10 resultados para OCULAR PULSE AMPLITUDE

em Repositório Científico do Instituto Politécnico de Lisboa - Portugal


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A Blumlein line is a particular Pulse Forming Line, PFL, configuration that allows the generation of high-voltage sub-microsecond square pulses, with the same voltage amplitude as the dc charging voltage, into a matching load. By stacking n Blumlein lines one can multiply in theory by n the input dc voltage charging amplitude. In order to understand the operating behavior of this electromagnetic system and to further optimize its operation it is fundamental to theoretically model it, that is to calculate the voltage amplitudes at each circuit point and the time instant that happens. In order to do this, one needs to define the reflection and transmission coefficients where impedance discontinuity occurs. The experimental results of a fast solid-state switch, which discharges a three stage Blumlein stack, will be compared with theoretical ones.

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Sub-nanosecond bipolar high voltage pulses are a very important tool for food processing, medical treatment, waste water and exhaust gas processing. A Hybrid Modulator for sub-microsecond bipolar pulse generation, comprising an unipolar solid-state Marx generator connected to a load through a stack Blumlein system that produces bipolar pulses and further multiplies the pulse voltage amplitude, is presented. Experimental results from an assembled prototype show the generation of 1000 V amplitude bipolar pulses with 100 ns of pulse width and 1 kHz repetition rate.

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The intensive use of semiconductor devices enabled the development of a repetitive high-voltage pulse-generator topology from the dc voltage-multiplier (VM) concept. The proposed circuit is based on an odd VM-type circuit, where a number of dc capacitors share a common connection with different voltage ratings in each one, and the output voltage comes from a single capacitor. Standard VM rectifier and coupling diodes are used for charging the energy-storing capacitors, from an ac power supply, and two additional on/off semiconductors in each stage, to switch from the typical charging VM mode to a pulse mode with the dc energy-storing capacitors connected in series with the load. Results from a 2-kV experimental prototype with three stages, delivering a 10-mu s pulse with a 5-kHz repetition rate into a resistive load, are discussed. Additionally, the proposed circuit is compared against the solid-state Marx generator topology for the same peak input and output voltages.

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A newly developed solid-state repetitive high-voltage (HV) pulse modulator topology created from the mature concept of the d.c. voltage multiplier (VM) is described. The proposed circuit is based in a voltage multiplier type circuit, where a number of d.c. capacitors share a common connection with different voltage rating in each one. Hence, besides the standard VM rectifier and coupling diodes, two solid-state on/off switches are used, in each stage, to switch from the typical charging VM mode to a pulse mode with the d.c. capacitors connected in series with the load. Due to the on/off semiconductor configuration, in half-bridge structures, the maximum voltage blocked by each one is the d.c. capacitor voltage in each stage. A 2 kV prototype is described and the results are compared with PSPICE simulations.

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Optical fiber microwires (OFMs) are nonlinear optical waveguides that support several spatial modes. The multimodal generalized nonlinear Schrodinger equation (MM-GNLSE) is deduced taking into account the linear and nonlinear modal coupling. A detailed theoretical description of four-wave mixing (FWM) considering the modal coupling is developed. Both, the intramode and the intermode phase-matching conditions is calculated for an optical microwire in a strong guiding regime. Finally, the FWM dynamics is studied and the amplitude evolution of the pump beams, the signal and the idler are analyzed.

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Dissertação para obtenção do grau de Mestre em Engenharia Electrotécnica Ramo de Automação e Electrónica Industrial

