Electromagnetic Flow Meter, Flow Meter
Electromagnetic Flow Meter, Flow Meter
Key Features
- High-accuracy digital measurement for precise fluid flow monitoring
- Non-intrusive design with no moving mechanical components
- Compatible with a wide range of conductive liquid media
- Durable corrosion-resistant liner and stainless-steel electrodes
- Multiple output options including 4–20 mA, RS485, Pulse, and HART
- Bright LCD display with total flow and diagnostic functions
- Seamless integration with IoT, PLC, and industrial automation systems
- IP65–IP68 rated protection for harsh or outdoor environments
- Fast response time with stable readings under variable flow conditions
- Easy installation and factory-calibrated for long-term reliability
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Electromagnetic Flow Meter – High-Accuracy Conductive Liquid Flow Measurement for Industry & IoT
Product Description
The Electromagnetic Flow Meter is a high-precision digital flow measurement device engineered for accurate and non-intrusive monitoring of conductive liquids. Designed for industrial automation, water management, and smart IoT applications, it uses Faraday’s electromagnetic induction principle to measure fluid velocity and calculate flow rate with exceptional reliability.
Unlike traditional mechanical meters, this flow meter features no moving parts, ensuring minimal maintenance, stable measurement over time, and long service life. Its digital signal output supports easy integration with PLCs, SCADA systems, and IoT gateways, making it ideal for modern smart factories and process monitoring environments.
Built with corrosion-resistant materials and IP-rated protection, it performs consistently even under harsh conditions in chemical, water treatment, or food processing industries.
Advantages of Electromagnetic Flow Meter
High-accuracy digital flow measurement with ±0.5% reading precision
No moving parts – low maintenance and long operational life
Wide range of fluid compatibility (water, slurry, wastewater, acid, etc.)
Supports multiple output options: pulse, RS485 (Modbus), or analog (4–20 mA)
Suitable for conductive liquids ≥5 µS/cm
Industrial-grade construction with IP65–IP68 protection rating
Corrosion and wear-resistant sensor body
Easy calibration and installation with flanged or threaded connections
Stable measurement even with variable flow conditions
Compatible with IoT platforms and process control systems
Electromagnetic Flow Meter Specifications
| Parameter | Specification |
|---|---|
| Measurement Principle | Faraday’s Law of Electromagnetic Induction |
| Fluid Type | Conductive liquids (>5 µS/cm) |
| Flow Range | 0.1 – 10 m/s (typical) |
| Accuracy | ±0.5% of reading |
| Pipe Diameter Options | DN10–DN600 (customizable) |
| Electrode Material | 316L Stainless Steel / Hastelloy / Titanium |
| Liner Material | PTFE / Rubber / PFA |
| Output Signal | 4–20 mA, Pulse, RS485 (Modbus RTU), HART |
| Power Supply | 24V DC or 220V AC |
| Ingress Protection | IP65 / IP67 / IP68 (optional) |
| Display Type | LCD display with totalizer and diagnostic menu |
| Ambient Temperature | –25°C to +60°C |
| Process Temperature | Up to 180°C (PTFE liner version) |
| Mounting Type | Flanged, Wafer, or Threaded |
| Calibration | Factory-calibrated and traceable to ISO standards |
| Compliance | CE, RoHS, ISO9001 certified |
Typical Applications of Electromagnetic Flow Meter
Water & Wastewater Treatment
Accurate measurement of flow in municipal or industrial pipelines
Monitoring water distribution networks and pumping stations
Leak detection and process flow management
Industrial Process Automation
Chemical, petrochemical, and food & beverage plant operations
Cooling water and process fluid monitoring
SCADA and PLC-based industrial control integration
Agricultural & Irrigation Systems
Irrigation flow measurement for precision agriculture
Automated water resource management and efficiency optimization
HVAC & Energy Management
Flow control in chilled water, heating or cooling loops
Smart building management and IoT-connected energy monitoring
IoT & Smart Monitoring Projects
Integration with cloud-based dashboards and smart controllers
Wireless telemetry for remote flow data analysis
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Strict Production Process
Engineers develop optimized electronic circuits and structural designs based on real application needs.
High-quality components and materials are carefully selected from trusted suppliers to ensure long-term reliability.
Automated SMT and precision soldering technologies are used to build stable and high-performance circuit boards.
Sensor elements or connector terminals are assembled with the PCB and housing to ensure accurate operation and strong mechanical stability.
Each product undergoes strict calibration and functional testing to guarantee accuracy and stable performance.
Every unit is carefully inspected, labeled, and securely packaged to ensure it arrives safely and performs reliably for your applications.
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