Academic literature on the topic 'Half wave cockcroft walton'

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Journal articles on the topic "Half wave cockcroft walton"

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Kobougias, Ioannis C., and Emmanuel C. Tatakis. "Optimal Design of a Half-Wave Cockcroft–Walton Voltage Multiplier With Minimum Total Capacitance." IEEE Transactions on Power Electronics 25, no. 9 (2010): 2460–68. http://dx.doi.org/10.1109/tpel.2010.2049380.

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Jaiwanglok, Anurak, Kei Eguchi, Krit Smerpitak, and Amphawan Julsereewong. "Modification of Cockcroft–Walton-Based High-Voltage Multipliers with 220 V and 50 Hz Input for Non-Thermal Food Processing Apparatus." Sustainability 12, no. 16 (2020): 6330. http://dx.doi.org/10.3390/su12166330.

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A design of high-voltage multipliers to generate underwater shockwaves is one of the most important factors for successfully providing non-thermal food processing in a cost-effective manner. To be capable of fully utilizing the Cockcroft–Walton-based high-voltage multipliers for underwater shockwave generation, this paper presents a topological modification of three interesting design approaches in bipolar structure for 220 V and 50 Hz AC input to generate more than 3.5 kV DC output within short time periods. In addition to Cockcroft–Walton multipliers (CWMs), the first modified scheme employs
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Alex-Amor, Antonio, Ángel Palomares-Caballero, José Fernández-González, et al. "RF Energy Harvesting System Based on an Archimedean Spiral Antenna for Low-Power Sensor Applications." Sensors 19, no. 6 (2019): 1318. http://dx.doi.org/10.3390/s19061318.

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This paper presents a radiofrequency (RF) energy harvesting system based on an ultrawideband Archimedean spiral antenna and a half-wave Cockcroft-Walton multiplier circuit. The antenna was proved to operate from 350 MHz to 16 GHz with an outstanding performance. With its use, radio spectrum measurements were carried out at the Telecommunication Engineering School (Universidad Politécnica de Madrid) to determine the power level of the ambient signals in two different scenarios: indoors and outdoors. Based on these measurements, a Cockcroft-Walton multiplier and a lumped element matching network
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Mao, Saijun, Jelena Popovic, and Jan Abraham Ferreira. "Diode Reverse Recovery Process and Reduction of a Half-Wave Series Cockcroft–Walton Voltage Multiplier for High-Frequency High-Voltage Generator Applications." IEEE Transactions on Power Electronics 34, no. 2 (2019): 1492–99. http://dx.doi.org/10.1109/tpel.2018.2834406.

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Alex-Amor, Antonio, Javier Moreno-Núñez, José M. Fernández-González, Pablo Padilla, and Jaime Esteban. "Parasitics Impact on the Performance of Rectifier Circuits in Sensing RF Energy Harvesting." Sensors 19, no. 22 (2019): 4939. http://dx.doi.org/10.3390/s19224939.

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This work presents some accurate guidelines for the design of rectifier circuits in radiofrequency (RF) energy harvesting. New light is shed on the design process, paying special attention to the nonlinearity of the circuits and the modeling of the parasitic elements. Two different configurations are tested: a Cockcroft–Walton multiplier and a half-wave rectifier. Several combinations of diodes, capacitors, inductors and loads were studied. Furthermore, the parasitics that are part of the circuits were modeled. Thus, the most harmful parasitics were identified and studied in depth in order to
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Boscolo, I., F. Giuliani, M. Valentini, and M. Roche. "A Cockcroft-Walton for FELTRON: the new mu -wave source for TeV colliders." IEEE Transactions on Nuclear Science 39, no. 2 (1992): 308–14. http://dx.doi.org/10.1109/23.277502.

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Maennel, Christian G. H. "Improvement in the modelling of a half-wave Cockroft-Walton voltage multiplier." Review of Scientific Instruments 84, no. 6 (2013): 064701. http://dx.doi.org/10.1063/1.4807703.

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Li, Tansheng, Kikuzo Sawada, Harutoshi Ogai, and Wa Si. "UHF-Band Wireless Power Transfer System for Structural Health Monitoring Sensor Network." Smart Materials Research 2013 (November 11, 2013): 1–7. http://dx.doi.org/10.1155/2013/496492.

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For detecting and measuring health conditions of bridges, wireless sensor networks are used in these days. However, battery life is critically restricting the application and maintenance cost of sensor network systems. To extend life time, a wireless power transfer system at UHF band is introduced to supply the current wireless sensor network. This power transfer system is based on electric wave at 950 MHz. This power transfer system is redesigned for tiny power transmission, including a combination of a rectenna and a Cockcroft-Walton boost converter, battery board, and a control board. Also,
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Kim, Do-Hyun, Min-Soo Kim, Muhammad Adil Khan, and Hee-Je Kim. "Analysis of Fine Dust Removal Time Using Circular Hole Electrodes of Various Sizes by Corona Discharge." Energies 11, no. 8 (2018): 1956. http://dx.doi.org/10.3390/en11081956.

