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WOODWARD 9907-019 High-Capacity Industrial Control Module

The WOODWARD 9907-019 serves as a central hub in advanced automation architectures, orchestrating communication between a wide range of sensors, actuators, and Upper level control systems

Model Number 9907-019
Brand Woodward
Type High-Capacity Industrial Control Module
Input Voltage 24V DC ±15%
Operating Temp Range -30°C to 75°C (-22°F to 167°F)
Mounting Style DIN Rail Mount
Dimensions 140mm x 90mm x 65mm (5.5in x 3.5in x 2.6in)
Weight 420g (14.8oz)
Interface/Bus Modbus RTU, Ethernet/IP, Profibus (optional)
Compliance CE, UL 508, RoHS
Supported Protocols Modbus RTU, Ethernet/IP, Profibus, DeviceNet (via adapter)
Typical Power Draw 6.8W @ 24V DC

 

Description

The WOODWARD 9907-019 serves as a central hub in advanced automation architectures, orchestrating communication between a wide range of sensors, actuators, and Upper level control systems

9907-019

9907-019

Its expanded I/O capacity—supporting up to twice the number of digital and analog channels compared to standard modules like the WOODWARD 9907-019—allows it to monitor and control dozens of devices simultaneously, from pressure transducers and flow meters to servo motors and valves. The module processes incoming data using enhanced parallel processing algorithms, ensuring that control decisions for one device don’t delay responses for others—a critical capability in synchronized systems like automated assembly lines. It maintains compatibility with core industrial protocols including Modbus RTU, Ethernet/IP, and optional Profibus, enabling smooth integration with existing SCADA and PLC systems. A key feature of the WOODWARD 9907-019 is its distributed intelligence architecture, which allows it to handle localized control tasks independently while sharing critical data with the central system, reducing network traffic and improving overall system responsiveness.

9907-019

9907-019

Technical specifications:
Model Number 9907-019
Brand Woodward
Type High-Capacity Industrial Control Module
Input Voltage 24V DC ±15%
Operating Temp Range -30°C to 75°C (-22°F to 167°F)
Mounting Style DIN Rail Mount
Dimensions 140mm x 90mm x 65mm (5.5in x 3.5in x 2.6in)
Weight 420g (14.8oz)
Interface/Bus Modbus RTU, Ethernet/IP, Profibus (optional)
Compliance CE, UL 508, RoHS
Supported Protocols Modbus RTU, Ethernet/IP, Profibus, DeviceNet (via adapter)
Typical Power Draw 6.8W @ 24V DC

 

 

 

Contact Us
Phone:+86 16626708626
WeChat/WhatsApp:+86 16626708626
Email: 3772179818@qq.com

 

 

Main features and advantages:

The WOODWARD 9907-019 delivers tangible operational benefits through its engineered capacity and intelligent design. Its high I/O density reduces the need for multiple cascaded modules, simplifying system architecture and lowering points of potential failure by up to 40% in complex setups. This consolidation also streamlines wiring harnesses, reducing installation time and minimizing the risk of connection errors. The module’s advanced processing engine maintains sub-50ms response times even at maximum load, ensuring that time-critical control loops—such as those coordinating robotic welding arms or material handling systems—remain stable and precise. For maintenance teams, the WOODWARD9907-019 offers enhanced diagnostic capabilities, including individual channel health monitoring, which pinpoints faulty sensors or actuators without requiring system-wide shutdowns, significantly reducing troubleshooting time compared to conventional modules.

 

Application areas:

The WOODWARD 9907-019 is ideally suited for applications demanding centralized control of numerous interconnected devices. In automotive manufacturing, it manages entire robotic workcells, coordinating up to 16 robots, conveyors, and inspection systems to maintain synchronized production cycles with micron-level precision. In water treatment facilities, it oversees complex networks of pumps, valves, and chemical dosing systems, adjusting flow rates across multiple processing stages to ensure regulatory compliance. The module also excels in large-scale food processing plants, where it integrates mixing equipment, temperature controls, and packaging machinery into a cohesive system, maintaining consistency across high-volume production lines. In each of these environments, the WOODWARD 9907-019 proves its value by handling high device counts without sacrificing performance—even in conditions with heavy electrical noise or vibration.

 

Related products:

WOODWARD 9907-018 – Standard I/O version for medium-scale systems requiring fewer connected devices
WOODWARD 9907-020 – Explosion-proof variant of the high-capacity module, certified for hazardous locations (ATEX/IECEx)
WOODWARD 9907-024 – Redundant configuration kit for mission-critical systems requiring fault tolerance
WOODWARD 9907-025 – I/O expansion daughtercard, adding 8 analog channels to the 9907-019
WOODWARD 9907-017 – Space-saving compact model with reduced I/O for control panels with limited DIN rail space
WOODWARD 9907-026 – Advanced communication module adding OPC UA support for IIoT integration
WOODWARD 9907-027 – Extended lifecycle version with enhanced component ratings for 20+ year operation
Installation and maintenance:
Before installing the WOODWARD 9907-019, confirm that the power supply can deliver sufficient current—up to 0.3A at 24V DC—especially when all I/O channels are active. Check that the DIN rail is rated for the module’s weight (420g) plus any adjacent components, as overloaded rails can sag over time, causing connection stress. Verify that the communication network has adequate bandwidth; the module’s high data throughput requires Ethernet switches with at least 1Gbps ports to prevent bottlenecks. During installation, use twisted-pair shielded cable for all I/O connections, with separate cable runs for power and signal lines to minimize crosstalk.
For ongoing maintenance, schedule quarterly checks of channel status via the configuration software, which flags drift in analog inputs before they affect process control. Every six months, inspect the terminal blocks for tightness—paying special attention to high-vibration areas—and clean ventilation ports to prevent heat buildup, which can degrade performance in fully loaded configurations.
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