Own end-to-end firmware for safety-critical ARM Cortex-M systems, including drivers, state machines, communication protocols, hardware bring-up, qualification, testing, and programming flows. Build host-testable simulation layers and define firmware safety cases. Collaborate closely with hardware and mechanical engineers through environmental testing and board iterations. Rust, C, and C++ embedded experience are accepted, with emphasis on bare-metal systems, peripheral debugging, testability, and safety-relevant development.
Description
You'll own firmware end-to-end on safety-critical embedded systems. Our products run on ARM Cortex-M class hardware in demanding field environments. The current codebase is Rust-on-Embassy, but we are language-agnostic — strong C, C++, or Rust embedded engineers are equally welcome. You'll work closely with the hardware engineer from bring-up through qualification.
What you'll do:
- Own firmware end-to-end: drivers, state machines, communication protocols, command surface, bring-up, qualification, and programming flows.
- Build and maintain a host-testable simulation layer — the state machine should be testable on a laptop without flashing a board, and stay that way.
- Work shoulder-to-shoulder with the HW engineer on bring-up, register-map ergonomics, and timing decisions.
- Carry firmware through environmental qualification (thermal, EMC, vibration) — you'll be on the bench when something is acting wrong at -20°C.
- Define and enforce the firmware-side safety case: what we test, what we prove, what is allowed to ship.
- Write code that is terse, testable, and obvious about its safety story.
Required:
- 7+ years of professional embedded firmware on ARM Cortex-M (or comparable) in C, C++, or Rust — show us something you shipped or fielded.
- Deep comfort with the bare-metal stack: interrupts, DMA, clocks, timers, low-power modes, linker scripts, and memory maps.
- Strong with peripheral protocols — I²C, SPI, UART, USB CDC — and with debugging them on a scope or logic analyzer when the abstraction layer is lying.
- Experience building and reasoning about real-world safety-relevant state machines, including guard conditions and timer-driven transitions.
- Discipline around testability: pure-logic code separated from HAL, host tests for everything that doesn't strictly need the target.
- Working English, written and verbal.
Nice to have:
- Rust embedded experience — Embassy, embedded-hal, defmt, probe-rs, RTIC, no_std ecosystem.
- Modern C++ embedded (C++17/20, freestanding builds).
- Safety-critical firmware background: defense (MIL-STD-882), automotive (ISO 26262/MISRA), aerospace (DO-178C), or medical (IEC 62304).
- Async firmware experience (Embassy, Zephyr, FreeRTOS with event loops, or bare-metal cooperative schedulers).
- Bootloader, DFU, and secure-boot work; factory provisioning and programming flows.
- Experience shipping a C SDK or FFI bindings to external integrators.
How we work: Small team, weekly hardware iterations, real boards on every desk. You'll have a bench, a stack of dev kits, and a direct line to the HW and mechanical engineers. We expect you to defend your timing assumptions — and to be in the room when the next board spin is decided.
Similar Jobs
Fintech • Financial Services
Manages teller-line operations, schedules, customer service, compliance, risk controls, and issue resolution for a bank branch. Leads, coaches, and develops branch employees; allocates resources; supports hiring and talent development; interprets banking regulations and escalates concerns. The role also engages customers, refers dwelling-secured product inquiries to qualified team members, and maintains regulatory compliance under Loan Originator requirements.
Fintech • Information Technology • Insurance • Financial Services • Big Data Analytics
Oversee DHMO quality management and utilization management governance, regulatory committees, audit readiness, corrective action monitoring, compliance reporting, and quality improvement. Analyze operational, financial, regulatory, satisfaction, grievance, and performance data to identify risks and trends. Develop governance processes, policies, reporting frameworks, and documentation standards. Partner with cross-functional stakeholders and leadership to improve compliance, organizational performance, member experience, and provider outcomes.
Top Skills:
ExcelMicrosoft PowerpointMicrosoft SharepointMicrosoft TeamsMicrosoft Word
Cloud • Information Technology • Productivity • Security • Software • App development • Automation
Lead a global onboarding team for Atlassian's Teamwork Collection, driving early customer outcomes in the first 60–90 days through change management, success planning, technical guidance, risk mitigation, scaling onboarding programs, and cross-functional collaboration while maintaining operational excellence in Gainsight.
Top Skills:
ConfluenceGainsightJIRASalesforceSuccess-AiTableau
What you need to know about the Chicago Tech Scene
With vibrant neighborhoods, great food and more affordable housing than either coast, Chicago might be the most liveable major tech hub. It is the birthplace of modern commodities and futures trading, a national hub for logistics and commerce, and home to the American Medical Association and the American Bar Association. This diverse blend of industry influences has helped Chicago emerge as a major player in verticals like fintech, biotechnology, legal tech, e-commerce and logistics technology. It’s also a major hiring center for tech companies on both coasts.
Key Facts About Chicago Tech
- Number of Tech Workers: 245,800; 5.2% of overall workforce (2024 CompTIA survey)
- Major Tech Employers: McDonald’s, John Deere, Boeing, Morningstar
- Key Industries: Artificial intelligence, biotechnology, fintech, software, logistics technology
- Funding Landscape: $2.5 billion in venture capital funding in 2024 (Pitchbook)
- Notable Investors: Pritzker Group Venture Capital, Arch Venture Partners, MATH Venture Partners, Jump Capital, Hyde Park Venture Partners
- Research Centers and Universities: Northwestern University, University of Chicago, University of Illinois Urbana-Champaign, Illinois Institute of Technology, Argonne National Laboratory, Fermi National Accelerator Laboratory
.png)


