Mach aus dieser Rolle ein Vorstellungsgespräch — ein Lebenslauf und ein Anschreiben, die darauf ausgerichtet sind, was dieser Arbeitgeber sucht.
THRYVE is seeking a Mechatronics / Automation Engineer to design AI-driven automation systems that merge hardware, software and advanced sensing for demanding industrial environments. You will take concepts from CAD through prototype, testing, and deployment, owning cross-disciplinary aspects of mechanics, electronics and controls.
You will drive hands-on development, rapid prototyping and commissioning, collaborating with suppliers and manufacturing partners to deliver reliable production
Mechatronics / Automation Engineer – AI & Robotics
Build machines that combine AI, robotics and advanced sensing to solve real-world industrial challenges.
We’re looking for an engineer who enjoys turning ambitious ideas into hardware that actually works. You’ll take new machine concepts from CAD and prototype builds through testing, automation and deployment — working at the intersection of mechanical engineering, electronics, controls and intelligent systems.
This is a hands‑on role for someone who wants ownership, technical variety and the opportunity to see their designs operating in the real world.
You’ll help develop a new generation of intelligent automated machinery designed for demanding industrial environments.
Your work will include:
You won’t be working on one small component of a huge system. You’ll have visibility across the machine and meaningful influence over how the final product is engineered.
You’ll probably enjoy this role if you like designing at your desk one day and getting your hands on a prototype the next.
Ideally, you bring:
This is an opportunity to work on technology where AI meets physical engineering — and where your designs move quickly from CAD models to real machines.
— take on greater technical responsibility as the company and its products scale
The company is developing intelligent automation technology for the recycling and circular‑economy sector.
By combining artificial intelligence, advanced sensing and automated sorting, its systems can identify and separate complex material streams with significantly greater precision. This makes it possible to recover valuable materials from waste that would otherwise be difficult or uneconomical to recycle.
The technology has already moved beyond the laboratory and into industrial applications. The next challenge is scaling it: building faster, smarter and more robust machines that can operate reliably in real production environments.
That’s where you come in.
If you want to work on complex machines, take ideas from prototype to production and build technology with a tangible real‑world purpose, this could be a great next step.