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Entry Level Robotics Engineer Jobs in British Columbia

Mechanical Product Designer I

Burnaby, BC · On-site

CA$62K - CA$88K/yr

... Engineering or a directly equivalent technical degree. * Co-op, internship, or entry-level product ... robotics, or precision sensor design. * Exposure to or coursework involving opto-mechanical design ...

Entry Level Robotics Engineer information

What does an entry level robotics engineer do?

An entry level robotics engineer is responsible for assisting in the design, development, testing, and implementation of robotic systems and components. They typically work under the guidance of senior engineers, helping to build prototypes, troubleshoot hardware and software issues, and perform routine maintenance. Their tasks can also include programming robots, documenting processes, and collaborating with multidisciplinary teams to improve robotic applications. This role offers hands-on experience and opportunities to learn about cutting-edge robotics technology.

What are the key skills and qualifications needed to thrive as an entry level robotics engineer, and why are they important?

To thrive as an Entry Level Robotics Engineer, you need a solid understanding of robotics fundamentals, programming (such as Python or C++), and a degree in robotics, mechanical, electrical, or computer engineering. Familiarity with CAD software, microcontrollers (like Arduino or Raspberry Pi), and robotics simulation tools (such as ROS or Gazebo) is typically required. Strong problem-solving, teamwork, and effective communication skills help you stand out in collaborative, project-driven environments. These skills and qualities are vital to efficiently design, implement, and troubleshoot robotic systems while contributing to innovative solutions.

What types of projects and technologies do entry level robotics engineers typically work on?

Entry level robotics engineers are often assigned to support the design, assembly, and testing of robotic systems, such as robotic arms, mobile robots, or automated manufacturing lines. They may work with technologies like sensors, actuators, microcontrollers, and programming languages such as Python or C++. Collaboration is common, as they frequently partner with mechanical, electrical, and software engineers to integrate components and troubleshoot issues. This hands-on experience helps new engineers build practical skills and gain exposure to industry-standard tools and processes.

What is the difference between Entry Level Robotics Engineer vs Robotics Technician?

AspectEntry Level Robotics EngineerRobotics Technician
Required CredentialsBachelor's degree in robotics, mechanical, electrical engineering or related fieldAssociate's degree or technical certification in robotics or automation
Work EnvironmentDesign, develop, and test robotic systems; often in labs or engineering settingsMaintain, troubleshoot, and repair robotic systems; typically in manufacturing or industrial settings
Employer & Industry UsageEngineering firms, tech companies, research labsManufacturing plants, automation companies, industrial facilities

Entry Level Robotics Engineers focus on designing and developing robotic systems, requiring a bachelor's degree, while Robotics Technicians primarily handle maintenance and repairs, often with technical certifications. Both roles are essential in automation industries but differ in responsibilities and educational requirements.

Is there a high demand for entry level robotics engineers?

Entry level robotics engineers are in growing demand due to advancements in automation, manufacturing, and AI integration across industries. Employers seek candidates with skills in programming, sensors, and control systems, and job opportunities are expected to increase as robotics technology becomes more widespread.

What are popular job titles related to Entry Level Robotics Engineer jobs in British Columbia?

For Entry Level Robotics Engineer jobs in British Columbia, the most frequently searched job titles are:

What job categories do people searching Entry Level Robotics Engineer jobs in British Columbia look for?

The top searched job categories for Entry Level Robotics Engineer jobs in British Columbia are:

Infographic showing various Entry Level Robotics Engineer job openings in British Columbia as of August 2026, with employment types broken down into 2% Internship, 94% Full Time, 2% Temporary, and 2% Contract. Highlights an 98% In-person, and 2% Hybrid job distribution.

1st/2nd shift Robot Operator Trainee starting at $17.00 or more depending on experience

Anchor Fabrication Fort Worth

Fort Worth, TX • On-site

$17/hr

Full-time

Re-posted 4 days ago


Job description

Position Summary

The Robot Welder Trainee supports production by learning to safely set up, load, operate, monitor, and maintain robotic welding equipment used to fabricate heavy metal components and assemblies. This entry-level role is designed for individuals with mechanical aptitude, basic welding knowledge, and a strong willingness to learn automated welding processes in a fast-paced heavy manufacturing environment. The trainee will work under the direction of experienced operators, leads, supervisors, maintenance personnel, and engineering support to develop the skills needed to produce consistent, high-quality welds while following all safety, quality, and production standards.

