Differential Pressure Level Gauge Stainless Steel Bottom Mount
Product Details
| Weight: | 0.5 Kg | Mounting Type: | Bottom Mount |
|---|---|---|---|
| Connection Size: | 1/2 Inch NPT | Ingress Protection: | IP65 |
| Dial Diameter: | 4 Inches | Accuracy: | ±1.5% FS |
| Measurement Range: | 0-100 Psi | Material: | Stainless Steel |
| Operating Temperature: | -20°C To 80°C | Display Type: | Analog Dial |
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Differential Pressure Level Gauge,Pressure Level Gauge Stainless Steel,Pressure Level Gauge Bottom Mount |
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Product Description
Differential Pressure Level Transmitter for Sealed and Corrosive Vessels
1. Why You Need a Differential Pressure Level Transmitter
In a sealed vessel, boiler or reactor, the vapor space above the liquid exerts its own pressure, so a single gauge reading does not equal the liquid level. Measuring true level requires cancelling that vapor pressure — exactly what a differential pressure level transmitter does. By measuring the pressure difference between the liquid phase at the bottom and the vapor phase at the top, it isolates the liquid column and delivers an accurate level signal even under high temperature, high pressure and corrosive conditions. This makes it the reference instrument for process vessels where level accuracy directly affects safety, quality and yield.
2. Working Principle of the Differential Pressure Level Transmitter
The instrument measures the hydrostatic pressure difference between two points in the vessel. The high-pressure side connects to the bottom and senses the liquid head plus vapor pressure; the low-pressure side connects to the top or atmosphere and senses the vapor pressure. A pressure transmission tube or liquid-filled capillary carries each pressure to a differential sensor, which outputs the difference as a standard 4-20 mA signal with HART digital communication. Because the vapor pressure is common to both sides, it is subtracted out, leaving a signal proportional only to the liquid level.
3. Differential Design Advantages
- Vapor pressure cancellation: true level in sealed and pressurized vessels, unaffected by vapor space.
- High static pressure capability: robust sensing for high-pressure process conditions.
- Measurement accuracy: precise level signal suitable for control loops and inventory.
- Corrosion resistance: tantalum and PTFE wetted materials for aggressive media.
- Harsh environment reliability: HART protocol enables remote configuration and diagnostics.
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 |
|---|---|---|---|
| Sealed vessel / boiler level | Gauge reading includes vapor pressure | Differential measurement cancels vapor pressure | True liquid level in sealed vessels |
| High-temperature, high-pressure media | Standard sensors drift or fail | Robust differential construction with remote seals | Reliable measurement under process extremes |
| Strongly corrosive media | 316L diaphragm corrodes | Tantalum / PTFE wetted materials | Extended service life in aggressive chemistry |
| Crystallizing / scaling media | Pressure ports clog | Flush diaphragm with capillary transmission | Plug-free, low-maintenance operation |
Application: Distillation column level
Medium: Hydrocarbon / solvent
Pressure Range: 0-1 MPa
Operating Temperature: up to 200 °C
Installation Environment: Sealed column, hazardous
Customer Challenge: Vapor pressure distorted level readings
Previous Problem: Inaccurate level, process instability
Solution: HART differential pressure level transmitter
Installation Location: Column bottom, bottom mount
Result: Stable level control, improved separation efficiency
Application: Boiler drum level
Medium: Boiler water / steam
Pressure Range: up to 10 MPa
Operating Temperature: up to 300 °C
Installation Environment: High-pressure drum
Customer Challenge: Critical drum level for safe operation
Previous Problem: Unreliable level, trip risk
Solution: Differential pressure transmitter with remote seals
Installation Location: Boiler drum, bottom mount
Result: Reliable drum level, reduced trip risk
Application: Corrosive acid storage tank
Medium: Strong acid
Pressure Range: 0-0.5 MPa
Operating Temperature: 20-60 °C
Installation Environment: Corrosive atmosphere
Customer Challenge: Acid corroded standard diaphragms
Previous Problem: Frequent sensor replacement
Solution: Tantalum / PTFE wetted differential transmitter
Installation Location: Tank bottom
Result: Long service life, accurate acid level
Application: Crystallizer level
Medium: Crystallizing solution
Pressure Range: 0-0.3 MPa
Operating Temperature: 10-100 °C
Installation Environment: Sealed vessel
Customer Challenge: Crystals plugged pressure ports
Previous Problem: Blocked measurement, batch losses
Solution: Flush diaphragm differential transmitter with HART
Installation Location: Vessel bottom
Result: Continuous, plug-free level measurement
Why Choose Our Differential Pressure Level Transmitter?
