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Embedded Rtos Jobs in Ontario, CA (NOW HIRING)

Senior Embedded Platform Engineer

Irvine, CA

$133K - $174K/yr

... RTOS/bare-metal execution, timing, peripheral interfaces, diagnostics hooks, and hardware bring-up ... This role works closely with embedded systems, motor control, BMS, and vehicle control software ...

Senior Embedded Platform Engineer

Irvine, CA · On-site

$133K - $174K/yr

... RTOS/bare-metal execution, timing, peripheral interfaces, diagnostics hooks, and hardware bring-up ... This role works closely with embedded systems, motor control, BMS, and vehicle control software ...

Strong skills in firmware development for microcontrollers, including bare-metal and RTOS environments. * Programming: Proficient in C++ and Python for embedded and application-level development.

Strong skills in firmware development for microcontrollers, including bare-metal and RTOS environments. * Programming: Proficient in C++ and Python for embedded and application-level development.

Showing results 21-40

Embedded Rtos information

See Ontario, CA salary details

$71.2K

$156.1K

$177K

How much do embedded rtos jobs pay per year?

As of Aug 8, 2026, the average yearly pay for embedded rtos in Ontario, CA is $156,058.00, according to ZipRecruiter salary data. Most workers in this role earn between $133,800.00 and $176,000.00 per year, depending on experience, location, and employer.

What are some typical challenges faced when developing software for embedded RTOS environments?

Developing software for embedded RTOS (Real-Time Operating System) environments often involves unique challenges such as managing limited memory and processing resources, ensuring deterministic real-time performance, and debugging in resource-constrained systems. Team members frequently collaborate closely with hardware engineers to optimize code for specific microcontrollers or processors. Additionally, balancing task prioritization and inter-task communication to avoid deadlocks or priority inversion is a common focus. These complexities make strong problem-solving skills and attention to detail particularly valuable in this role.

What are the key skills and qualifications needed to thrive as an embedded RTOS engineer, and why are they important?

To thrive as an Embedded RTOS Engineer, you need a strong background in embedded systems programming, real-time operating system (RTOS) concepts, and a relevant degree in computer engineering or a related field. Familiarity with tools like Keil, IAR Embedded Workbench, and experience with RTOS platforms such as FreeRTOS or VxWorks, along with certifications like Certified Embedded Systems Engineer, are highly valuable. Attention to detail, problem-solving abilities, and effective teamwork are crucial soft skills that enhance performance in this role. These competencies are essential for designing reliable, efficient, and responsive embedded solutions that meet stringent real-time requirements.

What is an embedded RTOS?

An Embedded RTOS (Real-Time Operating System) is a specialized operating system designed to manage hardware resources and run applications with precise timing requirements in embedded systems. Unlike general-purpose operating systems, an RTOS ensures that tasks are executed predictably and meet strict deadlines, which is crucial in applications like automotive systems, medical devices, and industrial automation. Embedded RTOSs provide features like multitasking, task scheduling, and inter-task communication, all optimized for resource-constrained environments. They help developers create reliable, efficient, and responsive embedded applications.

What is the difference between Embedded Rtos vs Firmware Engineer?

AspectEmbedded RtosFirmware Engineer
CredentialsKnowledge of RTOS, embedded systems, C/C++Embedded systems, C/C++, hardware understanding
Work EnvironmentEmbedded systems development, real-time applicationsHardware interfacing, low-level programming
Industry UsageConsumer electronics, automotive, IoT devicesConsumer electronics, aerospace, medical devices

Embedded Rtos specialists focus on designing and implementing real-time operating systems for embedded devices, ensuring system responsiveness and multitasking. Firmware Engineers develop low-level software that directly interacts with hardware components, often working within embedded environments. While both roles require embedded systems knowledge, Embedded Rtos professionals specialize in real-time OS development, whereas Firmware Engineers focus on hardware-software integration and low-level programming.

What are popular job titles related to Embedded Rtos jobs in Ontario, CA? For Embedded Rtos jobs in Ontario, CA, the most frequently searched job titles are:
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What cities near Ontario, CA are hiring for Embedded Rtos jobs? Cities near Ontario, CA with the most Embedded Rtos job openings:

Senior Embedded Platform Engineer

Neon Aerospace

Irvine, CA

$133K - $174K/yr

Full-time

Re-posted 29 days ago


Job description

We're seeking a Senior Platform/Real-Time Embedded Firmware Engineer with strong low-level embedded software expertise and a passion for building robust, deterministic firmware for safety-critical control systems. This role focuses on the real-time firmware foundation that enables actuators, motor drives, BMS, sensors, and vehicle-level systems to operate reliably.

