1) moisture sensing
测湿传感器
1.
One of its most important applications is moisture sensing.
本文在研究了多种微波测湿传感器的基础上,设计了一种新型的测湿传输线谐振腔传感器,工作频率为2。
2) passive testing temperature and humidity sensors
无源测试温湿度传感器
3) humidity sensor
湿度传感器
1.
Study on imidization process of polyamic acid for humidity sensor;
湿度传感器用聚酰亚胺材料亚胺化工艺研究
2.
Application of humidity sensor HS1101 in intelligent home control system;
湿度传感器HS1101在智能家居控制系统中的应用
3.
Measuring Method of Resistance & Capacitance of Humidity Sensor;
湿度传感器电阻和电容分量测量方法的研究
4) humidity sensors
湿度传感器
1.
Applications of room temperature ionic liquid in gas and humidity sensors;
室温离子液体在气体和湿度传感器中的应用
2.
The preparing methods,structure and characteristics of V 2O 5-based materials are described as well as the main uses in humidity sensors,voltage switches and cathodes of lithium battery are introduced in this paper.
综述了以V2 O5为基体的薄膜材料的制备方法、结构及其特性 ,介绍了该材料在湿度传感器、电压开关和锂电池等领域的应用。
3.
The Capacitive-type humidity sensors with Si-SiO2-PI structure were prepared and the properties were studied.
传统夹层聚酰亚胺电容式湿度传感器在亚胺化过程中感湿膜会因挥发物产生微孔,对这种传感器的成品率造成很大影响。
5) moisture sensor
湿度传感器
1.
Study on resistance-variation type polymer moisture sensor;
高分子电阻型湿度传感器的研究
2.
Study on the moisture sensor of quartz crystal oscillation coated with hygroscopic copolymer films;
高聚物湿度传感器的研究
3.
In this paper, a semiconducting ceramic moisture sensor using ZrO2, Nb2O5 and P2O5 as raw materials is studied.
本文研究一种用ZrO_2,SiO_2,Nb_2O_5和P_2O_5为原料的半导陶瓷湿度传感器。
6) humidity sensor
湿敏传感器
1.
With selection of humidity sensors, the systems are improved based on intelligent technology in control and data acquisition and manage, and the result is better in reliability and practicability.
结合湿敏传感器的选型 ,应用智能技术对这类系统的测控和管理进行了改进研制 。
2.
And hence, carbon nanotube humidity sensor has excellent application perspective.
本文主要进行了对碳纳米管湿敏传感器的研究。
补充资料:测力传感器
测力传感器
force transducer
‘日,lm龟刃叮兀阅nql测力传感器(肠比etransducer提供与翰人的力值有确定关系的输出电量(如电阻、电感、电容等)的器件。例如,电阻应变式、电容式、电感式侧力传感器等。目前广泛使用的为电阻应变式,其最大力值有looN一20 MN多种规格,准确度有0.01、0.03、0.05和0.1等多种等级。电阻应变式测力传感器利用金属导线电阻的应变效应,将被侧力值转换为电阻的相对变化。压阻式测力传感器利用半导体的压阻效应,将被测力值转换为电阻率的相对变化。压磁式测力传感器利用铁磁材料的压磁效应,将被测力值转换为输出感应电势的变化。压电式测力传感器利用压电效应,将被测力值转换为输出电荷的变化。振弦式测力传感器利用张紧的振弦的固有频率与其张力间的关系,将被测力值转换为翰出频率的变化。陀螺式侧力传感器利用三自由度陀螺的二次旋进角速度与外力成正比的原理,将被测力值直接转换为数字信号输出。数字传感器的发展迅速,已进人实用化和商品化阶段。 (施昌彦)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条