Skip to content

What are you looking for?


You may also like

Woodward 5466-411 MicroNet Ethernet ModuleWoodward 5466-411 MicroNet Ethernet ModuleWoodward 5466-411 MicroNet Ethernet Module
Woodward 5466-411 MicroNet Ethernet Module
Woodward 5466-411 MicroNet Ethernet Module
Woodward 5466-411 MicroNet Ethernet Module

Woodward 5466-411 MicroNet Ethernet Module


Only 10 left - Selling fast

PRODUCT SKU : 5466-411

PRODUCT TYPE : Network Interface Modules

PRODUCT VENDOR : Woodward


  • 100% Genuine Parts – Risk-Free 30-Day Returns
  • 1-Year Warranty & Expert Support for Every Order

Product Details

The Woodward 5466-411, also cataloged as the 5466-411 Micronet Ethernet Module, operates as a dedicated hardware component for deterministic network communication and data exchange within MicroNet Digital Control Series platforms.

Hardware Specifications

Parameter Specification
Model 5466-411
Brand Woodward
Origin USA
Weight Not specified
Dimensions 9.50 x 10.50 x 1.00 inches
Operating Temp -40 to 85 deg F
Power Consumption Not specified
Input Voltage 110 VAC / 125 VDC (80-150 V range)
Output Voltage Rating 24 VDC, 16 A
Connectivity 10/100 Base T Ethernet (RJ45)
Flash Memory 64 MB

Profinet / EtherNet/IP Deterministic Networks

The 5466-411 provides the physical interface required for deterministic communication between the main chassis CPU modules and remote real-time expansion chassis network modules. The module facilitates the ingestion of data from IP/TCP distributed input-output devices, which is processed by the main chassis CPUs to support GAP application execution. To maintain signal integrity within the network, the module must be interfaced with an Ethernet Field Termination Module (FTM). The architecture requires the use of double-shielded Ethernet cables or SSTPs to maintain the transmission characteristics necessary for deterministic network performance. The integrated real-time clock ensures synchronized time-stamping of control data across the network nodes.

Frequently Asked Questions

Q: Is the use of an Ethernet Field Termination Module (FTM) mandatory for operation?

A: Yes, the 5466-411 must be used in conjunction with an Ethernet FTM to ensure proper signal conditioning and electrical isolation. Attempting to connect external Ethernet devices directly to the connector without an FTM may compromise signal integrity and communication reliability.

Q: What are the cable requirements for ensuring intended device functionality?

A: To maintain compliance with signal transmission standards, double-shielded Ethernet cables or SSTPs must be utilized. The maximum stub length for connections must not exceed 300 mm to prevent signal reflections and impedance mismatching.

Field Installation Guidelines

  1. Mounting: Secure the module within the MicroNet digital controller chassis. Ensure the module is properly seated to establish a low-impedance connection with the chassis backplane.
  2. Wiring: Use double-shielded Ethernet cabling for all network connections. Terminate cable shields at the designated ground points provided on the Field Termination Module (FTM) to mitigate electromagnetic interference.
  3. Power Input: The module accepts input voltages between 80 VDC and 150 VDC. Verify the power source meets these requirements prior to connection to prevent damage to the internal power supply circuits.
  4. Integration: Connect the Ethernet FTM to the 5466-411 module via the appropriate interface cables. Verify that all remote expansion chassis modules are correctly addressed on the network before enabling the control application.
  5. Validation: Monitor the communication status via the MicroNet controller software interface. Confirm that data packets from remote expansion racks are being received by the main chassis CPU without excessive retransmissions or packet errors.

Additional Information

  • 100% Genuine Parts: All products are original and authentic, ensuring reliable industrial performance.
  • 30-Day Refund Guarantee: Return any in-stock item within 30 days in original, unopened packaging for a full refund (excluding shipping and fees).
  • 12-Month Warranty: Covers defects in materials or workmanship; excludes misuse, normal wear, or unauthorized modifications.
  • Worldwide Shipping: We ship via USPS, UPS, FedEx, and DHL. Delivery times vary by country and may be subject to customs or import fees.
  • Support & Contact: Technical and warranty assistance is available anytime. Contact us here: Contact.
  • Purchase Guidance: Check product specifications and compatibility carefully before ordering to ensure proper application.




Recently Viewed Products

Tech & Buying Guide

Technical Insights, Installation Guides, and Buying Tips
Understanding Marshalling Cabinets in Industrial Control Systems Architecture

Understanding Marshalling Cabinets in Industrial Control Systems Architecture

Industrial control system deployments rely on structured signal distribution to bridge field instrumentation with central processing hardware. A marshalling cabinet serves as the vital intermediate connection point between heavy field home-run multi-pair cables and delicate input/output (I/O) modules housed inside Programmable Logic Controller (PLC) or Distributed Control System (DCS) enclosures. By segregating field cable terminations from control hardware, engineers maintain system flexibility, safeguard controller components, and streamline commissioning workflows.

Read more
FAT vs SAT in Industrial Control Systems: Key Differences and Execution Guide

FAT vs SAT in Industrial Control Systems: Key Differences and Execution Guide

Industrial control system deployment relies on strict verification protocols to guarantee operational safety, system stability, and regulatory compliance. Commissioning complex Programmable Logic Controller (PLC) racks, Distributed Control Systems (DCS), and Safety Instrumented Systems (SIS) requires two critical milestones: the Factory Acceptance Test (FAT) and the Site Acceptance Test (SAT). Both procedures validate that system automation meets design specifications, but they occur at different stages of project execution and target distinct operational risks.

Read more
Hub vs Switch vs Router in Industrial Automation Architecture

Hub vs Switch vs Router in Industrial Automation Architecture

Modern factory automation relies on reliable industrial networking infrastructure to exchange real-time field data across operational technology systems. Engineers often encounter networking hardware like hubs, switches, and routers when integrating Programmable Logic Controllers, Distributed Control Systems, and SCADA monitoring nodes. Although these devices share physical ports, they operate at different layers of the Open Systems Interconnection reference model and deliver distinct traffic management capabilities.

Read more