Product Short Description

Product Introduction

MC-41103400 is a dedicated power distribution auxiliary terminal card developed for Honeywell MC series DCS control racks, responsible for distributing rack backplane 24VDC main power supply to each slot I/O module. It integrates over-current protection fuses and power fault detection circuit to provide stable power bus transmission for all rack-mounted analog/digital control modules, serving as the core power distribution intermediate component of Honeywell legacy DCS rack architecture.

Description

Technical Specifications

  1. Full Model Number: MC-41103400
  2. Rated Input Power: 24VDC DC main power input, maximum total input current 15A
  3. Output Distribution Channels: 12 independent fused power output branches for rack slot power supply
  4. Single Branch Fuse Rating: 1.6A fast-blow over-current protection fuse per output channel
  5. Over-Voltage Protection Threshold: 30VDC hardware power supply cut-off protection
  6. Operating Temperature Band: -20°C ~ +65°C; storage temperature -40°C ~ +85°C
  7. Humidity Tolerance: 5%–95% relative humidity non-condensing
  8. Protection Grade: Module front panel IP20
  9. Form Factor: Single-slot Eurocard plug-in card for Honeywell MC DCS rack
  10. Fault Indication: Independent red LED per power branch lights upon fuse over-current blowout

Function Features

  1. Multi-branch fused power distribution design isolates single slot module short-circuit fault from entire rack main power supply
  2. Hardware over-voltage protection circuit automatically cuts off all power output when input voltage exceeds 30VDC to protect rack I/O modules
  3. Replaceable plug-in miniature fuses without dismounting the entire module for fault branch maintenance
  4. Real-time power input voltage monitoring circuit transmits power supply abnormal fault signals to DCS main CPU via backplane bus
  5. Low impedance copper power bus traces minimize voltage drop during high total rack current operation
  6. Mechanical locking hot-pluggable structure supporting online fuse replacement without full rack power shutdown

Performance Parameters

  • Power distribution voltage drop: ≤0.3VDC under full 15A rated total load
  • Fuse over-current response time: ≤10ms short-circuit cut-off speed
  • EMC Compliance: IEC 61000-6-2 industrial power distribution electromagnetic interference standard
  • Long-term bus stability: No voltage drift after 8 years continuous full-load rack operation

Material Composition

  1. Power Circuit PCB: Thick copper layer FR-4 high-current flame retardant substrate with full conformal moisture-proof coating
  2. Over-Current Protection Components: Glass tube fast-blow miniature fuses with nickel-plated metal end caps
  3. Power Conductive Bus: High-purity thick copper alloy integrated bus bars embedded on PCB
  4. Front Panel Housing: Cold-rolled steel electrostatic anti-corrosion spray coating with engraved branch number marking
  5. Connection Hardware: Gold-plated copper backplane contact pins, PA66 reinforced plastic fuse holders

Structural Features

  1. Standard single-slot horizontal Eurocard plug-in form factor matching Honeywell MC series 19-inch DCS rack
  2. Front panel independently separated fuse compartment with transparent protective cover for visual fuse status inspection
  3. Dual-side spring locking pull tabs to prevent loose backplane contact under long-term cabinet vibration
  4. Layered circuit layout: High-current power bus area isolated from low-voltage signal detection circuit by grounded copper shielding strips
  5. Wide horizontal ventilation slits on front panel to dissipate heat generated by high-current power distribution traces

Working Principle

  1. External 24VDC main power supply enters the module through backplane bus input terminals
  2. Integrated low-impedance copper bus evenly distributes total input current to 12 independent output branches
  3. Each branch passes through a dedicated 1.6A fast-blow fuse; short-circuit or overload triggers instant fuse melting to cut power for single slot
  4. Voltage sampling circuit continuously monitors input bus voltage; voltage exceeding 30VDC activates hardware power cut-off relay
  5. Branch current detection circuit drives corresponding red LED indicator and uploads fault code to DCS main controller for alarm logging when fuse blows

Advantage Highlights

  1. Independent branch fuse protection avoids full rack power collapse caused by single I/O module short-circuit failure
  2. Ultra-low impedance thick copper bus design maintains stable 24VDC power under full 15A peak load without significant voltage attenuation
  3. Visible transparent fuse cover enables rapid on-site fault location without measurement tools
  4. Online fuse replacement capability eliminates full DCS rack power outage for maintenance operations
  5. Built-in over-voltage hard cutoff circuit prevents mass damage of expensive analog/digital I/O modules from abnormal power surge

Applicable Industries

Thermal power station DCS control cabinets, petrochemical process control systems, pulp & paper continuous production racks, pharmaceutical batch manufacturing DCS platforms, municipal wastewater central monitoring equipment

Installation Requirements

  1. Install exclusively on Honeywell MC series original DCS 19-inch rack single slot; reserve minimum 12mm vertical ventilation gap between upper and lower adjacent modules
  2. Main power input wiring uses 2.5mm² cross-section shielded copper wire; terminal screw tightening torque fixed at 0.9 N·m
  3. Cabinet main protective earth bar must connect module ground pin via 1.5mm² copper grounding wire
  4. Cabinet internal forced air cooling fan mandatory if continuous rack total load exceeds 12A
  5. Backplane power contact surfaces must be cleaned annually to eliminate oxidation-induced contact resistance rise

Usage Notes

  1. Strictly prohibit replacement of original 1.6A fuses with higher rated current fuses to void branch short-circuit protection performance
  2. Do not connect external auxiliary power loads to module output branches; all output power is designated exclusively for rack internal I/O modules
  3. Regular monthly visual inspection of fuse status through transparent front cover
  4. Liquid cleaning agents are forbidden for PCB maintenance; only dry oil-free compressed air can be used for dust removal
  5. Spare fuses must be stored in sealed low-humidity packaging to avoid metal cap oxidation

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