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ZS Series Zero Differential Pressure Start Solenoid Valve

ZS Series Zero Differential Pressure Start Solenoid Valve

  • Model:ZS
  • Specification:DN2.5~50
  • Temperature:-10~80°C
  • Medium:Water, gas, coal gas, natural gas, etc.
  • Pressure:≤1.0 MPa
  • Connection method:Flange
  • Driving method:Electric
  • Material:Brass, stainless steel
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ZS Series Zero Differential Pressure Start Solenoid ValveOverview

The ZS series zero-pressure start solenoid valve is a precision industrial execution element designed for low-pressure or zero-differential pressure systems. Utilizing a direct-acting diaphragm structure, the valve does not require a minimum working pressure to operate, meaning it can open and close reliably even when the medium pressure is at zero or in gravity-fed conditions. By converting electrical energy into electromagnetic force, the coil directly lifts the diaphragm assembly to control the flow. Due to its rapid response, high sealing integrity, and compact design, the ZS series is widely used in water treatment, environmental engineering, laboratory gas control, and low-pressure automation pipelines where standard pilot-operated valves may fail to act.

Product Image of ZS Series Zero Differential Pressure Start Solenoid Valve

ZS Series Zero Differential Pressure Start Solenoid ValveCharacteristic

1.Reliable zero-differential pressure starting:Utilizes a direct-acting or semi-direct acting diaphragm mechanism. The valve can reach full opening without any pressure difference between the inlet and outlet, making it ideal for vacuum or atmospheric pressure conditions.
2.Rapid switching and high sensitivity:Driven by electromagnetic induction, the response time for opening and closing is within milliseconds. This ensures precise timing control for high-frequency automated processes.
3.Durable diaphragm material:Equipped with high-quality reinforced elastomers (such as NBR, EPDM, or FKM). These materials provide excellent aging resistance, flexibility, and long cycle life under various working conditions.
4.Compact and lightweight structure:The integrated body design reduces overall dimensions and weight. This space-saving configuration facilitates easy installation in dense equipment rooms or integrated machine cabinets.
5.Superior sealing performance:Precision-machined seats combined with high-performance soft seals ensure bubble-tight zero leakage in the closed position, effectively preventing the loss of valuable media or system pressure.
6.Versatile material and media compatibility:Body materials are available in brass or stainless steel (304/316). The chemical stability allows for stable operation with water, gases, oils, and neutral chemical fluids.
7.Low energy consumption and low heat:The optimized electromagnetic coil design ensures low power consumption and minimal temperature rise during continuous energization, extending the life of electronic components.
8.Ease of maintenance:The simple mechanical structure has few moving parts. Modular coil and valve body design allow for quick cleaning and component inspection without specialized tools, lowering maintenance costs.

ZS Series Zero Differential Pressure Start Solenoid Valvestructure principle

Structural Drawing of ZS Series Zero Differential Pressure Start Solenoid Valve

List of Component Names and Materials

ItemMaterial
Body MaterialBrass, 304 Stainless Steel
Diaphragm MaterialNBR, VITON (FKM), Silicone Rubber


ZS Series Zero Differential Pressure Start Solenoid Valvetechnology parameter

Performance Specification Sheet

Performance Specification Sheet
Nominal Pressure1.0MPa
Strength test pressure1.5
Sealing test pressure1.1
Applicable Temperature-10~80

Standard requirements for external dimensions

1. The structural length of the valve shall comply with the standard of GB/T12221

2. Connecting flanges according to GB/T17241.6 standard


ZS Series Zero Differential Pressure Start Solenoid Valvestandard size

Outline dimension table(Unit:mm)

Port GOrifice mmCv ValueLH / NO / Ex-proofWorking Pressure (bar) NCWorking Pressure (bar) NO
1/82.50.2540.575 / -- / --0~100~6
1/42.50.2540.575 / -- / --0~100~6
1/440.65475 / -- / --0~100~6
3/840.65490 / -- / --0~100~6
3/8104.868117 / -- / --0~100~6
1/2154.868117 / 135 / 1250~100~6
3/4207.673123 / 142 / 1350~100~6
1251299135 / 150 / 1500~100~6
1 1/43224110154 / 190 / 1900~100~6
1 1/24029120162 / 190 / 1900~100~6
25048154185 / 215 / 2020~100~6


