High-precision oval gear flow sensor, ideal for measuring high-viscosity or high-concentration liquids like oil, features Hall effect technology for accurate flow monitoring and reliable process control, with available configurations in nominal diameters DN8, DN10, and DN15 to meet industrial application needs.
Specification
| Product Model |
ATO-OFZAT-02 |
ATO-OFZAT-03 |
ATO-ZJ-HSM-OFZATL-04 |
| Connection Size |
G1/4'' (2mm) |
G3/8'' (3mm) |
G1/2'' (4mm) |
| Nominal Diameter |
DN8 |
DN10 |
DN15 |
| Voltage Range |
3.5-24VDC |
| Water Pressure Resistance |
≤1.0MPa |
| Suitable Media |
Oil/Honey/Milk and other high-concentration liquids |
| Valve Body Material |
Aluminum |
| Media Temperature |
0~80℃ |
| Insulation Resistance |
>100MΩ |
| Flow Rate Range |
30-300L/H |
40-800L/H |
30-1200L/H |
| Pulse Range |
F=(1.9×Q)with error≤1%, i.e., 114 pulses per liter of water |
F=(2.3×Q)with error≤1%, i.e., 138 pulses per liter of water |
F=(2.3×Q)with error≤ 1%, i.e., 138 pulses per liter of water |
| Output pulse high level |
>DC 4.7V (input voltage DC 5V) |
| Output pulse low level |
<DC 0.5V (input voltage DC 5V) |
Feature
- High Accuracy: Oval gear flow sensor with ±1% precision ensures stable and reliable oil and fuel flow measurement in industrial systems.
- Durable Construction: Industrial flow meter made of aluminum alloy, corrosion-resistant and wear-resistant for long-term use in harsh environments.
- Hall Effect Technology: Gear flow sensor with Hall effect output delivers fast and accurate pulse signals for precise flow monitoring and process control.
- Wide Application: Ideal for industrial automation, fuel monitoring, and viscous liquid measurement in petrochemical and mechanical equipment.
Dimension
DN8: G1/4'' (2mm)

DN10: G3/8'' (3mm)

DN15: G1/2'' (4mm)

Output Waveform Diagram

Wiring Method

Application
Perfect for cruise ships, petrochemical plants, fuel dispensers, and industrial machines, this sensor delivers accurate and reliable flow measurement for oils, fuels, and other viscous liquids.

Tips: How to get the most accurate readings from your oval gear flow sensor?
To achieve optimal accuracy, install the flow sensor horizontally and follow the arrow indicating the correct flow direction. Before installation, flush the pipeline to remove any impurities that could block the gears or affect the Hall signal. Keep the liquid flow stable within the rated range—especially for high-viscosity media like oil or honey—to ensure consistent pulse output. Connect the Hall effect signal to PLCs or digital monitors for real-time, precise flow tracking. For long-term reliability, perform regular calibration and gently clean the sensor chamber to preserve its ±1% accuracy.