负温度系数(Negative Temperature Coefficient,NTC)热敏电阻阻值-温度的关系具有非线性特征,本文使用基本指数方程、Steinhart-Hart方程和Hoge-3方程分别对三种不同的NTC热敏电阻的实验数据进行拟合,应用MATLAB编写程序,评估了校准方程...负温度系数(Negative Temperature Coefficient,NTC)热敏电阻阻值-温度的关系具有非线性特征,本文使用基本指数方程、Steinhart-Hart方程和Hoge-3方程分别对三种不同的NTC热敏电阻的实验数据进行拟合,应用MATLAB编写程序,评估了校准方程对NTC热敏电阻温度测量精度的影响。对应用热敏电阻设计温控电路进行了拓展研究,并给出了设计实例。展开更多
The effects of La_2O_3 doping on the phase structure.electric properties and aging properties of the samples were researched using XRD,SEM and electric property measurements.The results suggest that the aging value of...The effects of La_2O_3 doping on the phase structure.electric properties and aging properties of the samples were researched using XRD,SEM and electric property measurements.The results suggest that the aging value of Mn_(2.38)Ni_(0.5)Cu_(0.12)O_4 thermistor ceramic samples decreases from 10%to about 6%by only doping La_2O_3.The electrical stability of the sample has improved as well.Such doped material will broaden the production and application scope of Cu contained negative temperature coefficient thermal ceramics.展开更多
采用柠檬酸凝胶法制备锰-镍-铁基前驱体,在300℃煅烧干燥的前驱体得到纳米粒度粉末,压制成圆片坯体后在1100~1300℃烧结得到负温度系数(negative temperature coefficient,NTC)热敏陶瓷样品。研究了粉体和烧结样品的相结构、微观形貌...采用柠檬酸凝胶法制备锰-镍-铁基前驱体,在300℃煅烧干燥的前驱体得到纳米粒度粉末,压制成圆片坯体后在1100~1300℃烧结得到负温度系数(negative temperature coefficient,NTC)热敏陶瓷样品。研究了粉体和烧结样品的相结构、微观形貌、电性能和热敏特性。结果表明:合成粉体的纳米颗粒为单相Mn1/3Ni2/3Fe2O4尖晶石,粉体具有高化学均匀性。烧结的Mn1/3Ni2/3Fe2O4陶瓷样品具有均匀的微观结构,陶瓷样品的烧结密度和材料敏感指数β随着烧结温度的增加而增加。测量温度为50~150℃范围时,1300℃烧结的Mn1/3Ni2/3Fe2O4样品,其β可高达4300K。展开更多
文摘负温度系数(Negative Temperature Coefficient,NTC)热敏电阻阻值-温度的关系具有非线性特征,本文使用基本指数方程、Steinhart-Hart方程和Hoge-3方程分别对三种不同的NTC热敏电阻的实验数据进行拟合,应用MATLAB编写程序,评估了校准方程对NTC热敏电阻温度测量精度的影响。对应用热敏电阻设计温控电路进行了拓展研究,并给出了设计实例。
文摘The effects of La_2O_3 doping on the phase structure.electric properties and aging properties of the samples were researched using XRD,SEM and electric property measurements.The results suggest that the aging value of Mn_(2.38)Ni_(0.5)Cu_(0.12)O_4 thermistor ceramic samples decreases from 10%to about 6%by only doping La_2O_3.The electrical stability of the sample has improved as well.Such doped material will broaden the production and application scope of Cu contained negative temperature coefficient thermal ceramics.
文摘采用柠檬酸凝胶法制备锰-镍-铁基前驱体,在300℃煅烧干燥的前驱体得到纳米粒度粉末,压制成圆片坯体后在1100~1300℃烧结得到负温度系数(negative temperature coefficient,NTC)热敏陶瓷样品。研究了粉体和烧结样品的相结构、微观形貌、电性能和热敏特性。结果表明:合成粉体的纳米颗粒为单相Mn1/3Ni2/3Fe2O4尖晶石,粉体具有高化学均匀性。烧结的Mn1/3Ni2/3Fe2O4陶瓷样品具有均匀的微观结构,陶瓷样品的烧结密度和材料敏感指数β随着烧结温度的增加而增加。测量温度为50~150℃范围时,1300℃烧结的Mn1/3Ni2/3Fe2O4样品,其β可高达4300K。