ATOS solenoid valve SKQ-012 10S in stock
$198.91
ATOS solenoid valves can be classified into on/off solenoid valves and proportional solenoid valves based on their function. 1) On/off solenoid valves function as switches; when current flows through, the solenoid valve controls the opening and closing of the circuit or oil circuit. 2) Proportional solenoid valves output different pressures depending on the magnitude of the input current; changing the input current changes the output pressure of the solenoid valve, and they are mostly used in hydraulic systems.
Brand
ATOS/Italian Atos
Flow Direction
One-way
3C Valve Category
Industry
Application Areas
Chemical, Agriculture, Forestry, Animal Husbandry and Fishery, Petroleum, Mining, Comprehensive
ATOS Hydraulic Pumps, ATOS Piston Pumps, ATOS Gear Pumps, ATOS Vane Pumps, ATOS Cylinders, ATOS Relief Valves
ATOS solenoid valves are electromagnetically controlled industrial devices, fundamental components for fluid control in automation. They are actuators, not limited to hydraulic or pneumatic systems. Used in industrial control systems to adjust the direction, flow rate, speed, and other parameters of the medium. Solenoid valves can be used with different circuits to achieve the desired control, ensuring both precision and flexibility. There are many types of solenoid valves, each playing a different role in the control system. Commonly used types include check valves, safety valves, directional control valves, and speed control valves.
The ATOS solenoid valve has a sealed chamber with through-holes at different positions, each connecting to a different oil pipe. Inside the chamber is a piston, flanked by two electromagnets. When the coil of one electromagnet is energized, the valve body is attracted to that side. Controlling the movement of the valve body opens or closes different drain holes. The inlet hole is always open, allowing hydraulic oil to enter different drain pipes. The oil pressure then pushes the piston in the cylinder, which in turn moves the piston rod, which in turn drives the mechanical device. Thus, controlling the flow of current to the electromagnets controls the mechanical movement.
ATOS Solenoid Valve Models in Stock:
DHI-0714-X 24DC
DHI-0715/FI/NC-X 24DC
DHI-0715-X 24DC
DHI-0716-X 24DC
DHI-0717-X 24DC
DHI-0718-X 230/50/60AC
DHI-0718-X 24DC
DHI-0750/2-X 24DC
DHI-0751/2/FI/NC-X 24DC 23
DHI-0751/2/FI/NO-X 24DC 23
DHI-0751/2/WP-X 230/50/60AC
DHI-0751/2/WP-X 230/50/60AC 23 /PE
DHI-0751/2/WP-X 24DC
DHI-0751/2-X 110/50/60AC 23
DHI-0751/2-X 230/50/60AC
DHI-0751/2-X 24DC
DHO-0630/2/A-X 24DC 20
DHO-0631/2/A-X 24DC 20
DHO-0631/2/L1-X 24DC 20
DHO-0631/2-X 24DC
DHO-0639/O-X 24DC 20
DHO-0710-X 24DC 20
DHO-0711-X 24DC
DHO-0713-X 24DC 20
DHO-07191-X 24DC DHO-0750/2-X 24DC 20
DHRZO-P5-012/25 20
DHU-0610/A-X 24DC 20
DHU-0610/FI/NC-X 24DC 20
DHU-0610-X 24DC 20
DHU-0610-X 48DC 20
DHU-0611-X 24DC
DHU-0614/A-X 24DC 20
DHU-0614-X 24DC 20
DHU-06191-X 24DC 20
DHU-06194-X 24DC 20
DHU-0630/2/A-X 24DC
DHU-0630/2-X 24DC
DHU-0631/2/A-X 24DC
DHU-0631/2/FC-X 24DC 20
DHU-0631/2-X 24DC
DHU-0632/2/A-X 24DC 20
DHU-0632/2-X 24DC 20
DHU-0639/C-X 24DC 20
DHU-0671-X 24DC
DHU-0710/L1-X 24DC 20
DHU-0710-X 24DC
DHU-0711/WP-X 24DC 20
DHU-07119-X 24DC 20
DHU-0711-X 24DC
DHU-0713/1-X 24DC
DHU-0713/WP-X 24DC 20
DHU-0713P-X 24DC 20
DHU-0713-X 24DC
DHU-07149-X 24DC 20
DHU-0714-X 24DC
DHU-0718-X 24DC
DHU-0750/2/FI/NC-X 24DC 20
DHU-0750/2-X 24DC
ATOS Solenoid Valve Selection Criteria
ATOS solenoid valve selection should first follow four principles in order: safety, reliability, applicability, and economy. Secondly, it should be based on six aspects of the on-site operating conditions (i.e., pipeline parameters, fluid parameters, pressure parameters, electrical parameters, actuation method, and special requirements).
ATOS Solenoid Valve Selection Criteria:
1. Selection of Solenoid Valve Based on Pipeline Parameters: Nominal Diameter (DN), Connection Type
1) Determine the nominal diameter (DN) based on the inner diameter of the pipeline or flow requirements.
2) Connection type: Generally, for DN > 50, a flange connection should be selected; for DN ≤ 50, the connection type can be freely selected according to user needs.
2. Selection of Solenoid Valve Based on Fluid Parameters: Material, Temperature Group
1) Corrosive fluids: Corrosion-resistant solenoid valves and all-stainless steel are recommended; Ultra-clean edible fluids: Food-grade stainless steel solenoid valves are recommended.
2) High-Temperature Fluids: Solenoid valves made with high-temperature resistant electrical and sealing materials should be selected, and piston-type valves should be chosen.
3) Fluid State: Fluids can be gaseous, liquid, or mixed, especially for diameters greater than DN 25, which must be clearly distinguished.
4) Fluid Viscosity: Generally, any fluid can be selected below 50 cSt; if it exceeds this value, a high-viscosity solenoid valve should be selected. 3. Selecting Solenoid Valves Based on Pressure Parameters: Principle and Structure
1) Nominal Pressure: This parameter has the same meaning as other general-purpose valves, determined by the nominal pressure of the pipeline.
2) Working Pressure: If the working pressure is low, a direct-acting or step-direct-acting principle must be selected. For low working pressure differentials above 0.04 MPa, direct-acting, step-direct-acting, and pilot-operated valves can all be selected.
4. Electrical Selection: AC220V and DC24V voltage specifications should be prioritized for convenience.
5. Selecting Based on Continuous Working Time: Normally Closed, Normally Open, or Continuously Energized
1) When the solenoid valve needs to be open for a long time, and the continuous time is longer than the closing time, a normally open type should be selected.
2) If the opening time is short or the opening and closing times are infrequent, a normally closed type should be selected.
3) However, for some safety protection applications, such as furnace and kiln flame monitoring, normally open valves cannot be selected; a continuously energized type should be chosen. 6. Select auxiliary functions according to environmental requirements: explosion-proof, backflow prevention, manual operation, waterproof mist, water spray, and diving.


