Shandong Fengtu IOT Technology Co., Ltd
Sales Manager:Ms. Emily Wang
Cel,Whatsapp,Wechat:+86 15898932201
Email:info@fengtutec.com
Add:No. 155 Optoelectronic Industry Accelerator, Gaoxin District, Weifang, Shandong, China
Sales Manager:Ms. Emily Wang
Cel,Whatsapp,Wechat:+86 15898932201
Email:info@fengtutec.com
Add:No. 155 Optoelectronic Industry Accelerator, Gaoxin District, Weifang, Shandong, China
Model:FT-L3S
Brand:fengtu
1.Radar current meter product introduction
Radar current meter is an advanced flow measurement instrument that uses radar technology to achieve simple, fast and non-contact surface velocity measurement.The Radar current meter developed by our company adopts K-band planar microstrip array antenna, which is energy-concentrated and low-power. The instrument integrates functions such as vertical angle compensation, velocity averaging, signal strength detection, and serial communication control. The non-contact radar current measurement system is not corroded by sewage or affected by sediment when measuring velocity. The civil construction is simple, less affected by water damage, easy to maintain, and ensures personnel safety. It can not only be used for routine environmental monitoring, but also is particularly suitable for undertaking urgent, difficult, and dangerous observation tasks.
2. Radar current meter product features
1. Non-contact, safe, low-loss, low maintenance, not affected by sediment
2. Capable of measuring under high flow conditions during flood season
3. With anti-reverse connection and overvoltage protection functions
4. The system has low power consumption, and generally solar power supply can meet the flow measurement needs.
5. Multiple interface modes, including both digital and analog interfaces, compatible with standard Modbus-RTU protocol for easy access to the system;
6. With wireless data transmission function (optional)
7. Can be independently connected to the currently running urban water, sewage and environmental automatic monitoring and reporting systems
8. Wide speed measurement range, effective measurement distance up to 10m
9. Multiple trigger modes: periodic, triggered, manual, automatic
10. The installation is very simple and the amount of civil engineering is very small
11. Fully waterproof design, suitable for outdoor use
3. Radar current meter technical parameters
Measuring range | 0.1-20m/s, liquid level 0-30m |
measurement accuracy | Speed measurement accuracy: ±0.01 m/s; ±1%FS |
Radar Antenna | Planar microstrip array antenna |
Radar vertical tilt angle correction | Automatic correction |
Flow direction identification | Bidirectional (floating point bidirectional) |
Measurement duration | Can be set |
Measurement interval | Continuous measurement after power on |
Radar frequency | 24GHz(K-Band) |
Power supply range | DC12VDC |
Digital Interface | RS485 |
Analog output (default none) | 4-20Ma can be selected |
Wireless transmission (optional) | Optional |
12V power supply energy consumption | About 120mA when measuring |
shell material | Stainless steel, aluminum alloy housing |
Protection level | IP68 |
Operating temperature | -35℃-70℃ |
storage temperature | -40℃-70℃ |
Lightning protection (optional) | Integrated lightning protection function (optional) |
Radar distance from water surface | Effective distance: 40m (related to water surface ripples, the larger the waves, the longer the measurement distance) |
4. Radar current meter product structure diagram
5. Radar current meter product installation diagram
Installation diagram is as shown in the figure. On-site installation can be done with the help of existing building foundations such as bridges and brackets, but it must be ensured that the direction of the velocity meter radar wave emission is parallel to the direction of the water flow, and the velocity meter emission wave is 45° to the water surface. The factory default adjustment is 45°
6. Radar current meter installation precautions
1. Installation requires stable flow, straight channel, far away from the gate outlet, channel elbow position
2. The installation height should be controlled within 5 meters as much as possible (the closer the distance, the stronger the measurement signal and the more reliable the data)
3. The water flow rate is lower than 0.25, and the water ripple is small, so it is feasible to measure unstable
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