Electric Actuated Globe Valve Manufacturer

An electric actuated globe valve is a form of motorized flow control technology that uses a globe valve body and electric actuator to offer automated, precise and remote flow control. Designed for process automation industries, these valves eliminate the need for manual operation and offer accurate, repeatable control of fluid flow.

Constructed from high-quality materials such as carbon steel, stainless steel, and cast iron, Controtek's electric-actuated globe valves are designed to endure corrosive conditions of use, high pressures, and extreme temperatures. The electric actuators that the valves are equipped with enable modulating and on/off functions, guaranteeing accurate control and smooth interaction with automated systems. These valves provide versatility and interoperability with contemporary control systems by fitting a range of control signals, including 0-10V DC and 4-20mA.

Electric Actuated Globe Valve


Technical Specification of Electric Actuated Globe Valve

Specification Details
Valve Size 15 mm to 300 mm
Body Material Cast Iron, Carbon Steel, Stainless Steel
Pressure Rating Up to 40 bar (varies by design)
End Connection Flanged (ANSI, DIN, JIS), Screwed
Actuator Type Electric (On/Off, Modulating)
Power Supply 24V DC, 110V AC, 230V AC, 415V AC
Control Signal 4-20mA, 0-10V DC
Sealing Soft Seat or Metal Seat
Applications Flow Control, Isolation

Salient Features of Electric Actuated Globe Valve

  • Precise Flow Control
  • Automation Ready
  • Durable Construction
  • Wide Temperature and Pressure Range
  • Energy Efficient
  • Leak-Proof Design
  • Versatile End Connections
  • Advanced Control Options
  • Low Maintenance
  • Smooth and Vibration-Free Operation
  • Compliance with Standards
  • Wide Application Range

Why Choose Electric Actuated Globe Valve?

The best option for enterprises needing accurate and regulated flow control is an electric actuated globe valve. These valves combine the potency of an electronic controller with the durable architecture of a globe valve to deliver outstanding efficiency for a variety of situations. In sectors including chemical production, electricity generation, water treatment, oil and gas, and HVAC systems, their high degree of reliability in flow regulation makes them essential.

The capacity to automate is one of the main reasons for selecting an electric-actuated globe valve. Remote operation and central control are made possible by the electric actuator's smooth integration into automated systems. In addition to lowering manual involvement, this improves process safety and efficiency. These valves provide flexible operating catered to particular system requirements, allowing advanced control signals like 4-20mA or 0-10V DC.

The ability to save energy is yet a further significant benefit of electric actuated globe valves. The lower electrical use of electric actuators compared to pneumatic systems lowers operating energy costs and advances goals related to sustainability. Further, the actuator's smooth and vibration-free operation guarantees consistent performance, extending the valve's life and sustaining system stability.


FAQ – Electric Actuated Globe Valve

An electric actuated globe valve is used to automatically open, close, or throttle fluid flow in industrial systems, allowing remote operation through electrical control signals.

The actuator's motor drives a gear mechanism that converts rotational motion into linear stem movement, positioning the valve disc against the seat to control flow.

Electric actuated globe valves use electric motors for operation, while pneumatic actuated valves rely on compressed air. Electric actuators are often preferred where compressed air supply is unavailable or impractical.

Yes, electric actuated globe valves are designed to integrate with PLC, SCADA, and DCS systems, enabling centralized control and monitoring.

Power generation, oil and gas, chemical processing, water treatment, and HVAC industries benefit significantly from the automated control these valves provide.
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