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Drone Embedded Software Jobs in Indiana (NOW HIRING)

... mailbox for drone delivery. Through systematic research, development, and deep customer ... A Note on Rust Our embedded software is written in Rust. Previous Rust development experience is ...

Drone Embedded Software information

How does a drone embedded software engineer typically collaborate with hardware and flight operations teams?

Drone Embedded Software engineers work closely with hardware engineers to ensure seamless integration between software and drone components, such as sensors and flight controllers. Regular communication with flight operations teams is essential to gather feedback on drone performance and troubleshoot any issues discovered during test flights. This collaborative environment helps accelerate development, improve reliability, and ensures that software updates align well with evolving hardware and operational requirements.

What is the difference between Drone Embedded Software vs Drone Firmware Developer?

AspectDrone Embedded SoftwareDrone Firmware Developer
CredentialsKnowledge of embedded systems, programming languages (C/C++), electronicsSimilar credentials, often with embedded systems experience
Work EnvironmentDesigning and testing software for drone hardwareDeveloping low-level firmware for drone controllers
Industry UsageUsed across drone manufacturing and R&DPrimarily in hardware-focused drone companies
Search/Comparison IntentUnderstanding roles in drone software developmentFocusing on firmware-specific tasks in drones

Drone Embedded Software and Drone Firmware Developer roles overlap significantly, both requiring embedded systems knowledge and working within the drone industry. The main difference lies in scope: embedded software covers a broader range of software applications within drones, while firmware developers focus specifically on low-level hardware control. Both roles are essential for drone development and often share similar qualifications.

What are the key skills and qualifications needed to thrive as a drone embedded software engineer, and why are they important?

To thrive as a Drone Embedded Software Engineer, you need a strong background in computer science or electrical engineering, proficiency in C/C++, and experience with real-time operating systems (RTOS) and embedded systems. Familiarity with tools such as Git, JTAG debuggers, and communication protocols (SPI, I2C, UART), as well as knowledge of drone-specific hardware platforms, is typically required. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help you excel in this role. These skills ensure reliable, efficient, and safe drone operation, which is critical for both performance and regulatory compliance.

What is a drone embedded software engineer?

Drone embedded software engineers are professionals who design, develop, and maintain the software that runs directly on the hardware of drones. This software controls essential functions such as flight control, navigation, communication, and sensor integration. Embedded software is optimized for real-time performance and reliability, often written in languages like C or C++. These engineers work closely with hardware teams to ensure seamless integration and efficient operation of drones in various applications, from aerial photography to industrial inspections.
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Electrical Engineer - Firmware

Arrive AI

Fishers, IN โ€ข On-site

Full-time

Posted 11 days ago


Job description

Description:

At Arrive AI (Nasdaq: ARAI), we're not just building products—we're transforming the future of the Autonomous Last Mile™ (ALM). Over a decade ago, we started with a pioneering vision and patents for the first smart mailbox for drone delivery. Through systematic research, development, and deep customer collaboration, we've evolved to today where we deploy Arrive Points—a type of smart locker and mini-cross-docks for frictionless drone, robotic, and courier delivery and pickup, utilized from medical supplies to meals to e-commerce. Arrive AI is now growing and investing to scale an ALM network and platform of the future for all autonomous delivery providers, services, and customers. Arrive AI is the intelligent choice for the last inch of the Autonomous Last Mile™.


About Us:

We move fast, balancing strategy with opportunity. We are merit-based, valuing integrity, innovation, and treating others as we want to be treated. At Arrive AI, every employee is an equity holder and a business owner. Our shared vision, ownership, and culture fuel our mission to revolutionize autonomous delivery.


Product Team

You’ll be joining Arrive AI’s Product Team to revolutionize Autonomous Last Mile (ALM) logistics by transforming over a decade of research, design, and customer collaboration into the world’s first autonomous logistics network and platform. Our fast-paced skunkworks team rapidly iterates, prototypes, and develops next-generation Arrive Point units, networks, and AI-powered platforms. By integrating cutting-edge hardware, robotics, IoT, software, data, AI, and manufacturing, we’re driving a bold roadmap for ALM innovation. Based in Fishers, IN, we offer a unique opportunity to do your life’s best work, shape the future, and share in the success.


Role Overview

Arrive AI is hiring a Electrical Engineer – Firmware to own the low-level software that brings our next-generation autonomous delivery hardware to life. This is a new-product role: you will write firmware for boards that are still on the bench, work directly alongside the electrical engineers designing them, and carry designs from first power-on through validated, repeatable operation.

