Bachelor of Engineering (Honours) Diploma in Industry Practice (Mechatronic)

5 Years On Campus Bachelors Program

University of Technology Sydney

Program Overview

 

Program Overview:
This five‑year, full‑time program blends advanced engineering studies with two major industry internships, giving you the skills to design and manage autonomous mechanical‑electrical systems—think robots, smart machines, and intelligent devices. It’s ideal for students who love solving problems across mechanics, electronics, and computing, and who want to lead engineering projects in a hands-on, forward-thinking environment.

University of Technology Sydney


Curriculum Structure:

Year 1:
In your first year, you’ll build a solid foundation in engineering. You’ll study units such as Physical Modelling, Mathematics 1 & 2, and Introduction to Engineering Projects. Here, you’ll develop core skills in mechanics, mathematics, and modelling, while starting to work on collaborative projects and learning how to communicate your ideas as an engineer—skills that will set you up for more specialized study later on.

Year 2:
Year two deepens your technical knowledge. You’ll explore subjects like Machines and Mechanisms A, Sensors and Control for Mechatronic Systems, and Industrial Robotics. Through hands-on design studios, you’ll gain experience in automation and mechatronic systems, preparing you to tackle real-world engineering challenges.

Year 3:
This is usually the year of your first major industry placement as part of the Diploma in Industry Practice. Alongside professional experience, you’ll study units such as Embedded Mechatronic Systems, Dynamic Systems and Control A, and Programming for Mechatronic Systems. You’ll begin applying your knowledge of electronics, computing, and control theory in real projects, bridging theory with practice.

Years 4–5:
In your final years, you’ll complete a second long industry internship and take on capstone engineering projects. You might study subjects like Robotics Studio 2, Engineering Capstone, Additive Manufacturing 1, and Artificial Intelligence in Robotics. This stage focuses on bringing together your mechanical, electronic, and software engineering skills, delivering real-world projects, and stepping confidently into professional engineering practice.


Focus Areas:
Mechatronic systems, robotics and automation, embedded electronics and control, intelligent machine design, software and hardware integration, and professional engineering practice.


Learning Outcomes:
Graduates of this program will be able to:

  • Design, build, and test smart mechanical‑electronic systems.

  • Integrate sensors, actuators, software, and hardware in mechatronic devices.

  • Solve complex engineering problems in industry settings.

  • Communicate and collaborate effectively as professional engineers.

  • Apply their skills in substantial industry placements, demonstrating practical competence.


Professional Alignment (Accreditation):
The program is fully accredited by Engineers Australia and recognised internationally under the Washington Accord.

Reputation (Employability Rankings):
Engineering at UTS was rated “above world standard” in the 2018 ERA evaluation, reflecting strong graduate outcomes and international recognition.

Experiential Learning (Research, Projects, Internships etc.)

If you’re aiming to build a career designing and developing smart machines, robots, and automation systems, the Bachelor of Engineering (Honours) + Diploma in Industry Practice (Mechatronic) at University of Technology Sydney (UTS) is an excellent choice. Here’s how experiential learning works in this program — you’ll gain hands-on, real-world skills using modern tools and technologies, ensuring you’re industry-ready from day one.

Experiential Learning

At UTS, the Mechatronic Engineering program puts practical experience at its core. You won’t just study theory — you’ll dive into projects, internships, and labs that reflect what engineers actually do in the workplace. UTS offers world-class facilities, including the ProtoSpace fabrication lab and purpose-built mechanical and mechatronic engineering labs, where you can access advanced 3D printing, prototyping, robotics, and digital manufacturing technologies.

You’ll also benefit from teaching that’s closely connected to industry, plus two full internship blocks (totalling around 48 weeks) built into the course. This means when you graduate, you won’t just have knowledge — you’ll have hands-on experience working in real engineering environments.

Here’s how the program is structured and what you’ll get to experience:

  • Industry Internships: Two 24-week internships built into the program give you the chance to work in real workplaces, applying your skills in authentic engineering settings.

