MXS04-80G—80 GHz millimeter-wave radar level transmitter, setting a new standard for precision in water‑resource monitoring.
MXS04-80G adopts Miniature antenna design, advanced pulse‑coherent radar technology , focusing on smart water management, river and reservoir systems, open-channel networks, and flood‑control and urban‑waterlogging monitoring applications, Equipped with an advanced cancellation algorithm, it delivers precise and stable measurements, unaffected by water surface fluctuations or floating debris. , landing millimeter
High‑level precision, ultra‑close‑range with a low blind zone, narrow beam and strong anti‑interference capability. Three core performance features, setting it apart from… 26 GHz low-frequency radar and ultrasonic water level sensors, suitable for complex field hydrological conditions.
1. High Precision: Millimeter-level measurement across the entire range, accurately detecting even the slightest changes in water level.
The equipment adopts 80 GHz ultra‑high‑frequency frequency‑modulated continuous wave technology features a shorter wavelength and higher resolution, with overall measurement accuracy reaching ±1mm It features built-in dynamic wavelet filtering, adaptive false‑echo suppression, and a full‑temperature dynamic compensation algorithm, effectively eliminating wind‑generated waves, wave spray, and floating debris.
It captures instantaneous data fluctuations, effectively eliminating measurement drift caused by temperature changes, water turbidity, and variations in water quality. It can precisely detect even the slightest rises and falls in water level, meeting the high‑precision data requirements for refined hydrological monitoring, water‑quantity accounting, and flood‑control early warning.
II. Low Blind Spot: Adapted to shallow-water operating conditions, addressing the challenges of close-range measurement.
Product optimization, integrated lens antenna, and near-end signal compensation algorithm, will The minimum measurement blind zone has been reduced to 0.1 m , measurement range coverage 0.1 – 3 0 m. Compared with conventional 26 GHz radar and ultrasonic water level sensors, its shallow-water monitoring capability has been significantly enhanced, making it ideally suited for shallow‑water river environments.
It is suitable for shallow‑water scenarios that traditional devices—such as channels, small reservoirs, sewage‑interception wells, and low‑profile box culverts—cannot measure, while also accommodating tight installation spaces and reducing on‑site construction and retrofitting costs.
III. Ultra-narrow beam Anti-interference : All-weather anti-clutter and anti-environmental interference
Equipment Ultra-narrow beam , the signal is highly focused and emitted vertically in a directional manner, distinguishing it from conventional equipment. A wide beamwidth design of 8°–15°. It can effectively mitigate spurious echoes caused by surrounding structures such as canal walls, riverbanks, bridge piers, and shoreline vegetation; meanwhile, the 80 GHz high-frequency signal exhibits excellent penetration.
It is powerful, capable of penetrating rain, dense fog, surface foam, and fine debris, and remains unaffected by rainy, snowy, or windy conditions, as well as water mist. Moreover, its operating frequency band avoids electromagnetic interference from power frequencies, electric motors, and communication equipment, ensuring stable performance even in complex electromagnetic environments such as pump stations and areas near high-voltage transmission lines, thereby eliminating…
Severe measurement errors, packet loss, and data loss issues.
Level gauge, measurement, equipment, variation, adaptation, beam, data, algorithm, signal, blind spot
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