ABB CCON-23 10000110155 PCB Card – Obsolete AC500 Spare Part

Model: CCON-23 10000110155

Brand ABB
Model CCON-23 10000110155
RFQ-ready model route Obsolete and surplus sourcing Export follow-up by model list

Product Overview

Commercial availability is handled through direct RFQ, model verification and export-oriented follow-up rather than public cart checkout.

Datasheet Preview

Datasheet Preview

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Commercial Path

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Technical Dossier

Product Details And Specifications

ABB CCON-23 10000110155 PCB Card – Obsolete AC500 Spare Part

RFQ support for obsolete parts: Send the model number, required quantity and destination so DriveKNMS can confirm sourcing options before quotation.

Technical Specifications

Parameter Detail
Manufacturer ABB
Part Number CCON-23
Reference Number 10000110155
Product Type PCB Card / Communication / Control Module
Compatible Platform ABB AC500 PLC Series
Product Status Discontinued / Obsolete
Country of Origin Germany
Sourcing DriveKNMS RFQ-reviewed sourcing status

Note: Electrical parameters not independently verified. Specifications are based on known platform documentation. No parameters are fabricated. Buyers are advised to cross-reference with original ABB documentation prior to installation.

Solving the Discontinued Hardware Crisis

The ABB AC500 platform has been deployed across process industries, utilities, and discrete manufacturing for decades. The CCON-23 10000110155 PCB card serves a communication or control function within that architecture — a role that cannot simply be substituted with a generic replacement without triggering a cascade of compatibility and re-engineering issues.

Condition & Reliability Assurance

Sourcing obsolete PCB cards from the secondary market carries real risk if the supplier's qualification process is inadequate. DriveKNMS applies a structured 5-step inspection protocol to all legacy modules before they are offered for sale:

  • Step 1 – Visual and Physical Inspection: Full board examination for mechanical damage, burn marks, cracked solder joints, and component displacement.
  • Step 2 – Electrolytic Capacitor Assessment: Capacitors are the primary failure point on aged PCBs. Each board is inspected for bulging, leakage, and ESR deviation. Boards with degraded capacitors are either recapped or rejected.
  • Step 3 – Firmware Version Verification: Where applicable, firmware revision is confirmed against known compatible versions for the target platform. Mismatched firmware is a common source of silent incompatibility in legacy systems.
  • Step 4 – Pin and Connector Integrity Check: All edge connectors and pin headers are inspected for corrosion, oxidation, and mechanical deformation. Affected contacts are cleaned or the board is rejected.
  • Step 5 – Functional Bench Test: Where test fixtures are available for the platform, boards undergo powered functional verification prior to dispatch.

Key Features for System Maintenance

  • Drop-in replacement: The CCON-23 10000110155 is a direct hardware substitute for the original module. No mechanical modification to the rack or chassis is required.
  • No reprogramming required: The replacement module slots into the existing system configuration. Control logic, parameters, and communication settings resident in the CPU or associated modules are not affected by a card swap.
  • Avoids engineering reconstruction costs: Replacing a like-for-like spare eliminates the need to engage a systems integrator for re-engineering. The difference in cost between a spare card and a partial system redesign is typically measured in orders of magnitude.
  • Extends asset service life by 5–10 years: A qualified spare held in inventory converts an unplanned failure event into a scheduled maintenance action. For facilities with no near-term capital budget for system replacement, this is the most cost-effective path to continued operation.
  • Reduces insurance and compliance exposure: Documented spare parts inventory is increasingly required by industrial insurers and process safety auditors as evidence of adequate maintenance planning for aging control systems.

How do I know the part is genuine and not counterfeit?
All modules sourced by DriveKNMS are inspected for authenticity markers including manufacturer labeling, board revision markings, and component date codes consistent with the production period. Suspected counterfeits are rejected at intake.

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