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Moog D663Z4711 L03HXAP6NEA2-K Servo Proportional Valve

  • Product Introduction: It is a high-quality hydraulic control valve belonging to the Moog D663 series servo proportional valves. It is designed to achieve precise and efficient control of hydraulic systems. With advanced technology and reliable performance, the valve can accurately control the flow in proportion to the input electrical signal, ensuring smooth and precise operation of the hydraulic system. Its compact design and easy installation make it an ideal choice for various hydraulic control occasions.

Detailed content

  • Technical Specifications:
    • Hydraulic Parameters: The maximum operating pressure is 350 bar (5000 psi); the specific rated flow rate needs to be determined according to the actual configuration, but it generally has a high flow handling capacity; the step response time is short, ensuring fast system response.
    • Electrical Parameters: The supply voltage is 24 VDC; the rated input signal range is compatible with common analog signals such as ±10 V or ±10 mA.
    • Structural Parameters: The overall weight is light, and the installation size conforms to the standard of the D663 series, which is convenient for replacement and upgrading.
  • Functional Features:
    • Realize accurate proportional flow control, and the output flow is linearly related to the input signal.
    • The durable structure and corrosion-resistant materials enable it to work stably in harsh industrial environments such as high temperature, high humidity, and dust.
    • It has good anti-pollution performance and can adapt to certain degrees of oil pollution in the hydraulic system.
    • The internal components are precisely processed, with low friction and long service life.
  • Application Scenarios: Widely used in industrial machinery, such as hydraulic control systems of injection molding machines, extruders, and forging machines; automation systems, including automated assembly lines and intelligent control equipment; hydraulic power units, used to regulate the output of the power unit to match the load demand; also applicable to test benches and simulation equipment, providing precise hydraulic control signals.

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