Place of Origin:
CHINA
Brand Name:
KACISE
Certification:
CE
Model Number:
KLD802
Document:
Attribute | Value |
---|---|
Frequency | 80GHz |
Output | two-wire /4...20mA/HART protocol |
Explosion-proof | Exia IIC T6 Ga/Exd ia IIC T6 Gb |
Protection | IP67 |
Range | 0.1m~100m |
Medium | non-corrosive liquid, slightly corrosive liquid |
Process pressure | -0.1~1.6MPa |
Power supply | two-wire /DC24V four-wire /DC12~24V four-wire /AC220V |
The 30m High Pressure 80G Non-Contact Radar Liquid Level Transmitter is an excellent choice for handling slightly corrosive liquids. With its 80G radar technology, it can precisely measure liquid levels up to 30 meters even under high pressure. Its non-contact design reduces wear and tear, ensuring durability and accurate readings in demanding industrial applications.
The radar antenna transmits narrow microwave pulse which will be reflected back when reaching the surface of the medium tested and then received again by the antenna system. The signals shall be transmitted to the electric circuit and then converted into level signals. As the transmission speed of microwave is so fast, the time used for the microwave transmission to the surface of the medium tested and then reflected back is almost 0.
Model | KLD802 |
---|---|
Medium | non-corrosive liquid, slightly corrosive liquid |
Measuring range | 0.1m~10/20/30/60/100m |
Process connection | flange ≥ DN80 |
Process temperature | -40~110℃ |
Process pressure | -0.1~1.6 MPa |
Antenna size | 32mm lens antenna |
Antenna material | PTFE |
Accuracy | ±1mm (range below 35m) ±5mm (range between 35m and 100m) |
Protection class | P67 |
Center frequency | 80GHz |
Launch angle | 3° |
Power supply | Two-wire /DC24V / four-wire /DC12~24V / four-wire /AC220V |
Casing | aluminum/plastic/stainless steel |
Signal output | two-wire /4...20mA/HART protocol four-wire / 4...20mA/ RS485 Modbus |
When installing the instrument, avoid installing it above the material inlet, and try to avoid various objects that affect the signal, such as stirring paddles, etc.
Power Supply
(4~20) mA/HART(2 wire)
The power supply and the output current signal share a two-core shielded cable. Please refer to the technical data for the specific supply voltage range.
(4~20) mA(4 wire/6 wire)
The power supply needs to be powered separately, and a four-core shielded cable is used for the power supply and current signal (the current signal and the RS485 interface can be output at the same time, and a six-core shielded cable is required for simultaneous output).
RS485/Modbus
The power supply needs to be powered separately, and a four-core shielded cable is used for power supply and digital signal. (The current signal and the RS485 interface can be output at the same time, and a six-core shielded cable is required for simultaneous output).
Please observe the requirements of the local electrical installation regulations! Follow local regulations for personnel health and safety. All operations on the electrical components of the instrument must be completed by professionals who have received formal training. Please check the nameplate of the instrument to ensure that the product specification meets your requirements. Please ensure that the power supply voltage is consistent with the requirements on the nameplate of the instrument.
This instrument fully meets the requirements of protection class IP66/67, please ensure the waterproofness of the cable sealing head. As shown below:
How to ensure that the installation meets the requirements of IP67:
Beam Angle
The beam angle is the beam angle at which the energy density of the radar wave reaches half of its maximum value (3dB width). Microwaves emit signals out of beam range and can be reflected by interfering objects.
Lens Antenna Diameter | Φ32mm lens Antenna | Φ42mm lens Antenna | Φ76mm lens Antenna | Φ74.7mm lens Antenna with air purge |
---|---|---|---|---|
Beam Angle | 7° | 6° | 3° | 3° |
The larger the antenna size and the smaller the beam angle α, the less interference echoes will be generated.
For more accurate measurements, avoid installing any internal devices (such as limit switches, temperature sensors, bases, vacuum rings, heating coils, baffles, etc.) within the range of the signal beam.
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