为了优化负温度系数(negative temperature coefficient,NTC)元件在市场应用中的可靠性,分析玻封和焊片两种主流NTC热敏电阻的故障模式,研究生产工艺、加工制作、设计选型等对元件可靠性的影响。测试元件在不同环境下的性能,如高温高湿...为了优化负温度系数(negative temperature coefficient,NTC)元件在市场应用中的可靠性,分析玻封和焊片两种主流NTC热敏电阻的故障模式,研究生产工艺、加工制作、设计选型等对元件可靠性的影响。测试元件在不同环境下的性能,如高温高湿、高温浴水、低温、低温浴水等。研究发现:助焊剂残留、潮湿和浸水条件下的性能波动是影响NTC可靠性的关键因素,在湿度环境下,低温对玻封器件可靠性的影响大于高温,实验结果可用于改善NTC在各种环境下的稳定性,为相关行业的发展提供支持。展开更多
Nano-crystalline Ni1.0Co0.2Mn1.8O4 powders were synthesized via non-crystalloid precursor method. The results on the precursor by XRD and IR techniques show that the stable non-crystalloid precursor could be formed by...Nano-crystalline Ni1.0Co0.2Mn1.8O4 powders were synthesized via non-crystalloid precursor method. The results on the precursor by XRD and IR techniques show that the stable non-crystalloid precursor could be formed by adding oleic acide and adjusting the pH values. The dried precursor exhibited auto-catalytic combustion behavior. After being calcined at 800 ℃, the Ni1.0Co0.2Mn1.8O4 powders with spinel structure were obtained. It has been demonstrated that the synthesized powder is well dispersed and with higher sintering activity. The Model of non-crystalloid precursor has been suggested. The reaction mechanism has also been proposed.展开更多
文摘为了优化负温度系数(negative temperature coefficient,NTC)元件在市场应用中的可靠性,分析玻封和焊片两种主流NTC热敏电阻的故障模式,研究生产工艺、加工制作、设计选型等对元件可靠性的影响。测试元件在不同环境下的性能,如高温高湿、高温浴水、低温、低温浴水等。研究发现:助焊剂残留、潮湿和浸水条件下的性能波动是影响NTC可靠性的关键因素,在湿度环境下,低温对玻封器件可靠性的影响大于高温,实验结果可用于改善NTC在各种环境下的稳定性,为相关行业的发展提供支持。
文摘Nano-crystalline Ni1.0Co0.2Mn1.8O4 powders were synthesized via non-crystalloid precursor method. The results on the precursor by XRD and IR techniques show that the stable non-crystalloid precursor could be formed by adding oleic acide and adjusting the pH values. The dried precursor exhibited auto-catalytic combustion behavior. After being calcined at 800 ℃, the Ni1.0Co0.2Mn1.8O4 powders with spinel structure were obtained. It has been demonstrated that the synthesized powder is well dispersed and with higher sintering activity. The Model of non-crystalloid precursor has been suggested. The reaction mechanism has also been proposed.