1.Magnetic Control Mechanism: Heater Magnetic Valves utilize a magnetic actuator, which is often a solenoid coil, to control the opening and closing of the valve. The magnetic field generated by the actuator interacts with the valve mechanism, causing it to move and adjust the flow of the heating medium.
2.Temperature Sensing: Temperature sensors integrated into Heater Magnetic Valves provide real-time feedback on the temperature of the heating medium. These sensors can be thermistors, RTDs (resistance temperature detectors), or other temperature-sensitive devices. The valve actuator receives signals from these sensors, allowing it to respond promptly to changes in temperature and maintain precise control over the heating process.
3.Flow Regulation: Heater Magnetic Valves feature a valve mechanism that modulates the flow of hot water or steam through the heating system. This mechanism consists of a movable plunger or piston that changes position in response to the magnetic field generated by the actuator. By adjusting the position of the plunger, the valve controls the flow rate of the heating medium, thereby regulating heat output to the system.
4.On-Demand Heating: One of the key advantages of Heater Magnetic Valves is their ability to provide on-demand heating. Unlike traditional valves that operate in an on-off fashion, magnetic valves can modulate the flow of heat continuously. This means that the heating system can respond dynamically to changes in heating demand, delivering the precise amount of heat required to maintain optimal temperatures.
5.Precise Control: Heater Magnetic Valves offer precise control over heat output, allowing for fine adjustments in flow rates. This level of control ensures that the heating system operates efficiently and maintains consistent temperatures throughout the space being heated. Precise control also helps prevent temperature fluctuations and improves overall comfort for occupants.
6.Integration with Control Systems: Heater Magnetic Valves can be integrated seamlessly with building automation systems (BAS) or temperature control devices. These systems can communicate with the valve actuator to adjust settings based on preset temperature thresholds or occupancy schedules. Integration with control systems enables automated operation, energy optimization, and remote monitoring of the heating system.
7.Safety Features: Heater Magnetic Valves often incorporate safety features to protect the heating system and its users. These features may include overheat protection mechanisms, which monitor the temperature of the heating medium and automatically shut off the valve if temperatures exceed safe limits. Additionally, fail-safe mechanisms can prevent valve malfunctions from causing system damage or hazards, ensuring reliable and safe operation.
SQ-10.5D Confinement-type Solenoid Valve
Passes the ISO9001: 2008 Quality System Certification, which acquires the Qualified Supplier Qualification Certificate issued by the National Center for Gas Detection and RoHS verification report and enjoys a good reputation in both domestic and foreign markets
SQ-10.5D Confinement-type Solenoid Valve
Passes the ISO9001: 2008 Quality System Certification, which acquires the Qualified Supplier Qualification Certificate issued by the National Center for Gas Detection and RoHS verification report and enjoys a good reputation in both domestic and foreign markets