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Manufacturing engineers coordinating visual inspection, robotics, machine health, and production flow
Quality / Machine health / Production flow

Industries / Advanced Manufacturing

Turn Every Production Signal Into Accountable Action.

Corteq connects machines, vision systems, quality, maintenance, planning, supply, and operators into one governed production thread from plant floor to enterprise.

Plant operations / Industrial intelligence

Industry profile
Advanced Manufacturing
System
Machine · Cell · Plant
Work
Inspect · Maintain · Produce
Boundary
OT · Edge · Enterprise

Operating reality

The factory already generates the signals. The gap is connecting them to the production decision.

Quality, machine health, work instructions, supply, scheduling, labor, and engineering change all shape the same outcome. Cortex keeps that context connected around the operator and production plan.

Operating condition

Brownfield reality

Plants combine generations of equipment, protocols, control systems, sensors, and manual work.

Operating condition

Production consequence

False alarms, missed defects, unplanned stops, and poorly timed change create immediate cost and risk.

Operating condition

Edge constraint

Inference and coordination often must run near equipment with strict latency, safety, and connectivity limits.

What Corteq builds

One industrial intelligence layer across machine, cell, and plant.

Cortex connects perception, operations, engineering context, bounded action, and evidence around the existing production system.

System
Visual quality

Connect every finding to the production record

Detect defects, show evidence and confidence, route human review, and trace disposition to lot and process context.

System
Predictive maintenance

Prioritize failure risk by production consequence

Fuse telemetry, inspection, history, operating conditions, parts, and schedule into actionable maintenance options.

System
Production operations

Coordinate plan, material, machine, and labor

Resolve live constraints and exceptions into authorized schedule and work changes.

System
Industrial agents

Put governed assistance at the point of work

Ground troubleshooting and instructions in approved engineering content with tools, permissions, and hard stops.

Operating thread

From first signal to accountable outcome.

The sequence stays visible from input through action. Each step preserves the context, authority, and evidence the next step depends on.

  1. Step 1Observe

    Collect machine, vision, process, quality, material, schedule, and operator signals at the edge.

  2. Step 2Diagnose

    Resolve condition against product, process, history, engineering limits, and production effect.

  3. Step 3Authorize

    Place recommendation, evidence, risk, instruction, and required approval with the responsible person.

  4. Step 4Improve

    Execute the approved work, verify the result, and return evidence to quality, maintenance, and planning.

Mission outcomes

Measure the operating change.

The standard is not whether the model runs. It is whether the workflow moves faster, remains governed, and produces an outcome the organization can inspect.

Quality

Earlier detection with evidence attached

Inspection findings connect to product, process, confidence, review, and disposition.

Uptime

Maintenance reflects operational consequence

Teams act on connected machine risk instead of isolated thresholds.

Flow

Exceptions update the whole production picture

Schedule, supply, equipment, labor, and work stay coordinated as conditions change.

Built on Corteq Cortex

One architecture. Adapted to the operating environment.

Every deployment uses the same five deep-dive layers while the mission objects, workflows, policies, systems, and evidence change by industry.

Start with the operating thread

Bring the production exception where the signal still stops short of action.

We will map the systems, context, human gates, deployment boundary, evaluation plan, and fastest path to a fieldable capability.

Request a mission briefing