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Matlab Simulink Engineer Jobs in Ontario (NOW HIRING)

Senior Control Engineer Department: Inverter Firmware Compensation: $95,000 - $140,000 + annual ... Experience with MATLAB/Simulink, PSCAD or modelbased design workflows. * Experience developing ...

Senior Control Engineer

Kitchener, ON · On-site

CA$95K - CA$140K/yr

Senior Control Engineer Department: Inverter Firmware Compensation: $95,000 - $140,000 + annual ... Experience with MATLAB/Simulink, PSCAD or modelbased design workflows. * Experience developing ...

Mixed Signal Design Engineer

Ottawa, ON · On-site

CA$90K - CA$144K/yr

Reporting to the Senior Manager of Analog Engineering, your role will be: * Designing the high ... Familiarity with SystemVerilog, VerilogAMS, VerilogA, Matlab/Simulink, C/C++, Python languages

CA$175K - CA$225K/yr

We are seeking a Principal Spacecraft Guidance, Navigation & Control Engineer to serve as the ... Experience implementing flight algorithms in C++, Python, or MATLAB/Simulink, with awareness of ...

Are strong in a relevant programming/scientific computing environment (Python, MATLAB/Simulink, C++, or equivalent), and write simulation code that other engineers can actually use and trust * Have ...

Showing results 21-40

Matlab Simulink Engineer information

What is the difference between Matlab Simulink Engineer vs Control Systems Engineer?

AspectMatlab Simulink EngineerControl Systems Engineer
CredentialsBachelor's or Master's in Engineering, MATLAB/Simulink proficiencyBachelor's or Master's in Control Engineering, MATLAB/Simulink knowledge often preferred
Work EnvironmentDesigning, modeling, and simulating systems using Simulink in software developmentDeveloping and analyzing control algorithms, often using MATLAB/Simulink for simulation
Industry UsageAutomotive, aerospace, robotics, and electronics industriesManufacturing, automation, aerospace, and process control sectors

While both roles require MATLAB/Simulink skills, a Matlab Simulink Engineer primarily focuses on system modeling and simulation, whereas a Control Systems Engineer emphasizes designing and implementing control algorithms. The roles often overlap, but the former is more software simulation-oriented, and the latter is more control design-oriented.

What is a Matlab Simulink engineer?

A Matlab Simulink Engineer is a professional who specializes in using Matlab and Simulink software to design, model, simulate, and analyze dynamic systems, often in fields like automotive, aerospace, and electronics. They develop models and simulations for control systems, signal processing, and embedded systems development. Their work typically involves translating complex real-world problems into mathematical models, testing these models, and optimizing system performance before implementation. Matlab Simulink Engineers often collaborate with multidisciplinary teams to ensure that system designs meet specifications and function reliably.

What are some typical challenges a Matlab Simulink engineer faces when integrating models with embedded systems?

Matlab Simulink Engineers often encounter challenges related to compatibility and optimization when integrating simulation models with embedded systems. Ensuring that models are efficiently translated into real-time code that runs reliably on target hardware can involve debugging timing issues and managing limited computational resources. Close collaboration with hardware engineers and software developers is crucial to align requirements and resolve integration bottlenecks. Additionally, keeping up with evolving toolchains and maintaining thorough documentation are important for successful deployment and maintenance.

What are the key skills and qualifications needed to thrive as a Matlab Simulink engineer?

To thrive as a Matlab Simulink Engineer, you need strong expertise in control systems, signal processing, and engineering fundamentals, often supported by a degree in electrical, mechanical, or related engineering fields. Proficiency in MATLAB, Simulink, and related toolboxes, as well as experience with model-based design and simulation, are typically required. Excellent problem-solving, communication, and teamwork skills enable effective collaboration and clear documentation of complex models. These abilities are crucial for developing reliable, efficient systems and ensuring successful project outcomes in industries such as automotive and aerospace.
Infographic showing various Matlab Simulink Engineer job openings in Ontario as of August 2026, with employment types broken down into 82% Full Time, and 18% Contract. Highlights an 95% In-person, and 5% Hybrid job distribution.