You will architect, implement, and maintain firmware across real-time microcontroller platforms, owning BSPs, drivers, RTOS/bare-metal execution, timing, peripheral interfaces, diagnostics hooks, and hardware bring-up. This role works closely with embedded systems, motor control, BMS, and vehicle control software engineers to ensure the platform layer is reliable, reusable, and deterministic.

Key ResponsibilitiesReal-Time Firmware Architecture
  • Design and maintain real-time firmware architecture for safety-critical embedded control platforms.
  • Own timing-sensitive firmware layers, interrupt structure, task scheduling, execution order, and deterministic data flow between hardware, drivers, middleware, and application software.
  • Develop firmware frameworks that support reusable control execution, communication, diagnostics, monitoring, and system integration across multiple projects.
MCU, BSP & Driver Development
  • Develop and maintain embedded software in C/C++ on real-time microcontroller platforms such as TI C2000, NXP, or comparable safety-oriented MCUs.
  • Own board support packages, peripheral initialization, device configuration, and low-level hardware abstraction layers.
  • Develop and debug drivers for peripherals and interfaces such as CAN, SPI, Ethernet, ADC, PWM, GPIO, timers, watchdogs, and other MCU peripherals.
Hardware Interfaces & Bring-Up
  • Support hardware bring-up, board validation, and low-level debugging across software and hardware boundaries.
  • Diagnose issues involving MCU configuration, clocks, interrupts, peripherals, sensors, motor drive interfaces, BMS interfaces, and communication links.
  • Work closely with electrical, controls, and systems teams to ensure the embedded firmware correctly supports actuator control, power electronics, sensors, and vehicle-level hardware.
Communication & Diagnostics Infrastructure
  • Implement robust embedded communication infrastructure for protocols such as CAN, CAN derivatives, SPI, Ethernet, ARINC 825, and other aerospace or automotive buses.
  • Support reliable data exchange, message timing, arbitration, diagnostics, fault detection, and recovery behavior at the firmware/platform level.
Integration, Test & Tooling
  • Support integration with motor control, BMS, sensors, and vehicle control software.
  • Develop test hooks, debug interfaces, logging mechanisms, automation support, and data collection tools for lab validation, HIL testing, and system debugging.
  • Support SIL/HIL environments where firmware interfaces, drivers, and platform behavior need to be validated.
Safety, Process & Lifecycle Support
  • Support safety-critical embedded software development by following disciplined software development processes.
  • Contribute to requirements, traceability, verification planning, configuration control, and certification readiness activities aligned with standards such as DO-178C, ARP4754/4761, ISO 26262 concepts, or equivalent safety frameworks.
Required Qualifications
  • 5+ years of experience developing embedded firmware for complex real-time systems
  • Strong proficiency in embedded C/C++ and real-time firmware architecture
  • Experience with real-time microcontroller platforms such as TI C2000, NXP, or comparable safety-oriented MCUs
  • Strong understanding of MCU peripherals, interrupts, timers, watchdogs, memory, clocks, ADC, PWM, GPIO, and communication interfaces
  • Hands-on experience with communication protocols such as CAN, CAN derivatives, SPI, Ethernet, or ARINC 825
  • Proven ability to integrate and debug software across hardware, firmware, and system boundaries
  • Experience supporting hardware bring-up, lab validation, and HIL testing
  • Strong analytical skills and low-level debugging ability

Preferred / Bonus Experience

  • Experience with TI C2000, NXP, or similar real-time control microcontrollers
  • Prior work on safety-critical or regulated systems: aerospace, automotive, industrial
  • Exposure to certification-oriented development processes: DO-178C, ARP4754/4761, ISO 26262 concepts
  • Experience developing reusable BSPs, drivers, middleware, and embedded software frameworks
  • Background supporting motor drives, BMS, power electronics, sensors, or vehicle control systems
  • Experience supporting production launch, field issues, and long-term platform maintainability
Why This Role Matters

This role provides the real-time firmware foundation that every higher-level control function depends on. Your work ensures that MCUs, peripherals, drivers, communication links, timing, diagnostics, and hardware interfaces behave predictably under all conditions.