Immersion Level Gauge Stainless Steel Panel Mount Measurement
Product Details
| Operating Temperature: | -20°C To 80°C | Measurement Range: | 0-100 Psi |
|---|---|---|---|
| Accuracy: | ±1.5% FS | Material: | Stainless Steel |
| Response Time: | Less Than 1 Second | Dial Diameter: | 4 Inches |
| Connection Size: | 1/4 Inch NPT | Overpressure Protection: | 150% Of Full Scale |
| Mounting Type: | Panel Mount | Weight: | 0.5 Kg |
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Stainless Steel Immersion Level Gauge,Immersion Level Gauge Panel Mount,Liquid Level Measurement Instrument |
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Product Description
Immersion Level Transmitter for Continuous Liquid Level Monitoring
1. Why You Need an Immersion Level Transmitter
Many liquids — water, wastewater, chemicals, oils and groundwater — are stored in deep tanks, wells and reservoirs where a top-mounted or flanged gauge is either impractical or cannot reach the liquid. An immersion level transmitter solves this by being lowered directly into the liquid, where its submerged sensor measures the hydrostatic head above it and converts it to a continuous level signal. This approach removes the influence of atmospheric pressure through a vented reference tube and delivers reliable level data even in turbulent, deep or remote installations, making it the standard choice for water supply, treatment and resource extraction.
2. Working Principle of the Immersion Level Transmitter
The probe is submerged at the bottom (or a fixed reference point) of the liquid. The pressure-sensitive element inside the stainless steel housing senses the hydrostatic pressure, which is directly proportional to the liquid depth above the probe and the liquid density. A gas-conducting (vented) cable equalizes the reference side of the sensor to atmospheric pressure, so the output reflects only the liquid column. The transmitter processes the signal and outputs a standard 4-20 mA signal, with some models supporting remote monitoring and alarm functions.
3. Immersion Design Advantages
- Direct submersion: no need for top mounting or flange access, ideal for deep tanks, wells and reservoirs.
- Stable measurement: ±5 °C temperature compensation and 20 MΩ insulation resistance keep the signal stable.
- Pressure resistance: probe rated for up to 3 MPa, covering deep-water applications.
- Corrosion resistance: stainless steel or titanium alloy probe withstands water and many process liquids.
- Reliable in harsh environments: waterproof, corrosion-resistant gas-conducting cable for long-term submerged service.
Common Measurement Challenges & Solutions
| 客户工况问题 | 传统方案问题 | 我们的解决方案 | 最终收益 |
|---|---|---|---|
| Deep well / reservoir level | Top gauges cannot reach the liquid surface | Submersible probe lowered to the measurement point | Accurate deep-water level measurement |
| Atmospheric pressure variation | Unvented sensors drift with weather | Vented gas-conducting cable references atmosphere | Reading reflects only liquid head |
| Corrosive or wet environment | Exposed electronics fail from moisture | Waterproof stainless steel / titanium probe and cable | Long-term submerged reliability |
| Remote tanks without power | Difficult to monitor continuously | 4-20 mA output with optional remote monitoring/alarm | Continuous, centralized level visibility |
Application: Reservoir level monitoring
Medium: Potable water
Pressure Range: 0-0.5 MPa
Operating Temperature: 0-30 °C
Installation Environment: Open reservoir, outdoor
Customer Challenge: Monitor water level for supply planning
Previous Problem: Manual gauging, intermittent data
Solution: Submersible immersion transmitter with 4-20 mA
Installation Location: Reservoir bottom
Result: Continuous level data fed to SCADA system
Application: Sedimentation tank level
Medium: Effluent / sludge water
Pressure Range: 0-0.3 MPa
Operating Temperature: 5-35 °C
Installation Environment: Corrosive, wet
Customer Challenge: Fouling and corrosion of sensors
Previous Problem: Sensor drift and early failure
Solution: Stainless steel probe with corrosion-resistant cable
Installation Location: Tank bottom
Result: Reliable level control, reduced maintenance
Application: Chemical storage tank level
Medium: Mild chemical solution
Pressure Range: 0-0.4 MPa
Operating Temperature: 10-50 °C
Installation Environment: Tank farm
Customer Challenge: Accurate inventory of stored chemicals
Previous Problem: Inconsistent manual readings
Solution: Titanium probe immersion transmitter
Installation Location: Tank bottom
Result: Accurate, continuous inventory monitoring
Application: Groundwater well level
Medium: Groundwater
Pressure Range: 0-1 MPa
Operating Temperature: 5-25 °C
Installation Environment: Deep borehole
Customer Challenge: Deep, inaccessible water level
Previous Problem: No continuous measurement available
Solution: Deep-rated submersible level transmitter
Installation Location: Wellbore
Result: Real-time groundwater level monitoring
Why Choose Our Immersion Level Transmitter?
