The VERIS Verabar® flanged models include the V500 Single Support & V510 Double Support – Flanged Components and V550 Spring Lock – Flanged Connection with Packing Gland.
The V500 & V510 and V550 primary components are averaging pitot tubes designed to provide leak resistant, precise flow measurements, reduce clogging, and improve signal stability.
VERIS Verabar® Flanged Models
Model | Code | Sensor Pipe Size Range | Mounting Type |
---|---|---|---|
V500 Single Support & V510 Double Support |
05 | 2” to 6” (50mm to 150mm) | Flanged up to ANSI Class 2500# |
10 | 6” to 48” (150mm to 1200mm) | ||
15 | 12” to 192” (300mm to 5000mm) | ||
V550 Flanged Spring Lock | 05 | 2” to 6” (50mm to 150mm) | Spring loaded sensor mounted on flange with packing gland |
10 | 6” to 42” (150mm to 1050mm) | ||
15 | 12” to 60” (300mm to 1500mm) |
V500 Single Support & V510 Double Support Averaging Pitot Tubes, Flanged Components
The V500 & V510 models are ideal for use in the power, petrochemical, and refining industries, engineered with an all-welded mounting design. Single support flanged components are available with the V500 and double support flanged components with the V510, and both models can mount to existing flanges.
Optional High Pressure Threaded (HPT) and High Pressure Socket (HPS) designs deliver the highest possible pressure and temperature capabilities, providing the safest design in the industry. A partial insertion is also available for the V500.
V550 Spring Lock Averaging Pitot Tube, Flanged Connection with Packing Gland
The V550 Flanged Spring Lock is four times stronger than conventional mountings with a spring loaded sensor mounted on flange with packing gland, as well as capability to mount to existing flanges. The sensor is pre-loaded to the opposite wall, which compensates for changes in pipe diameter due to pressure, temperature, or mechanical force.
In addition, the V550 eliminates the need for opposite end support and features a leak-resistant design to compensate for differential in packing and body growth rates due to increased temperatures.
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