| Customization: | Available |
|---|---|
| Media: | Water,Gas,Oil |
| Material: | Brass |
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| Controlling feature | three lines and one control, three lines two controlmotor drive reset. |
| Working voltage | 230VAC+10%,50~60Hz |
| Power cosumption | 4W |
| Motor type | bidirectional synchronous motor |
| Action time | about 20s |
| Lead length | 30cm |
| eNominal pressure | 1.6Mpa |
| Leakage rate | <0.008%Kvs |
| Connecting method | Pipe thread G |
| Suitable medium | cold water , hot water or 50% ethylene glycol aqueous solution |
| Medium temp | 2-90ºC |
| Environment temp | -5~60ºC |
| Valve body | brass forged(HPb59-1) |
| O ring | NBR |
Typically, there are three wires involved. One serves as the common wire, while among the other two, one is used to supply power, and the other functions as the control signal line. The power is connected to the electric valve's drive unit via the common wire and the power-supplying wire. The control signal is transmitted through the common wire and the control signal line to drive the valve to move in one direction, generally capable of controlling only one action of the valve, either opening or closing.
1.Simple Structure: Utilizing a three-wire system, it reduces the complexity of wiring connections compared to more intricate control circuits, thereby lowering the difficulty of installation and maintenance.
2.Low Cost: Due to its relatively simple control logic and wiring structure, its manufacturing cost and selling price are comparatively lower, making it suitable for projects with limited budgets.
3.Intuitive Operation: The control method is simple and straightforward. Users only need to use a single control signal to achieve control over the valve's movement in one direction, making it easy for operators to understand and use.
It is suitable for scenarios with relatively simple valve control requirements, such as occasions where the valve only needs to be opened or closed periodically.
For instance, in small-scale irrigation systems, the valve can be set to open automatically at a fixed time each day for irrigation. After irrigation is completed, the valve may be closed through other means (such as a time relay controlling the water pump to stop supplying water, thereby indirectly closing the valve).
Millisecond-level response achieved through sensor and actuator synergy, enabling full-stroke cutoff within 0.8-3 seconds.
Core advantages of precise control, intelligent interlinking, and reliability under extreme conditions.
Household adaptability for scenarios like preventing burst pipes, zonal water isolation, and smart home integration.
Industrial and specialized applications, handling high-risk industrial tasks and addressing complex needs in fields like building flood prevention and agriculture through customization.
Key characteristics of "speed, accuracy, and stability" that redefine the safety benchmark for fluid pipeline networks.




