Back to jobs
Logo of Zipline
Zipline
Actively hiring

Embedded Software Engineer Intern (Spring 2027)

Workplace
On-site
Commitment
Full-time
Seniority
Intern
Salary
$54/hr
Posted
Location
South San Francisco, United States

As an Embedded Software Engineer Intern at Zipline, you will join the Embedded Systems team to work on autonomous aircraft and ground systems. You will collaborate with cross-functional partners to develop solutions to complex problems, owning projects from design to deployment. Your work will involve writing embedded applications and drivers close to the hardware, contributing to the reliability and safety of Zipline's drone delivery service.

Responsibilities

  • Design and develop a software platform for the new P2 Zip and the world’s cutest Droid delivery and dock system
  • Scale our flight and distribution center software to allow upwards exponentially more deliveries per day
  • Prototype, test, and refine next generation flight and ground systems working alongside our mechanical and electrical engineering teams
  • Develop safe software architecture that will be deployed across the world
  • Develop perception solutions for any weather and any real world environment
  • Achieve safety and reliability goals beyond the current state of the art
  • Building an RF radio test setup to validate antenna performance of the flight compute at the production end-of-line. Responsibilities include owning the entire system—from RF signal injection, testing, and validation, to developing manufacturing software test suites, integrating with Hardware-in-the-Loop (HIL), and leveraging simulation to model and measure worst-case scenarios.
  • Develop firmware for a real-time coprocessor that manages high-frequency signals and I/O expansion for the Linux camera subsystem. Own the overall system design, contribute to board design revisions, and validate signal integrity, jitter, and clock alignment.
  • Building a high data rate voltage and current telemetry system that runs continuously in our RTOS using ADCs, I2C devices and GPIO interrupts. Testing this feature rigorously, deploying it to production globally, building data analysis tools to verify that the feature is working properly, and using this data to root-cause tricky failures to improve the reliability of our systems.
  • Rapidly iterating on the concept of a new perception system, integrating compute modules and sensor prototypes to fly a proof of concept ASAP and de-risk key aspects of the approach.
  • Working with operations teams to identify ways to improve our ground systems behavior to enable faster aircraft launch and landing. Prioritizing changes by obtaining engineering leadership buy-in, and implementing them by using a variety of bench-top and real flight-test methods to verify the code. Ultimately, rolling out the update to global operations!

Requirements

  • Pursuing a degree in Electrical Engineering, Computer Science, or Computer Engineering. Must have at least completed the second year of your Undergraduate studies. Masters and PhD students are also eligible.
  • You've designed, built and/or deployed electromechanical systems or robots, inside or outside the classroom.
  • You’re comfortable working in one of C, C++, Python, or Rust, and have developed software for a real time operating system or embedded Linux.
  • You are comfortable receiving feedback so that you can learn to write code that is efficient, easy-to-read, well-tested, has friendly APIs, and incurs minimal technical debt.
  • You’re familiar with basic electrical engineering concepts, such as reading schematics, debugging with an oscilloscope, and communication protocols (CAN, SPI, UART, etc).

Benefits

  • The hourly rate for this internship is $54 per hour. Additional benefits may include relocation support, a housing stipend, overtime pay, paid sick time, and other benefits, where applicable and subject to local requirements.