Thermal management materials used for heat sink in laptop computers is reviewed in this paper. In laptop computers, heat sink plays a vital role of dissipating heat from the system. Heat sink is a vital component in a laptop computer because it dissipates the heat generated by the system. The overall efficiency, cost, and size of the system could be influenced by the heat sink device. Four selection criteria; thermal conductivity, coefficient of thermal expansion, density, and cost were abducted for selecting a laptop computer heat sink material in this paper. An ideal heat sink material exhibits high thermal conductivity, low coefficient of thermal expansion, low density, and low cost. Aluminium and copper are mainly used for laptop comput...
Progress in microelectronic industry, which consists mainly in miniaturization, leads to simultaneou...
In the modern digital world, electronic devices are being widely employed for various applications w...
As the temperature of electronic devices increases, their failure rate increases. That is why electr...
The concern about thermal performance of microelectronics is on the increase due to recent over-heat...
With the rapid miniaturization of the electronic systems, heat generation in the components becomes ...
Today’s electronics packages are smaller and more powerful than ever before. This leads to ever incr...
A protective structure enables liquid metal to be used in electronic devices to improve thermal perf...
The important issues and current technologies of high thermal conductivity materials for electronics...
Thermal management materials are widely used in electronics to facilitate the conduction of heat fro...
The important issues and current technologies of high thermal conductivity materials for electronics...
A small-scale phase change material (PCM)-based heat sink can regulate the temperature of electronic...
A small-scale phase change material (PCM)-based heat sink can regulate the temperature of electronic...
A small-scale phase change material (PCM)-based heat sink can regulate the temperature of electronic...
The aim of this work is to investigate the impact of the heat sink thickness and material, as well a...
This is the final version. Available on open access from MDPI via the DOI in this recordA small-scal...
Progress in microelectronic industry, which consists mainly in miniaturization, leads to simultaneou...
In the modern digital world, electronic devices are being widely employed for various applications w...
As the temperature of electronic devices increases, their failure rate increases. That is why electr...
The concern about thermal performance of microelectronics is on the increase due to recent over-heat...
With the rapid miniaturization of the electronic systems, heat generation in the components becomes ...
Today’s electronics packages are smaller and more powerful than ever before. This leads to ever incr...
A protective structure enables liquid metal to be used in electronic devices to improve thermal perf...
The important issues and current technologies of high thermal conductivity materials for electronics...
Thermal management materials are widely used in electronics to facilitate the conduction of heat fro...
The important issues and current technologies of high thermal conductivity materials for electronics...
A small-scale phase change material (PCM)-based heat sink can regulate the temperature of electronic...
A small-scale phase change material (PCM)-based heat sink can regulate the temperature of electronic...
A small-scale phase change material (PCM)-based heat sink can regulate the temperature of electronic...
The aim of this work is to investigate the impact of the heat sink thickness and material, as well a...
This is the final version. Available on open access from MDPI via the DOI in this recordA small-scal...
Progress in microelectronic industry, which consists mainly in miniaturization, leads to simultaneou...
In the modern digital world, electronic devices are being widely employed for various applications w...
As the temperature of electronic devices increases, their failure rate increases. That is why electr...