Description
The Fisher V260 is a full bore control valve designed from the ground up with features for optimized pressure, flow, and process control.
An integral drilled attenuator controls noise and vibration from high pressure drop liquids and gases. The splined shaft connection to the actuator reduces lost motion.
Features- The splined ball to shaft connection, splined shaft to actuator connection, double power-end bushing assemblies, and trunnion guiding, all provide improved dynamic control.
- Up to -20 dBA acoustical attenuation can be achieved for the V260A valve within a single-stage construction. Dual-stage construction can provide up to -25 dBA attenuation.
- The attenuator is an integral part of the seal assembly. The seal wipes to ball surface, not the attenuator, promoting increased service life.
- Materials are available that comply with NACE Standard MR0175-2002.
- Self-adjusting seal(s) that are pressure assisted provide tight shutoff for long reliable service.
- The ball trunnions are designed for demanding applications requiring long service life, with a reduction in maintenance time and costs.
- The attenuator is active throughout the ball rotation for very demanding services or a characterized attenuator is used to match the service conditions.
Specifications
Specifications
Brand
Approvals & Certifications
- CUTR, PED, CRN, Fugitive Emission, NACE
Critical Service
- Cavitation, Noise Abatement
Flow Characteristics
- Linear
Material
- Carbon Steel, Stainless, Duplex, Alloy
Operating Temperature
- Standard Temperature
Other Configurations
- Contact Your Local Emerson Business Partner or Sales Office to Learn About Additional Specifications or Options for This Product.
Pressure Class
- ASME
Process Connection Type
- Flanged
Shutoff Class
- Class IV (FCI 70-2)
Valve Size
- NPS 8, NPS 10, NPS 12, NPS 16, NPS 20, NPS 24
Documentation
Documentation
Brochure
Document
- Design V260 Control Valve A4 Pdf pdf 455 KB
- Design V260 Control Valve Technology Summary Pdf pdf 120 KB
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- Single Line Bypass Solution Reduces Risk of Failure for a Cr Pdf pdf 472 KB