2088型投入式液位计
Hydrostatic & Submersible Level Transmitters

HRT-L280 Submersible Hydrostatic Level Transmitter

Submersible hydrostatic level transmitter for continuous liquid-level measurement in tanks, wells, reservoirs and water applications, with analog or RS485 output options.

Specifications

Measuring Range
Multiple level ranges available
Measurement Principle
Hydrostatic pressure
Accuracy
±0.5% FS standard
Output
4–20 mA / 0–10 V / RS485 options
Power Supply
12–30 VDC
Process Connection
Submersible / suspended installation
Probe Material
Stainless-steel probe
Ingress Protection
IP68

Product Overview

HRT-L280 is a submersible hydrostatic level transmitter for continuous liquid-level measurement. The submerged probe senses the hydrostatic pressure produced by the liquid column and converts it into a standard electrical signal for monitoring and control systems.

Applications

Typical applications include water tanks, wells, reservoirs, wastewater systems, pump stations and other liquid-level monitoring tasks where a submersible sensor can be installed directly in the medium.

Selection & Application

Selection should consider the required level range, liquid density, medium compatibility, operating temperature, cable length, required output and installation depth. The selected measuring range should match the actual liquid column and operating conditions.

Installation & Integration

Install the probe at the required measuring depth and keep the pressure inlet free from blockage. The cable should be routed and supported to avoid excessive pulling, abrasion or sharp bending. For vented-gauge designs, the cable vent path must remain open and protected from moisture.

Configuration Options

Measuring range, output signal, cable length and probe construction can be selected according to the application. Standard output options include 4–20 mA, 0–10 V and RS485.

Next Step

For selection or quotation, please send the liquid, required level range, tank or well depth, operating temperature, cable length and required output.