Quarter-turn Electrical Actuators

Product Overview

Quarter-turn electrical actuators are motor-driven devices used to automate the operation of valves or dampers that require a 90° rotational movement to open or close. These actuators convert electrical energy into mechanical torque to control the position of quarter-turn valves such as ball valves, butterfly valves, and plug valves.

They are widely used in industrial automation systems to improve operational efficiency, safety, and precision. Quarter-turn electric actuators can be integrated with control systems such as SCADA (Supervisory Control and Data Acquisition), PLC (Programmable Logic Controller), and DCS (Distributed Control System) for remote monitoring and control.

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How it works (simple explanation)

A quarter-turn electric actuator operates through the following basic steps:

  • Electrical Signal Received – The actuator receives a command signal from a control system or manual switch.
  • Motor Activation – An electric motor inside the actuator starts rotating.
  • Gear Reduction – The motor rotation passes through a gearbox that increases torque and reduces speed.
  • Output Shaft Rotation – The gearbox turns the output shaft 90° (quarter turn).
  • Valve Operation – The shaft is connected to a valve stem, opening or closing the valve.
  • Position Feedback – Limit switches or position sensors stop the actuator at the required position and send feedback to the control system.

This automated movement allows precise and reliable control of fluid flow.

What it measures

Quarter-turn electrical actuators themselves do not measure process variables but monitor and control valve position and actuator status.

Typical monitored parameters include:

  • Valve position (open, closed, intermediate)
  • Motor current
  • Torque
  • Actuator temperature
  • Operational status (running, fault, standby)
  • Travel limit position

Key advantages

  • High Precision Control – Accurate valve positioning.
  • Automation Ready – Easily integrates with PLC, SCADA, and DCS systems.
  • Low Maintenance – Electric actuators require less maintenance compared to pneumatic systems.
  • Energy Efficient – Power is consumed only during valve movement.
  • Safe Operation – Eliminates need for compressed air systems.
  • Remote Operation – Allows centralized monitoring and control.
  • Compact Design – Suitable for space-constrained installations.

Applications

Quarter-turn electrical actuators are widely used in many industries:

  • Oil & Gas pipelines
  • Water and wastewater treatment plants
  • Power generation facilities
  • Chemical and petrochemical processing
  • HVAC systems
  • Food and beverage processing
  • Marine and offshore installations
  • Industrial automation systems

Typical controlled equipment includes:

  • Ball valves
  • Butterfly valves
  • Plug valves
  • Dampers

Installation

Proper installation ensures reliable performance and long service life.

Typical installation steps:

  • Mounting
    • Attach the actuator to the valve using an ISO 5211 mounting flange.
  • Shaft Alignment
    • Ensure the actuator output shaft is correctly aligned with the valve stem.
  • Electrical Wiring
    • Connect power supply and control wiring according to manufacturer specifications.
  • Limit Switch Adjustment
    • Set open and closed travel limits.
  • Functional Testing
    • Test actuator operation and verify correct valve movement.
  • Integration with Control System
    • Connect signals to PLC or SCADA system for remote monitoring.

Technical Specifications

Parameter

Specification

Actuator Type

Quarter-Turn Electric

Rotation Angle

0° – 90°

Output Torque Range

50 Nm – 10,000 Nm

Power Supply

24 VDC / 110 VAC / 220 VAC / 380 VAC

Motor Type

AC or DC Electric Motor

Control Signal

On/Off, Modulating (4–20 mA or 0–10 V)

Position Feedback

Limit switches / potentiometer / encoder

Protection Rating

IP65 – IP68

Mounting Standard

ISO 5211

Operating Temperature

-20°C to +70°C

Housing Material

Aluminum alloy / stainless steel

Communication Protocol

Modbus, Profibus, HART (optional)

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