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AbstractAbstract
[en] The present work is related to the development of soft ferrite transformer cores, which are extensively used in electronic devices such as switch mode power supplies, electromagnetic devices, computers, amplifiers etc. Mn-Zn Ferrite (soft ferrite) powders were prepared by conventional mixed oxide and auto combustion routes. These powders were calcined and then pressed in toroid shapes. Sintering was done at different temperatures to develop desired magnetic phase. Impedance resistance of sintered toroid cores was measured at different frequencies. Results revealed that Mn-Zn Ferrite cores synthesized by auto combustion route worked more efficiently in a high frequency range i.e. > 2MHz than the cores developed by conventional mixed oxide method. It was noticed that compact size, light weight and high impedance resistance are the prime advantages of auto combustion process which supported the performance of core in MHz frequency range. Furthermore, these compact size cores were successfully tested in linear pulse amplifier circuit of Pakistan Atomic Research Reactor-I. The fabrication of soft ferrite (Mn-Zn Ferrite) cores by different processing routes is an encouraging step towards indigenization of ferrite technology. (Orig./A.B.)
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Pakistan Institute of Nuclear Science and Technology, Islamabad (Pakistan); 123 p; 2012; p. 49
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Report
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ALLOYS, CARBON ADDITIONS, CHEMICAL REACTIONS, ELECTRICAL EQUIPMENT, ENERGY SOURCES, ENRICHED URANIUM REACTORS, EQUIPMENT, FABRICATION, FUELS, IRON ALLOYS, MATERIALS, NUCLEAR FUELS, OXIDATION, POOL TYPE REACTORS, REACTOR MATERIALS, REACTORS, RESEARCH AND TEST REACTORS, RESEARCH REACTORS, SOLID FUELS, THERMOCHEMICAL PROCESSES, TRANSITION ELEMENT ALLOYS, TRANSITION ELEMENT COMPOUNDS, WATER COOLED REACTORS, WATER MODERATED REACTORS
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