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Embedded System Developer Jobs in Ontario (NOW HIRING)

Embedded Systems Engineer

Hamilton, ON · On-site

$90K - $120K/yr

Software Designer/Engineer - Embedded Systems Status: Full-time Location : Hamilton, ON CANADA Who ... System performance optimization and analysis, bode plot generation and analysis * Deep ...

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Embedded System Developer information

What do embedded systems developers do?

Embedded systems developers design, develop, and test software for specialized hardware devices such as medical equipment, automotive systems, and consumer electronics. They work with programming languages like C and C++, and often use tools like microcontrollers, real-time operating systems, and debugging hardware. Their work involves optimizing code for performance, power consumption, and reliability within embedded environments.

What are embedded system developers?

Embedded system developers are engineers who design, program, and maintain specialized computing systems that are part of larger devices, such as cars, medical equipment, home appliances, and industrial machines. These professionals work with both hardware and software to ensure that the embedded systems are efficient, reliable, and meet specific requirements. Their work often involves programming microcontrollers, integrating sensors and actuators, and optimizing resource-constrained environments. Embedded system developers play a crucial role in creating the technology behind many everyday products.

What engineers make $500,000?

Highly experienced engineers in specialized fields such as software engineering, data science, or executive roles in technology companies can earn $500,000 or more annually. These positions often require advanced skills, certifications, and leadership responsibilities, typically found in senior or executive-level roles within large organizations.

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

To thrive as an Embedded System Developer, you need a solid background in computer science or electrical engineering, with expertise in C/C++ programming, microcontrollers, and real-time operating systems. Familiarity with hardware debugging tools, integrated development environments (IDEs), and version control systems like Git is typically required. Strong problem-solving skills, attention to detail, and effective communication help developers innovate and collaborate in cross-functional teams. These competencies are critical for designing reliable, efficient embedded solutions that power modern devices across industries.

What are some common challenges faced by Embedded System Developers when working on cross-functional teams?

Embedded System Developers often collaborate with hardware engineers, software developers, and product managers. A common challenge is ensuring seamless integration between hardware and software components, as timing and resource constraints can lead to unexpected issues. Clear communication and thorough documentation are crucial for aligning specifications and troubleshooting problems that span both domains. Developers also need to stay adaptable, as project requirements may evolve rapidly based on feedback from other teams or testing results.

Is Python or C++ better for embedded systems?

Embedded system developers typically prefer C++ for its efficiency, low-level hardware access, and real-time performance, which are critical in resource-constrained environments. Python is used in embedded systems for rapid development and prototyping, especially with microcontrollers like Raspberry Pi, but it generally offers less performance and higher resource usage than C++. The choice depends on project requirements, hardware constraints, and developer expertise.

Will AI replace embedded programmers?

Embedded system developers design and implement software for hardware devices, and while AI can automate certain coding tasks and optimize processes, it is unlikely to fully replace skilled programmers due to the need for specialized knowledge of hardware, real-time constraints, and system integration. AI tools can assist in development but require human oversight and expertise to ensure safety and functionality.

What is the difference between Embedded System Developer vs Firmware Engineer?

AspectEmbedded System DeveloperFirmware Engineer
Required CredentialsBachelor's in Electrical, Computer Engineering, or related fields; certifications like ARM or IoT certifications are commonBachelor's in Electrical Engineering, Computer Science, or related; similar certifications often preferred
Work EnvironmentDesigning and developing embedded hardware-software systems, often in manufacturing or IoT industriesWriting low-level firmware for microcontrollers and embedded devices, typically in consumer electronics or automotive sectors
Employer & Industry UsageTech companies, automotive, industrial automation, IoT firmsConsumer electronics, automotive, medical devices, and embedded hardware manufacturers

Both roles involve working with embedded hardware and software, often requiring similar educational backgrounds and certifications. However, Embedded System Developers focus on designing entire embedded systems, while Firmware Engineers specialize in writing low-level code that runs directly on microcontrollers. The roles are complementary and often overlap in industry applications.

What job categories do people searching Embedded System Developer jobs in Ontario look for? The top searched job categories for Embedded System Developer jobs in Ontario are:
What cities in Ontario are hiring for Embedded System Developer jobs? Cities in Ontario with the most Embedded System Developer job openings:

Curriculum Developer, Electronics and Embedded Systems Development

Algonquin College

Ottawa, ON

CA$25 - CA$100/hr

Part-time

Medical, Dental, Retirement

Posted 13 days ago


Job description

Please Note: If you are a current Algonquin College employee, apply to this job via the Workday application.

Department:

Mechanical & Transportation Technology

Position Type:

Part-Time

Salary Range:

$25.00-$100.00-Hourly

Scheduled Weekly Hours:

8

Anticipated Start Date:

January 12, 2026

Length of Contract:

Posting Information

Posting Closing Date:

Please note: jobs are posted until 11:59 pm on the job closing date.

Land Acknowledgment:

Algonquin College campuses in Ottawa, Perth and Pembroke are located on the traditional unceded, and unsurrendered territory of the Anishinabe Algonquin People. The Algonquin People have inhabited and cared for these lands since time immemorial. We take this time to express our gratitude and respect to them and to the land for all that it has provided and will continue to provide.

Job Description:

We'reexcited to announce that we are currently recruiting Course Developers to build our Electronics and Embedded Systems Development (EESD) Graduate Certificate program curriculum. The EESD program will sit within our Mechanical and Transportation Technology (MTT) department. By supporting the course development now,you willbe considered for teaching opportunities in the Fall and Winter 2026-2027 semesters, as well as be added to our talent pool for future roles that match yourexpertiseand qualifications.

