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Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn

Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
Electric Valve Actuator, On-Off, 400Nm, 24V/220V, Quarter Turn
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$536.12
Ex Tax: $536.12
  • Stock: In Stock
  • Model: RDDLZ-EVA-SQ40
  • Weight: 1.00
  • SKU: RDDLZ-EVA-SQ40

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The quarter-turn electric valve actuators are used to control 0-90° rotating valves and other similar products, such as butterfly valves, ball valves, dampers, plug valves, louver valves, etc. It works at the voltage DC 24V, AC 110V, AC 220V, or AC 380V. This small electric valve actuator can be widely used in petroleum, chemical industry, electric power, metallurgy, pharmacy, paper making, energy, water treatment, shipping, textile, food processing, building automation and other fields.

The on-off electric valve actuator produces 400Nm torque with 30s working time for 0-90° working rotation, with great advantages of compact size, light weight, quick opening and closing, easy installation, small operating torque, convenient operation, no need for maintenance and safe use.

400Nm Electric Valve Actuator Specification

ModelRDDLZ-GR-40
Type OperationOn-Off
VoltageDC 24VAC 110VAC 220VAC 380V
Motor Power70W90W90W40W
Rated Current5.13A1.12A0.64A0.29A
Output Torque400Nm
Working Time30s
Rotary Angle0-90°
Control Circuit* S-type standard, A-type, R-type, P-type
Insulation ResistanceAC 220V/380V: 100MΩ/500V DC
Dielectric StrengthAC 110V/220V: 1500V AC/1 minute
AC 380V: 1800V AC/1 minute
Protection GradeIP65
Case MaterialAluminium die-casting component
Explosion-proofN/A (Optional EXdIICT4)
InstallationCan be installed in any angle
Electrical Interface2-G1/2 waterproof connector
Ambient Temperature-20℃ ~ +60℃
Weight9.5kg
Matched Valve**Soft sealing ball valve: DN80
Soft sealing butterfly valve: DN200

Note:
*
For the control circuit diagram, please refer to Electric Valve Actuator Instruction Manual.
** Due to different manufacturers and different operating environment, even the same type of valves actually has different working torque. Therefore, it is recommended that when selecting a electric valve actuator, the operating torque of the valve should be 60% ~ 80% of the rated output torque of the actuator.

Electric Valve Actuator Dimension (Unit: mm)

Details

 

Circuit Diagram

Tips: Constructions of a multi-turn electric valve actuator

The multi-turn electric valve actuator is a mechanism that can perform linear and rotary motions. Under the signal control, it can complete various tasks accurately. Therefore, many large-scale automation devices now are equipped with excellent multi-turn electric actuator. What are the important components of the multi-turn electric actuator?

1. Electric motor
The electric motor is the main component in the multi-turn electric actuator for power supply. Single-phase motors and three-phase AC motors are adopted. The motors have a relatively high starting torque, and small starting current and moment of inertia, so they have the ideal compliance characteristics to provide a stable power source for multi-turn electric actuators.

2. Reducer
The reducer in the multi-turn electric actuator is a component to slow down the mechanical movement speed. The reducer has not only a planetary reducer but also a worm gear drive mechanism. This structure has excellent performance, not only improving the efficiency of the machine greatly, but also having the unique mechanical self-locking performance.

3. Protection device
The multi-turn electric actuator has many different protection devices, namely the mechanical limit device and the over-torque protection mechanism. The main role of the mechanical limit device is to protect personnel from the accident during manual commissioning. The over-torque protection mechanism is to ensure that the torque does not exceed the range.

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