplifiers. Fort Belvoir, VA: Defense Technical Information Center, junho de 1990. http://dx.doi.org/10.21236/ada237439.
Texto completo da fonteLuhmann, N. C., e Jr. Stable High-Power Harmonic Gyro-Amplifiers. Fort Belvoir, VA: Defense Technical Information Center, setembro de 1994. http://dx.doi.org/10.21236/ada293697.
Texto completo da fonteBennett, E. F. Induction filtering for proportional counter amplifiers. Office of Scientific and Technical Information (OSTI), março de 1989. http://dx.doi.org/10.2172/6276326.
Texto completo da fonte