5 Years On Campus Bachelors Program
The Bachelor of Engineering (Honours) (Robotics and Mechatronics Engineering) / Commerce at the University of New South Wales (UNSW) is a comprehensive 5.7-year dual degree that combines advanced engineering expertise with strong business and commercial knowledge. Designed for students who are passionate about innovation, automation, and technology-driven business solutions, this program prepares graduates to lead multidisciplinary teams, develop cutting-edge technologies, and drive strategic decision-making in global industries.
Curriculum Structure:
Year 1 – Foundations in Engineering and Commerce
Students build a strong foundation in mathematics, physics, engineering design, and business principles. Courses such as Engineering Mechanics, Introduction to Business, Mathematics for Engineering, and introductory commerce subjects develop analytical thinking, problem-solving skills, and commercial awareness.
Year 2 – Core Engineering Systems and Business Fundamentals
The curriculum progresses into key engineering subjects including Control Systems, Digital Systems, Programming Fundamentals, and Electronics. Alongside these studies, students undertake commerce courses such as Financial Accounting, Marketing, and business analytics, developing an understanding of organizational and financial decision-making.
Year 3 – Robotics, Mechatronics, and Business Applications
Students explore specialized engineering areas including Robotics, Mechatronics Design, Sensors and Actuators, and Embedded Systems. Commerce studies continue with subjects such as Organisational Behaviour, Business Law, and management principles, helping students understand how technology operates within commercial environments.
Year 4 – Advanced Engineering and Strategic Business Skills
Students undertake advanced topics such as Automation Systems, Artificial Intelligence Applications, Machine Design, and Control Engineering. Commerce courses focus on leadership, innovation, entrepreneurship, finance, and strategic decision-making, preparing students for management and leadership roles.
Year 5 – Industry-Focused Learning and Professional Development
The focus shifts to advanced engineering applications, emerging technologies, and specialized commerce electives. Students work on multidisciplinary projects that integrate technical expertise with business strategy while strengthening professional communication, project management, and leadership capabilities.
Final Semester (0.7 Year) – Capstone Project and Commerce Specialisation
The program culminates in a major engineering capstone project where students apply their robotics and mechatronics knowledge to solve real-world challenges. Advanced commerce electives such as Strategic Management, innovation, and entrepreneurship subjects enable students to connect technical solutions with business outcomes and market opportunities.
Focus Areas:
Learning Outcomes:
Graduates will develop:
Professional Alignment (Accreditation):
The Engineering (Honours) component is accredited by Engineers Australia, ensuring graduates meet internationally recognized professional engineering standards and are prepared for engineering practice both in Australia and globally.
Reputation (Employability Rankings):
UNSW is internationally recognized for excellence in engineering, business, and technology education. Consistently ranked among the world's leading universities for graduate employability, engineering, and commerce, UNSW equips graduates with a highly valuable blend of technical and commercial expertise that is increasingly sought after by employers across technology, consulting, manufacturing, finance, and innovation-driven industries.
At the University of New South Wales (UNSW), students pursuing the Bachelor of Engineering (Honours) in Robotics and Mechatronics Engineering combined with Commerce are immersed in a dynamic learning environment that emphasizes practical skills and real-world applications. The program is designed to bridge the gap between theoretical knowledge and hands-on experience, ensuring that graduates are well-prepared for the challenges of the industry. With access to state-of-the-art facilities and cutting-edge technology, students can engage in experiential learning that enhances their understanding and capabilities.
Here are some key aspects of the experiential learning opportunities available in this program:
- Robotics and Mechatronics Laboratories: Students have access to specialized labs equipped with advanced robotics systems, mechatronic devices, and prototyping tools, allowing for hands-on experimentation and innovation.
- Industry Partnerships: The program collaborates with leading companies in the robotics and engineering sectors, providing students with opportunities for internships and industry projects that enhance their practical experience.
- Group Projects: Collaborative projects are a core component of the curriculum, where students work in teams to design, build, and test robotic systems, fostering teamwork and problem-solving skills.
- Software Tools: Students gain proficiency in industry-standard software such as MATLAB, SolidWorks, and LabVIEW, which are essential for modeling, simulation, and control of robotic systems.
- Field Trips: The program includes field trips to local industries and research institutes, giving students insights into real-world applications of their studies and networking opportunities with professionals.
- Research Institutes: Students can engage with research initiatives at UNSW, such as the UNSW Robotics Research Group, where they can participate in cutting-edge research projects.
- Digital Learning Tools: The use of online platforms and digital resources enhances learning, providing students with access to a wealth of information and collaborative tools.
- Library Resources: UNSW’s extensive library system offers a vast collection of engineering and commerce resources, including journals, books, and databases that support research and study.
These experiential learning opportunities not only enrich the academic experience but also equip students with the skills and knowledge needed to excel in their future careers. If you're ready to take the next step in your education and career, consider applying to UNSW's Bachelor of Engineering (Honours) in Robotics and Mechatronics Engineering / Commerce program.
Graduates of the Bachelor of Engineering (Honours) (Robotics and Mechatronics Engineering) / Commerce from UNSW are uniquely equipped with both advanced technical expertise and strong business acumen, enabling them to lead innovation in technology-driven industries. This dual degree prepares graduates to not only design and develop intelligent systems but also understand the commercial, financial, and strategic considerations that drive successful businesses. As robotics, automation, artificial intelligence, and digital transformation continue to reshape industries globally, graduates are well positioned to take on influential technical, managerial, and entrepreneurial roles.
Typical career pathways include: Robotics Engineer, Mechatronics Engineer, Automation Engineer, Systems Engineer, Product Manager, Technology Consultant, Innovation Manager, Business Analyst, Operations Manager, Project Manager, and Technology Entrepreneur.
This strong career outlook is supported by UNSW's global reputation, industry engagement, and graduate employability outcomes:
Further Academic Progression:
After completing this dual degree, graduates may pursue advanced postgraduate studies through programs such as a Master of Engineering, Master of Artificial Intelligence, Master of Data Science, Master of Robotics and Intelligent Systems, Master of Project Management, Master of Finance, Master of Commerce, or Master of Business Administration (MBA). Students interested in research and innovation can continue into a Master of Philosophy (MPhil) or Doctor of Philosophy (PhD) in robotics, mechatronics, automation, artificial intelligence, advanced manufacturing, technology management, or related disciplines. These pathways can lead to careers in academia, research leadership, advanced product development, technology commercialization, innovation management, consulting, and executive leadership.



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