Vacuum Pressure Transmitter Precision Measurement Industrial Automation IP67
Product Details
| Thread: | 1/4npt | Output: | 4~20mA,0-5V,0-10V,RS485 |
|---|---|---|---|
| Input Power: | 24vdc | Precision: | ±0.5%FS |
| Power Supply: | 12-36 VDC | Type: | Explosion-proof |
| Broken Pressure: | 3XRP(rated Pressure) | Connection: | CL150(DN25) |
| Pressure Type: | Gauge, Absolute, Sealed Gauge | Ingress Protection: | IP67 |
| Highlight |
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Product Description
Vacuum Pressure Transmitter for Vacuum and Absolute Measurement
1. Why You Need a Vacuum Transmitter
Vacuum processes — distillation, drying, coating, packaging and degassing — require precise monitoring of pressure below atmospheric level. A standard gauge transmitter is referenced to atmosphere and cannot reliably resolve the low pressures that define vacuum quality, while its reading drifts as the atmosphere changes. A dedicated vacuum transmitter measures both vacuum and absolute pressure, providing the stable, high-resolution signal needed to control vacuum pumps, furnaces and process chambers. For plants where vacuum level directly determines product quality, this is the instrument that keeps the process on target.
2. Working Principle of the Vacuum Transmitter
The vacuum transmitter measures pressure below atmospheric level, outputting a signal proportional to the vacuum degree. It supports both vacuum and absolute measurement: in absolute mode, the reference is a sealed vacuum, giving the true absolute pressure; in vacuum mode, it reads the sub-atmospheric gauge pressure. The sensor converts the measured pressure into a standard output — 4-20 mA, 0-5 V, 0-10 V or RS485 — for the control system, enabling precise vacuum regulation.
3. Vacuum Transmitter Design Advantages
- Dual measurement: supports both vacuum and absolute pressure measurement.
- Multiple outputs: 4-20 mA, 0-5 V, 0-10 V and RS485 for flexible integration.
- Harsh environment protection: IP67 sealing withstands wet and dusty conditions.
- Hazardous area ready: explosion-proof certification for classified zones.
- Standard connections: CL150 DN25 flange and 1/4 NPT options.
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 |
|---|---|---|---|
| Vacuum process control | Gauge transmitters cannot resolve low vacuum | Dedicated vacuum/absolute transmitter | Accurate vacuum regulation |
| System integration variety | Single-output limits connectivity | 4-20 mA, 0-5 V, 0-10 V, RS485 outputs | Flexible connection to any system |
| Wet / dusty environment | Ingress causes failure | IP67 sealed housing | Reliable operation in harsh areas |
| Hazardous area installation | Non-rated electronics risk | Explosion-proof certification | Safe operation in classified zones |
Application: Vacuum distillation
Medium: Hydrocarbon vapor
Pressure Range: 0 to -100 kPa
Operating Temperature: up to 150 °C
Installation Environment: Vacuum column
Customer Challenge: Control distillation vacuum precisely
Previous Problem: Gauge readings unstable at low vacuum
Solution: Vacuum/absolute transmitter with DN25 flange
Installation Location: Column vacuum tap
Result: Precise vacuum control, stable separation
Application: Vacuum drying / lyophilization
Medium: Vapor / gas
Pressure Range: 0 to -90 kPa
Operating Temperature: 20-80 °C
Installation Environment: Dryer vessel
Customer Challenge: Hold vacuum for consistent drying
Previous Problem: Vacuum drift affected product moisture
Solution: Vacuum transmitter with 4-20 mA output
Installation Location: Dryer vacuum line
Result: Stable vacuum, consistent product quality
Application: Vacuum packaging
Medium: Air / gas
Pressure Range: 0 to -80 kPa
Operating Temperature: Ambient
Installation Environment: Packaging line
Customer Challenge: Maintain packaging vacuum level
Previous Problem: Inconsistent seal vacuum
Solution: RS485 vacuum transmitter for line control
Installation Location: Packaging vacuum manifold
Result: Consistent vacuum, better package quality
Application: Vacuum chamber monitoring
Medium: Process gas
Pressure Range: 0 to -100 kPa
Operating Temperature: 20-50 °C
Installation Environment: Clean chamber
Customer Challenge: Precise vacuum for process quality
Previous Problem: Insufficient vacuum resolution
Solution: Explosion-proof vacuum transmitter
Installation Location: Chamber vacuum port
Result: Precise vacuum, improved process control
Why Choose Our Vacuum Transmitter?
