OUR SERVICES

End-to-end engineering for high-tech mechatronic systems and intelligent machines

We turn your specifications into a fully engineered machine, mechatronic system, test setup, tooling or scientific instrument — taking care of everything from first concept to onsite installation.

01.

Integrated approach

Mechanics, control and simulation working together from day one — fewer iterations, faster time to market.

02.

Model-based design

Every engineering decision is grounded in simulation. Hardware is only built once we know it will work.

03.

High-tech systems

Precision instruments, scientific equipment, high-tech mechatronics — we work where tolerances are tight.

01 — FROM CONCEPT TO QUALIFIED MACHINE

Machine Design

We turn your specifications into a fully engineered machine, delivering complete machine design from feasibility study and concept design through detailed CAD, manufacturing coordination and onsite installation. Our structured six-phase workflow gives you clear deliverables and decision moments at every step, so you stay in control of the project.

 

Feasibility study Concept & detailed design Manufacturing Qualification & test Onsite installation
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Precision mechanical assembly and linear guide used in INGENIQS custom machine design
Machine vision setup with optical cameras built for INGENIQS automated systems
Ball-balancing tripod model demonstrating advanced model-based control by our expert

02 — FROM DATA TO SELF-IMPROVING MACHINE

Intelligent Control

Machines that learn from operating data and continuously optimise themselves, without replacing your existing control system. We combine physics-based digital twins with neural networks to monitor system health, reduce energy consumption and maintain peak performance over the full machine lifetime.

 

Digital twin Physics-Guided Neural Networks Health monitoring Energy optimisation Plug-and-play Iterative Learning Control
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03 — FROM PID TO LEARNING CONTROL

Automation

High-tech machines demand control systems that are accurate, robust and maintainable over their full lifetime. We cover the complete spectrum — from classic PID tuning in the frequency domain to advanced model-based, adaptive and learning control strategies. We select and implement the technique that fits your machine, not the other way around.

PID & Feedforward MIMO control Model Predictive control Adaptive Feedforward Physics-Guided Neural Networks Iterative Learning Control
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Industrial automation and networking cable connections for control systems
Segmented telescope mirror structure for high-tech precision optical systems by INGENIQS
Mass-spring-damper physical system diagram used in dynamic modeling

04 — ACCURATE MODELS LEAD TO BETTER DESIGN CHOICES

Simulation & Modelling

We build accurate digital models of your system before a single part is made. From multi-domain physics simulations and FEM structural analysis to reduced-order models for dynamic response and floor vibration sensitivity — our model-based approach gives you confidence in the design and reduces costly late-stage iterations.

Multiphysics & system models FEM Eigenfrequency analysis Digital twins Reduced-order models Design optimisation
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05 — YOUR MACHINE ASSEMBLED AND VALIDATED

Build & Test

We assemble your machine in-house, integrate all subsystems and verify performance against your full specification — including factory acceptance testing before delivery and onsite commissioning. You receive a system that has been validated, not just built.

Assembly & integration System validation FAT / SAT Performance testing Commissioning
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Industrial robotic arm automated testing setup engineered by INGENIQS
Engineers inspecting circuit boards and electronic hardware components at INGENIQS laboratory

Ready to start your next project?

Tell us what you're building. We will tell you how we can help.