Terranova
Robotics
EmbeddedSystemsIntern
Neural analysis suggests this role is
optimal for Entry candidates.
“Embedded Systems Intern at Terranova. Skills: Embedded Systems, Firmware, PCB Design, Robotics, C/C++. Own aspects of electrical design, firmware, controls integration, and PCB design. Develop and debug embedded firmware in C/C++ for STM32/ESP32/RP2040 or similar”
What You'll Achieve.
Deliver integrated, field-ready systems; Iterative improvement based on real-world data
Industry & Context.
Systems-level view; Design and analysis; Owning problems end-to-end; Failure analysis; Iterative improvement
Hands-on, spend long hours in the factory and in the field working alongside technicians and operators, Comfortable with the pace and intensity of early-stage startup life, including long days, 6-day workweeks, and extended field hours
What They're Looking For.
Must Have
Working towards a bachelor’s degree or higher in Electrical Engineering, Computer Engineering or related field, U. S. permanent residency required
Nice to Have
Hands-on prototyping skills, Experience in electromechanical controls, Experience in high voltage AC power conversion systems and lithium batteries, C/C++ with FreeRTOS/Zephyr, KiCad/Altium PCB Design, Mixed-signal and power design, PCB and embedded systems design skills (Altium or equivalent), Comfortable with the pace and intensity of early-stage startup life, including long days, 6-day workweeks, and extended field hours
What You'll Do.
Own aspects of electrical design
Develop and debug embedded firmware in C/C++ for STM32/ESP32/RP2040 or similar
Design and review mixed-signal PCBs using KiCad/Altium
and power electronics with reliable
low-latency interfaces (I²C
Characterize and optimize power budgets
and manufacturability
and validate hardware prototypes through DFM/DFT cycles
Support system integration and field debugging of deployed robotic platforms
Understand high power systems (150+ kW) and ensure safe design
Drive failure analysis
and iterative improvement based on real-world data
Lead projects from concept through field deployment: designing
and testing large-scale robotic systems
How You'll Work.
Team & Collaboration
Collaborate closely with electrical, controls, and field teams to deliver integrated, field-ready systems
Process & Methodology
Proven project management capabilities with multiple concurrent workstreams
Full Job Description
Company Description Backed by leading climate and American dynamism investors, Terranova builds intelligent robotic systems to terraform the Earth itself - lifting land, restoring wetlands, and protecting critical infrastructure from floods and sea-level rise. Our mission is to preserve the built environment, create new habitats, and usher in an era of abundance. Our work supports climate resilience, disaster recovery, and defense across the United States and beyond. We’re assembling a world-class team that wants to work on something real, physical, and civilization-scale. If you want your work to reshape the world (literally), this is the place to do it. What to to Expect Terranova seeks a embedded systems engineering intern to join our core engineering team. The ideal candidate has a passion for their craft and can go deep on design and analysis while maintaining a systems-level view across electrical, embedded, and controls disciplines. This person thrives in a startup environment - owning problems end-to-end, moving fast, and building machines that survive the real world. You’ll lead projects from concept through field deployment: designing, analyzing, fabricating, and testing large-scale robotic systems that operate in the most demanding environments on Earth. Expect to be hands-on, spend long hours in the factory and in the field working alongside technicians and operators. Key Responsibilities - Own aspects of electrical design, firmware, controls integration, and PCB design - Develop and debug embedded firmware in C/C++ for STM32/ESP32/RP2040 or similar - Design and review mixed-signal PCBs using KiCad/Altium. - Integrate sensors, radios, and power electronics with reliable, low-latency interfaces (I²C, SPI, UART, CAN). - Characterize and optimize power budgets, EMI performance, and manufacturability. - Bring-up, test, and validate hardware prototypes through DFM/DFT cycles. - Support system integration and field debugging of deployed robotic platforms. - Un
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