Gage Pressure Transmitters Industrial Measurement Applications
Product Details
| Material: | Stainless Steel 316L | Warranty Period: | 12 Months |
|---|---|---|---|
| Input: | PT100 | Display: | Optional LCD |
| Voltage: | 5±0.5VDc | Power: | 24vdc |
| Measurement Type: | Gage, Absolute, Differential | Protection: | IP65 |
| Electrical Connection: | DIN 43650 | Accuracy: | ±0.1% Of Span |
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Product Description
Industrial Gage Pressure Transmitter for Accurate Process Measurement
1. Why You Need a Gage Pressure Transmitter
Pressure is one of the most measured variables in industry, and for the vast majority of those measurements, what matters is the pressure relative to the surrounding atmosphere — the gauge pressure. A gage pressure transmitter provides this reading directly, with the sensor's back side open to atmosphere so it needs no sealed reference chamber. This simple, proven design is accurate, economical and easy to install, making it the workhorse of industrial pressure measurement across chemical, water, power and manufacturing plants, where reliable pressure data is the foundation of safe and efficient operation.
2. Working Principle of the Gage Pressure Transmitter
The instrument measures the difference between the process pressure and the local atmospheric pressure at the measurement point. The sensor diaphragm senses process pressure on one side, while the back side is exposed directly to atmosphere, so the measured value naturally reflects changes in ambient conditions. The sensing element converts this pressure difference into an electrical signal that is conditioned and output as a standard 4-20 mA signal. With a measurement type covering gage, absolute and differential configurations, the transmitter adapts to different process references.
3. Gage Transmitter Design Advantages
- Most widely used: the standard choice for the majority of industrial pressure measurements.
- Flexible reference: supports gage, absolute and differential measurement types.
- Simple structure: atmospheric vent eliminates the need for a sealed reference chamber.
- High accuracy: ±0.1% of span for precise process control.
- Durable build: 316L stainless steel with IP65 protection.
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 |
|---|---|---|---|
| Routine process pressure monitoring | Over-specified sensors inflate cost | Cost-effective gage transmitter ±0.1% span | Right-sized accuracy at lower cost |
| Multiple measurement references needed | Separate instruments per reference type | Gage / absolute / differential in one platform | Flexible configuration, fewer models |
| Dusty / wet industrial areas | Ingress causes early failure | IP65 sealed housing, DIN43650 connection | Reliable operation in harsh areas |
| Corrosive process media | Standard materials corrode | 316L stainless steel wetted parts | Long service life, less replacement |
Application: Reactor / vessel pressure
Medium: Process gas / liquid
Pressure Range: 0-2.5 MPa
Operating Temperature: 10-120 °C
Installation Environment: Process area
Customer Challenge: Accurate pressure for control loop
Previous Problem: Drift and inaccurate readings
Solution: ±0.1% span gage pressure transmitter
Installation Location: Vessel pressure tap
Result: Accurate, stable process pressure control
Application: Filter / line pressure
Medium: Water
Pressure Range: 0-1 MPa
Operating Temperature: 0-40 °C
Installation Environment: Plant piping, wet
Customer Challenge: Monitor filter pressure drop
Previous Problem: Manual gauge reading
Solution: IP65 gage transmitter with DIN43650
Installation Location: Filter inlet / outlet
Result: Continuous pressure-drop monitoring
Application: Auxiliary system pressure
Medium: Steam / water
Pressure Range: 0-4 MPa
Operating Temperature: up to 150 °C
Installation Environment: Plant utility
Customer Challenge: Reliable pressure for auxiliary systems
Previous Problem: Inconsistent mechanical gauges
Solution: 316L gage pressure transmitter
Installation Location: Auxiliary pressure line
Result: Reliable, continuous pressure data
Application: Machine / hydraulic pressure
Medium: Hydraulic oil
Pressure Range: 0-2 MPa
Operating Temperature: -20 to 80 °C
Installation Environment: Machine-mounted
Customer Challenge: Dependable pressure feedback
Previous Problem: Expensive smart sensors for simple points
Solution: Industrial gage pressure transmitter
Installation Location: Hydraulic manifold
Result: Cost-effective, reliable pressure signal
Why Choose Our Gage Pressure Transmitter?
