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The Innovative Research of Integrating Temperature-Controlling Microcirculation System into Three-Dimensional Circuit

机译:将温控微循环系统集成到三维电路中的创新研究

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摘要

Traditional circuit production is mainly flat-style. With rapid raise of circuit's scale and complexity, traditional style cannot meet the demand of modern electronic industry. 3D (three dimensional) style production make a figure. But the problem of circuit thermal emission follows right away. 3D circuit cannot emit heat naturally. Traditional cooling equipments can only affect the surface but not the inner of the circuit, therefore cannot solve the problem of cooling at all, much less control temperature. Without approach of thermal emission, the circuit will burnt, much less operation normally. Therefore, the author endeavored to quest for the new method, integrated the temperature-controlling microcirculation system into 3D circuit, then traditional circuit and cooling equipments incorporated. Not only the production line was cut short to half, but also the problem of compatibility between two types of equipments was avoided, hence circuit worked more stable. The function of temperature-controlling was appended into the temperature-controlling microcirculation system. It can not only cool the circuit of high temperature, but also heat the circuit operating in a cold environment, and the temperature controlling was uniform, instant and effective.
机译:传统电路生产主要是扁平式的。随着电路规模和复杂性的迅速提高,传统风格已不能满足现代电子工业的需求。 3D(三维)风格的制作人物。但是,电路散热问题马上就出现了。 3D电路无法自然散热。传统的冷却设备只会影响表面,而不会影响电路的内部,因此根本无法解决冷却问题,控制温度要低得多。如果没有散热方法,电路将被烧毁,正常工作将少得多。因此,作者努力寻求新方法,将温度控制微循环系统集成到3D电路中,然后结合传统的电路和冷却设备。不仅将生产线缩短了一半,而且避免了两种设备之间的兼容性问题,因此电路工作更加稳定。将温度控制功能附加到温度控制微循环系统中。它不仅可以冷却高温电路,还可以加热在寒冷环境下工作的电路,温度控制均匀,即时,有效。

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