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Reliability of Low-Voltage Tantalum Polymer Capacitors

机译:低压钽聚合物电容器的可靠性

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This paper briefly reviews earlier work which first assessed the reliability of 6V tantalum polymer capacitors. A physics-based acceleration formula that better models the interaction of voltage and temperature stress is presented and discussed. New observations are made about the original test data in light of the physics-based acceleration model as well as new testing done on 6V capacitors since the original paper was presented. Then the focus is shifted to accelerated lifetesting of 4V and 2.5V tantalum polymer capacitors.rnAccelerated lifetest data for 4V and 2.5V capacitors are presented and are compared and contrasted with the 6V data. Similarities and differences in the behavior of the lower-voltage devices with respect to each other and the 6V devices are discussed. The physical bases of these similarities and differences are explored, and conclusions are reached regarding the expected long-term reliability of low-voltage tantalum polymer capacitors.
机译:本文简要回顾了较早的工作,该工作首先评估了6V钽聚合物电容器的可靠性。提出并讨论了基于物理的加速度公式,该公式可以更好地模拟电压和温度应力的相互作用。自从提出原始论文以来,根据基于物理的加速度模型对原始测试数据进行了新的观察,以及对6V电容器进行了新的测试。然后将重点转移到4V和2.5V钽聚合物电容器的加速寿命测试上。rn给出了4V和2.5V电容器的加速寿命测试数据,并将其与6V数据进行比较和对比。讨论了低压设备彼此之间和6V设备之间行为的异同。探索了这些异同的物理基础,并得出了有关低压钽聚合物电容器的预期长期可靠性的结论。

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