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Product Development Engineer (Cartridge) - Pathogen

Ellison Institute of Technology
CompanyEllison Institute of Technology
CategoryEngineering
LocationOxford
RemoteOn-site (inferred)
EmploymentFull-time
LevelNot stated
SalaryNot stated by the employer
Posted24 Jul 2026
Last verified3 Aug 2026
SourceEmployer ATS (workable)
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Description
At the Ellison Institute of Technology (EIT), we’re on a mission to translate scientific discovery into real world impact. We bring together visionary scientists, technologists, engineers, researchers, educators and innovators to tackle humanity’s greatest challenges in four transformative areas: Health, Medical Science & Generative Biology Food Security & Sustainable Agriculture Climate Change & Managing CO₂ Artificial Intelligence & Robotics This is ambitious work - work that demands curiosity, courage, and a relentless drive to make a difference. At EIT, you’ll join a community built on excellence, innovation, tenacity, trust, and collaboration, where bold ideas become real-world breakthroughs. Together, we push boundaries, embrace complexity, and create solutions to scale ideas from lab to society. Explore more at www.eit.org . Welcome to the Pathogen Project: Within this ecosystem, the Pathogen Mission exemplifies EIT’s commitment to transformative science. It aims to revolutionise the diagnosis and treatment of infectious diseases by leveraging whole genome sequencing (WGS)-based metagenomic and pathogen-specific analytical tools. This remit includes the development of a decentralised, sample-to-answer sequencing diagnostic platform for infectious diseases, enabling rapid and accurate analysis of patient samples without prior assumptions. Supported by Oracle Inc.’s cloud-computing scale and security infrastructure, the Pathogen Mission is progressing towards certified diagnostic products for deployment in laboratories, hospitals, and public health organisations worldwide. Your Role: At EIT we are seeking an experienced and detail orientated Product Development Engineer - Cartridge to help develop next-generation diagnostic technology. In this role, you’ll work alongside experts in microfluidics, microbiology, electronics and firmware to design, build and iterate prototype instrumentation for a point-of-care device capable of metagenomic sequencing through a microfluidic cartridge interface. You will work closely with the Lead Engineer to mature multiple prototype cartridge concepts into a robust, integrated consumable architecture with a clear path toward future product development. This role will focus on simplifying and integrating cartridge designs, improving robustness, usability and manufacturability, and supporting the transition from individual module demonstrators toward an integrated automated platform. You will contribute directly to the development of decentralised diagnostic systems aimed at improving infectious disease detection in hospitals and public health settings worldwide. Key Responsibilities: Develop and evolve cartridge architectures to support automated metagenomic workflows and future product development. Simplify and integrate multiple prototype cartridge concepts into robust consumable solutions suitable for automated operation. Design and integrate functional cartridge features including valves, reservoirs, seals, reagent storage, fluidic interfaces and user-facing elements. Work to ensure cartridge designs remain compatible with instrumentation, automation and future product objectives. Identify opportunities to reduce cartridge complexity, dead volume, interfaces and assembly effort while maintaining technical performance. Support integration of cartridges into prototype systems, resolving cartridge–instrument interface issues through hands-on experimentation and engineering. Design and execute structured experiments to evaluate cartridge robustness, usability, repeatability and engineering performance. Investigate and resolve cartridge-related failure modes including sealing, leakage, fluid transfer, reagent handling and assembly challenges. Contribute to improving robustness, manufacturability, usability and reliability of consumable designs through iterative engineering development. Support design reviews with a
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