Alloyed
Oxford / Global
You have blocked notifications
Oops! You have blocked notifications. Click here for more info
You have blocked notifications, please check your browser settings.
You're currently subscribed to job notifications
Subscribe to notifications
You will no longer receive notifications
Oxford / Global
Alloyed is a young venture‑funded company built with world‑class metallurgists, mechanical engineers, technicians, and software developers. Operating from our HQ in the UK and globally, we are building the future of advanced metal components. Our innovative approach integrates proprietary software that combines advanced machine learning and physical modelling with extensive experimental facilities, enabling us to 3D print metal components more efficiently and effectively than anyone else.
Our facilities in Yarnton and Abingdon, near Oxford, are dedicated to establishing the world’s fastest, smartest, and best‑equipped environment for the rapid development of additively manufactured parts and the creation of novel metal alloys for enhanced performance.
We serve a variety of sectors including electronics, aerospace, and industrial, leveraging our cutting‑edge technology to build businesses across diverse markets, each with unique requirements, timelines, customers, and cultures.
Alloyed is currently designing microturbine engines in a variety of sizes and specifications for a range of jet propulsion applications. Argive is using additive manufacturing to increase performance over current state of the art by leveraging more complex designs enabled by AM and bespoke high‑temperature materials. Alongside the mechanical design work, our team is building bespoke controllers to partner the engines and their ancillaries. The controller is designed to be easily adapted across the range of engines that Argive is developing, whilst interfacing with a range of customer platforms.
Alloyed is seeking a motivated embedded systems hardware engineer to support the design and testing of these controllers. The role involves taking existing development controller configurations and developing them into production‑ready solutions, refining functionality and improving reliability. An ideal candidate would be an expert in embedded hardware development, with familiarity with the firmware design principles that would be implemented on such a system. There is scope to shape the role around exceptional individuals with skills across these areas.
Oxford / Global
Oxford / Global
Oxford District / Global
Oxford / Global
Oxford / Global
Oxford / Global