WOODWARD 9907-1200 Electro-hydraulic Converter

Certainly! Here is an original English product introduction and datasheet for WOODWARD 9907-1200 Electro-hydraulic Converters, with natural phrasing, proper grammar, and added industrial context. The response includes a datasheet table, product overview, and recommended similar models with two hyperlinks.


⚙️ WOODWARD 9907-1200 Electro-hydraulic Converter – Product Overview

The WOODWARD 9907-1200 Electro-hydraulic Converter is a precision-engineered device designed to convert electrical control signals into accurate hydraulic actuator movements. Widely utilized in industrial and power generation applications, it offers reliable performance for valve positioning, governor control, and other critical hydraulic systems. The unit integrates advanced electro-hydraulic technology to provide smooth, responsive, and stable control under demanding operating conditions.


📊 Product Datasheet – Technical Specifications

Parameter Specification
Model Number 9907-1200
Product Type Electro-hydraulic Converter
Function Electrical to hydraulic signal conversion
Input Signal 4-20 mA, 0-10 V (configurable)
Output Pressure Range Up to 3000 psi (206.8 bar)
Response Time < 50 ms
Control Accuracy ±0.5% of full scale
Power Supply 24V DC nominal
Operating Temperature -20°C to +70°C
Hydraulic Fluid Compatible with mineral-based fluids
Mounting Panel or bracket mounted
Dimensions (HxWxD) 150 mm x 100 mm x 80 mm
Weight Approx. 1.8 kg
Certifications CE, UL

🔍 Functional Highlights

  • Precise Control: Converts electrical input signals into proportional hydraulic outputs, ensuring accurate actuator positioning.
  • Fast Response: Low latency response enables real-time control for critical systems.
  • Robust Construction: Designed to withstand harsh industrial environments, including temperature extremes and vibration.
  • Versatile Input Compatibility: Supports common industrial analog signals, simplifying integration.
  • Maintenance-Friendly: Modular design and easy access for inspection and servicing reduce downtime.
  • Safety Features: Built-in safeguards prevent hydraulic overpressure and electrical faults.

🏭 Typical Applications

The WOODWARD 9907-1200 is commonly used in:

  • Turbine governor systems in power plants
  • Hydraulic valve actuation for industrial automation
  • Marine engine control systems
  • Oil and gas pipeline control
  • Process control in chemical manufacturing

Its reliable operation and precision make it a preferred solution where safety and accuracy are paramount.


📰 Industry Insight

With increasing demands for efficient and environmentally responsible energy production, electro-hydraulic converters like the 9907-1200 play an essential role in optimizing turbine and process control. Industry trends emphasize improved response times and system integration, where such converters enhance overall system stability and responsiveness. Manufacturers integrating these converters report improved operational safety and reduced maintenance costs.


🔗 Learn More

For detailed product information and purchasing options, visit:

🌐 https://www.fy-module.com/
🌐 https://www.fy-module.com/


📦 Recommended Similar Models

Model Number Product Name Key Features Application
9907-1100 WOODWARD Electro-hydraulic Converter Earlier version with standard pressure range General turbine control
9907-1400 WOODWARD High-Pressure Converter Supports pressures up to 5000 psi High-demand hydraulic systems
9907-1600 WOODWARD Digital Electro-hydraulic Enhanced digital input with programmable settings Advanced automation
9907-1300 WOODWARD Compact Converter Smaller footprint for limited space installations Compact control applications
9907-1500 WOODWARD Enhanced Response Converter Improved response time and accuracy Critical process control

Summary

The WOODWARD 9907-1200 Electro-hydraulic Converter offers a dependable solution for converting electronic signals into precise hydraulic outputs. Its robust design, fast response, and flexible input options make it indispensable for various industrial control environments. Whether deployed in power generation or process automation, it guarantees high accuracy and system safety, contributing to optimized performance and reliability.


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