Analysis of the technology to manufacture a high-temperature microstrip superconductive device for the electromagnetic protection of receivers

Abstract

<span lang="EN-US">Technological features of the process of manufacturing a high-speed high-temperature superconducting microstrip protective device which can reduce in a picosecond period (the time of switching or operation speed) the incoming power from the antenna-feeder path and the power passing through it to a level safe for sensitive semiconductor elements of the receiver (preventing current destruction of p-n junction). The study enables determination of the features and conditions for the use of modern technological methods for creating a superconducting microstrip protective device taking into account influence of the substrate material, superconductor and contacts and the method of their connection on the switching properties of superconducting films of the proposed protective device. The switching properties of superconducting films include speed of phase transition of a film from a superconducting to a nonconducting state. To determine degree of material influence on switching properties, it was proposed to use the following: lattice parameter, thermal expansion coefficient of materials, degree of interaction of molecular structures of the contacting surfaces, probability of local defects on the surface (nonconducting zones). The study outlines basic conditions (methods of film deposition, applying a certain superconducting film (YBCO) on the chosen substrate) which should be met in order to create an operable protective device. The study results make it possible to assess the degree of influence of contact materials and the method of deposition (of both film on the substrate and contacts on the film) on microstructure and switching properties of the superconducting protective device. Such results can be used in synthesis of high-temperature superconducting devices for protecting receiver elements from current destruction of their p–n junctions</span>

Authors and Affiliations

Oleksandr Fyk, Dmytro Kucher, Larisa Kucher, Roman Gonchar, Volodymyr Antonetsʹ, Mykhailo Fyk, Yuri Besedin

Keywords

Related Articles

Determination of the enzyme destruction rational mode of biomass autolysate of lactic acid bacteria

<p>It is shown that the degradation products of peptidoglycans of lactic acid bacteria cell walls that are related to the muramyl peptide series compounds are promising components of food ingredients and dietary suppleme...

Definition of the thermal and fire-protective properties of ethylene-vinyl acetate copolymer nanocomposites

<p>To create a fire retardant coating that can be applied in the hydrocarbon fire, the nanocomposites of the ethylene-vinyl acetate (EVA) copolymer with montmorillonite (MMT), thermally expanded graphite (EG) are synthes...

Design and examination of the new biosoluble casting alloy of the system Mg–Zr–Nd for osteosynthesis

<p>We have performed a comparative analysis of existing materials for the fabrication of implants and report their physical-mechanical properties; their advantages and disadvantages have been defined. It is shown that ma...

Determining the force function distribution in the working zone of a disk magnetic separator

The paper reports a research into the distribution of magnetic force function in the working zone of a newly-designed disk separator, intended to clean the finely-dispersed bulk substances, transported by a belt conveyor...

A solution for synchronous incremental maintenance of materialized views based on SQL recursive query

Materialized views are excessively stored query execution results in the database. They can be used to partially or completely answer queries which will be further appeared instead of re-executing query from the scratch....

Download PDF file
  • EP ID EP528237
  • DOI 10.15587/1729-4061.2018.144125
  • Views 52
  • Downloads 0

How To Cite

Oleksandr Fyk, Dmytro Kucher, Larisa Kucher, Roman Gonchar, Volodymyr Antonetsʹ, Mykhailo Fyk, Yuri Besedin (2018). Analysis of the technology to manufacture a high-temperature microstrip superconductive device for the electromagnetic protection of receivers. Восточно-Европейский журнал передовых технологий, 5(12), 38-47. https://europub.co.uk./articles/-A-528237