Our embedded stack is written in Rust. Prior Rust experience is welcome but not required — see the note below.


What You'll Do


Firmware Architecture & Development

• Design, implement, and maintain firmware for microcontroller-based subsystems across multiple concurrent hardware programs

• Author and own hardware abstraction layers that let application logic survive board revisions and silicon changes

• Write device drivers for sensors, actuators, motor controllers, power management, and communication peripherals

• Design and tune RTOS task structures, priorities, and IPC for deterministic, real-time behavior

• Make and defend architectural tradeoffs around memory footprint, power budget, latency, and fault tolerance


Hardware Bring-Up & Prototyping

• Take new PCB designs from first power-on through peripheral validation, working from schematics, datasheets, and reference manuals

• Partner with electrical engineers during design reviews to catch firmware-hostile decisions before boards are fabricated

• Build the bench tooling, harnesses, and test fixtures that make prototype iteration fast

• Support hardware evaluations and component bake-offs with the instrumentation and measurements needed to decide on evidence rather than opinion


Cross-Functional Collaboration

• Define clean interfaces between firmware and the network, platform, and edge compute layers so teams can move independently

• Work with platform software engineers on data flow between firmware, edge compute, and cloud services

• Shift low-level software work off the electrical engineering team so EE capacity stays on EE problems

• Mentor teammates on embedded practice, and help grow embedded Rust and firmware capability across the group


Testing, Debugging & Reliability

• Develop firmware test plans spanning unit, integration, and hardware-in-the-loop testing

• Debug on real hardware with JTAG/SWD, logic analyzers, and oscilloscopes — including the intermittent, timing-dependent, and only-on-this-one-board failures

• Improve observability through structured logging, telemetry, and on-device diagnostics

• Design for graceful degradation: watchdogs, fault recovery, safe states, and brownout behavior


Documentation & Best Practices

• Document firmware architecture, hardware interfaces, register maps, and bring-up procedures clearly enough for the next engineer

• Contribute to coding standards, code review culture, version control practice, and firmware release management

• Help establish repeatable build, flash, and provisioning processes as programs move from prototype toward production

Requirements:

What We're Looking For

We are prioritizing depth of real-world firmware experience over any specific language on a résumé. If you have shipped firmware that had to work reliably in the physical world, we want to talk.


Required Qualifications

• Bachelor's degree in Electrical Engineering, Computer Engineering, Computer Science, or equivalent practical experience

5+ years of professional experience developing firmware for embedded systems

• Deep proficiency in C/C++ for resource-constrained targets — memory models, pointers and aliasing, interrupt handlers, concurrency hazards, and the failure modes that come with them

• Hands-on production experience with an RTOS (Zephyr, FreeRTOS, ThreadX, or similar) and/or bare-metal systems

• Demonstrated experience designing or maintaining hardware abstraction layers, not only consuming vendor-supplied ones

• Fluency with embedded communication protocols: UART, SPI, I²C, CAN, Ethernet

• Proven track record debugging firmware on real hardware with hardware debug tools

• Ability to work independently from datasheets and reference manuals, and to be productive on unproven hardware where the bug could be in your code, the board, or the part

• Demonstrated ability to perform advanced PCB/board design, in addition to writing low-level/base firmware for the boards they design


Preferred Qualifications

Embedded Rust experience — no_std development, embedded-hal, and async or concurrency frameworks such as Embassy or RTIC

Zephyr RTOS specifically, including devicetree and its driver model

• Electrical engineering background, or enough comfort with schematics and instrumentation to contribute in hardware design reviews

• Experience bridging Rust and C via FFI, or integrating firmware components written in different languages behind a defined interface

• Familiarity with ARM-based microcontrollers and SoCs, and with Linux-based embedded systems

• Exposure to robotics, IoT, motion control, or autonomous systems

• Understanding of secure boot, OTA firmware updates, and device lifecycle management

• Experience in an early-stage or prototype-heavy environment where requirements and hardware change underneath you


At this time, we are not able to provide visa sponsorship for this position.


A Note on Rust

Our embedded software is written in Rust. Previous Rust development experience is not a hard requirement for this role, however, hands-on experience with and mastery of embedded C programming is. If you are willing to learn and have the background, we will provide the training and support you need.