Description
Product Overview
The Schneider Electric (Barber Colman) VK-7313-301-4-2 is a complete valve and actuator assembly engineered for precise flow control in commercial HVAC hydronic and pneumatic systems. This 3-way mixing globe valve combines a durable bronze body with brass trim and a factory-mounted spring return pneumatic actuator, delivering reliable, fail-safe operation in a single ready-to-install package.
Key Features
- 3-way mixing configuration for blending or diverting hydronic fluid streams
- 1/2″ NPT end connections for straightforward pipe installation
- 2.2 Cv flow coefficient for accurate flow capacity sizing
- Bronze body construction for corrosion resistance and long service life
- Brass trim components for dependable sealing and durability
- Globe valve design provides tight shutoff and precise throttling control
- Spring return pneumatic actuator ensures fail-safe positioning on loss of air signal
- 3–6 PSI spring range for compatibility with standard pneumatic control systems
- Factory-assembled valve and actuator for simplified installation and commissioning
Specifications
- SKU: VK-7313-301-4-2
- Brand: Schneider Electric (Barber Colman)
- Valve Type: 3-Way Mixing Globe Valve
- Connection Size: 1/2″ NPT
- Flow Coefficient (Cv): 2.2
- Body Material: Bronze
- Trim Material: Brass
- Actuator Type: Spring Return Pneumatic
- Spring Range: 3–6 PSI
Applications
Ideal for use in commercial building HVAC systems, including fan coil units, air handling units, and hydronic heating and cooling distribution systems where pneumatic control is employed. The 3-way mixing configuration allows the valve to blend return and supply water streams, enabling precise temperature control at terminal units.
Why Choose the VK-7313-301-4-2
As a pre-assembled valve and actuator package from Schneider Electric’s trusted Barber Colman line, the VK-7313-301-4-2 eliminates field assembly errors and reduces installation time. The spring return actuator provides automatic fail-safe positioning, protecting the system in the event of air supply loss — a critical feature for life-safety and energy management in commercial HVAC applications.







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