Under the direction of the MTT Academic Chair, Part-Time EESD Course Developers are responsible to liaise with Algonquin College's (AC) Learning and Teaching Services (LTS) to develop course theory, course lab exercises, and course evaluations to support student learning and success in this domain.

Course Titles and Descriptions:

1. Introduction to Embedded Systems Development

Embedded systems are computer systems that are a component of larger mechanical, electrical and digital systems. They are dedicated to and optimized to be very reliable for specific tasks. They play an ever-increasing role in today's connected society and can be found in everything from home appliances to industrial automation. Students examine the fundamentals of embedded systems, including system architecture, CPUs, memory management, interfacing with sensors and peripherals, and systems programming using assembly language and the C/C++ program language. Using a variety of learning experiences, including hands-on projects and case study analysis, students develop basic skills in system development and prototyping.

2. Embedded Systems Architecture

Embedded systems architecture is the key to producing an embedded system that meets the application's specific requirements, such as performance, power consumption, and cost, while also considering factors such as real-time constraints, reliability, and scalability. Real-world popular embedded systems are studied to reveal successful system architecture designs. A combination of case studies and assignments allows students to gain experience with systems architecture concepts.

3. Embedded Systems Networking

Embedded systems require connectivity to integrate with other devices and systems. Students develop practical skills by setting up and troubleshooting networks in a lab environment. Topics include network topology, network architecture, physical network implementation, and standard networking protocols used in embedded systems.

4. Firmware development

With the limited resources of embedded systems, firmware development focuses on efficient and sustainable use and management of those resources. Firmware provides low-level control, monitoring and data manipulation functions in an embedded system. Students implement practical and energy efficient system design patterns. Through lab-based activities, students gain experience with programming, debugging, memory management, hardware interfacing, and coding standards.

5. FPGA-HDL Programming

To implement embedded systems, low-level Hardware Description Language (HDL) is necessary as part of the hardware design. With a focus on hands-on learning, students gain practical experience designing, testing, and debugging Field Programmable Gate Array (FPGA)-based systems. Students examine critical concepts such as HDL design and FPGA architecture while also developing experience with simulation, synthesis, and verification using industry-standard tools.

6. Applied Project 1

Successful embedded systems development requires intentional planning to meet stakeholder requirements and minimize project risk and cost overruns.

Applying theory to practice, students design a systems architecture based on requirements gathered from clients and end-users.Students implement a minimum viable design based on the systems architecture. They also develop their project management, collaboration, and presentation skills to develop real-world embedded systems solutions.

Required Qualifications:

  • Minimum Master's degree in a relevant engineering field (e.g. Embedded Systems, Electrical Engineering, Mechantronics or Robotics, Systems Engineering, etc.);

  • Demonstrated knowledge of electronic and embedded systems, firmware development, field-programmable gate arrays (FPGA), hardware description language (HDL);

  • Minimum five (5)yearsdirect work experience with electronics and embedded systems, firmware development, FPGA, HDL;

  • Minimum two (2) years of course development, curriculum development, teaching experience, or equivalent, preferably in a college/universitysetting;

  • Evidence of commitment to the success of alllearners;

  • Demonstrated knowledge of student success strategies in a postsecondarysetting;

  • Demonstrated knowledge and experience in the use of educational technologies; experience in the development and delivery of hybrid and online curriculum is considered anasset;

  • Highly effective communication, presentation, and organizational skills.

Other Details

  • Scheduled weekly hours will be 8 hours per week.

  • Successful candidates will be expected to utilize college resources to develop course content.

  • Please indicate which of the six (6) course(s) listed above you are applying to develop material for.

Why Join Algonquin College?

  • Compensation:Many roles offer a competitive base salary and comprehensive benefits, including health, dental, and retirement plans designed to support your well-being. Eligibility for benefits vary by position. Benefits | Careers

  • Learning and Development Opportunities: Access to training, tuition assistance programs (Algonquin College Courses and Degree Completion), certifications, workshops, and professional courses that allow you to grow and advance in your career. About Us | Employee Learning and Development. Availability depends on role and employment status.

  • Company Culture: Our values of caring, learning, integrity, and respect define how we interact with one another. We foster a supportive and collaborative environment. Algonquin College has been recognized by Forbes as one of Canada's Best Employers for 2025 and one of Canada's Best Employers for Diversity for 2024

  • Inclusion, Diversity, Equity, and Accessibility (IDEA): We are proud to be the first Ontario college to implement an Equity, Diversity, and Inclusion policy, fostering an inclusive workplace where all employees feel respected and valued. Affinity Group Conversation Communities | Inclusion & Diversity & Truth and Reconciliation

  • Flexible Work Arrangement Policy. Select positions are eligible for hybrid work in accordance with the College's Flexible Work Arrangement Policy https://www.algonquincollege.com/policies/hr26/ (subject to change).

How We Use AI in Hiring:

Algonquin College uses artificial intelligence technology to assist in screening and assessing applicants and their applications, while ensuring that all processes respect and uphold the provisions of applicable collective agreements above all else.

Accessibility:

Algonquin College values diversity and is an equal opportunity employer. We are committed to fostering an inclusive, equitable, and culturally respectful workplace. We offer an inclusive work environment and encourage applications from candidates of all backgrounds, including Indigenous peoples, persons with disabilities, members of racialized groups, and individuals from diverse communities. If you require accommodation during the recruitment process, please contact the Human Resources department at humanresources@algonquincollege.com. While we thank all those who apply, only those to be interviewed will be contacted.