- True differential measurement cancels vapor pressure in sealed vessels
- HART protocol for remote configuration and diagnostics
- Tantalum and PTFE wetted materials for corrosive media
- Suitable for high-temperature, high-pressure applications
- Flush diaphragm design prevents clogging from crystallization
- Bottom mount stainless steel construction
- Standard 4-20 mA output for DCS / PLC integration
- Wide range ratio for flexible level spans
- Reliable in boilers, reactors and storage tanks
- Low-maintenance, long service life
| Technical Specification | Value |
|---|---|
| Measurement Range | 0-100 psi (configurable span) |
| Accuracy | ±1.5% FS |
| Output Signal | 4-20 mA + HART |
| Process Connection | Bottom mount, 1/2 inch NPT |
| Wetted Material | Stainless steel / tantalum / PTFE |
| Operating Temperature | -20 °C to 80 °C |
| Pressure Reference | Differential (vapor vs liquid) |
| Protection Grade | IP65 |
Q: What is a differential pressure level transmitter?
A differential pressure level transmitter measures liquid level in a vessel by sensing the pressure difference between the liquid phase at the bottom and the vapor or gas phase at the top. Because the vapor pressure is common to both measurement points, it is automatically cancelled, leaving a signal proportional only to the liquid column height. This makes the instrument ideal for sealed, pressurized and high-temperature vessels such as reactors, boilers and storage tanks, where a simple gauge reading would include the vapor pressure and give a false level.
Q: Can a differential pressure transmitter measure absolute pressure?
A standard differential pressure transmitter measures the difference between two pressures, not a single absolute value. However, if one side is referenced to a sealed vacuum, the differential becomes an absolute measurement, and some transmitters are configured this way for vacuum applications. For level measurement, the differential configuration is used specifically to cancel the vapor or atmospheric pressure, which is different from an absolute pressure transmitter that measures against a perfect vacuum reference.
Q: What is the difference between gauge, absolute and differential pressure?
Gauge pressure is measured relative to local atmospheric pressure, so it changes with weather and altitude. Absolute pressure is measured relative to a perfect vacuum and is independent of atmosphere. Differential pressure is the difference between two pressure points. For sealed-tank level measurement, differential is preferred because it cancels the vapor pressure that would otherwise corrupt a gauge reading. Each type suits different applications, and choosing correctly is essential for accurate process measurement.
Q: Why is vapor pressure cancellation important?
In a sealed vessel, the space above the liquid is filled with vapor at a pressure that depends on temperature and process conditions. If a single gauge transmitter measures the bottom pressure, the reading includes both the liquid head and this vapor pressure, so the apparent level changes even when the actual liquid level is constant. A differential transmitter senses both the bottom and top pressures and subtracts the vapor pressure, so the output reflects only the true liquid level. This is critical for safe and accurate control of reactors and boilers.
Q: What materials are available for corrosive media?
For aggressive media, the wetted parts can be specified in tantalum, which resists most acids including aqua regia, or PTFE for excellent chemical compatibility in many applications. Stainless steel is standard for general service. The choice of diaphragm and seal material must match the specific process chemistry and temperature to prevent corrosion and maintain accuracy. Our team can help select the right material combination for your medium.
Q: What is the HART protocol used for?
HART (Highway Addressable Remote Transducer) is a digital communication protocol superimposed on the standard 4-20 mA analog signal. It enables bidirectional communication, so operators can remotely read and change the transmitter's range, damping, units and other parameters without removing it from service, and can retrieve diagnostic information. This simplifies commissioning, calibration and maintenance, and supports asset management systems for predictive maintenance.
Q: Where are differential pressure level transmitters used?
They are used in sealed containers such as reaction vessels, storage tanks, boilers and distillation columns, particularly where the media is high-temperature, high-pressure or corrosive. Industries include chemical, petrochemical, oil and gas, power generation, pharmaceutical and food processing. They are also suitable for media prone to crystallization or scaling, such as DMAC, ammonia water and dilute sulfuric acid, where flush diaphragms prevent blockage.
Q: How is a differential pressure level transmitter installed?
The high-pressure side connects to the bottom of the vessel to sense the liquid head, and the low-pressure side connects to the top or to atmosphere to sense the vapor pressure. Capillaries or impulse lines transmit the pressures to the transmitter, which can be bottom-mounted. Impulse lines should be filled correctly (often with silicone oil) and kept free of air bubbles, and the electrical cable should be routed downward to prevent moisture ingress. A zero and span calibration should follow installation.
Q: How does it handle crystallizing media?
For media that crystallize or scale, a flush-mounted diaphragm is used instead of a narrow pressure port, preventing solids from accumulating and blocking the measurement path. The diaphragm sits flush with the vessel wall, and a capillary transmits the pressure to the sensor. This design keeps the sensing surface clean and avoids the frequent cleaning and false readings that plague port-type instruments in crystallizing services.
Q: What is the accuracy and output?
This model provides ±1.5% FS accuracy with a 4-20 mA output plus HART digital communication. The analog signal integrates with any DCS or PLC, while HART adds remote configuration and diagnostics. The bottom-mount stainless steel construction with IP65 protection suits industrial environments, and the wide span range allows the transmitter to be configured for a variety of tank heights and liquid densities.
Product Highlights
Differential Pressure Level Transmitter for Sealed and Corrosive Vessels 1. Why You Need a Differential Pressure Level Transmitter In a sealed vessel, boiler or reactor, the vapor space above the liquid exerts its own pressure, so a single gauge reading does not equal the liquid level. Measuring ...
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