The Hedland H701A-005-HT Flow Meter, 0.5-5.0 GPM Oil (32509-12) is a high-temperature variable area flow meter for petroleum and oil flow monitoring. It features a 0.5 to 5.0 GPM oil flow range, 3/4 in NPTF aluminium body, direct-reading scale and rugged construction for demanding industrial flow measurement applications.
Key Features
- Product Type: High-temperature variable area flow meter
- Model: H701A-005-HT
- Flow Medium: Petroleum fluids / oil
- Flow Range: 0.5 to 5.0 GPM (2 to 19 LPM)
- Connection Size: 3/4 in
- Connection Type: NPTF
- Body Material: Aluminium
- Housing Material: Aluminium
- Accuracy: ±2% full scale
- Repeatability: ±1%
- Temperature Capability: Up to 500°F for high-temperature service
- Operating Temperature: -20 to 400°F continuous; 400 to 500°F intermittent
- Maximum Pressure: 3500 psi
- Maximum Viscosity: 500 SUS
- O-Ring Material: Viton
- Scale: Direct reading with 360° rotatable guard/scale
- Installation: Installs in any position with no flow straighteners or special piping required
Benefits
- Provides direct oil flow readings for process, maintenance and industrial monitoring workflows.
- High-temperature capability supports petroleum fluid applications where standard flow meters may not be suitable.
- Rotatable guard and scale improve readability after installation in different orientations.
- Variable area design allows installation without flow straighteners or special piping.
- Shock and vibration resistance supports reliable use in demanding industrial environments.
- Good viscosity stability supports consistent readings across compatible petroleum fluid applications.
Why Choose the Hedland H701A-005-HT Flow Meter, 0.5-5.0 GPM Oil (32509-12)?
The Hedland H701A-005-HT Flow Meter, 0.5-5.0 GPM Oil (32509-12) combines high-temperature service capability, aluminium construction and a direct-reading variable area design for petroleum fluid monitoring. John Morris Group supplies this Hedland flow meter for industrial and laboratory users requiring reliable oil flow measurement in compatible high-temperature applications.
