The MOOG D136-001-007 is a type of servo valve manufactured by MOOG Inc. MOOG specializes in motion control products and solutions, including servo valves, which are used to control the movement of hydraulic or pneumatic systems in various industrial and aerospace applications.
Product Name:
MOOG D136-001-007 Servo Valve
Product Description:
The MOOG D136-001-007 is a precision servo valve used to control fluid flow in hydraulic systems. Servo valves like the D136 series are designed to provide accurate and responsive control of hydraulic actuators by regulating the flow and pressure of hydraulic fluid. These valves are typically used in closed-loop control systems where high precision and fast response are critical, such as in aerospace, defense, industrial automation, and test systems.
Product Parameters:
- Type: Electro-hydraulic Servo Valve
- Control Mode: Typically uses electrical input (current or voltage) to control the hydraulic output.
- Fluid Type: Usually compatible with hydraulic fluids such as MIL-H-5606 or other compatible types.
- Operating Pressure: Varies depending on the specific design, typically up to 5000 psi or higher.
- Flow Rate: Varies by configuration, but typically capable of high flow rates (e.g., 10-100 L/min).
- Input Signals: Can accept electrical control signals, often in the form of DC current or voltage.
- Temperature Range: Typically -40°C to +85°C, but can vary based on specific valve options.
Specifications:
- Size: Typically a compact design, optimized for integration into space-constrained systems.
- Material Construction: Typically made of high-strength, corrosion-resistant materials like stainless steel for durability in harsh environments.
- Response Time: Fast response time for precise control, often in the range of milliseconds.
- Accuracy: High precision in controlling fluid flow for accurate actuator positioning.
- Control Output: Proportional or on-off depending on the valve model.
Product Use:
The MOOG D136-001-007 servo valve is used in various applications, including:
- Aerospace: For controlling flight control actuators, landing gear systems, and other hydraulic actuators in aircraft.
- Industrial Automation: In robotic systems, CNC machines, and automated manufacturing equipment.
- Defense: For missile control, gun stabilization systems, and other military applications that require precise hydraulic control.
- Test Equipment: For simulating real-world conditions in testing environments requiring precise control of hydraulic systems.
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