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Basic Info.
Packaging & Delivery
To be negotiated ( > 1000 Pieces)
Product Description
Compact design and light weight, small electrical actuator with fail-safe function (NC/NO)
INSTRUCTION FOR MANUAL OVERRIDE | ||||
It is only permitted to use when power-off | ||||
Lift the hand-wheel,and turn it left or right until the valve is in place | ||||
When the black line on the indicator is horizontal,the valve is on;when vertical,the valve is off | ||||
Press down hand-wheel after using manual override in order to work properly when power-on | ||||
CE | IS09001 | EC |
FEATURES | APPLICATION | |||
Mini dimension suit for small equipment | HVAC | |||
Patented technology-floating seal structure | Water treatment | |||
Long service life:80000 to 100000 cycles | Chemical process | |||
Low working current,suitable for battery driving | Small equipment for automatic Control | |||
Manual override and position indicator | Replacing solenoid valve, particularly when solenoid can't work reliably | |||
Metal gearbox and POM gear | ||||
High flow capability | ||||
PARTS | MATERIAL | |||
Actuator housing | ABS | |||
Valve body | Brass/SS304 | |||
Valve ball | Brass/SS304 | |||
Stem | Brass/SS304 | |||
Ball seat | PTFE | |||
Seal | SILASTIC(Q) |
TECHNICAL PARAMETERS | ||||||||
Series | Max torque | Operating time | Working voltage | Max power | Enclosure | Max pressure | Medium temperature | Ambient temperature |
FH-MO | 2.5N,m | <5sec<> | DC3-V | <5w<><5sec<> | IP65 | 1.0Mpa | 0-90ºC | -20ºC |
AC/DC9-24V |
M01 (two wires and reverse polarity)
Voltage: DC6V/12V
M02 (three wires two point control)
Voltage: DC6V/12V/ 9-35V
2.Connection SW to CLOSE, the valve closes , getting the position, automatically power off, the valve remains side passes position(fully closed).
M03 (three wires one control)
Voltage: DC6V/9-35V AC/DC9-24V
2.Disconnecting SW, the valve close, getting the position, automatically power off, the valve remains side passes position(fully
Voltage: DC6V/9-35V AC/DC9-24V
2.SW disconnecting, the valve close, getting the position and power off automatically, the valve remains fully open/close position.
M05 (five wires with signal feedback and Internal automatic power off function)
Voltage: DC6V/12V
2.BK connect with positive, the RD connect with negative, the valve close, the actuator automatically power off after in place .
3.YW & WT are connect when the valve open fully, GR & WT are connect when the valve closed fully.
M06 (six wires with signal feedback and two point control)
Voltage: DC6V/12V
2. When RD & SW connected, the valve open, the actuator automatically power off after the valve fully open.
3. When GR & SW connected, the valve closed, the actuator automatically power off after the valve fully closed.
4. YW & WT connect with the valve's fully open signal wiring.
5. BL & WT connect with the valve's fully closed signal wiring.
M07 (six wires with signal feedback and one point control) Voltage: DC6V/12V/ 9-35V
- RD connect with positive, GR connect with SW and negative wiring, BK connect with negative wiring.
- SW open, the valve open, and keeping fully open. SW closed, the valve closed, and keeping fully closed.
M08 (five wires with signal feedback and fail-safe/power-off return function)
Voltage: DC6V/9-35V AC/DC9-24V
3.YW & GY connect with the valve's fully open signal wiring. BL & WT connect with the valve's fully closed signal wiring.
1.Can valve electric actuators be retrofitted to existing systems?
Yes, in many cases, valve electric actuators are designed to be retrofit-friendly. However, it's crucial to consider compatibility, sizing, and potential modifications to ensure a seamless integration into existing systems. Consulting with manufacturers and industry experts can provide guidance on retrofitting options.
2.What role do valve electric actuators play in preventing leaks and spills in industrial processes?
Valve electric actuators, with their precise control capabilities, play a crucial role in preventing leaks and spills. By swiftly and accurately modulating valve positions, these actuators contribute to the overall safety and integrity of industrial processes, reducing the risk of environmental incidents.
3.Are there advancements in remote monitoring and control of valve electric actuators?
Yes, advancements in communication technologies have facilitated remote monitoring and control of valve electric actuators. Smart actuators, equipped with connectivity features, allow operators to monitor and adjust valve positions remotely, enhancing operational flexibility and efficiency.
4.How do valve electric actuators contribute to process optimization in manufacturing plants?
Valve electric actuators contribute to process optimization by providing precise control over fluid flow. This level of control enhances the overall efficiency of manufacturing processes, ensuring consistent quality and minimizing wastage.
5.What measures are in place to ensure the cybersecurity of smart valve electric actuators?
As smart technologies become more prevalent, ensuring the cybersecurity of valve electric actuators is paramount. Manufacturers implement robust security measures, including encryption and authentication protocols, to safeguard against cyber threats and unauthorized access.
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