Xi'an Dehou Electronic Technology Co., Ltd.

Xi'an Dehou Electronic Technology Co., Ltd.

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12VDC Radar Level Transmitter 10m Microwave Level Transmitter

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Xi'an Dehou Electronic Technology Co., Ltd.
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Province/State:Shaanxi
Country/Region:china
Contact Person:MrJero
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12VDC Radar Level Transmitter 10m Microwave Level Transmitter

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Brand Name :NUOYINGJIAYE
Model Number :NYRD-810
Certification :Explosion-proof certificate
Place of Origin :China
MOQ :1
Price :$400 to $1800
Payment Terms :T/T
Supply Ability :500 pcs/ pre month
Delivery Time :7 work days
Packaging Details :60cm×30cm×30cm
Measuring range :80m,120m
Power :3W
Mounting method :universal flange, clamp and bracket are optional
Shell material :Stainless steel
Echo sampling :100 times/s
Operating temperature :-40~80℃
Signal output :4...20mA/HART/RS485/Modbus...
Protection grade :IP67
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26GHz NYRD-810 Radar Level Meter

The NYRD-810 parabolic antenna radar level gauge is a non-contact radar level gauge that uses the pulse principle. It can be widely used to measure solid material levels, process containers, strong dust, easy crystallization, and condensation.

Radar Level Meter Technical Parameter

Typical application Monitoring Solids, dust, particles, etc
Transmit frequency 26GHz
Accuracy 3mm
Range 80m
Antenna material 304 316L (optional)
Echo sampling 100 times/s
Process temperature -40~130℃
Ambient humidity 0~90%
Resolution 1mm
Process connection Flange or bracket installation
Electrical Interface M20×1. 5, ½ " NPT
Signal output 4...20mA/HART/RS485/Modbus...
Supply power 24V DC (optional)
Power 3W
Explosion-proof grade ExiaⅡCT6(optional)
Protection class IP67

Note: Products can be customized according to the specific requirements of users!

Radar Level Meter Working Principle

Measurement principle The radar level meter transmits a microwave pulse signal with a narrow J and very low energy through an antenna. This pulse signal is transmitted in space at the speed of light and is reflected when it encounters the measured medium. The reflected signal is received by the instrument, and the pulse signal is transmitted and the pulse signal is received. The time interval is proportional to the distance between the reference plane and the surface of the measured medium. The distance between the antenna and the surface of the medium can be measured by measuring the time interval between transmission and reception.

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