Skip to content

What are you looking for?


You may also like

Honeywell MU-TDOR12 51309148-125 TDC 3000 Relay Output ModuleHoneywell MU-TDOR12 51309148-125 TDC 3000 Relay Output ModuleHoneywell MU-TDOR12 51309148-125 TDC 3000 Relay Output Module
Honeywell MU-TDOR12 51309148-125 TDC 3000 Relay Output Module
Honeywell MU-TDOR12 51309148-125 TDC 3000 Relay Output Module
Honeywell MU-TDOR12 51309148-125 TDC 3000 Relay Output Module

Honeywell MU-TDOR12 51309148-125 TDC 3000 Relay Output Module


Only 10 left - Selling fast

PRODUCT SKU : MU-TDOR12 51309148-125

PRODUCT TYPE : Relay Output Module

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 MU-TDOR12 (Part Number: 51309148-125) operates as a high-integrity relay output interface within the Honeywell TDC 3000 Distributed Control System (DCS). This module executes discrete control commands by driving high-voltage field devices such as solenoids, motor starters, and heavy-duty contactors. We supply this unit as 100% Brand New Original equipment, providing a critical lifeline for plants maintaining legacy infrastructure that the original manufacturer has discontinued.

Technical Specifications

The MU-TDOR12 utilizes robust electromechanical relays to ensure positive physical disconnection and high load capacity:

Feature Specification Details
Manufacturer Honeywell
Model Number MU-TDOR12
Part Number 51309148-125
Output Type Electromechanical Relay
Voltage Rating 120 VAC
Category PLC Module / Machine Control
Weight 1.61 lbs (0.73 kg)
Mounting Standard TDC 3000 / HPM I/O Rack
Condition 100% Brand New Original

Engineering Advantages

  • Total Electrical Isolation: The electromechanical relay architecture provides a physical air gap between the control logic and the 120VAC field power. This physical barrier protects your expensive processor cards from catastrophic field-side surges and voltage spikes.

  • Universal Load Compatibility: Unlike solid-state outputs that require minimum leakage currents, the MU-TDOR12 handles a wide variety of loads. It switches everything from low-wattage signaling lamps to high-inductive solenoid coils without requiring external snubbers in most applications.

  • Legacy Obsolescence Solution: As Honeywell has moved this part to "Discontinued" status, finding Brand New units becomes vital for validated systems. This module allows you to replace failed components without the regulatory headache or engineering cost of a full system migration.

  • High-Vibration Resilience: The internal relay mounting utilizes reinforced solder points and a rigid housing. This construction resists the mechanical stresses found in turbine halls and compressor stations, ensuring the contacts remain seated during high-frequency industrial vibrations.

FAQs

  • Can the MU-TDOR12 51309148-125 replace the older -100 series variants?

    Yes, the -125 version typically serves as a direct functional replacement for earlier iterations of the MU-TDOR12. It maintains the same pinout and logic interface, though you should always verify your specific system revision and power requirements before hot-swapping.

  • What is the benefit of buying "Brand New" for a discontinued module?

    Relay outputs have a finite mechanical lifespan (switching cycles). Unlike refurbished units that arrive with unknown contact wear and carbon buildup, our 100% Brand New stock ensures you receive the full rated mechanical and electrical life of every relay on the board.

  • Does this module require external fuses for the relay contacts?

    While the module handles standard 120VAC currents, we strongly recommend external branch circuit protection. Fusing each output prevents a single field-side short circuit from welding the internal relay contacts or damaging the PWA traces.

  • How does this module communicate with the HPM?

    The MU-TDOR12 plugs into the standard I/O link backplane. It receives serial data commands from the High-Performance Manager (HPM), which the onboard logic then decodes to energize specific relay coils.

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
Navigating Industrial Automation Failures: Types, Causes, and Mitigation Strategies

Navigating Industrial Automation Failures: Types, Causes, and Mitigation Strategies

Modern manufacturing relies heavily on automated control systems to maximize throughput and maintain product quality. However, unplanned downtime in industrial automation can cost facility operators thousands of dollars per hour. Understanding how programmable logic controllers (PLCs), distributed control systems (DCS), and field instrumentation fail empowers engineering teams to implement robust preventive maintenance strategies.

Read more
Essential Motion Control Commands: A Practical Guide for Engineers

Essential Motion Control Commands: A Practical Guide for Engineers

Automation engineers often rely on precise position and speed control to drive modern factory machinery. Modern industrial systems, such as Programmable Logic Controllers (PLCs) and Distributed Control Systems (DCS), depend heavily on standardized motion instructions. Mastering these commands ensures operational safety, protects mechanical components, and optimizes cycle times across production lines.

Read more
The Role of Intrinsic Safety Barriers in PLC and DCS Architectures

The Role of Intrinsic Safety Barriers in PLC and DCS Architectures

Implementing robust protection in hazardous industrial environments represents a fundamental safety requirement in factory automation. Process facilities often handle volatile gases, dusts, and chemical agents that pose significant combustion risks. Consequently, control system engineers must deploy energy-limiting interfaces to isolate safe-area control cabinets from hazardous-area field instrumentation. This article examines the function, selection, and electrical principles of intrinsic safety barriers within modern PLC and DCS networks.

Read more