Skip to content

What are you looking for?


You may also like

51401996-100 | Honeywell | TDC 3000 EAMR Application Module Enhanced Redundancy Card51401996-100 | Honeywell | TDC 3000 EAMR Application Module Enhanced Redundancy Card51401996-100 | Honeywell | TDC 3000 EAMR Application Module Enhanced Redundancy Card
51401996-100 | Honeywell | TDC 3000 EAMR Application Module Enhanced Redundancy Card
51401996-100 | Honeywell | TDC 3000 EAMR Application Module Enhanced Redundancy Card
51401996-100 | Honeywell | TDC 3000 EAMR Application Module Enhanced Redundancy Card

51401996-100 | Honeywell | TDC 3000 EAMR Application Module Enhanced Redundancy Card


Only 10 left - Selling fast

PRODUCT SKU : 51401996-100

PRODUCT TYPE : Enhanced Redundancy Card

PRODUCT VENDOR : Honeywell


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

Product Details

Product Overview

The Honeywell 51401996-100 operates as an Enhanced Application Module Redundancy (EAMR) Assembly Card within the legacy TDC 3000 Distributed Control System (DCS) architecture. This hardware add-on board provides high-speed data mirroring and seamless failover synchronization for the primary Application Module (AM). By continuously cross-checking memory states, the card eliminates single-point-of-failure risks in advanced process optimization networks. We supply this product in 100% Brand New, original factory condition to secure your plant's data integrity and protect complex control configurations from unexpected hardware failure.

Technical Specifications

Parameter Operational Specification Data
Part Number 51401996-100
Manufacturer Honeywell
Board Identifier EAMR Assembly Card
Core Function Enhanced Redundancy Routing for Application Modules
Product Category PLCs / Machine Control (PC Board Add-On Board)
Chassis Compatibility Honeywell TDC 3000 High-Density Slot
Physical Weight 2.07 lbs (0.94 kg)
Communication Sync Speed Deterministic Real-Time Failover Bus
Condition 100% Brand New Original

Engineering Advantages

  • Enforces High-Speed Fault Tolerance: The card establishes an independent, high-bandwidth communication channel between redundant processing pairs. If the primary Application Module crashes, this board executes a deterministic switchover to the backup node in milliseconds, preventing process disruptions in your batch or continuous loops.

  • Neutralizes Industrial Cabinet Signal Noise: Multi-layer board construction and integrated ground shielding insulate the sensitive logic gates from electromagnetic interference (EMI). This heavy-duty shielding guarantees error-free state synchronization even when installed alongside high-current motor starters and switching relays.

  • Simplifies Slide-In Slot Allocation: Designed to slide directly into standard, pre-wired Honeywell TDC 3000 chassis slots, the 2.07 lbs card utilizes native guide rails for mechanical stability. This precise physical alignment prevents terminal pin deformation and minimizes your active installation timeframe.

  • Lowers Thermal Loading via Advanced Substrate Layout: The optimized copper layout and upgraded surface-mount components maximize current distribution efficiency. This lowers localized thermal dissipation on the PCB surface, preventing heat pockets from degrading nearby processor modules in sealed NEMA panels.

FAQs

  • Does this 51401996-100 EAMR board require separate software licenses to activate redundancy features?

    The board provides the physical hardware layer necessary for enhanced redundancy. Your system must run the appropriate Honeywell TDC 3000 software release that supports Application Module redundancy, and you must configure the corresponding node parameters within the system architecture database.

  • Can field technicians hot-swap this card while the primary Application Module executes process logic?

    No. Extracting the active EAMR redundancy card breaks the real-time synchronization link and creates a system error configuration state. Always switch your Application Module cluster into an isolated, non-redundant backup configuration or power down the target slot sequence completely before replacing the board.

  • What preventive measures guarantee proper grounding when seating the card?

    Field engineers must clean the chassis guide rails of any accumulated particulate matter or oxidative scale before insertion. Ensure the board slides completely back until the faceplate mounting screws seat firmly into the metal rack frame, establishing a low-impedance ground path to deflect incoming electrical surges.

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
Spatial Computing in Industrial Automation: Elevating PLC and DCS Operations with AR and VR

Spatial Computing in Industrial Automation: Elevating PLC and DCS Operations with AR and VR

Industry 4.0 integrates digital intelligence into field operations, transforming factory automation landscapes worldwide. Spatial technologies—specifically Augmented Reality (AR) and Virtual Reality (VR)—redefine how engineers interact with industrial control systems. By bridging computer-generated CAD models with real-time operational technology (OT) data, immersive displays enable intuitive monitoring, rapid diagnostics, and safer maintenance across complex processing facilities.

Read more
Master Acceptance Testing: Understanding FAT and SAT in Industrial Control Systems

Master Acceptance Testing: Understanding FAT and SAT in Industrial Control Systems

Factory Acceptance Testing (FAT) and Site Acceptance Testing (SAT) serve as critical quality assurance gateways in complex industrial control systems. Both procedures verify that programmable logic controllers (PLCs), distributed control systems (DCS), and associated field devices meet strict functional specifications. However, executing these tests effectively requires clear delineation between off-site staging and final field commissioning.

Read more
Industrial Networking Essentials: Demystifying Hubs, Switches, and Routers in Control Systems

Industrial Networking Essentials: Demystifying Hubs, Switches, and Routers in Control Systems

Industrial automation relies heavily on robust networking infrastructure to connect programmable logic controllers (PLCs), distributed control systems (DCS), and human-machine interfaces (HMIs). Modern factory automation environments generate vast amounts of real-time operational data across deterministic networks. Understanding the structural differences between hubs, switches, and routers ensures optimal traffic segmentation, minimizes latency, and maintains high network availability.

Read more