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Embedded Systems Engineer Jobs in Riverside, CA (NOW HIRING)

Senior Embedded Platform Engineer

Irvine, CA · On-site

$133K - $174K/yr

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 Responsibilities ...

Senior Embedded Platform Engineer

Irvine, CA · On-site

$133K - $174K/yr

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 Responsibilities ...

This position is part of the Systems Engineering Organization within Navigation Solutions (NS) at ... Experience with hardware implementation or embedded software implementation. * Flexible work ...

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Embedded Systems Engineer information

See Riverside, CA salary details

$65.2K

$143.2K

$200.3K

How much do embedded systems engineer jobs pay per year?

As of Jul 21, 2026, the average yearly pay for embedded systems engineer in Riverside, CA is $143,213.00, according to ZipRecruiter salary data. Most workers in this role earn between $116,300.00 and $170,600.00 per year, depending on experience, location, and employer.

What Do Embedded Systems Engineers Do?

An embedded systems engineer creates the software to control electronics or machines that are different from regular computers. This software needs to run on the specific hardware it controls. Their duties also include troubleshooting and testing. Essential skills include problem-solving, critical thinking, and communication. Work is typically in an office environment with full-time business hours. Educational qualifications include a bachelor’s or master’s degree in embedded systems engineering or a related field.

What are the key skills and qualifications needed to thrive as an Embedded Systems Engineer, and why are they important?

To thrive as an Embedded Systems Engineer, you need strong proficiency in C/C++ programming, embedded hardware knowledge, and a degree in electrical engineering, computer engineering, or a related field. Familiarity with real-time operating systems (RTOS), microcontroller development platforms, and debugging tools like oscilloscopes and logic analyzers is typically required. Problem-solving, attention to detail, and effective teamwork are critical soft skills for success in this role. These skills and qualities are essential to design reliable embedded solutions that meet strict performance, safety, and efficiency requirements.

Will AI replace embedded developers?

Embedded Systems Engineers design and develop software for hardware devices, and while AI can automate certain coding tasks and optimize processes, it is unlikely to fully replace the need for human expertise in understanding hardware constraints, system integration, and troubleshooting. AI tools can assist developers but require skilled engineers to interpret and implement solutions effectively.

What do you do as an embedded systems engineer?

An embedded systems engineer designs, develops, and tests hardware and software for embedded devices such as microcontrollers and processors. They work on integrating software with hardware components, often using programming languages like C or C++, and may use tools like oscilloscopes and debuggers. This role typically requires knowledge of real-time operating systems and embedded development environments.

What engineer makes $500,000 a year?

Highly experienced senior engineers in specialized fields such as software engineering, data science, or executive roles can earn $500,000 or more annually, especially in top tech companies or with significant bonuses and stock options. These roles often require advanced skills, certifications, and years of experience.

What is the difference between Embedded Systems Engineer vs Firmware Engineer?

AspectEmbedded Systems EngineerFirmware Engineer
CredentialsBachelor's in Electrical Engineering, Computer Engineering, or related fields; certifications like Certified Embedded Systems EngineerBachelor's in Computer Engineering, Electrical Engineering; certifications like Certified Firmware Engineer
Work EnvironmentDesigning and developing embedded hardware/software for devices like automotive, medical, consumer electronicsWriting low-level code to optimize firmware for microcontrollers and embedded devices
Industry UsageUsed across automotive, aerospace, consumer electronics, industrial automationPrimarily in consumer electronics, IoT devices, and embedded hardware products

Both roles focus on embedded development but differ in scope. Embedded Systems Engineers work on both hardware and software integration, while Firmware Engineers specialize in writing low-level code for device firmware. Understanding these distinctions helps in choosing the right career path or job search focus.

What are some common challenges an Embedded Systems Engineer faces when integrating hardware and software components?

Embedded Systems Engineers often encounter challenges when ensuring that hardware and software components work seamlessly together. These can include dealing with limited memory and processing power, timing constraints, and real-time performance requirements. Troubleshooting issues that arise from hardware-software interactions—such as driver compatibility, signal integrity, or power management—requires strong problem-solving skills and close collaboration with hardware designers and software developers. Engineers must frequently debug at both the hardware and code level, making attention to detail and cross-disciplinary communication essential in this role.

What engineers make $300,000 a year?

Senior engineers in specialized fields such as software engineering, data engineering, and certain executive or management roles can earn $300,000 or more annually. High compensation often requires extensive experience, advanced skills, and sometimes leadership responsibilities or working in high-demand industries like technology, finance, or aerospace.

What are Embedded Systems Engineers?

