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Assistant Design Engineer Jobs in Edmonton, AB (NOW HIRING)

Senior Design Technician, Bridges

Edmonton, AB ยท On-site

CA$89K - CA$118K/yr

Collaborate with project managers and design engineers to coordinate multidisciplinary efforts * Assist in producing technical documentation that informs key project decisions * Possibility to ...

Collaborate with project managers and design engineers to coordinate multidisciplinary efforts * Assist in producing technical documentation that informs key project decisions * Possibility to ...

To contribute and assist, as required by the Projects Engineering Lead, Discipline Lead, or ... Provide guidance and mentorship to the design team through project execution and QAQC reviews.

To contribute and assist, as required by the Projects Engineering Lead, Discipline Lead, or ... Provide guidance and mentorship to the design team through project execution and QAQC reviews.

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Assistant Design Engineer information

What does an assistant design engineer do?

An Assistant Design Engineer supports senior engineers in creating and developing designs for products, structures, or systems. Their tasks often include preparing technical drawings, conducting research, creating prototypes, and assisting with testing and analysis. They use computer-aided design (CAD) software to create models and work closely with other team members to ensure designs meet project requirements and safety standards. This role is typically an entry-level position that provides valuable experience in engineering design and project management.

What are the key skills and qualifications needed to thrive as an assistant design engineer, and why are they important?

To thrive as an Assistant Design Engineer, you need a solid understanding of engineering principles, CAD software proficiency, and a relevant engineering degree. Familiarity with design tools like AutoCAD, SolidWorks, or CATIA and knowledge of industry standards or certifications such as EIT (Engineer-in-Training) are typically required. Attention to detail, problem-solving abilities, and strong teamwork and communication skills make candidates stand out in this role. These competencies are essential to ensure precise, innovative design solutions and effective collaboration within multidisciplinary engineering teams.

What is the difference between Assistant Design Engineer vs Design Engineer?

AspectAssistant Design EngineerDesign Engineer
QualificationsBachelor's degree in engineering or related field; some certificationsBachelor's or higher in engineering; often more experience
Work EnvironmentSupport role in design teams, assisting senior engineersLead or primary role in designing projects, overseeing technical details
ResponsibilitiesAssist in creating designs, preparing drawings, and conducting researchDevelop and finalize designs, review technical specifications, and coordinate with manufacturing

The main difference between an Assistant Design Engineer and a Design Engineer lies in responsibility level and experience. Assistant Design Engineers support the design process and gain experience, while Design Engineers take on more complex tasks and lead design projects. Both roles require similar educational backgrounds, but Design Engineers typically have more hands-on experience and responsibility.

What are some common challenges assistant design engineers face when transitioning from academic projects to professional engineering environments?

Assistant Design Engineers often find that transitioning from academic projects to real-world engineering roles involves adapting to tighter deadlines, larger teams, and stricter compliance with industry standards. Unlike classroom assignments, professional projects require precise documentation, coordination with other departments such as manufacturing and quality assurance, and adherence to budget constraints. Embracing collaborative tools and clear communication is essential, as is being open to feedback from senior engineers to grow technically and professionally.
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Design Engineer (Electrical Focus)

MSCP Heat Management Solutions

Sherwood Park, AB โ€ข On-site

CA$100K - CA$115K/yr

Full-time

Re-posted 20 days ago


Job description

Design Engineer (Electrical Focus)

Location: Sherwood Park, AB (with travel to project sites as required)

About MSCP

MSCP Heat Management Solutions is a rapidly evolving organization built as a system of interdependent processes and not as a traditional hierarchy. Estimating, engineering, procurement, manufacturing, and field execution operate as connected entity, each contributing to the overall flow of work.

Our focus is not on maximizing efficiency, we focus on managing our chosen constraints and improving total system throughput. This requires a shared conceptual foundation grounded in systems thinking, Theory of Constraints, and practical application in industrial environments.

Engineering at MSCP does not exist as a standalone function. It exists to enable flow—to ensure that what is designed can be estimated, built, installed, and maintained without friction.

