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Reliability of Manganese Dioxide and Conductive Polymer Tantalum Capacitors under Temperature Humidity Bias Testing

机译:温湿度偏置试验下二氧化锰和导电聚合物钽电容的可靠性

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Despite being highly reliable under steady state operating conditions, manganese dioxide (MnO_2) tantalum capacitors are prone to catastrophic exothermic failures under surge current conditions. Such failures can be mitigated by the use of conductive polymers in place of MnO_2. However, these polymers are more susceptible to failure at elevated humidity levels. In this paper, the electrical performances of both MnO_2 and polymer tantalum capacitors are compared by subjecting them to temperature humidity bias testing at 85°C and 85% RH. The test population consists of tantalum capacitors with two voltage ratings (50V and 16V). At each of these voltage ratings, two sets of tantalum capacitors, one each with MnO_2 and conductive polymer electrodes, were tested. The voltage levels used to bias the capacitors were periodically increased in multiples of the rated voltage to accelerate degradation. The performance of the capacitors was tracked by monitoring their capacitance, dissipation factors and leakage currents, both in-situ and at room temperature. The degradation trends are discussed in light of the differences in voltage ratings and electrode types. These trends are also mapped to fundamental failure mechanisms within the capacitors.
机译:尽管在稳态操作条件下高度可靠,但二氧化锰(MNO_2)钽电容在浪涌电流条件下容易遭到灾难性的放热故障。通过使用导电聚合物代替MnO_2,可以减轻这种故障。然而,这些聚合物在升高的湿度水平下更容易受损。在本文中,通过在85℃和85%RH下进行温度湿度偏置测试来比较MNO_2和聚合物钽电容器的电气性能。测试群由钽电容器组成,具有两个电压额定值(50V和16V)。在这些电压额定值中的每一个中,测试了两组钽电容器,每个钽电容器均具有MNO_2和导电聚合物电极。用于偏置电容器的电压电平在额定电压的倍数中周期性地增加,以加速劣化。通过在原位和室温下监测它们的电容,耗散因子和漏电流来跟踪电容器的性能。鉴于电压额定值和电极类型的差异讨论了降级趋势。这些趋势也映射到电容器内的基波故障机制。

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