- Supports both vacuum and absolute pressure measurement
- 4-20 mA, 0-5 V, 0-10 V and RS485 output options
- IP67 protection for wet and dusty environments
- Explosion-proof certification for hazardous areas
- CL150 DN25 flange and 1/4 NPT process connections
- ±0.5% FS accuracy for reliable vacuum control
- 12-36 V DC wide power supply range
- Stable, high-resolution vacuum measurement
- Suitable for chemical, pharmaceutical and food applications
- Robust construction for long service life
| Technical Specification | Value |
|---|---|
| Measurement Range | Vacuum / absolute (configurable) |
| Accuracy | ±0.5% FS |
| Output Signal | 4-20 mA, 0-5 V, 0-10 V, RS485 |
| Process Connection | CL150 DN25 flange, 1/4 NPT |
| Wetted Material | Stainless steel |
| Operating Temperature | Industrial range |
| Pressure Reference | Vacuum / absolute |
| Protection Grade | IP67, explosion-proof |
Q: What is a vacuum pressure transmitter?
A vacuum pressure transmitter measures pressure below atmospheric level, providing a signal proportional to the vacuum degree. It supports both vacuum measurement (sub-atmospheric gauge pressure) and absolute measurement (pressure relative to a perfect vacuum). The transmitter converts the measured pressure into a standard output such as 4-20 mA, 0-5 V, 0-10 V or RS485 for the control system. It is used to monitor and control vacuum in distillation, drying, coating, packaging and other vacuum processes.
Q: What is the difference between vacuum and absolute pressure?
Vacuum pressure is typically expressed as a negative gauge pressure relative to local atmospheric pressure — how far below atmosphere the pressure is. Absolute pressure is measured relative to a perfect vacuum and is always positive, with zero absolute pressure representing a perfect vacuum. A vacuum transmitter can measure both: in absolute mode it reports the true absolute pressure, while in vacuum mode it reports the sub-atmospheric gauge reading. The choice depends on the process control requirements.
Q: Why is accurate vacuum measurement important?
Accurate vacuum measurement is critical because many processes depend on holding a specific vacuum level for product quality and efficiency. In vacuum distillation, the vacuum determines boiling points and separation; in drying and lyophilization, it controls moisture removal; in coating and semiconductor processing, it affects film quality. Inaccurate vacuum measurement causes off-spec product, wasted energy and process instability, so a dedicated, stable vacuum transmitter is essential.
Q: What output signals are available?
The transmitter offers multiple output options: 4-20 mA analog, 0-5 V and 0-10 V voltage outputs, and RS485 digital communication. The 4-20 mA current loop is the standard for PLC/DCS integration, while the voltage outputs suit systems preferring voltage signals, and RS485 enables digital, multi-drop networking. This flexibility allows the transmitter to connect to virtually any control or monitoring system.
Q: What is the protection rating?
The transmitter is rated IP67, meaning it is dust-tight and protected against temporary immersion in water. This makes it suitable for wet, dusty and wash-down environments where moisture or particulate ingress would damage a less-protected instrument. The robust sealed housing ensures reliable operation in harsh industrial conditions throughout the transmitter's service life.
Q: Is it suitable for hazardous areas?
Yes. The transmitter carries explosion-proof certification, making it suitable for installation in hazardous areas where flammable gases or vapors may be present. This is important in chemical, petrochemical and other process plants where vacuum systems may be located in classified zones. Always verify the area classification against the certification before installation and follow local electrical codes.
Q: What process connections are available?
The transmitter offers a CL150 DN25 flange connection and a 1/4 NPT threaded connection. The DN25 flange provides a robust, leak-free seal for vacuum and process applications, while the 1/4 NPT thread is a standard fitting for direct mounting. The choice depends on the process piping and whether a flanged or threaded connection is preferred for the installation.
Q: What accuracy does it provide?
The transmitter provides ±0.5% FS accuracy, which is suitable for reliable vacuum process control and monitoring. This accuracy level, combined with the stable vacuum/absolute reference, delivers dependable measurements for chemical, pharmaceutical, food and semiconductor vacuum applications. For applications requiring tighter accuracy, higher-precision models should be considered.
Q: What power supply does it need?
The transmitter operates on a 12-36 V DC power supply, providing flexibility across different field and control panel power configurations. The wide input range means it can be powered from standard 24 V DC industrial supplies or other DC sources within the range. The two-wire 4-20 mA version draws its power from the signal loop itself, simplifying wiring.
Q: Where are vacuum transmitters used?
Vacuum transmitters are used in chemical and petrochemical vacuum distillation, pharmaceutical vacuum drying and lyophilization, food and beverage vacuum packaging, and semiconductor vacuum chamber monitoring. Any process that must hold, monitor or control a specific sub-atmospheric pressure can benefit from a dedicated vacuum transmitter for accurate, stable measurement and control.
Product Highlights
Vacuum Pressure Transmitter for Vacuum and Absolute Measurement 1. Why You Need a Vacuum Transmitter Vacuum processes — distillation, drying, coating, packaging and degassing — require precise monitoring of pressure below atmospheric level. A standard gauge transmitter is referenced to atmosphere ...
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