BEng (Hons) Robotic and Mechatronic Engineering (with an industrial placement year)

Falmer

 

INTAKE: September

Program Overview

The BEng (Hons) Robotic and Mechatronic Engineering (with an industrial placement year) at the University of Sussex offers a comprehensive and innovative program designed to equip students with the skills and knowledge necessary for a successful career in the rapidly growing fields of robotics and mechatronics. This program blends engineering fundamentals with cutting-edge technologies, providing students with a unique opportunity to explore the integration of mechanical, electrical, and computer engineering systems in real-world applications. Students will gain hands-on experience through practical projects, including an industrial placement year, which is a core feature of the course, allowing them to apply theoretical knowledge in a professional setting.

Curriculum: The curriculum for the BEng Robotic and Mechatronic Engineering program is designed to cover essential topics in engineering, such as mathematics, physics, programming, control systems, and mechanics. The first year focuses on developing a strong foundation in general engineering principles, while later years allow students to specialize in robotics, automation, and mechatronic systems. Key modules include robotics design, sensors and actuators, control systems, and embedded systems. In the final year, students work on advanced projects that demonstrate their technical skills and ability to tackle real-world challenges.

Research Focus: The University of Sussex is at the forefront of research in robotics and mechatronics, with a strong emphasis on the development of innovative technologies. Research at Sussex focuses on areas such as autonomous systems, machine learning applications in robotics, industrial automation, and smart manufacturing. The university has state-of-the-art facilities and a close relationship with leading research centers, providing students with the opportunity to collaborate on cutting-edge projects and stay at the forefront of technological advancements.

Industry Engagement: The program’s industrial placement year is a critical component, offering students a unique opportunity to gain practical, industry-specific experience. The university has established partnerships with leading companies in robotics, automation, and engineering, ensuring that students can benefit from internships and placements with top-tier organizations. This exposure to the industry not only enhances learning but also improves employability, as students develop vital professional skills and networks.

Global Perspective: The BEng Robotic and Mechatronic Engineering program at Sussex prepares students for the global job market by offering a diverse and inclusive learning environment. The course emphasizes the international dimensions of engineering, encouraging students to think critically about global challenges and opportunities in robotics and automation. With a strong focus on collaborative learning and cross-cultural engagement, Sussex students are well-equipped to work in multinational teams and tackle complex problems on a global scale.

Pollster Education

Location

Falmer

Pollster Education

Score

IELTS 6

Pollster Education

Tuition Fee

£ 23175

Undergraduate Entry Requirements

Academic Qualifications: Applicants should have successfully completed their secondary education with a minimum overall score of 80% or equivalent in their respective country's grading system.

English language proficiency:

  • IELTS: A minimum overall score of 6.0 or 6.5 with no individual component below 5.5.
  • TOEFL: A minimum overall score of 80.
  • PTE Academic: A minimum overall score of 59.
  • Some programs may have specific subject prerequisites or additional requirements.

The University of Sussex offers a range of scholarships and financial support for international students to help make studying in the UK more accessible. These scholarships recognize academic excellence, support for underrepresented groups, and the ambition to help students thrive in their studies.

Sussex International Scholarships: The University offers a range of scholarships specifically for international students, including the Sussex Excellence Scholarships.These awards typically cover a portion of the tuition fees and are available for students pursuing undergraduate or postgraduate degrees.

Specific Country Scholarships: The University also offers country-specific scholarships for students from particular regions, such as Africa, India, and China.These awards are often designed to make studying at Sussex more accessible for students from those regions.

The BEng (Hons) Robotic and Mechatronic Engineering (with an industrial placement year) at the University of Sussex offers graduates a wide array of exciting career opportunities across various industries. As a rapidly advancing field, robotic and mechatronic engineering is integral to sectors such as manufacturing, automation, automotive, healthcare, and aerospace, providing graduates with a diverse range of potential career paths.

Robotics Engineer: Graduates can pursue careers as robotics engineers, designing and building automated systems for industries such as manufacturing, automotive, and healthcare. This role involves working with robotics technology to develop intelligent machines capable of performing tasks autonomously, enhancing production efficiency and safety.

Mechatronics Engineer: Mechatronics engineers focus on the integration of mechanical, electrical, and computer engineering systems. They work on designing and improving systems like robotics, automated machinery, and smart devices. Graduates in this field can work across industries such as automotive, aerospace, and consumer electronics.

Automation Engineer: Automation engineers design and implement systems that control and automate processes in industries like manufacturing, energy, and logistics. Their work reduces the need for human intervention in repetitive tasks and helps improve productivity, efficiency, and safety.

Control Systems Engineer: Control systems engineers specialize in designing systems that control and manage machines or processes. They work with complex systems such as robotic arms, drones, and manufacturing equipment, ensuring that these systems operate efficiently and accurately.

Systems Engineer: Systems engineers focus on managing complex engineering projects that involve the integration of various subsystems. Graduates can work in industries like defense, aerospace, and telecommunications, where they oversee the development and implementation of sophisticated systems.

Embedded Systems Engineer: Embedded systems engineers develop software and hardware solutions for devices that require specialized control, such as medical equipment, consumer electronics, and industrial machinery. They work to ensure the efficient operation of embedded systems in real-time applications.

Research and Development Engineer: Many graduates go on to work in R&D roles, where they focus on innovation and the development of new technologies in robotics and mechatronics. This career path often involves collaboration with research institutes or private companies to push the boundaries of engineering.

Product Design Engineer: Product design engineers use their skills to create innovative products that integrate robotic or mechatronic elements. They may work in fields such as consumer electronics, automotive, or industrial equipment design, focusing on improving product functionality and performance.

Aerospace Engineer: Graduates with a focus on aerospace can work as aerospace engineers, where they design and build systems such as drones, satellites, and autonomous aircraft. This role typically involves working with cutting-edge technologies to improve flight systems and develop new aerospace innovations.

Healthcare Technology Engineer: As robotics and mechatronics play an increasingly important role in the healthcare industry, graduates can work in developing medical robots, prosthetics, and rehabilitation devices. This field combines engineering with healthcare, offering opportunities to create life-changing technologies.


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