  • Advanced Labs: Access the ProtoSpace lab for cutting-edge manufacturing, 3D printing, laser cutting, and rapid prototyping of your mechatronic designs.

  • Dedicated Engineering Facilities: Work in mechanical and mechatronic laboratories designed for robotics, smart machines, and automated control experiments.

  • Team-Based Projects: Engage in group engineering projects such as “Introduction to Engineering Projects,” “Collaboration in Complex Projects,” and “Engineering Project Appraisal,” giving you experience solving real-world engineering challenges in teams.

  • Industry-Standard Tools: Use professional software and digital tools for design, simulation, control systems, and mechatronic modelling, allowing you to analyse dynamics, control movement, and integrate electronics and software.

  • Central Campus & Resources: Study at the UTS City Campus, with access to the extensive UTS Library, study spaces, and digital infrastructure to support your projects and research.

  • Strong Industry Engagement: The program emphasizes industry-connected teaching, preparing you not only for technical practice but also for professional leadership roles.

Progression & Future Opportunities

If you choose to enrol in the Bachelor of Engineering (Honours) + Diploma in Industry Practice – Mechatronic at the University of Technology Sydney (UTS), you’ll be stepping into a program that sets you up for strong career opportunities. Graduates leave ready to take on roles such as Mechatronic Engineer, Robotics Systems Designer, Automation Engineer, or Manufacturing Systems Engineer — all of which are highly sought-after both in Australia and internationally. Below is a closer look at how the program supports your professional journey and the opportunities available for further study.


Future progression & opportunities

University services to help you get employed:
UTS is well known for its strong connections with industry through the Faculty of Engineering and Information Technology. Students gain hands-on experience with two workplace internships embedded in the program — adding up to at least 48 weeks of real-world work experience. Beyond this, UTS offers career counselling, professional networking events, and industry-partner projects, helping you build connections and polish the skills employers are looking for.


Employment stats and salary figures:
In 2023, 77.5% of UTS undergraduates reported being in full-time employment shortly after graduating, with a median full-time salary of AU $70,000. For engineering graduates specifically, labour market data suggests median earnings for engineering managers can reach around AU $187,700 per year, highlighting the strong earning potential in the field.


University–industry partnerships:
UTS engineering degrees are closely tied to industry, with over 1,000 partner companies and numerous industry-driven projects. The embedded internships and workplace placements help you build professional relationships and experience that can directly influence your career trajectory.


Long-term accreditation value:
This degree is fully accredited by Engineers Australia at the Professional Engineer level and is recognised internationally through the Washington Accord. This means your qualification is valued globally, giving you flexibility and mobility throughout your career.


Graduation outcomes:
As a graduate, you’ll be able to design, build, and manage automated or mechatronic systems — from robots and smart machines to controllers. UTS ensures graduates leave the program well-prepared to meet the challenges and opportunities of the future, with a strong foundation of practical, hands-on experience.


Further Academic Progression

Once you complete this degree, several pathways are open to you. You could pursue a specialised honours research stream, or advance to a Master’s degree in Engineering (for example, focusing on robotics or automation). Alternatively, combining your engineering background with a business-oriented postgraduate qualification (such as Engineering Management or Technology Commercialisation) can expand your leadership skills and entrepreneurial potential.

Program Key Stats

$52,410
$9,314

Febr Intake : 30th NovJuly Intake : 30th Apr


No
Yes

Eligibility Criteria

2.6
30
70

N/A
N/A
6.5
79
79.75

Additional Information & Requirements

Career Options

  • Design Engineer
  • Manufacturing Engineer
  • Automotive Engineer
  • Aerospace Engineer
  • Maintenance Engineer
  • Project Engineer
  • Quality Control Engineer
  • HVAC Engineer
  • Robotics Engineer
  • Mechatronics Engineer
  • Product Development Engineer
  • Energy Systems Engineer
  • Marine Engineer
  • Research and Development Engineer
  • Production Manager

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