- Direct submersion design for deep tanks, wells and reservoirs
- ±5 °C temperature compensation for stable readings
- 20 MΩ insulation resistance for reliable signal integrity
- Up to 3 MPa pressure resistance for deep applications
- Stainless steel or titanium alloy probe for corrosion resistance
- Waterproof, corrosion-resistant gas-conducting cable
- Standard 4-20 mA output for easy system integration
- Optional remote monitoring and alarm functions
- Suitable for water, chemical, oil and groundwater media
- Simple installation without flange or top mounting
| Technical Specification | Value |
|---|---|
| Measurement Range | 0-100 psi (configurable depth) |
| Accuracy | ±1.5% FS |
| Output Signal | 4-20 mA |
| Process Connection | Submersible probe (1/4 inch NPT) |
| Wetted Material | Stainless steel / titanium alloy |
| Operating Temperature | -20 °C to 80 °C |
| Pressure Reference | Vented (atmospheric via cable) |
| Protection Grade | 3 MPa pressure resistance, waterproof |
Q: What is an immersion level transmitter?
An immersion level transmitter is a liquid-level sensor that is lowered directly into the liquid and measures the hydrostatic pressure above the probe to determine level. The submerged probe contains a pressure-sensitive element, and a vented gas-conducting cable equalizes the reference side to atmospheric pressure. The transmitter converts the measured pressure into a standard 4-20 mA signal. It is widely used in water supply, wastewater treatment, reservoirs, chemical tanks, oil tanks and groundwater wells because it requires no top mounting or flange access and works well in deep or remote installations.
Q: How does an immersion level sensor work?
The sensor works on the hydrostatic principle: the pressure at the bottom of a liquid column is proportional to the liquid height and density. When the probe is submerged, the pressure-sensitive diaphragm inside measures this pressure. A vent tube in the cable references the sensor's back side to atmospheric pressure, cancelling atmospheric influence. The transmitter electronics then convert the net pressure into a linear 4-20 mA signal proportional to liquid level. This method provides continuous, accurate measurement without moving parts.
Q: What is the difference between immersion and flange level transmitters?
An immersion transmitter is lowered into the liquid from the top or side and measures hydrostatic pressure with a submerged probe, making it ideal for deep wells, reservoirs and open tanks. A flange transmitter is bolted to a process flange, usually at the bottom or side of a vessel, and is preferred for pressurized, high-temperature or corrosive services where the media must be contained. Immersion types are typically simpler and more economical for open, ambient-pressure water applications, while flange types suit aggressive, sealed process conditions.
Q: Can an immersion level transmitter measure corrosive liquids?
Yes, provided the correct wetted material is selected. Our probes are available in stainless steel for general water and mild chemical applications, and titanium alloy for more aggressive or chloride-containing media. The gas-conducting cable is also waterproof and corrosion resistant. For strongly corrosive chemicals, it is important to confirm material compatibility, as the wrong probe material can corrode and shorten service life. We can help match the probe material to your specific liquid.
Q: What is temperature compensation in a level transmitter?
Temperature compensation corrects the measurement for errors introduced when the ambient or process temperature changes the sensor's zero point or sensitivity. Our immersion transmitter includes ±5 °C temperature compensation, meaning it maintains its accuracy over a defined temperature range. Without compensation, a sensor could drift as temperature varies, producing inaccurate level readings. Compensation is especially important in outdoor reservoirs and tanks that experience wide daily or seasonal temperature swings.
Q: Where are immersion level transmitters used?
They are used across water and environmental industries for urban water supply, sewage treatment, sedimentation tanks, reservoirs and rivers; in industrial plants for chemical storage tanks, reaction vessels, industrial water and oil tanks; in food production for aseptic tanks, condiments and beverages; and in resource extraction for geothermal wells, mines and groundwater monitoring. Anywhere a liquid needs continuous level measurement in an open or deep installation, immersion transmitters are a practical choice.
Q: How deep can an immersion level transmitter measure?
Measurement depth is determined by the pressure rating and range of the sensor. Our probe is rated for up to 3 MPa static pressure resistance, which corresponds to a substantial water depth (roughly 300 meters of water column). The specific usable range can be configured to match the application, and the probe is lowered to the required reference point. For very deep wells or high-head applications, confirm the range and cable length are specified correctly at order time.
Q: How is an immersion level transmitter installed?
The probe is lowered into the liquid and positioned at the bottom or a fixed reference point, and the cable is secured at the tank top. The vent tube must be kept open to atmosphere and protected from moisture ingress. The cable should not be sharply bent or stressed. The transmitter output is wired to the control system using the 4-20 mA signal. For deep or turbulent tanks, a stilling tube or weight may be used to keep the probe stable and prevent measurement fluctuation.
Q: What is the purpose of the vented cable?
The vented (gas-conducting) cable contains a small tube that connects the sensor's reference side to the atmosphere. This equalizes the back of the pressure sensor to local atmospheric pressure, so the transmitter measures only the hydrostatic pressure of the liquid column and is not affected by changes in barometric pressure. Without a vent, the reading would drift as weather conditions change. Keeping the vent tube dry and open is essential for accurate measurement.
Q: What output signal does it provide?
The standard output is a 4-20 mA DC analog signal, which is compatible with PLC, DCS and SCADA systems. This two-wire signal is robust over long cable runs, making it well suited to remote tanks and wells. Some configurations also support remote monitoring and alarm functions for centralized supervision. The 4-20 mA current loop is the industry standard and allows easy integration with existing plant control infrastructure.
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