Remote Diaphragm Seal Pressure Transmitter High Temperature 400°C
Product Details
| Range: | 0-35kpa--3.5Mpa | Thread: | Chuck Connection 50.5mm |
|---|---|---|---|
| Connection: | G12 G1/2, G14 G1/4, M20 M20*1.5 | Input Power: | 24vdc |
| Response Time: | ≤10 Ms | Precision: | ±0.5%FS |
| Storage Temperature: | -40 To 125 °C | Output: | 4~20mA,0-5V,0-10V,RS485 |
| Grade: | Industrial | Output Signal: | 4-20 MA |
| Highlight |
High Temperature Pressure Transmitter,High Temp Pressure Transmitter,Pressure Transmitter 24VDC |
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Product Description
High Temperature Pressure Transmitter with Remote Diaphragm Seal
1. Why You Need It
Processes at 200-400°C — thermal oil, molten media, superheated steam — quickly destroy a transmitter mounted directly on the line. This high-temperature transmitter uses a remote diaphragm seal and capillary system that isolates the sensing element from the heat, while a DC704 high-temperature fill fluid transmits pressure reliably. A Hastelloy C-276 diaphragm handles corrosive media, and cooling extension options extend service to the most extreme duties.
2. Working Principle
Process pressure acts on a remote diaphragm seal mounted at the process connection. The seal's fill fluid — DC704, a silicone-based high-temperature fluid — transmits the pressure through a capillary to the transmitter's sensing element, which is located away from the heat. This isolation keeps the electronics at a safe ambient temperature while the seal and fill fluid handle process temperatures up to 400°C, with a response time of ≤10 ms.
3. Key Advantages
- Rated for process up to 400°C
- Remote diaphragm seal + capillary
- DC704 high-temperature fill fluid
- Hastelloy C-276 diaphragm
- Response time ≤10 ms
- 4-20 mA / 0-5 V / 0-10 V / RS485
- Multiple connection threads
- Range 0-35 kPa to 3.5 MPa
- Cooling extension options
- Industrial grade
Common Pain Points & Solutions
| Problem | Conventional Issue | Our Solution | Result |
|---|---|---|---|
| Process heat kills sensors | Direct-mount fails at heat | Remote seal isolates electronics | Reliable at 400°C |
| Fill fluid degrades | Standard fluids vaporize | DC704 high-temp fill fluid | Stable pressure transmission |
| Corrosive hot media | Standard diaphragm corrodes | Hastelloy C-276 diaphragm | Long life in aggressive media |
| Slow thermal response | Standard designs lag | ≤10 ms response time | Fast process feedback |
Application Cases
Application: Heating loop pressure
Medium: Thermal oil
Pressure Range: 0-1.6 MPa
Operating Temperature: 200-320 °C
Installation Environment: Heating system
Customer Challenge: Reliable hot-oil pressure
Previous Problem: Direct-mount sensor failed
Solution: Remote seal transmitter, 300°C
Installation Location: Heat exchanger loop
Result: Reliable hot-oil measurement
Application: Molten salt process pressure
Medium: Molten salt
Pressure Range: 0-1.0 MPa
Operating Temperature: 300-400 °C
Installation Environment: Chemical reactor
Customer Challenge: Corrosion + heat resistance
Previous Problem: Diaphragm corroded
Solution: Hastelloy C-276 remote seal
Installation Location: Reactor vessel
Result: Corrosion-resistant at 400°C
Application: Superheated steam pressure
Medium: Superheated steam
Pressure Range: 0-3.5 MPa
Operating Temperature: 250-400 °C
Installation Environment: Steam line
Customer Challenge: Protect electronics from heat
Previous Problem: Electronics overheated
Solution: Cooling extension + remote seal
Installation Location: Steam header
Result: Electronics protected, stable reading
Application: Fryer / hot oil pressure
Medium: Edible oil
Pressure Range: 0-0.6 MPa
Operating Temperature: 150-200 °C
Installation Environment: Food processing
Customer Challenge: Accurate hygienic measurement
Previous Problem: Sensor degraded from heat
Solution: DC704 fill, remote seal transmitter
Installation Location: Fryer system
Result: Accurate, long-life measurement
Technical Specifications
| Specification | Value |
|---|---|
| Process Temperature | Up to 400°C |
| Design | Remote diaphragm seal + capillary |
| Fill Fluid | DC704 (high-temperature) |
| Diaphragm Material | Hastelloy C-276 |
| Measurement Range | 0-35 kPa to 3.5 MPa |
| Output | 4-20 mA / 0-5 V / 0-10 V / RS485 |
| Response Time | ≤10 ms |
| Connection | G1/2, G1/4, M20×1.5 |
FAQ
Q: How does it withstand 400°C?
