MOOG G761-3033B Industrial Control Cast Iron Hydraulic Servo Valve
The MOOG G761-3033B is an advanced servo control valve designed for high-temperature applications in industrial environments. It is engineered to provide precise control and exceptional performance in demanding hydraulic systems.
Brand:MOOG
Working Element:Servo Control Valve
Serial Number:G761-3033B
Application:Industrial control systems
Item Number:G761-3033B
Series:Other
Material:Cast Iron
Applicable Medium:Oil
Proper Temperature:High Temperature (℃)
Nominal Pressure:Normal Pressure (MPa)
Nominal Diameter:Vertical (mm)
Installation Position:Horizontal
Rated Voltage:220V
Specifications:G761-3033B, G761-3034B, G761-3001B, G761-3002B, G761-3003B, G761-3004B, G761-3005B, G761-3006B, G761-3007B, G761-3008B, G761-3009B, D633-460B, D633-317B, D633-328B, D633-K2050B, D633-K2025B, D633-313B, 072-1202-10, 072-1303-52, D634-341C
The MOOG G761-3033B servo valve is meticulously engineered for use in heavy-duty industrial machinery and equipment where precise control over hydraulic systems is crucial. Constructed from durable cast iron, this valve is built to withstand harsh conditions, ensuring longevity and reliability.
With its high tolerance for extreme temperatures and pressures, it can handle a wide range of industrial applications, making it an indispensable component in any industrial automation setup. The G761-3033B supports a horizontal installation position, providing flexibility in system design and layout.
The valve’s compact and efficient design allows for smooth and rapid response to input signals, enabling precise control of fluid flow in hydraulic systems. This makes it ideal for applications such as aerospace, manufacturing, and automotive industries where precision and reliability are paramount.
Key features include:
– High-precision control for demanding industrial applications
– Robust construction with cast iron body
– Wide operating temperature range for versatility
– Horizontal installation for easy integration
– Compact design for efficient space utilization


















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