Industrial automation · machine software · lifecycle assurance

Beckhoff TwinCAT engineering for reliable machines and regulated production.

Axiotech designs, develops, verifies and supports PLC, HMI, motion and machine-control systems—with controlled source, traceable documentation and lifecycle-ready handover.

For OEM machine builders, engineering teams and regulated manufacturers.

Machine-control baselineControlled
Beckhoff TwinCAT 3 Release-ready machine software Architecture · source · configuration
01PLC / ST 02EtherCAT 03HMI 04Motion
One accountable engineering path from intended operation to tested release.

Controlled sourceKnown baselines, dependencies and ownership

Traceable decisionsRequirements connected to design and evidence

Verified behaviourReviews, simulation, FAT/SAT and agreed testing

Lifecycle supportDiagnostics, recovery, change and obsolescence

Three connected capabilities

Engineering support from machine control to validated operation

Engage one discipline or combine them under a single controlled delivery method.

01

Core engineering

Automation & OEM machine controls

TwinCAT PLC, Structured Text, EtherCAT, HMI, motion, integration, commissioning and recovery.

Explore automation services
02

Regulated delivery

Validation & lifecycle evidence

GAMP 5-aligned requirements, risk, design traceability, verification, change control and supplier documentation.

Explore validation services
03

Engineering compute

Hyperion HPC & AI systems

Workstations, rack servers and clusters configured around technical workloads, deployment and support constraints.

Explore Hyperion systems

Start with the operating problem

A direct route for each engineering buyer

Choose the situation closest to yours. Each route begins with bounded discovery and a usable evidence output.

01

For OEM machine builders

A controlled controls work package

Add specialist TwinCAT, HMI, motion, electrical integration and commissioning capacity without surrendering ownership of your machine platform.

Best first step: controls architecture or defined OEM work-package assessment.
02

For plant engineering teams

Recover reliability and supportability

Stabilise, modernise or extend production controls with a known source baseline, practical diagnostics, tested recovery and an accountable release path.

Best first step: TwinCAT health, obsolescence or recovery assessment.
03

For regulated organisations

Make the handover defensible

Connect intended use, risk, requirements, design, source, verification and approvals through a GAMP 5-aligned lifecycle fitted to your quality system.

Best first step: validation-readiness and evidence-gap assessment.

A gated engineering lifecycle

Make progress visible before site pressure

The exact artefacts scale with risk and scope. The decision gates do not disappear.

Review the delivery method
  1. G0
    FrameIntended outcome, boundary, constraints and responsibilities
  2. G1
    BaselineExisting source, hardware, interfaces, risks and unknowns
  3. G2
    Approve designRequirements, architecture, modules, data and acceptance
  4. G3
    Verify buildReviews, simulation, tests, defects and controlled release
  5. G4
    CommissionSite integration, recovery, acceptance and approved changes
  6. G5
    Hand overSource baseline, evidence, training, support and residual risks

Validation & compliance

Engineering evidence that survives review

For regulated or quality-managed systems, documentation is developed with the software—not reconstructed after commissioning.

  • Intended use, system boundary and risk-based requirements
  • Design, source, configuration and change traceability
  • FAT, SAT and agreed IQ/OQ support
  • Data-integrity, access, backup and recovery evidence

Hyperion systems · a distinct hardware division

Engineering compute built around the workload and operating environment.

Workstations, rack servers and clusters for simulation, AI and technical computing. Public configurations show only starting or indicative prices; availability, export compliance and formal quotation remain release gates.

Rack-scale engineeringPlatform · workload · power · thermals · support

Start with the constraint

Tell us what must work, what cannot stop, and what evidence must remain.

Use a short guided scope. “Not known” is a valid answer; detailed technical information can follow after the first review.

Scope a project

Evidence and defined first steps

See how the engineering approach is applied

Review anonymised case studies, then begin with a bounded TwinCAT, factory-data, AI, compliance, virtual-commissioning or OEM assessment.