The transmitter uses a remote diaphragm seal and capillary system that physically separates the sensing element from the hot process. The seal, mounted at the process connection, transmits pressure through a capillary filled with DC704 high-temperature fluid to the electronics, which remain at ambient temperature. This isolation lets the seal handle process temperatures up to 400°C without overheating the sensor.
Q: What fill fluid is used?
The fill fluid is DC704, a silicone-based high-temperature fluid. It remains stable and does not vaporize or decompose at the high temperatures where standard fill fluids would fail. The fill fluid's thermal stability is critical, because any degradation would change the transmitted pressure and corrupt the measurement.
Q: What is the diaphragm material?
The diaphragm is Hastelloy C-276, a nickel-chromium-molybdenum alloy with excellent resistance to corrosion and high-temperature media. It withstands aggressive chemicals, hot oils and molten media that would attack standard stainless steel, ensuring long service life in demanding high-temperature applications.
Q: What is the measurement range?
The measurement range is 0-35 kPa to 3.5 MPa, covering low-pressure hot processes up to moderate high-pressure thermal duties. The span is configured for the application, and the transmitter is calibrated so the 4-20 mA output corresponds to the required pressure range.
Q: What is the response time?
The response time is ≤10 ms, providing fast feedback for thermal and process control loops. The capillary system is engineered to minimize the volume of fill fluid and its thermal effects, keeping the measurement responsive even at high temperatures.
Q: What connections are available?
Threaded process connections include G1/2, G1/4 and M20×1.5, with the remote diaphragm seal mounted at the process connection. The choice of thread depends on the vessel or pipe fitting, and the seal is selected to match the process pressure and temperature.
Q: Why use a remote seal instead of direct mounting?
Direct mounting exposes the transmitter's electronics and sensing element to the full process temperature, which degrades and eventually destroys them. A remote seal moves the sensor away from the heat, using a capillary and fill fluid to transmit pressure. This extends service life dramatically and is the standard solution for process temperatures above the sensor's safe limit.
Q: Can it handle corrosive media?
Yes. The Hastelloy C-276 diaphragm provides excellent corrosion resistance for aggressive chemicals, molten salts and hot corrosive media. For the most demanding media, the diaphragm material and fill fluid are selected together to match both the chemistry and the temperature, ensuring reliable long-term operation.
Q: What is the role of the cooling extension?
A cooling extension is an optional component that further reduces the temperature reaching the transmitter by adding thermal mass and surface area between the hot seal and the sensor. It is used in extreme high-temperature applications — such as superheated steam or molten media — to keep the electronics safely below their operating limit.
Q: Where is it used?
It is used in thermal oil heating systems, molten salt processes, superheated steam lines and hot oil food processing. Anywhere process temperatures exceed what a direct-mount transmitter can tolerate, the high-temperature remote-seal transmitter provides reliable pressure measurement without sacrificing sensor life.
Product Highlights
High temperature pressure transmitter with remote diaphragm seal and capillary system for process temperatures up to 400°C. DC704 high-temperature fill fluid, Hastelloy C-276 diaphragm, and cooling extension options.
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