Articles related to technology research and development
  • Dynamic balance electric control valve Patent

       The utility model provides a dynamically balanced electric regulating valve, which includes a valve body, a valve cover, a valve rod, a valve core installed inside the valve body and connected to the valve rod, and an actuator installed on the valve cover and connected to the top end of the valve rod. The valve body is internally provided with a water inlet chamber, a valve cavity, and a water outlet chamber in order towards the direction of medium flow. The valve core is in the shape of a bucket with its opening facing downwards. The valve core is located inside the valve cavity and is used for connecting or cutting off between the water inlet chamber and the valve cavity. The top of the valve core is provided with a through port for medium circulation. Above the through port, there is a filter cover detachably connected to the valve core. The valve rod is provided with a step, and the outside of the step is covered with an elastic sleeve that fits it. The top of the filter cover is provided with a fixing hole that fits the elastic sleeve. This utility model can filter the medium, is simple to install, time-saving, labor-saving, and can reduce the medium pressure inside the valve body, extending the service life of the valve core.

    1. A dynamic balance electric regulating valve, comprising a valve body, a valve cover, a valve rod, a valve core installed inside the valve body and connected to the valve rod, and an actuator installed on the valve cover and connected to the top end of the valve rod. Its characteristic lies in that the valve body is sequentially provided with an inlet chamber, a valve cavity, and an outlet chamber in the direction of medium flow. The valve core is in the shape of a bucket with an opening facing downwards. The valve core is located inside the valve cavity and is used for connecting or cutting off between the inlet chamber and the valve cavity. The top of the valve core is provided with a port for medium circulation. Above the port, there is a filter cover detachably connected to the valve core. The valve rod is provided with a step, and the outside of the step is covered with an elastic sleeve that fits it. The top of the filter cover is provided with a fixing hole that fits the elastic sleeve.

    2. A dynamic balance electric regulating valve according to claim 1, characterized in that the bottom of the valve body is provided with a downward-opening groove, which is connected to the valve cavity through a through hole. A bottom cover connected to the valve body is arranged below the groove, and a pressure relief mechanism is arranged inside the groove. The pressure relief mechanism comprises a force-receiving member, a pressure plate connected to the force-receiving member, and a first spring arranged below the pressure plate and abutting against the bottom cover. The force-receiving member comprises a flow diversion block protruding from the through hole and a connecting rod connected to the flow diversion block, and the connecting rod passes through the pressure plate and is locked and fixed by a nut.

    3. A dynamic balance electric regulating valve according to claim 2, characterized in that the top end of the pressure plate is pressed against the top wall of the groove, the bottom of the pressure plate is provided with a boss, and the top end of the first spring is sleeved on the boss.

    4. A dynamic balance electric control valve according to claim 1, characterized in that the valve rod is arranged through the valve cover, a sealing cover threadedly connected to the valve cover is sleeved on the valve rod, a convex ring abutting against the valve cover is arranged on the outer circumferential wall of the sealing cover, a nut cover threadedly connected to the sealing cover is arranged at the connection between the sealing cover and the valve rod, an installation groove is arranged at the connection between the nut cover and the valve rod, a plurality of O-rings adapted to the valve rod are stacked in the installation groove, and a packing gland threadedly connected to the installation groove is arranged above the O-rings.

    5. A dynamic balance electric control valve according to claim 4, characterized in that a second spring is arranged between the packing gland and the O-ring.

    6. A dynamic balance electric control valve according to claim 5, characterized in that a sealing ring adapted to the valve rod is arranged inside the nut cover below the installation groove.

    7. A dynamic balance electric control valve according to claim 6, characterized in that the bottom of the sealing cover is provided with a thrust ring that is threadedly connected to the sealing cover and abuts against the bottom end of the valve cover.

    8. A dynamic balance electric regulating valve according to claim 1, characterized in that the top surface of the elastic sleeve is higher than the top surface of the filter cover.

    9. A dynamic balance electric control valve according to claim 8, characterized in that the filter cover is connected to the valve core through threads.