- ±0.1% of span accuracy for precise measurement
- Supports gage, absolute and differential measurement types
- 316L stainless steel wetted parts resist corrosion
- IP65 protection for dusty and wet environments
- DIN43650 electrical connection for secure wiring
- Optional LCD display for local readout
- PT100 temperature input for combined measurement
- 24 V DC standard power supply
- Simple atmospheric-vent structure, no sealed chamber needed
- Wide applicability across chemical, water and power industries
| Technical Specification | Value |
|---|---|
| Measurement Range | Gage / absolute / differential (configurable) |
| Accuracy | ±0.1% of span |
| Output Signal | 4-20 mA |
| Process Connection | DIN43650 (threaded) |
| Wetted Material | Stainless steel 316L |
| Operating Temperature | Industrial range |
| Pressure Reference | Gage (atmospheric) |
| Protection Grade | IP65 |
Q: What is a gage pressure transmitter?
A gage (gauge) pressure transmitter measures the pressure of a medium relative to the local atmospheric pressure at the measurement point. The sensor's back side is vented to atmosphere, so the reading reflects how far the process pressure is above or below ambient. This is the most widely used type of industrial pressure measurement because most processes need to know the "useful" working pressure rather than the absolute total pressure. The transmitter outputs a standard 4-20 mA signal for PLC, DCS and monitoring integration.
Q: How does atmospheric pressure affect a gage transmitter?
Because the reference point of a gage transmitter is local atmospheric pressure, changes in atmospheric pressure — from altitude or weather — slightly affect the measured value. For most industrial applications this effect is negligible, but in precision or high-altitude installations it should be considered. If a measurement must be independent of atmospheric pressure, an absolute or sealed-gauge reference transmitter is more appropriate. The gage reference is chosen precisely because most processes need pressure relative to ambient conditions.
Q: What is the difference between gage, absolute and differential measurement?
Gage pressure is measured relative to local atmospheric pressure, absolute pressure relative to a perfect vacuum, and differential pressure as the difference between two pressure points. A gage transmitter reads process pressure above or below ambient, an absolute transmitter reads total pressure including atmosphere, and a differential transmitter reads the difference between two taps. This instrument supports all three types, allowing one platform to be configured for different measurement references as the application requires.
Q: What accuracy does this transmitter provide?
This gage pressure transmitter provides ±0.1% of span accuracy, which is suitable for precise process control, monitoring and data recording applications. The accuracy specification accounts for linearity, hysteresis and repeatability. This level of accuracy, combined with the 316L stainless steel sensing element, delivers dependable measurements for chemical, water, power and manufacturing applications where pressure data drives control decisions.
Q: What is the PT100 input used for?
The PT100 input allows the transmitter to accept a resistance temperature detector (RTD) signal for combined pressure and temperature measurement or for temperature compensation. PT100 is the standard industrial platinum RTD with 100 ohms resistance at 0 °C, valued for its accuracy and linearity. This flexibility is useful in applications where both pressure and temperature must be monitored, or where temperature compensation improves the accuracy of the pressure reading.
Q: What materials are used in the wetted parts?
The wetted parts are made of 316L stainless steel, which provides excellent corrosion resistance for water, oil, gas, steam and many process chemicals. 316L is the standard material for industrial pressure instrumentation because it balances durability, chemical resistance and cost. For highly corrosive media, a diaphragm seal or a different wetted material may be required, so media compatibility should always be confirmed for the specific application.
Q: What is the electrical connection type?
The transmitter uses a DIN43650 electrical connector, a widely used industrial standard that provides a secure, field-wirable connection. DIN43650 connectors are robust and easy to install, with a gasket-sealed interface that protects the terminals from moisture and dust. This connection type simplifies wiring in the field and is compatible with standard mating plugs used throughout industrial automation.
Q: Is a local display available?
Yes, an optional LCD display is available for local readout of the measured pressure directly at the transmitter. This is useful for commissioning, troubleshooting and on-site verification without a separate indicator. The display can show the current pressure value and, on some configurations, status information. The transmitter also provides the 4-20 mA output for remote monitoring and control.
Q: What is the protection rating?
The transmitter is rated IP65, meaning it is dust-tight and protected against low-pressure water jets from any direction. This makes it suitable for dusty and wet industrial environments where particulate ingress or water spray could damage a less-protected instrument. The DIN43650 connector, when properly sealed with its gasket, helps maintain the IP65 rating at the wiring interface.
Q: Where are gage pressure transmitters used?
Gage pressure transmitters are used across virtually every process industry: chemical reactors and vessels, water and wastewater treatment, power generation auxiliary systems, HVAC and building systems, and OEM machinery and hydraulics. They are the standard instrument for measuring line pressure, pump pressure, filter differential and vessel pressure, providing the reliable pressure data that underpins safe and efficient plant operation.
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