Optimizing the thermal system of electronic equipment using boron arsenide heat sink

Background. In modern radio-electronic equipment one of the most important tasks is optimization of thermal solution to ensure effective heat dissipation and maintenance of optimal operating temperature of devices, devices, products. This is especially relevant in the conditions of constant incre...

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Main Authors: N.K. Yurkov, I.M. Rybakov, E.A. Vershinin
Format: Article
Language:English
Published: Penza State University Publishing House 2024-11-01
Series:Известия высших учебных заведений. Поволжский регион:Технические науки
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author N.K. Yurkov
I.M. Rybakov
E.A. Vershinin
author_facet N.K. Yurkov
I.M. Rybakov
E.A. Vershinin
author_sort N.K. Yurkov
collection DOAJ
description Background. In modern radio-electronic equipment one of the most important tasks is optimization of thermal solution to ensure effective heat dissipation and maintenance of optimal operating temperature of devices, devices, products. This is especially relevant in the conditions of constant increase in the density of components and increase in heat dissipation. Technical solutions to optimize the thermal system of radio electronic equipment are becoming increasingly important aspects in the context of increased requirements of external influencing factors to the efficiency and reliability of devices. One of the approaches attracting the attention of researchers is the use of boron arsenide heat sink. The purpose of the study is to develop and optimize the thermal system of radioelectronic equipment with the use of boron arsenide heat sink to ensure stable temperature operation of devices and increase their reliability, durability. Materials and methods. The results obtained on the basis of the analysis of the thermal characteristics of radio electronic components, modeling of heat transfer processes and evaluation of the efficiency of using boron arsenide heat sink in the thermal system are presented. Results. The developed thermal system with the use of boron arsenide heat sink allows to effectively control heat flows and provide optimal operating conditions for radio-electronic equipment. The conducted experiments and calculations confirm the improvement of heat dissipation and reduction of the risk of device overheating. Conclusion. The developed scientific and technical solutions for optimization of the thermal system of radio-electronic equipment with the use of boron arsenide heat sink provide an increase in reliability, durability and efficiency of devices, devices, products, units in conditions of increased external factors.
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publisher Penza State University Publishing House
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series Известия высших учебных заведений. Поволжский регион:Технические науки
spelling doaj-art-194a6a8cdea74fe7822e243b557ff32a2024-11-28T06:04:55ZengPenza State University Publishing HouseИзвестия высших учебных заведений. Поволжский регион:Технические науки2072-30592024-11-01310.21685/2072-3059-2024-3-7Optimizing the thermal system of electronic equipment using boron arsenide heat sinkN.K. Yurkov0I.M. Rybakov1E.A. Vershinin2Penza State UniversityPenza State UniversityPenza State UniversityBackground. In modern radio-electronic equipment one of the most important tasks is optimization of thermal solution to ensure effective heat dissipation and maintenance of optimal operating temperature of devices, devices, products. This is especially relevant in the conditions of constant increase in the density of components and increase in heat dissipation. Technical solutions to optimize the thermal system of radio electronic equipment are becoming increasingly important aspects in the context of increased requirements of external influencing factors to the efficiency and reliability of devices. One of the approaches attracting the attention of researchers is the use of boron arsenide heat sink. The purpose of the study is to develop and optimize the thermal system of radioelectronic equipment with the use of boron arsenide heat sink to ensure stable temperature operation of devices and increase their reliability, durability. Materials and methods. The results obtained on the basis of the analysis of the thermal characteristics of radio electronic components, modeling of heat transfer processes and evaluation of the efficiency of using boron arsenide heat sink in the thermal system are presented. Results. The developed thermal system with the use of boron arsenide heat sink allows to effectively control heat flows and provide optimal operating conditions for radio-electronic equipment. The conducted experiments and calculations confirm the improvement of heat dissipation and reduction of the risk of device overheating. Conclusion. The developed scientific and technical solutions for optimization of the thermal system of radio-electronic equipment with the use of boron arsenide heat sink provide an increase in reliability, durability and efficiency of devices, devices, products, units in conditions of increased external factors.heat sinkthermal regimemicrocircuitmaterialsboron arsenidecomputer systemradio equipment
spellingShingle N.K. Yurkov
I.M. Rybakov
E.A. Vershinin
Optimizing the thermal system of electronic equipment using boron arsenide heat sink
Известия высших учебных заведений. Поволжский регион:Технические науки
heat sink
thermal regime
microcircuit
materials
boron arsenide
computer system
radio equipment
title Optimizing the thermal system of electronic equipment using boron arsenide heat sink
title_full Optimizing the thermal system of electronic equipment using boron arsenide heat sink
title_fullStr Optimizing the thermal system of electronic equipment using boron arsenide heat sink
title_full_unstemmed Optimizing the thermal system of electronic equipment using boron arsenide heat sink
title_short Optimizing the thermal system of electronic equipment using boron arsenide heat sink
title_sort optimizing the thermal system of electronic equipment using boron arsenide heat sink
topic heat sink
thermal regime
microcircuit
materials
boron arsenide
computer system
radio equipment
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AT imrybakov optimizingthethermalsystemofelectronicequipmentusingboronarsenideheatsink
AT eavershinin optimizingthethermalsystemofelectronicequipmentusingboronarsenideheatsink