Traits Displayed
  • Safety-focused mindset and willingness to follow established procedures every time.
  • Strong attention to detail, especially when checking weld quality, part fit-up, and fixture alignment.
  • Mechanical aptitude and curiosity about robotics, welding equipment, fixtures, and tooling.
  • Reliable attendance, punctuality, and readiness to work in a production environment.
  • Coachability and willingness to accept feedback from trainers, leads, supervisors, quality, maintenance, and engineering personnel.
  • Ability to stay organized, maintain a clean work area, and complete required documentation accurately.
  • Team-oriented approach with clear communication when issues, defects, alarms, or safety concerns are identified.
  • Persistence and problem-solving attitude when learning new equipment, weld processes, and production expectations.
Primary Responsibilities
  • Learn and follow all company safety rules, robotic cell safety practices, lockout/tagout requirements, machine guarding expectations, and personal protective equipment requirements.
  • Load, unload, position, and secure parts in welding fixtures according to work instructions, drawings, and trainer direction.
  • Operate robotic welding cells under supervision, including starting approved programs, monitoring the weld cycle, and responding appropriately to alarms or process interruptions.
  • Perform basic part preparation tasks such as cleaning, grinding, deburring, removing spatter, or verifying fit-up as required by the work order.
  • Observe weld quality during production and identify common weld concerns such as excessive spatter, porosity, undercut, missed welds, poor fit-up, incomplete fusion, or inconsistent bead appearance.
  • Use basic measuring and inspection tools, such as tape measures, calipers, squares, gauges, or weld gauges, to support first-piece and in-process quality checks.
  • Replace or assist with replacing common welding consumables such as contact tips, nozzles, liners, wire, anti-spatter supplies, and shielding gas components as trained.
  • Assist experienced personnel with basic troubleshooting of robot faults, wire feed issues, torch problems, fixture concerns, and quality deviations.
  • Read and interpret basic work instructions, production schedules, blueprints, weld symbols, and quality requirements with trainer support.
  • Document production activity, quality checks, downtime, defects, rework, and equipment concerns as required.
  • Maintain a clean, organized, and safe work area using good housekeeping practices.
  • Support continuous improvement efforts by communicating observed problems, repeat defects, fixture issues, or opportunities to improve safety, quality, and productivity.
  • Perform related fabrication, material handling, or production support duties as assigned and within training level.
Minimum Requirements
  • High school diploma, GED, or equivalent work experience preferred.
  • Basic welding, fabrication, manufacturing, mechanical, or machine operation experience preferred but not required; prior robotic welding experience is not required.
  • Ability and willingness to complete company-provided training for robotic welding equipment, safety procedures, quality standards, and production processes.
  • Basic ability to read work instructions, understand part numbers, follow routing information, and recognize basic blueprint features; weld symbol knowledge is preferred but not required.
  • Basic math skills, including the ability to read tape measures and understand fractions or decimals used in fabrication work.
  • Ability to use or learn basic inspection tools such as tape measures, calipers, squares, and weld gauges.
  • Ability to follow verbal and written instructions, ask questions when unsure, and communicate equipment, quality, or safety concerns promptly.
  • Willingness to work assigned shifts, overtime, weekends, or schedule changes as production needs require.
  • Must comply with all company safety policies, attendance standards, quality expectations, and workplace conduct requirements.
Environment/Physical Requirements with or Without Accommodation
  • Work is performed in a heavy manufacturing fabrication facility with exposure to welding arc flash, sparks, fumes, smoke, grinding dust, metal chips, loud noise, moving equipment, forklifts, cranes, hoists, robotic welding cells, and varying temperatures.
  • Must be able to wear required personal protective equipment, which may include safety glasses, face shield, welding hood, hearing protection, gloves, steel-toe footwear, sleeves, respirator, and other task-specific protection.
  • Must be able to stand and walk for extended periods during the shift and perform repetitive motions involving hands, wrists, arms, shoulders, and upper body.
  • Must be able to bend, stoop, kneel, crouch, reach, twist, push, pull, climb steps or platforms, and work around fixtures, tables, and equipment.
  • Must be able to lift, carry, push, or pull materials, tools, fixtures, and parts up to 50 pounds as required; heavier items must be handled with team lifting or mechanical assistance.
  • Must be able to visually inspect welds, parts, gauges, screens, indicators, and work instructions, with or without corrective lenses.
  • Must be able to hear alarms, verbal instructions, equipment sounds, and safety signals in a manufacturing environment, with or without hearing protection or accommodation.
  • Must be able to work near automated equipment and follow all safe-distance, guarding, interlock, and lockout/tagout requirements.
  • Must be able to perform essential job functions safely and effectively, with or without reasonable accommodation.