Skip to content

What are you looking for?


You may also like

1MRK002133-ACr04 ABB Analog Digital Module1MRK002133-ACr04 ABB Analog Digital Module1MRK002133-ACr04 ABB Analog Digital Module
1MRK002133-ACr04 ABB Analog Digital Module
1MRK002133-ACr04 ABB Analog Digital Module
1MRK002133-ACr04 ABB Analog Digital Module

1MRK002133-ACr04 ABB Analog Digital Module


Only 10 left - Selling fast

PRODUCT SKU : 1MRK002133-ACr04

PRODUCT TYPE : Analog Digital Conversion Modules

PRODUCT VENDOR : ABB


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

Product Details

Configured for multi-channel signal processing and clock synchronization in ABB Protection and Control IED platforms, the ABB 1MRK002133-ACr04 (1MRK002133-AC Analog Digital Module) provides direct physical/electrical execution.

Hardware Specifications

Parameter Specification
Model 1MRK002133-ACr04
Brand ABB
Origin Sweden
Operating Temp -25 to +70 deg C (Standard Industrial Range)
Power Consumption Backplane Auxiliary Supply Powered
Channel Count 12 Analog Digital Conversion Channels
Feature Type Time Synchronization Integration (ADTS Module)
Global Commercial Alias ADM

Backplane Bus Communication Velocity & Time Synchronization

The module handles digitized sampling across 12 conversion channels, referencing internal clocks against incoming time synchronization signals to preserve sequence-of-events timestamp precision. High-speed backplane bus communication velocity allows seamless transmission of synchronized sample packets across backplane buses to main processing CPUs. Native firmware flash compatibility maintains deterministic execution and deterministic network performance during station bus data transfer.

Frequently Asked Questions

Q: How many analog digital conversion channels are provided on the 1MRK002133-ACr04 card?

A: The module is equipped with 12 distinct signal conversion channels for field telemetry acquisition.

Q: How does the module maintain operational timing accuracy across system backplanes?

A: The ADTS module integrates dedicated time synchronization circuitry to stamp digitized sample data before dispatching packets across the rack backplane bus.

Field Installation Guidelines

  • Isolate auxiliary power to the host IED chassis prior to inserting or removing the card from the card cage slot.
  • Use an ESD grounding wrist strap when handling the card assembly to shield onboard analog-to-digital converters from static discharge.
  • Verify time synchronization input connections are firmly secured to prevent clock drift during continuous telemetry logging.
  • Tighten faceplate mounting screws securely to verify ground continuity to the chassis frame and avoid backplane alignment 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
Marshalling Cabinet Preventive Maintenance: Essential Healthiness Checks for PLC, DCS, and ESD Systems

Marshalling Cabinet Preventive Maintenance: Essential Healthiness Checks for PLC, DCS, and ESD Systems

Marshalling cabinets serve as the vital interface between field instrumentation and control room electronics in modern process facilities. Regular preventive maintenance of these cabinets ensures signal integrity across programmable logic controllers (PLCs), distributed control systems (DCS), and emergency shutdown (ESD) networks. System technicians must execute structured inspection protocols to mitigate environmental risks, identify loose wiring, and maintain continuous operational readiness.

Read more
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