Automate repetitive I&C engineering without losing engineering control.
MUR combines controlled project data, engineering change impact analysis, approved templates and deterministic generation to automate recurring instrumentation and control engineering work while keeping every output traceable to a project revision.
I&C engineering is highly structured, but much of the work is still repeated manually.
Instrument data, I/O lists, loop drawings, hook-ups, wiring references and material quantities are closely related. Yet many projects still maintain them in separate spreadsheets, CAD files and engineering tools.
The result is duplicated data entry, repeated checking and uncertainty whenever a design change occurs. Automation is valuable only if it preserves engineering consistency and traceability.
Use one controlled engineering model across multiple deliverables.
Maintain tags, service, ranges, selected equipment and engineering attributes.
Generate signal lists and channel assignments from controlled signal definitions.
Populate approved DXF typicals from instrument, cable, terminal and I/O data.
Select and populate installation typicals from controlled configuration data.
Connect field devices, cables, junction-box terminals and control-system I/O.
Derive quantities from approved engineering rules and project objects.
Automate from engineering facts, not from isolated documents.
Maintain engineering objects, relationships and validated project facts.
Capture approved before/after modifications in a controlled change workflow.
Identify which engineering objects and deliverables are affected.
Update lists, drawings and quantities from controlled data and approved rules.
Check consistency and retain the execution history for the new project revision.
One valve change across multiple I&C deliverables.
A change to a control valve package can alter instrument data, signal requirements, I/O assignments, loop drawings, hook-ups and quantities. MUR first determines the impact, then executes only the required updates.
Automation chain
- Instrument dataUPDATE
- I/O listRECHECK / UPDATE
- Loop drawingREGENERATE
- Hook-up drawingREGENERATE
- BOM / BoQRECALCULATE
- Unrelated deliverablesNO IMPACT
Use AI where interpretation helps. Keep released engineering deterministic.
AI can assist with interpreting vendor information, mapping legacy data, identifying candidate values and preparing engineering changes. Released project data and generated deliverables remain based on controlled facts, approved rules and deterministic generation.
Automation should reduce rework, not create a new source of uncertainty.
Reuse controlled project data across multiple engineering outputs.
Identify downstream impact before engineers manually search every document.
Link engineering changes, revisions, generated deliverables and validation results.
A controlled automation chain for I&C engineering.
The goal is not to automate engineering judgment away. It is to automate repeatable engineering work around controlled decisions.
Standards-aware and GxP-capable by design.
MUR can support structured engineering workflows aligned with ISA-88 / ISA-95 and project controls relevant to IEC 61511, IEC 61508 and IEC 62443 where applicable.
For regulated environments, RBAC, segregation of duties, audit trails, electronic signatures and immutable revision evidence can support GxP/GMP workflows and Part 11 / Annex 11 design expectations.
GxP-capable by design does not replace project-specific validation or qualification.
The advantage compounds with engineering knowledge.
MUR becomes more valuable as approved typicals, rules, mappings, vendor evidence and revision history accumulate around a controlled project model and change-impact graph.
Test instrumentation engineering automation on one real project change.
Provide one existing project baseline and one approved engineering change. MUR demonstrates impact analysis, controlled regeneration and validation across a selected set of I&C deliverables.