Embedded Systems Engineers are professionals who design, develop, and maintain embedded systems—specialized computing systems that perform dedicated functions within larger mechanical or electrical systems. These engineers work with both hardware and software, often programming microcontrollers or microprocessors to control devices like automobiles, medical equipment, consumer electronics, and industrial machines. Their expertise ensures devices are efficient, reliable, and optimized for specific tasks, making embedded systems a crucial part of modern technology.
What are the most commonly searched types of Embedded Systems Engineer jobs in Riverside, CA? The most popular types of Embedded Systems Engineer jobs in Riverside, CA are:
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What job categories do people searching Embedded Systems Engineer jobs in Riverside, CA look for? The top searched job categories for Embedded Systems Engineer jobs in Riverside, CA are:
What cities near Riverside, CA are hiring for Embedded Systems Engineer jobs? Cities near Riverside, CA with the most Embedded Systems Engineer job openings:
Infographic showing various Embedded Systems Engineer job openings in Riverside, CA as of July 2026, with employment types broken down into 1% Internship, 89% Full Time, 8% Part Time, and 2% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $143,213 per year, or $68.9 per hour.
Sr Embedded Platform Engineer

Sr Embedded Platform Engineer

Accord Technologies Inc.

Irvine, CA • On-site

$133K - $174K/yr

Contractor

Re-posted 2 days ago


Job description

Sr Embedded Platform Engineer 
Location: Irvine CA (100% Onsite)
Visa: US personal only
Total Position 2
Positon type: Open (FTE/C2C)

 
Note: Platform engineer should be low level can develop drivers and has developed them in past. 

Role Overview

We’re seeking a Senior Embedded Systems Software Engineer with strong systems intuition and a passion for building robust, safety-critical control software. This role sits at the intersection of embedded platform software, and system level control logic owning the supervisory controllayers that coordinate actuators, motor drives, and flight-level systems.

You will architect and implement system control logic, state machines, sequencing, diagnostics,and communication interfaces that ensure safe, deterministic operation across complex aerospace systems. While this role interfaces closely with actuator control, BMS, and vehicle control software, its primary focus is system behavior, integration, and correctness…not fast inner-loop control.

Key Responsibilities

System Control Architecture & Logic
Design and own system level control architecture spanning actuator control, power sequencing, and operational state management. Develop supervisory logic, state machines, and mode management that coordinate lower- level motor control, embedded platform software, andhardware subsystems. Define and implement safe power-up, power-down, input processing, fault response, and degraded operating modes consistent with system safety assessments and aerospace certification requirements.

Embedded Software Development
Develop and maintain embedded software in C/C++ or MATLAB/Simulink on real-time microcontroller platforms (e.g., TI C2000, NXP, or comparable safety-oriented MCUs). Architect. scalable and maintainable software frameworks supporting control execution, communication, diagnostics, and monitoring. Work across BSPs, middleware, and application layers to ensure deterministic behavior and system robustness.

System Interfaces & Communication
Define, implement, and document system interfaces between controllers, subsystems, and external equipment. Author and maintain Interface Control Documents (ICDs) for communication protocols such as CAN (including safety-oriented profiles), ARINC 825, and other aerospace or automotive buses. Ensure reliable data exchange, arbitration, and fault handling across system boundaries.

Model-Based Design & Validation
Use MATLAB/Simulink to develop and validate system level control logic, sequencing, and coordination strategies. Support model-based design workflows spanning MIL, SIL, and HIL environments. Leverage simulation and lab data to validate system behavior across nominal, corner-case, and fault scenarios.

Integration, Test & Bring-Up
Lead system level integration activities across motor control, BMS, sensors, and vehicle control software. Support hardware bring-up, HIL testing, and lab validation, diagnosing issues that span software, hardware, and system interactions. Develop test strategies, automation hooks, and data analysis workflows to ensure repeat able verification.

Safety, Process & Lifecycle Support
Support development of safety-critical embedded software by following disciplined software development processes. Contribute to requirements definition, traceability, verification planning, and certification readiness activities aligned with standards such as DO-178C, ARP4754/4761, or equivalent safety frameworks. Maintain configuration control and long-term maintainability of system software artifacts.

Required Qualifications
5 to 10years of experience developing embedded control software for complex real-time systems
Strong proficiency in embedded C/C++ and real-time software architecture.
Experience designing system-level control logic, state machines, and sequencing
Hands-on experience with communication protocols such as CAN (and derivatives), SPI,Ethernet, or ARINC (825/664)
Experience with model-based design tools (MATLAB/Simulink) and SIL/HIL testing
Proven ability to integrate and debug software across hardware, firmware, and system boundariesStrong analytical skills and system level problem-solving 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, ISO26262 concepts)
Experience defining software architectures and development processes for growing teams
Background spanning motor control, BMS, or vehicle control systems
Experience supporting production launch, field issues, and system level validation

Why This Role Matters
This role defines how complex control systems behave as a whole.
Your work ensures that motors, actuators, power, and climate systems operate coherently, safely, and predictably under all conditions. You’ll have deep technical ownership and influence system architecture decisions. Play a key role in bringing flight-ready control systems from concept to deployment.