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Ansys Jobs in Ontario (NOW HIRING)

Expertise in FEA and CFD using ANSYS and FloTherm * Proficiency in CAD software such as Pro/Engineer, Creo, SolidWorks, or AutoCAD * Experience in conducting Failure Mode and Effects Analysis (FMEA)

Proficient in Cadence photonics/analog simulators (Virtuoso, Spectre, Verilog-A), Ansys HFSS, Keysight ADS. * Highly proficient in coding simulations in Python or Matlab. * Highly proficient in RF/mm ...

Mechanical Engineer

Ottawa, ON · On-site

CA$75K - CA$110K/yr

Experience with FEA tools (ANSYS, Nastran, or similar) * Familiarity with space-rated materials and thermal environments * Knowledge of mechanism design and actuator selection * Experience with ...

Proficient in Cadence photonics/analog simulators (Virtuoso, Spectre, Verilog-A), Ansys HFSS, Keysight ADS. * Highly proficient in coding simulations in Python or Matlab. * Highly proficient in RF/mm ...

Mechanical Engineer - New Grad

Ottawa, ON · On-site

CA$62K - CA$100K/yr

Thermal simulation experience, preferably with Ansys considered an asset. * Cleanroom lab experience is an asset. * Experience in the design of plastic components (injection molding) and metal ...

Expert in using Ansys HFSS or Dassault CST simulation tools * Hands-on measurement skills with TDR/VNA equipment and oscilloscopes * Excellent interpersonal and communication skills It would be nice ...

Design Engineer

Toronto, ON · On-site

CA$80K - CA$90K/yr

ANSYS or equivalent engineering analysis software. * Surface mining operations and maintenance environments. * ISO 9001 quality management systems. * Spanish language capability. * French language ...

Showing results 21-40

Ansys information

See Ontario salary details

$25

$55

$92

How much do ansys jobs pay per hour?

As of Sep 6, 2026, the average hourly pay for ansys in Ontario is $55.04, according to ZipRecruiter salary data. Most workers in this role earn between $42.07 and $66.35 per hour, depending on experience, location, and employer.

What is Ansys?

Ansys is a widely used engineering simulation software designed to analyze and solve complex engineering problems related to structural mechanics, fluid dynamics, thermal analysis, and electromagnetics. Ansys engineers use this software to model, simulate, and optimize the performance of products and systems in a virtual environment before physical prototypes are made. Their work helps companies reduce development costs, improve product reliability, and accelerate time to market. They often collaborate with design and manufacturing teams to interpret simulation results and recommend design improvements.

What types of projects do engineers typically work on when using Ansys software?

Engineers who use Ansys software are often involved in simulation-driven projects such as finite element analysis (FEA), computational fluid dynamics (CFD), and electromagnetic field simulations. These projects can range from optimizing the structural integrity of automotive components to improving thermal management in electronics or simulating fluid flow in aerospace designs. Collaboration with cross-functional teams—including design, manufacturing, and testing—is common to ensure simulation results align with real-world performance. The work often involves iterating on models, validating results, and communicating findings to stakeholders, making strong communication and analytical skills essential.

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

To thrive as an Ansys Engineer, you need a solid understanding of engineering principles, proficiency in finite element analysis (FEA), and typically a degree in mechanical, aerospace, or related engineering fields. Mastery of Ansys simulation software, relevant CAD tools, and possibly certifications like Ansys Certified Expert are commonly required. Strong analytical thinking, problem-solving abilities, and effective communication help professionals interpret simulation results and collaborate with multidisciplinary teams. These skills ensure accurate simulations, efficient design processes, and successful project outcomes in industries where precision and innovation are critical.

What is the difference between Ansys vs Mechanical Engineer?

AspectAnsysMechanical Engineer
Required CredentialsEngineering degree, certifications in simulation softwareEngineering degree, often with specialization in mechanical systems
Work EnvironmentDesign and simulation software, engineering labs, R&DManufacturing plants, design offices, R&D departments
Industry UsageProduct design, aerospace, automotive, energyProduct development, manufacturing, systems design
Common Search/ComparisonSimulation tools, engineering softwareMechanical design, engineering roles

While Ansys focuses on simulation and analysis software used by engineers, Mechanical Engineers are professionals who design, analyze, and develop mechanical systems. Ansys is a tool often used by Mechanical Engineers to perform simulations, making their roles interconnected but distinct. Understanding the differences helps in choosing the right career path or software expertise.

Does Ansys offer remote work options?

Ansys offers remote work options for certain roles, especially those in software development, engineering, and support functions. Availability of remote work depends on the specific position, team needs, and company policies, which may include flexible schedules and virtual collaboration tools.

How much does Ansys pay?

Salaries for Ansys employees vary based on role, experience, and location. Entry-level positions typically start around $60,000 annually, while experienced engineers and specialists can earn over $100,000 per year. Compensation may also include bonuses, stock options, and benefits depending on the position and company policies.

What cities in Ontario are hiring for Ansys jobs?

Cities in Ontario with the most Ansys job openings:

Infographic showing various Ansys job openings in Ontario as of August 2026, with employment types broken down into 87% Full Time, 10% Part Time, and 3% Contract. Highlights an 91% Physical, 5% Hybrid, and 4% Remote job distribution, with an average salary of $114,476 per year, or $55 per hour.

Staff Mechanical Thermal Engineer

Nokia

Kanata, ON • On-site

Full-time

Re-posted 13 days ago


Nokia rating

7.9

Company rating: 7.9 out of 10

Based on 6 frontline employees who took The Breakroom Quiz

30th of 101 rated telecommunications companies


Job description


As a Staff Thermal Design Engineer at Nokia, you will drive the development of innovative thermal solutions for optoelectronic products. You will utilize your expertise in thermal analysis, including FEA and CFD, to ensure optimal performance and reliability. Collaborating with cross-functional teams, you will lead the design and validation process, create production-ready CAD models, and engage with vendors to procure thermal components. Your contributions will play a critical role in enhancing product functionality while meeting cost and manufacturing targets, positioning you at the forefront of advancing optical technology for a connected world.

Must-Have:

  • Degree in Mechanical Engineering with 10 years of relevant experience

  • Expertise in FEA and CFD using ANSYS and FloTherm

  • Proficiency in CAD software such as Pro/Engineer, Creo, SolidWorks, or AutoCAD

  • Experience in conducting Failure Mode and Effects Analysis (FMEA)

  • Strong collaboration skills to work with cross-functional teams

Nice-To-Have:

  • Knowledge of optical products and telecom qualification specifications

  • Experience with thermal solution assembly procedures

  • Background in experimental validation of thermal solutions

  • Strong written and verbal communication skills

  • Familiarity with procurement processes for thermal components

  • Design and implement advanced thermal cooling solutions for optoelectronic products using various heat transfer methods.

  • Conduct thermal, thermo-mechanical, and mechanical FEA analyses to validate designs.

  • Lead experimental validation of thermal solutions to ensure performance specifications are met.

  • Collaborate with cross-functional teams to optimize product designs and develop assembly procedures.

  • Perform Failure Mode and Effects Analysis (FMEA) on thermal designs to mitigate risks.

  • Create detailed production-ready CAD models and drawings for manufacturing.

  • Work closely with vendors to manage thermal component specifications and procurement.

  • Engage with manufacturing and operations teams to meet cost, yield, and cycle time targets.


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