Our work spans different industrial sectors, including oil & gas, where electrical reliability, constructability, and repeatability are critical. Strong theoretical understanding is valued as it leads to clear, executable, and scalable solutions.

Role Overview

The Design/Structural Engineer is a new position that plays a central role in strengthening MSCP’s electrical design capability as we expand into more complex product and system offerings that require standardization and a high level of repeatability.

This role is responsible for developing engineered solutions related to structural/electrical assemblies, heat management systems, insulation systems, and supporting infrastructure, while ensuring alignment with electrical heat trace (EHT) and control systems, where required.

The Design Engineer is expected to operate across the system, bridging engineering, manufacturing, and field execution, ensuring that designs are not only technically sound, but flow efficiently from concept to installation.

Success in this role is measured by:

  • Reduction in rework and design-related delays

  • Increased repeatability and standardization

  • Improved integration between mechanical, electrical, and field execution

  • Contribution to the development of scalable electrical capabilities within MSCP

Key Responsibilities

Electrical & Automation Design and Engineering

  • Develop detailed electrical designs, assemblies, and engineered solutions for heat management and insulation systems

  • Design of complex electrical structures and supports that are robust, installable, and suited to industrial environments

  • Produce fabrication-ready drawings, models, and specifications with a focus on clarity and usability

  • Ensure all designs are grounded in real-world constructability, access, and installation constraints

  • Drive standardization of electrical components and assemblies to support repeatable execution

  • Ensure electrical designs integrate effectively with electrical heat trace (EHT), controls, and automation systems

  • Work with internal teams and vendors to align on power, control, and instrumentation requirements

  • Maintain alignment between electrical design intent and system-level functionality

System-Centered Engineering

  • Design with full awareness of downstream impacts across estimating, procurement, manufacturing, and field execution

  • Identify and address constraints in design that may limit flow, constructability, or scalability

  • Collaborate company wide to ensure designs contribute to overall system performance rather than local optimization

  • Translate field and manufacturing feedback into improved design approaches

Manufacturing & Product Development

  • Develop and maintain Bills of Materials (BOMs) with a focus on electrical components and assemblies

  • Support the transition from custom design work to repeatable, production-ready solutions

  • Contribute to manufacturing setup, including tooling considerations and production flow

  • Assist in building MSCP’s internal capability to produce standardized electrical systems

Field Integration & Support

  • Engage with field teams to validate designs and ensure alignment with installation realities

  • Participate in site visits to observe system performance and gather feedback

  • Troubleshoot electrical and system-level issues and adjust designs accordingly

  • Ensure designs reduce ambiguity and enable efficient field execution

Continuous Improvement & Capability Building

  • Contribute to the development of engineering standards, templates, and best practices

  • Identify opportunities to simplify designs and reduce unnecessary complexity

  • Support the ongoing evolution of MSCP’s engineering function within our chosen system management approach (Deming and Theory of Constraints)

  • Play a role in building long-term electrical design capability within the organization

Qualifications & Experience
  • Advanced Engineering degree in Electrical

  • 5+ years of experience in electrical design within industrial, construction, or manufacturing environments

  • Demonstrated experience designing electrical systems, structures, or assemblies in real-world applications

  • Exposure to electrical systems such as heat trace (EHT), controls, or automation is considered an asset

  • Proficiency with CAD software (SolidWorks, AutoCAD, or similar)

  • Experience developing fabrication drawings, electrical assemblies, and Bills of Materials

  • Strong understanding of materials, thermal systems, insulation systems, or industrial environments

What Sets You Apart
  • You think in terms of systems, not silos

  • You are comfortable working across disciplines and adjusting based on feedback

  • You naturally consider how your work impacts others downstream

  • You are motivated to build something—not just complete tasks

Work Environment
  • Combination of office-based, manufacturing, and field exposure

  • Direct collaboration with manufacturing and field execution teams

  • Occasional travel to project sites

Why Join MSCP
  • Be part of building a electrical design capability from the ground up

  • Work within a system focused on flow, not hierarchy

  • Influence how engineering integrates with operations, manufacturing, and execution

  • Contribute to practical, scalable solutions in complex industrial environments