Flow Sensors

Image Part Number Description / PDF Quantity Rfq
D6F-PH5050AD3

D6F-PH5050AD3

Omron Electronics Components

SENSOR AIRFLOW +/- 500PA PCB TER

8

D6F-W04A1

D6F-W04A1

Omron Electronics Components

AIRFLOW SENSOR 0-4 M/SEC 12/24V

0

D6F-02L2-000

D6F-02L2-000

Omron Electronics Components

SENSOR GAS FLOW TYPE 0-2L/MIN

10

D6F-20A5-000

D6F-20A5-000

Omron Electronics Components

FLOW SENSOR MEMS 20L/MIN

2

D6F-03A3-000

D6F-03A3-000

Omron Electronics Components

MASSFLOW SENSOR 0-3 LPM

85

D6F-P0010A2

D6F-P0010A2

Omron Electronics Components

SENSOR AIRFLOW 0-50KPA W/CONN

466

D6F-50A5-000

D6F-50A5-000

Omron Electronics Components

FLOW SENSOR MEMS 50L/MIN

0

D6F-50A6-000

D6F-50A6-000

Omron Electronics Components

FLOW SENSOR MEMS 50L/MIN

0

D6F-10A7-000

D6F-10A7-000

Omron Electronics Components

MICRO-FLOW SENSOR

0

D6F-50A7D-000-0

D6F-50A7D-000-0

Omron Electronics Components

SENSOR FLOW 0-50 LPM P10 FAST

9

D6F-30A7-000

D6F-30A7-000

Omron Electronics Components

MICRO-FLOW SENSOR

0

D6F-20A7D-000-0

D6F-20A7D-000-0

Omron Electronics Components

SENSOR FLOW 0-20 LPM P10 FAST

8

D6F-01N2-000

D6F-01N2-000

Omron Electronics Components

SENSOR GAS FLOW TYPE 0-1L/MIN

7

D6F-30AB71-000

D6F-30AB71-000

Omron Electronics Components

GAS MASS FLOW SENSOR

0

D6F-50A62-000

D6F-50A62-000

Omron Electronics Components

FLOW SENSOR MEMS 50L/MIN

0

D6F-70AB71-000

D6F-70AB71-000

Omron Electronics Components

FLOW SENSOR MEMS

0

D6F-05N6-000

D6F-05N6-000

Omron Electronics Components

FLOW SENSOR MEMS

0

D6F-V01A1

D6F-V01A1

Omron Electronics Components

FLOW SENSOR MEMS

0

D6F-02N2-000

D6F-02N2-000

Omron Electronics Components

FLOW SENSOR MEMS

0

D6F-70A7-000

D6F-70A7-000

Omron Electronics Components

FLOW SENSOR MEMS

0

Flow Sensors

1. Overview

Flow sensors are devices that measure the rate or quantity of fluid/gas movement through a system. As critical components of process control systems, they convert flow data into measurable electrical signals. Modern industrial automation, energy management, and environmental monitoring rely heavily on flow sensors for optimizing efficiency, ensuring safety, and maintaining regulatory compliance.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Differential Pressure (DP)Measures pressure drop across obstructionsPetrochemical pipelines, HVAC systems
Turbine Flow MetersRotational speed proportional to flow velocityWater treatment plants, fuel dispensing
ElectromagneticConductive liquid measurement with no moving partsWastewater management, food processing
UltrasonicTime-of-flight or Doppler principle non-invasive measurementNatural gas pipelines, medical infusion systems
Coriolis Mass FlowDirect mass flow measurement with high accuracyPetroleum refining, chemical dosing

3. Structure and Components

Typical flow sensors consist of:

  • Primary sensing element (e.g., turbine blade, electromagnetic coil)
  • Signal conditioning circuitry
  • Flow body/housing (stainless steel, PVC, or composite materials)
  • Temperature/pressure compensation modules
  • Digital communication interface (4-20mA, HART, Modbus)
Electromagnetic sensors use non-intrusive electrode-based detection, while Coriolis meters employ vibrating tubes with piezoelectric sensors.

4. Key Technical Specifications

ParameterImportance
Flow Range (0-1000 L/min)Determines operational limits
Accuracy ( 0.5% of reading)Measurement reliability
RepeatabilityConsistency across cycles
Response Time (10-100 ms)Critical for real-time control
Pressure Rating (0-400 bar)Safety and durability
Media CompatibilityChemical and temperature resistance

5. Application Fields

Major application sectors include:

  • Oil & Gas: Wellhead monitoring, pipeline leak detection
  • Water Management: Distribution network metering, irrigation systems
  • Pharmaceutical: Precise dosage control in IV pumps
  • Energy: District heating flow measurement
  • Automotive: Engine coolant and fuel flow monitoring
Example: Siemens' SITRANS F M electromagnetic sensor used in municipal water networks achieves 0.2% accuracy.

6. Leading Manufacturers and Products

ManufacturerRepresentative Product
Siemens AGSITRANS F M electromagnetic flowmeter
Emerson AutomationMicro Motion Coriolis meter
Honeywell SensingZephyr pressure-based air flow sensor
Yokogawa ElectricADMAG AXF magnetic flowmeter
Badger MeterE-Series ultrasonic flow measurement system

7. Selection Recommendations

Key considerations:

  • Media type (liquid/gas, conductive/non-conductive)
  • Required accuracy vs. cost trade-offs
  • Environmental conditions (temperature, vibration)
  • Installation constraints (in-line vs. clamp-on)
  • Long-term maintenance requirements
For aggressive chemicals, select PFA-lined electromagnetic sensors. For natural gas transmission, ultrasonic meters with SIL 2 certification are preferred.

8. Industry Trends

Emerging developments include:

  • Smart sensors with embedded AI for predictive maintenance
  • Wireless IoT-enabled flow monitoring systems
  • Nano-material-based MEMS flow chips
  • Multi-phase flow measurement capabilities
  • Energy-harvesting self-powered sensors
The market is projected to grow at 6.2% CAGR through 2030, driven by smart city initiatives and Industry 4.0 adoption.

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