蒙自LRD-F22 Radar Level Meter

Suitable for measuring liquid levels, with a measurement range of 0.3 to 30 meters, this device converts the measured level value into a 4–20mA current signal output. It can be used to measure, display, or remotely monitor material height, offering features such as fast response, remote setting, and self-diagnosis. This product boasts the following key features:
●80G FM Radar
●Small launch angle
●Strong echo signal
● Can be configured via HART handheld device
● Suitable for high-temperature and high-pressure applications
● Equipped with RS485 functionality (please specify when ordering)

Product Description

Product Overview Product overview

The LRD-F22 series sensors are 80G frequency-modulated radar-based level measurement instruments capable of measuring distances up to 150 meters. The antenna has been further optimized, and a new, high-speed microprocessor enables faster signal analysis and processing, making these instruments suitable for measuring solid materials in challenging environments such as high temperature and high pressure. They are widely used across industries including chemical processing, metallurgy, water resources, coal mining, and petroleum.

Product Principle THE PRODUCT PRINCIPLE

The general principle of a frequency-modulated continuous-wave radar level meter is that the radar emits electromagnetic waves from the top of the tank. When these waves encounter the medium and reflect back, they are received by the radar. The frequency difference δf between the received signal and the transmitted signal is directly proportional to the distance R from the radar to the surface of the medium: R = C (speed of light) × δf (frequency difference) / 2 / K (frequency modulation slope). Since both the speed of light C and the frequency modulation slope K are known, once the frequency difference δf is calculated, the distance R from the radar installation point to the material surface can be determined. Finally, by subtracting this "empty height" (the space between the radar and the material surface) from the tank's total height—known beforehand—the actual material level height is obtained.

Performance metrics TECHNICAL PARAMETERS

Process Link

Flange / Material: PP, PTFE, Stainless Steel, Stainless Steel + PTFE Flange

Material

Cast aluminum / Stainless steel / ABS plastic

Shell Sealing between the outer shells Silicone rubber
Shell Window Polycarbonate
Ground terminal Stainless steel
Supply voltage Four-wire system Standard model

(198–242) V AC

Power consumption max 80mA DC 24V / 2W
Allow ripples <100Hz USS < 1V
(100–100 kHz) Hz USS < 10 mV
Dual-chamber enclosure

(15-28) V DC

Four-wire system
100V AC Four-wire system
Cable Parameters Cable entry/connector 1 M20x1.5 cable entry
1 blind plug M20×15
Ground terminal Wire cross-section: 2.5 mm 2
Output parameters Output signal (4–20) mA / RS485 Modbus
Resolution 1mm
Fault signal Current output remains unchanged: 20.5 mA, 22 mA, 3.9 mA
Integration Time (0–20) s, adjustable
Blind spot 0.1m/0.2m/0.3m
Maximum measurement interval 150 meters
Measure the spacing Approximately 1 second (depending on the parameter settings)
Adjust the time Approximately 1 second (depending on the parameter settings)
Adjust working, storage, and transportation temperatures (-40 to 80)°C
Process temperature LRD-FMW11S

-40 to 100°C

LRD-F11

-40 to 80°C

LRD-F12

-40 to 100°C

LRD-F13

-40 to 120°C / -40 to 110°C (threaded connection)

LRD-F14 -40 to 200°C
Relative humidity <95%
Pressure Max2.5MPa
Earthquake-resistant Mechanical vibration: 10 m/s 2 (10–150) Hz

 

External dimensions APPEARANCE OF SIZE

Installation Requirements INSTALLATION

When installing the instrument, avoid positioning it directly above the feed inlet, and try to keep it clear of any objects that could interfere with the signal, such as agitator blades.

There must be no obstructions above the feed inlet or below the instrument.

Under extremely complex operating conditions, the instrument functions normally within a 20-cm-radius area centered on the radar installation point, provided there are no obstructions.

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