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Research and Development Internship

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Deadline: 22/08/2026

Skills for this role

Skills we detected for this role.

  • C++
  • IoT
  • Arduino
  • SolidWorks
  • Wireframing

Opportunity brief

About the Role: We're hiring an R&D Intern to work directly with the founding team on end-to-end product development. This is a generalist role for someone who's curious, resourceful, and enjoys building things both with their hands and on a screen. You'll work across CAD, 3D printing, electronics, and firmware depending on the problem at hand. This is not a narrow, single-track internship. If you enjoy figuring things out, breaking things, fixing them, and building better versions, this role is for you. Responsibilities of the Intern: Design and iterate on mechanical parts using CAD software and bring them to life through FDM or resin 3D printing. Build and test electronics for IoT-enabled medical devices, from breadboard setups to functional prototypes. Write embedded firmware for microcontrollers such as Arduino, ESP32, STM32, or similar platforms. Work across the full product development cycle, including concept development, prototyping, testing, and iteration. Debug hardware and software issues on the bench in real time. Support the integration of sensors, actuators, and connectivity modules into device prototypes. Collaborate closely with the founders on design decisions and technical trade-offs. Document builds, test results, and design iterations. Requirements: Currently pursuing or recently completed a degree in Mechanical, Electronics, Electrical, Biomedical, Mechatronics, or a related engineering field. Working knowledge of CAD tools such as SolidWorks, Fusion 360, or similar software. Hands-on experience with 3D printing, including design for printing, slicing, and troubleshooting prints. Basic to intermediate electronics skills, including reading schematics, soldering, and using a multimeter or oscilloscope. Exposure to embedded programming using C/C++, Arduino IDE, or similar tools. Hands-on project experience through personal projects, hackathons, robotics clubs, or similar activities. Comfortable working with ambiguity in a fast-changing, early-stage environment. Strong problem-solving skills and willingness to learn on the fly.

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