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Corona discharge technology is used widely for air purification in laboratory experiments and industry. On the other hand, corona discharge technology has the disadvantage of requiring large-sized electrodes. Therefore, research is needed to reduce the size of the electrodes. In this study, circular hole aluminum electrodes and an air purifier system were designed to reduce the size of the electrodes. Several sets of power conversions were performed to generate a corona discharge. The system consisted of a half bridge inverter, step-up transformer, and Cockcroft Walton circuit. The range of in
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Singhasathein, A., W. Kesi, S. Boonyayut, et al. "Design and Construction of 30 kV High Voltage Generator Using Fly-Back Converter." Applied Mechanics and Materials 781 (August 2015): 361–65. http://dx.doi.org/10.4028/www.scientific.net/amm.781.361.

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This paper mentions the design and construction of high voltage generator 30 kV using a Fly-back converter. The designed circuit includes the high frequency switching generator which applies power to the primary input voltage of Fly-back transformer. The input power is transformed to be high voltage on the secondary side of Fly-back transformer. The half wave rectifier is constructed for the high voltage direct current (HVDC). Resistive voltage divider is designed and constructed to measure HVDC as well. Moreover, the characteristics of output voltage waveform of the proposed generator is comp
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Dissertations / Theses on the topic "Half wave cockcroft walton"

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Κομπούγιας, Ιωάννης. "Βέλτιστος σχεδιασμός πολλαπλασιαστών τάσης για φωτοβολταϊκά πλαίσια συνδεδεμένα στο δίκτυο χαμηλής τάσης". Thesis, 2011. http://hdl.handle.net/10889/5383.

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Η παρούσα διδακτορική διατριβή εστιάζεται στον χώρο των Φ/Β πλαισίων εναλλασσομένου ρεύματος (AC-PV Modules) με μετατροπείς δύο βαθμίδων, και πιο συγκεκριμένα σε μετατροπείς Σ.Τ. – Σ.Τ με τους οποίους επιτυγχάνεται ανύψωση της τάσης και μπορούν να αποτελέσουν την πρώτη από τις δύο βαθμίδες. Τρεις είναι οι κύριοι στόχοι: A)Η εύρεση της καταλληλότερης επιλογής για την πρώτη βαθμίδα της διάταξης σύνδεσης ενός Φ/Β πλαισίου στο μονοφασικό δίκτυο χαμηλής τάσης. B)Ο βέλτιστος σχεδιασμός και η επιλογή του κατάλληλου Πολλαπλασιαστή Τάσης. C)Ο βέλτιστος σχεδιασμός της μονάδας ανύψωσης τάσης, η οποία
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Conference papers on the topic "Half wave cockcroft walton"

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Katzir, Liran, and Doron Shmilovitz. "Effect of the capacitance distribution on the output impedance of the Half-Wave Cockcroft-Walton voltage multiplier." In 2016 IEEE Applied Power Electronics Conference and Exposition (APEC). IEEE, 2016. http://dx.doi.org/10.1109/apec.2016.7468395.

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Boscolo, I., V. Stagno, V. Variale, et al. "A Continuous Wave Millimeter Free Electron Laser Experiment With A Cockcroft-Walton Accelerator And Electron Beam Recovery." In 1989 Intl Congress on Optical Science and Engineering, edited by Yves Petroff. SPIE, 1989. http://dx.doi.org/10.1117/12.961605.

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Matsubara, R., O. Higa, T. Matsui, et al. "Examination of Power Supply of the Rice Powder Making Device With the Pressure Vessel Having the Clear Window Using Underwater Shock Wave." In ASME 2012 Pressure Vessels and Piping Conference. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/pvp2012-78821.

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We have developed the rice powder production device using the underwater shock wave. The spark by a high-voltage power supply was used for generating of a shock wave. We developed two types of the high voltage power supplies, the CR circuit using transformer, Cockcroft-Walton circuit (CW circuit). We developed the vessel having the window for observation of shock wave. Generated pressure and velocity of the shock wave are evaluated using shadowgraph method used two power supplies (CR circuit and CW circuit).
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Kobougias, I. C., and E. C. Tatakis. "Optimal design of a Half-Wave Cockroft-Walton Voltage Multiplier with minimum total capacitance." In 2008 IEEE Power Electronics Specialists Conference - PESC 2008. IEEE, 2008. http://dx.doi.org/10.1109/pesc.2008.4592077.

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Kobougias, Ioannis C., and Emmanuel C. Tatakis. "Optimal design of a Half Wave Cockroft-Walton Voltage Multiplier with different capacitances per stage." In 2008 13th International Power Electronics and Motion Control Conference (EPE/PEMC 2008). IEEE, 2008. http://dx.doi.org/10.1109/epepemc.2008.4635444.

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