Lead Controls Engineer

Armstrong Fluid Technology

Toronto, ON • On-site

Other

Posted 11 days ago


Job description

Imagine working at the forefront of innovation in fluid-flow technology, with over 1,400 colleagues across the globe and eight manufacturing facilities on four continents. Armstrong Fluid Technology is a community of the brightest and most creative minds, driven by a shared mission to engineer the future and safeguard our planet.

In this role, you will design and develop the complete control system at the heart of a next-generation critical infrastructure product — serving one of the fastest-growing and most demanding applications in our industry. The scope spans the full controls stack: closed-loop pressure and temperature control, state management and safety interlocks, alarm and event management, HMI, secure communications, energy-efficient operation, and product cybersecurity.


This is a standardized product development role, not a one-off project role. Our products are manufactured at scale, so control systems must behave consistently across every unit — released as version-controlled software baselines with standard configurations and formal change control. You will help mature products from concept through production, working alongside electrical, mechanical, hydraulic, and embedded software engineers.


Key Accountabilities

  • Controls
    • Design and implement closed-loop control strategies for fluid systems — such as pump/flow control and temperature control
    • Architect system control topology
    • Design the alarm, event, and parameter framework
    • Implement secure communications and integration with building/facility management systems and customer equipment, using standard industrial protocols.
    • Optimize control strategies for energy efficiency and equipment performance
  • Embedded
    • Develop control software as a standard, repeatable product
    • Provide ongoing firmware support as units are deployed in the field.
  • Security
    • Embed cybersecurity best practices into the product, including secure firmware update processes, certificate-based authentication, and alignment with recognized industry security frameworks.
  • HMI
    • Develop an intuitive HMI for commissioning, diagnostics, manual overrides, and standalone operation, with role-based access control.
  • Standardization & Release
    • Mature the design through proof-of-concept, pre-production, and production phases, incorporating lessons learned while protecting the standard architecture.
    • Define controls checkout and factory test procedures so that every production unit is verified consistently.
    • Collaborate with electrical, mechanical, hydraulic, and embedded software teams, and represent controls design in technical reviews.
    • Provide technical leadership, mentor engineers, and set controls design standards


What We’re Looking For


Education and Experience

  • Bachelor’s degree in electrical, Controls, Mechatronics, or Computer Engineering;
  • Eng designation is required.
  • Minimum 10 years of experience developing control systems for industrial or mission-critical products (thermal, hydraulic, or rotating equipment)
  • Proven experience designing and tuning closed-loop control for pumps, valves, or thermal-hydraulic systems
  • Experience implementing secure device communications and embedded product cybersecurity practices.
  • Demonstrated experience with engineering change management, BOM and drawing release, and configuration control within a formal product development lifecycle.
  • Critical infrastructure, mission-critical, or HVAC controls product experience — including chillers, heat pumps, boilers, or variable-speed pumping — is a strong asset

Technical Skills

  • Controls
    • Closed-loop control design and tuning for pressure, flow, and temperature
    • Sequences of operation for HVAC systems, including ASHRAE Guideline 36
    • Model-based control design and simulation (MATLAB/Simulink)
    • Redundant sensor handling and fault management
  • Embedded
    • Embedded controller and PLC development
    • Embedded programming in C/C++ and IEC 61131-3
    • Firmware lifecycle: version control, upgrade procedures, and compatibility matrices
  • HMI
    • HMI design and development for commissioning, diagnostics, and operation
  • Communications & Security
    • Secure device communications and integration using standard building/industrial protocols (BACnet, Modbus, MQTT)
    • Alignment with recognized cybersecurity standards, including IEC 62443
    • Event logging, telemetry, and remote diagnostics design
  • Standards & Verification
    • HVAC energy and efficiency standards, including ASHRAE 90.1
    • Product safety and regulatory compliance (UL/CSA 60730, EMC)
    • Hardware-in-the-loop (HIL) testing and control system verification

Soft Skills

  • Ability to simplify complex problems and provide clear, well-reasoned recommendations.
  • A product mindset — designing for repeatability, reliability, and scale, with the discipline to follow standard documentation and release processes.
  • An ability to communicate openly and authentically in all situations.


Why Armstrong Fluid Technology?

By joining us, you’ll become part of a global community pushing the boundaries of fluid-flow technology while upholding Armstrong’s commitment to sustainability. Together, we’ll build tomorrow’s solutions today.