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Optimization of Thermal Behavior for resistors in Ltcc and Possibilities to Increase the Performance

机译:优化Ltcc中电阻的热性能并提高性能

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Low Temperature cofired Ceamics (LTCC) offers a wide range of opportunities to the designer by its almost unlimited number of layers. The compatibility to thick-film and the manufacturing process permit integrating printed resistors also in LTCC-modules. Resistors inside the multi-layer structures were fired together with the glass-ceramic body. They undergo additional firings with each postfire step. Cofired resistor pastes require a shrinkage match to the tape due to firing and must be chemically compatible to the surrounding tape material. The glass in the resistors tends to interact with the tape glass, which leads to a shift in ratio glass to resistive particles, resulting in a shift of resistor characteristics. But the main advantage of buried resistors is the increase in integration density
机译:低温共烧陶瓷(LTCC)通过几乎无限的层数为设计师提供了广泛的机会。与厚膜的兼容性和制造工艺允许将印刷电阻器也集成到LTCC模块中。多层结构内部的电阻与玻璃陶瓷体一起烧制。他们在每个后射击步骤都要进行额外的射击。共烧电阻浆料由于烧制而需要与胶带的收缩率匹配,并且必须与周围的胶带材料化学相容。电阻器中的玻璃易于与带状玻璃相互作用,从而导致玻璃与电阻性颗粒的比率发生变化,从而导致电阻器特性发生变化。但是埋入式电阻器的主要优点是集成密度的增加

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