This innovative actuator valve combines a compact design with a lightweight build. It features a small electrical actuator equipped with a fail-safe function (NC/NO) for optimal reliability.
![]() | INSTRUCTIONFORMANUALOVERRIDE | |||
Itisonlypermittedtousewhenpower-off | ||||
![]() | Liftthehand-wheel,andturnitleftorrightuntilthevalveisinplace | |||
Whentheblacklineontheindicatorishorizontal,thevalveison;whenvertical,thevalveisoff | ||||
Pressdownhand-wheelafterusingmanualoverrideinordertoworkproperlywhenpower-on | ||||
CE | IS09001 | EC |
FEATURES | APPLICATION | |||
Mini dimension suit for small equipment | HVAC | |||
Patented technology-floating seal structure | Watertreatment | |||
Long service life:80000 to 100000 cycles | Chemicalprocess | |||
Low working current,suitable for battery driving | SmallequipmentforautomaticControl | |||
Manual override and position indicator | Replacingsolenoidvalve, particularlywhensolenoidcan't workreliably | |||
MetalgearboxandPOMgear | ||||
Highflowcapability | ||||
PARTS | MATERIAL | |||
![]() | ||||
![]() | Actuator housing | ABS | ||
Valvebody | Brass/SS304 | |||
Valveball | Brass/SS304 | |||
Stem | Brass/SS304 | |||
Ballseat | PTFE | |||
Seal | SILASTIC(Q) |
TECHNICALPARAMETERS | ||||||||
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. Connect SW to CLOSE: The valve gracefully closes, powers off automatically, and stays in its fully closed position.
M03 (three wires, one control)
Voltage: DC6V/9-35V AC/DC9-24V

2. Disconnect SW: When disconnected, the valve closes, and once the position is reached, it powers off automatically, keeping the valve fully closed.
Voltage: DC6V/9-35V AC/DC9-24V

2. SW disconnecting, the valve closes, attaining the position, and powers off, ensuring it remains in full open/close position. the valve remains fully open/close position.
M05 (five wires with signal feedback and internal automatic power-off function)
Voltage: DC6V/12V

2. Connect BK with the positive terminal, while the RD synchronizes with the negative terminal. the valve Upon closing, the actuator seamlessly powers off once in the ideal position.
3. YW & WT are in harmony when the valve is fully open, GR & WT are perfectly connected when the valve is fully closed.
M06 (six intricate wires with signal feedback and two-point control)
Voltage: DC6V/12V

2. When RD & SW align, the valve opens, and the actuator gracefully powers off once the valve is fully open.
3. When GR & SW align, the valve closes, and the actuator gently powers off once the valve is fully closed.
4. YW & WT are expertly connected with the valve's fully open signal wiring.
5. BL & WT seamlessly connect with the valve's fully closed signal wiring.
M07 (six intricate wires with signal feedback and single point control) Voltage: DC6V/12V/ 9-35V

- RD synchronizes with positive, GR harmonizes with SW and negative wiring,, BK aligns with negative wiring.
- SW opens, the valve opens, maintaining a perfectly open state. SW closes, the valve closes, maintaining a perfectly closed state.
M08 (a quintet of wires with signal feedback and fail-safe/power-off return capability)
Voltage: DC6V/9-35V AC/DC9-24V

3. To establish a seamless connection, YW and GY should be linked with the valve's fully open signal wiring, while BL and WT should be connected to the valve's fully closed signal wiring, ensuring optimal performance and precise control.
1.Can motorized valve actuators be seamlessly retrofitted to existing systems?
Absolutely! In numerous instances, motorized valve actuators are ingeniously crafted to be retrofit-friendly. Nevertheless, it's imperative to meticulously assess compatibility, sizing, and any necessary adjustments to attain a flawless integration into your current systems. Engaging with manufacturers and industry connoisseurs can unveil valuable insights and guidance on retrofitting possibilities.
2.What pivotal function do motorized valve actuators serve in curbing leaks and spills within industrial operations?
With their exceptional precision and control, motorized valve actuators are indispensable in curtailing leaks and spills. By adeptly modulating valve positions with swiftness and accuracy, these actuators bolster the safety and integrity of industrial operations, significantly mitigating the risk of environmental mishaps.
3.Are there any groundbreaking advancements in the remote monitoring and management of motorized valve actuators?
Indeed, the surge in communication technologies has remarkably enhanced the remote monitoring and management of motorized valve actuators. With the advent of smart actuators endowed with connectivity capabilities, operators can effortlessly oversee and regulate valve positions remotely, thereby elevating operational agility and efficacy.
4.How do motorized valve actuators play a role in refining process optimization in manufacturing facilities?
Motorized valve actuators are vital in refining process optimization by delivering unparalleled precision in controlling fluid flow. This meticulous level of control augments the efficiency of manufacturing processes, ensuring unwavering quality and significantly reducing wastage.
5.What robust measures are implemented to assure the cybersecurity of advanced smart motorized valve actuators?
As smart technologies gain prominence, fortifying the cybersecurity of motorized valve actuators is of utmost importance. Manufacturers deploy comprehensive security measures, encompassing encryption and authentication protocols, to vigilantly defend against cyber threats and prevent unauthorized access.
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