Skip to content

What are you looking for?


You may also like

Honeywell MC-PDIY22 80363972-150/80364451-100 High-Performance Process Manager DI ProcessorHoneywell MC-PDIY22 80363972-150/80364451-100 High-Performance Process Manager DI ProcessorHoneywell MC-PDIY22 80363972-150/80364451-100 High-Performance Process Manager DI Processor
Honeywell MC-PDIY22 80363972-150/80364451-100 High-Performance Process Manager DI Processor
Honeywell MC-PDIY22 80363972-150/80364451-100 High-Performance Process Manager DI Processor
Honeywell MC-PDIY22 80363972-150/80364451-100 High-Performance Process Manager DI Processor

Honeywell MC-PDIY22 80363972-150/80364451-100 High-Performance Process Manager DI Processor


Only 10 left - Selling fast

PRODUCT SKU : MC-PDIY22 80363972-150 80364451-100

PRODUCT TYPE : Process Manager DI Processor

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 MC-PDIY22, identified by part numbers 80363972-150 and 80364451-100, serves as a high-density Digital Input (DI) 24 Vdc Processor. It operates as a core component within the High-Performance Process Manager (HPM) architecture. This module facilitates the rapid acquisition of discrete signals from field devices, ensuring precise monitoring and control for large-scale industrial operations. We supply these units as 100% brand new and original to guarantee maximum system uptime.

Technical Specifications

The MC-PDIY22 features a robust hardware profile designed for heavy-duty process automation:

Feature Specification
Model Number MC-PDIY22
Part Numbers 80363972-150 / 80364451-100
Input Channels 32 Discrete Inputs
Operating Voltage 24 Vdc
Module Type High-Performance Process Manager Assembly
Surface Protection Full Conformal Coating
Net Weight 0.51 Kg
Shipping Weight 1.1 Kg

Engineering Advantages

The MC-PDIY22 delivers specific technical benefits to solve common challenges in industrial automation:

  • Aggressive Environment Protection: The module features a professional-grade conformal coating. This barrier prevents board-level corrosion caused by humidity, salt air, and airborne contaminants, extending the lifecycle of the controller in harsh plant conditions.

  • High-Density Signal Processing: By managing 32 inputs on a single card, the MC-PDIY22 optimizes rack space. This density allows engineers to scale their I/O requirements without expanding the physical footprint of the control cabinet.

  • Enhanced Signal Integrity: The processor incorporates advanced filtering to eliminate electrical noise and debounces field contacts. This ensures the High-Performance Process Manager receives clean, accurate data for critical interlocking logic.

  • Simplified Integration: The dual part number compatibility (80363972-150 and 80364451-100) ensures this module fits into various HPM configurations, simplifying inventory management for maintenance teams.

FAQs

What is the difference between part numbers 80363972-150 and 80364451-100?

Both part numbers refer to the MC-PDIY22 Digital Input Processor. Honeywell often utilizes different internal part numbers for specific assembly revisions or regional manufacturing batches. They share the same technical specifications, 32-input capacity, and 24 Vdc rating, allowing for interchangeable use in HPM systems.

Does this module require specific termination hardware?

Yes. The MC-PDIY22 connects to field devices via a dedicated Termination Assembly (TA). You must ensure the TA matches the 24 Vdc input requirements of this processor to maintain proper circuit isolation and signal flow.

Is this unit compatible with existing High-Performance Process Manager (HPM) racks?

The MC-PDIY22 is a standard component for HPM systems. It slides directly into the card file and integrates with the HPM communication bus, providing an immediate upgrade or replacement for failed DI processors without requiring software re-configuration.

 

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
Transforming Shop Floor Data into Actionable Insights: A Deep Dive into MES

Transforming Shop Floor Data into Actionable Insights: A Deep Dive into MES

Manufacturing Execution Systems serve as the digital backbone of modern factory floors. Positioned at Level 3 of the ISA-95 automation pyramid, MES links enterprise resource planning with real-time shop floor control systems. Today, industrial operators rely on MES software to bridge operational strategy with physical production execution.

Read more
Managed Switch vs. Unmanaged Switch: Industrial Ethernet Architecture

Managed Switch vs. Unmanaged Switch: Industrial Ethernet Architecture

Industrial Ethernet forms the backbone of factory automation. Selecting the right switch architecture determines system uptime, data throughput, and OT cyber resilience. This technical guide evaluates managed vs. unmanaged switches, analyzing operational differences, security controls, and selection criteria.
Read more
Hot Standby vs. Cold Standby Redundancy in Industrial Automation

Hot Standby vs. Cold Standby Redundancy in Industrial Automation

System availability determines process safety and productivity in industrial automation. Control engineers deploy redundancy to eliminate single points of failure. This technical guide evaluates Hot Standby vs. Cold Standby architectures, comparing failover speeds, memory sync, cost trade-offs, and field selection criteria.

Read more