Description
Schneider Electric (Barber Colman) VB-9313-0-5-14 Overview
The Schneider Electric (Barber Colman) VB-9313-0-5-14 is a heavy-duty 4-inch flanged, three-way mixing globe valve engineered for demanding commercial and industrial HVAC hydronic systems. With a generous flow coefficient (Cv) of 170, this valve is designed to handle high-volume water and fluid flow with minimal pressure drop, making it an ideal choice for large-scale heating and cooling applications.
Key Features
- Valve Type: Globe, 3-Way Mixing configuration for precise flow blending and diversion
- Pipe Size: 4-inch nominal, flanged end connections for secure, leak-resistant installation
- Flow Coefficient: Cv = 170, supporting high-capacity hydronic systems
- Pressure Rating: ANSI Class 125, suitable for standard commercial hydronic pressures
- Body Material: Cast iron construction for long-lasting durability and corrosion resistance
- Trim Material: Brass trim for reliable sealing performance and extended service life
- Brand Legacy: Engineered under the trusted Barber Colman lineage, now part of Schneider Electric’s building automation portfolio
Application
This globe valve is well-suited for use in commercial HVAC hydronic heating and cooling systems, chilled water and hot water distribution, and building automation control applications. The three-way mixing design allows for blending of two inlet streams into one outlet, enabling precise temperature control when paired with a compatible actuator.
Specifications
- SKU: VB-9313-0-5-14
- Brand: Schneider Electric (Barber Colman)
- Valve Size: 4 inch
- Connection Type: Flanged
- Valve Configuration: 3-Way Mixing
- Flow Coefficient (Cv): 170
- Pressure Class: ANSI Class 125
- Body Material: Cast Iron
- Trim Material: Brass
Why Choose Jackson Systems?
Jackson Systems is a trusted HVAC distributor offering a wide selection of commercial-grade valves, actuators, and hydronic components. Order the Schneider Electric VB-9313-0-5-14 with confidence and get the expert support your project demands.







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