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Embedded Software Engineer Jobs in Mossville, IL

Embedded Software Engineer 4

Mossville, IL · On-site

$95K - $126K/yr

Embedded Software Engineer 4 Location: Mossville, IL (Onsite) Duration: 6-month contract Interview: In-person ideal, can be remote if candidate will be relocating Position Overview: This is a high ...

Embedded Software Engineer - Web

Mossville, IL · On-site

$95K - $126K/yr

Develops, designs, implements and tests software of embedded devices and systems; monitors and enhances the efficiency and stability of the systems. As a Software Engineer, you are responsible for ...

Apply now Engineer IV, Embedded Software Developer Posting Start Date: 5/21/26 Job Location (Short): Peoria, Illinois, USA, 61639 Requisition ID: 35937 Onsite or Remote: Onsite Position Join Komatsu ...

Bachelor's degree in Computer Engineering, Electrical Engineering, Computer Science, Software Engineering, or a related field. * 8+ years of experience in software, systems, or embedded engineering ...

ARi is a global engineering firm headquartered in East Peoria, Illinois, USA offering services for Embedded Software, Product Engineering, Manufacturing Engineering, Testing & Validation, Automation ...

Showing results 21-40

Embedded Software Engineer information

See Mossville, IL salary details

$51.1K

$111.9K

$126.9K

How much do embedded software engineer jobs pay per year?

As of Aug 9, 2026, the average yearly pay for embedded software engineer in Mossville, IL is $111,881.00, according to ZipRecruiter salary data. Most workers in this role earn between $95,900.00 and $126,200.00 per year, depending on experience, location, and employer.

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

AspectEmbedded Software EngineerFirmware Engineer
CredentialsBachelor's in Computer Engineering, Electrical Engineering, or related fields; often requires knowledge of C/C++Similar credentials; strong C/C++ skills, understanding of hardware
Work EnvironmentDevelops software for embedded systems in various industries like automotive, IoT, consumer electronicsFocuses on low-level hardware interaction, often working closely with hardware teams
Industry UsageCommon in automotive, medical devices, consumer electronics, industrial automationPrimarily in consumer electronics, IoT devices, and hardware startups

Embedded Software Engineers design and develop software for embedded systems, focusing on system-level programming. Firmware Engineers write low-level code that directly interacts with hardware components. While both roles require similar skills and work environments, Embedded Software Engineers often work on a broader range of software, whereas Firmware Engineers focus on hardware-specific code. Understanding these differences helps in choosing the right career path or job search focus.

What are the key skills and qualifications needed to thrive as an embedded software engineer?

To thrive as an Embedded Software Engineer, you need a solid background in computer science or electrical engineering, strong programming skills in C/C++, and experience with embedded systems design. Familiarity with real-time operating systems (RTOS), microcontroller architectures, debugging tools, and version control systems like Git is typically required. Excellent problem-solving abilities, attention to detail, and effective communication skills set top engineers apart. These competencies are crucial for building reliable, efficient, and safe embedded solutions that meet industry standards.

What is an embedded software engineer?

Embedded Software Engineers are professionals who design, develop, and maintain software that runs on embedded systems—specialized computing devices that are part of larger systems, such as cars, medical devices, industrial machines, and consumer electronics. Their work involves programming in languages like C or C++ to interact closely with hardware components, ensuring optimal performance, reliability, and safety. Embedded Software Engineers work closely with hardware engineers to integrate and test software with physical devices, often working within real-time and resource-constrained environments. Their expertise is crucial in developing the 'brains' of many devices we use every day.

How does an embedded software engineer typically collaborate with hardware engineers during product development?

Embedded Software Engineers work closely with hardware engineers throughout the product development lifecycle. Collaboration often involves joint design reviews, debugging sessions, and integration testing to ensure software and hardware function seamlessly together. Effective communication is crucial, as changes in hardware can impact software functionality and vice versa. This cross-disciplinary teamwork helps resolve technical issues quickly and ensures the end product meets performance and reliability standards.
What are the most commonly searched types of Embedded Software Engineer jobs in Mossville, IL? The most popular types of Embedded Software Engineer jobs in Mossville, IL are:
What job categories do people searching Embedded Software Engineer jobs in Mossville, IL look for? The top searched job categories for Embedded Software Engineer jobs in Mossville, IL are:
What cities near Mossville, IL are hiring for Embedded Software Engineer jobs? Cities near Mossville, IL with the most Embedded Software Engineer job openings:
Infographic showing various Embedded Software Engineer job openings in Mossville, IL as of August 2026, with employment types broken down into 65% Full Time, and 35% Contract. Highlights an 94% In-person, and 6% Hybrid job distribution, with an average salary of $111,881 per year, or $53.8 per hour.

Embedded Software Engineer 4

Tech Tammina

Mossville, IL • On-site

$95K - $126K/yr

Contractor

Re-posted 4 days ago


Job description

Role: Embedded Software Engineer 4
Location: Mossville, IL (Onsite)
Duration: 6-month contract
Interview: In-person ideal, can be remote if candidate will be relocating
Position Overview:
This is a high-impact technical leadership role focused on developing and scaling production-quality autonomy software. The engineer will lead teams responsible for perception, planning, control, and platform capabilities, moving algorithmic concepts from research prototypes into robust, field-ready solutions.
Core Responsibilities:
• Architectural Leadership: Design and own major autonomy software components across perception, localization, and planning layers to ensure systems are scalable and maintainable.
• Production Integration: Translate research and AI/ML prototypes into real-time, production-grade software integrated with sensors (LiDAR, Radar, Camera) and vehicle networks.
• Mentorship: Set coding standards and best practices while guiding junior and mid-level engineers through rigorous design and code reviews.
• Field Problem Solving: Lead root-cause analysis for complex issues observed in simulation, Hardware-in-the-Loop (HIL), or actual field deployments.
Candidate Requirements:
• Experience: 8+ years of professional software development with a focus on autonomy, robotics, or real-time systems.
• Core Tech Stack: Expert-level C++ (Required) and proficiency in Python.
• Systems Knowledge: Deep understanding of Linux-based development, multithreading, memory management, and performance optimization.
• Education: Bachelor's degree in Computer Science, Robotics, or a related field (Master's preferred).
Preferred Technical Skills:
• Experience with robotics frameworks (e.g., ROS/ROS2).
• Hands-on experience with perception systems, sensor fusion, or motion planning algorithms.
• Familiarity with simulation pipelines (SIL/HIL) and functional safety concepts.
• Background in developing software for heavy industrial, automotive, or off-highway autonomous systems.
The Value Proposition:
• Production-Scale Impact: Unlike R&D-only roles, this position focuses on autonomy software that is actively moving to production on large-scale machinery.
• Technical Influence: As a senior leader, this individual will shape the long-term platform strategy and technical roadmap for autonomous systems.
Global Collaboration:
Work within a highly cross-functional, multidisciplinary environment alongside experts in AI, hardware, and systems engineering.