1) water temperature detecting
水温检测
2) Low Temperature Water Level Monitoring
低温水位检测
3) temperature monitoring
温度检测
1.
Adopting BP Neuro-network technology,this paper aims to research on the feasibility of roller-type heat treatment furnace steel board temperature monitoring system.
文章应用BP神经网络技术,探讨辊底式连续热处理加热炉钢板温度监测系统方案的可行性,提出串行网络设计思想和方法,在对各炉膛温度与被加热钢板温度之间预先寻求权值函数的基础上,将各炉膛BP神经网络串联构成热处理加热炉的BP神经网络监测系统,进一步寻求整个热处理炉各炉膛温度与钢板最终温度之间的权值函数(数学模型),作为热处理炉钢板温度检测系统的传递函数。
2.
The paper tells an infrared temperature monitoring system of PC104-based module.
讲述了一个利用PC104模块构建的红外温度检测系统。
3.
Because of its intrinsic advantages, this technique is especially suitable for the temperature monitoring of electrical power facilities.
由于光纤传感的本征特点 ,该技术特别适合应用于电气设备的温度检测 ,并能和消防报警系统配合使用 ,在发电厂、变电站的电气设备状态检测中有广阔的应用前
4) temperature for detection
检测温度
5) constant temperature detection
恒温检测
1.
Aiming at the problems of activation and two-value,it designed a bridge circuit with constant temperature detection based on the impulse constant temperature power supply technology and close-loop feedback control system.
针对激活和二值性问题,设计了基于脉冲式恒温供电技术和闭环反馈系统的恒温检测桥路。
2.
A constant temperature detection method was adopted,it output feedback of sensor,regulate the working current to maintain constant temperature of sensor,and it expand the measured gas concentration range.
采用恒温检测方法,即采用输出反馈调节传感器工作电流以保持传感器温度恒定的检测方法可解决该问题,且可扩大检测浓度范围。
6) temperature detection
温度检测
1.
The temperature detection unit used in the thermal protection includes thermal resistances,thermistors and bimetal thermosnaps.
电机热保护中常用的温度检测单元主要包括了热电阻、热敏电阻以及双金属型热保护开关;温度信号处理执行单元主要有阻频—频压转换型、电阻—电压转换型以及开关信号型。
2.
Realizing multi-motor temperature detection by PLC and data acquisition module communication has effective protection.
通过PLC和数据采集模块的通讯实现多台电机温度检测,不仅达到有效的保护,而且接线简单,节省成本。
3.
This paper states temperature detection in a generator protecting system, and it also gives the design of hardware and software.
介绍了电机保护系统中的温度检测部分,并给出了硬件电路和软件的设计思想。
补充资料:地下水水温观测(见水温观测)
地下水水温观测(见水温观测)
d jxiashuj shuiwen guanCe地下水水温观测见水温观测。
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