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Reliability of printed power resistor with thick-film copper terminals

机译:带厚膜铜端子的印刷功率电阻器的可靠性

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摘要

This paper is focused on the thick-film power resistors with copper terminals. These terminals are created by the new Thick Printed Copper (TPC) technology. This technology is based on sequential screen printing and firing of copper paste in nitrogen atmosphere on an alumina substrate. Thick-film power resistor with copper terminals represents a potential replacement of standard wirewound power resistors and allows the direct integration of resistors on TPC substrates. Printed resistors on TPC substrates can be supplemented with discrete electronic components which creates the possibility to realize really complex power electronic circuits. The direct integration of printed components is not possible in case of using the standard Direct Bonded Copper (DBC) technology. The main benefits of printed resistors based on TPC technology are their low thickness and good thermal conductivity. The low thickness of resistors is important for miniaturization of final electronic devices. The resistor main electrical parameters as the temperature coefficient of resistance, temperature coefficient and nominal resistance value after dry heat aging and after thermal cycling, insulation resistance, dielectric strength etc., are described in this paper.
机译:本文重点介绍带有铜端子的厚膜功率电阻器。这些端子是由新的厚印刷铜(TPC)技术创建的。该技术基于连续丝网印刷和在氮气氛下在氧化铝基板上烧成铜浆的过程。具有铜端子的厚膜功率电阻器代表了标准线绕功率电阻器的潜在替代品,并允许电阻器直接集成在TPC基板上。 TPC基板上的印刷电阻器可以补充分立的电子组件,从而有可能实现真正复杂的电力电子电路。如果使用标准的直接键合铜(DBC)技术,则无法直接集成印刷组件。基于TPC技术的印刷电阻器的主要优点是其厚度小和导热性好。电阻器的低厚度对于最终电子设备的小型化至关重要。本文描述了电阻器的主要电气参数,如电阻温度系数,干热老化后和热循环后的温度系数和标称电阻值,绝缘电阻,介电强度等。

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