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Objectivos - Na sociedade atual as pessoas são diariamente expostas a inúmeras situações de stress. As exaltações vividas são transformadas em energia pulsional que por sua vez deve ser despendida segundo três vias: psíquica, motora e visceral. Se esta energia não for despendida pelas duas primeiras vias, acumula-se como carga psíquica originando tensão psíquica. A tensão gerada vai repercutir-se na saúde de cada indivíduo. Uma das causas da Coriorretinopatia Central Serosa (CRCS) é o stress. A CRCS é uma patologia de carácter esporádico, caracterizada por um descolamento seroso espontâneo da retina neuro sensorial na região macular, com consequente comprometimento da acuidade visual (AV). Sendo uma patologia de carácter esporádico desencadeada por situações de stress, pretende-se caracterizar as manifestações consequentes desta patologia, bem como abordar os factores diagnósticos da mesma, no caso em estudo. Metodologia - Estudo de caso. Análise de um paciente do sexo masculino, de 36 anos de idade, com diagnóstico de CRCS. Resultados - A CRCS caracteriza-se por um descolamento seroso da retina neuro sensorial na região macular, com comprometimento da visão. O paciente chegou à consulta com queixa de baixa de acuidade visual súbita do olho esquerdo. Realizaram-se exames para concluir o diagnóstico sendo estes, OCT, angiografia e avaliação da acuidade visual. Na angiografia verifica-se afeção da área macular, ao OCT verifica-se descolamento seroso da retina neuro sensorial na região macular. A acuidade visual era de 6/10 no olho esquerdo e 10/10 no olho direito. Apresentava ainda queixas de metamorfopsias. Discussão / Conclusão - Ainda que a etiologia da CRCS não seja totalmente conhecida, encontra-se associada a situações de stress, a hipertensão arterial, a comportamentos decorrentes da forma exagerada e ansiosa de viver, à competitividade, gravidez e medicação sistémica de esteróides. O tratamento inicial recomendado é repouso absoluto, caso se verifique insucesso o tratamento passará pela realização de terapia fotodinâmica.

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This paper describes a modular solid-state switching cell derived from the Marx generator concept to be used in topologies for generating multilevel unipolar and bipolar high-voltage (HV) pulses into resistive loads. The switching modular cell comprises two ON/OFF semiconductors, a diode, and a capacitor. This cell can be stacked, being the capacitors charged in series and their voltages balanced in parallel. To balance each capacitor voltage without needing any parameter measurement, a vector decision diode algorithm is used in each cell to drive the two switches. Simulation and experimental results, for generating multilevel unipolar and bipolar HV pulses into resistive loads are presented.

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A citologia de impressão da superfície ocular é uma técnica pouco invasiva que permite a análise de células da conjuntiva e da córnea, sendo uma alternativa aos esfregaços e punções. Desta forma, é indispensável garantir uma fase analítica eficiente. Na revisão bibliográfica encontram-se diversos agentes fixadores para este tipo de material, não sendo explícito o método de fixação mais eficaz. A fixação visa preservar os constituintes celulares quimicamente e estruturalmente, numa situação idêntica ao in vivo, estado este que é fundamental para a realização da técnica e consequente obtenção de um diagnóstico final correto. Objetivo do estudo - O objetivo deste estudo foi identificar o melhor fixador para amostras de citologia de impressão ocular – SureThin, PreservCyt, etanol a 95% e uma mistura constituída por formaldeído a 37%, ácido acético glacial e etanol a 70% (FAA 70%).

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Amorphous and crystalline sputtered boron carbide thin films have a very high hardness even surpassing that of bulk crystalline boron carbide (≈41 GPa). However, magnetron sputtered B-C films have high friction coefficients (C.o.F) which limit their industrial application. Nanopatterning of materials surfaces has been proposed as a solution to decrease the C.o.F. The contact area of the nanopatterned surfaces is decreased due to the nanometre size of the asperities which results in a significant reduction of adhesion and friction. In the present work, the surface of amorphous and polycrystalline B-C thin films deposited by magnetron sputtering was nanopatterned using infrared femtosecond laser radiation. Successive parallel laser tracks 10 μm apart were overlapped in order to obtain a processed area of about 3 mm2. Sinusoidal-like undulations with the same spatial period as the laser tracks were formed on the surface of the amorphous boron carbide films after laser processing. The undulations amplitude increases with increasing laser fluence. The formation of undulations with a 10 μm period was also observed on the surface of the crystalline boron carbide film processed with a pulse energy of 72 μJ. The amplitude of the undulations is about 10 times higher than in the amorphous films processed at the same pulse energy due to the higher roughness of the films and consequent increase in laser radiation absorption. LIPSS formation on the surface of the films was achieved for the three B-C films under study. However, LIPSS are formed under different circumstances. Processing of the amorphous films at low fluence (72 μJ) results in LIPSS formation only on localized spots on the film surface. LIPSS formation was also observed on the top of the undulations formed after laser processing with 78 μJ of the amorphous film deposited at 800 °C. Finally, large-area homogeneous LIPSS coverage of the boron carbide crystalline films surface was achieved within a large range of laser fluences although holes are also formed at higher laser fluences.