Electronic products are related products based on electric energy, and we often come into contact with various electronic products in our daily life and work. When electric energy is converted into other energy, it is accompanied by loss, and most of the lost energy is in the form of heat. Dissipate outward, so electronic products will generate heat when they are running.
In a high temperature environment, the aging speed of materials in the equipment will be accelerated, and electronic components are easy to increase the failure rate due to high temperature. Electrical machinery and equipment will generate heat in the use process, because a part of the electric energy will be lost in the form of heat, so the heat dissipation design of the machine and equipment can only be done well.
New energy vehicles, as a substitute for fuel vehicles in the future, have been attracting people's attention in recent years. For example, BYD has announced in the early years that it will no longer produce fuel vehicles and turn to new energy vehicles. Car companies like BYD that have announced that they will stop producing fuel vehicles will There are more, so the roads in the future will basically be dominated by new energy vehicles.
Electronic components are one of the cornerstones of building a modern society. Most of the electrical equipment needs to use electronic components. When the current passes through the resistance, heat will be generated. The power consumption electronic components are the main heating elements of electrical equipment. The higher the power, the electronic The greater the heat generated by the components, and in the high temperature environment, the electronic components are prone to malfunction and affect the operation of the equipment, so the heat dissipation of the electronic components is very important.
Recently, many people have contacted our company through the network platform to ask about some questions related to the thermal conductivity interface materials with high thermal conductivity. Thermal conductivity is a parameter to measure the thermal conductivity of materials. The higher the thermal conductivity interface material has, the higher the thermal conductivity performance, which also means higher technology content and higher price.
Under the influence of energy crisis, new energy vehicles driven by electric energy have become the focus of the development of technology. With the gradual maturity of technology, the penetration rate of new energy vehicles is also increasing. For example, most buses and taxis running on urban roads are dominated by new energy vehicles.
All kinds of electronic products have enriched people's life and made people's life and work more convenient. Smartphones have brought many unexpected new things to people from the beginning of telephone communication to the terminal that people contact the world now. In addition to communication and surfing the Internet with mobile phones, it has become a major trend for people to play mobile games in their leisure time.
Many studies have shown that thermal management is one of the challenges faced by 5G communication technology. The goal of 5G communication technology is high download speed and low delay, and to improve a wider coverage area. However, the high speed and high efficiency of 5G communication technology means that its cooling requirements straight up.
How to reduce the temperature of the machine and equipment during operation? People often think of installing a radiator above the heat source in the equipment, or placing the equipment in a cool and ventilated place. It is unavoidable that heat will be generated during the operation of machinery and equipment. Ensuring that machinery and equipment can operate within a controllable temperature range is the main solution to the problem.
Recently, the editor and friends in the same industry discussed with several product development engineers at an industry exchange meeting on the current development trend of thermal interface materials. Thermal conductivity is a parameter to measure the thermal conductivity of materials, and thermal interface materials with high thermal conductivity, The higher its thermal conductivity, the higher its technical content and price.
Although people rarely come into contact with thermally conductive gap fillers, there are many application cases related to thermally conductive gap fillers, or they accompany people in every aspect of life. Why do you say that?
Thermal conductivity is a parameter to measure the thermal conductivity of a material. The higher the thermal conductivity of the thermal conductivity material, the stronger the thermal conductivity. With the development of science and technology, faster operation, more functions, and lighter weight are the current development trends, which also means Therefore, the heat dissipation coefficient of the equipment should be stronger and able to withstand the increasing heat dissipation demand.
Thermal interface material has always been a heat dissipation auxiliary material used by people to deal with the heat conduction problem of equipment. Although it is a heat dissipation auxiliary material, the thermal interface material plays a role that cannot be ignored in the heat dissipation of equipment.
The higher the precision of electronic components, the more sensitive to external environmental factors, high temperature is one of the factors affecting the performance and service life of the equipment, electrical equipment operation is unable to avoid heat, so the design of electrical equipment to do a good job in heat dissipation.
In many cases, people find that the running speed of mobile phones or computers has dropped, and they often think for the first time whether the internal temperature of the body is too high and affects the operation of the equipment, and this phenomenon generally exists around us. However, the operation is slow, malfunctions and even spontaneous combustion, so it is very important to deal with the heat dissipation of the equipment.