BEng Hons Aerospace Engineering
The BEng Hons Aerospace Engineering program at the University of Surrey is designe...
Guildford
INTAKE: September
The BEng (Hons) Electronic Engineering program at the University of Surrey is a distinguished undergraduate degree offering a comprehensive exploration of electronic principles, systems, and applications. Students delve into the theoretical foundations of electronics while gaining practical experience through hands-on projects and industry placements. The program equips graduates with the skills and knowledge required to excel in various sectors, including telecommunications, semiconductor design, automation, and consumer electronics.
Curriculum: The curriculum of the BEng (Hons) Electronic Engineering program at the University of Surrey is designed to cover a broad range of topics essential for electronic engineers. Core modules include electronic circuits, digital systems, signal processing, microelectronics, and electromagnetic theory. Students also have the opportunity to specialize in areas such as communications engineering, embedded systems, semiconductor devices, or power electronics through elective modules. Practical laboratory sessions, design projects, and coursework assignments complement theoretical learning, providing students with hands-on experience and problem-solving skills vital for real-world applications.
Research Focus: The University of Surrey is renowned for its research excellence in electronic engineering, and this is reflected in the BEng (Hons) Electronic Engineering program. Faculty members are actively engaged in cutting-edge research across various areas, including wireless communications, photonics, nanotechnology, and electronic materials. Students have the opportunity to participate in research projects, working alongside faculty mentors to explore emerging technologies, develop innovative solutions, and contribute to advancements in the field.
Industry Engagement: The BEng (Hons) Electronic Engineering program at the University of Surrey emphasizes industry engagement to ensure that students gain practical experience and insights into real-world engineering practices. Through partnerships with leading technology companies, engineering firms, and research organizations, students have opportunities for internships, placements, and industry projects. This industry engagement provides students with valuable exposure to industry standards, professional networks, and career pathways, enhancing their employability and readiness for the workforce.
Global Perspective: In an increasingly interconnected world, the BEng (Hons) Electronic Engineering program at the University of Surrey emphasizes the importance of a global perspective in addressing electronic engineering challenges and opportunities. Students explore international issues such as global telecommunications, cross-border collaboration, and cultural diversity in engineering practices. The program also offers opportunities for international study exchanges, research collaborations, and industry partnerships, allowing students to gain insights into global engineering trends and contribute to international projects and initiatives.
Guildford
IELTS 6
£ 25650
Undergraduate Entry Requirements
Academic Qualifications: Applicants should have successfully completed their secondary education with a minimum overall score of 75 to 85% or equivalent in their respective country's grading system.
English language proficiency:
Students must provide:
It is important to note that meeting the minimum entry requirements does not guarantee admission, as the university considers factors such as availability of places and competition for the program. Additionally, some courses may have higher entry requirements or additional selection criteria, such as interviews or portfolio submissions.
The University of Surrey offers a range of scholarships and financial aid options to support students in their academic journey. These scholarships are designed to recognize excellence, provide access to education, and support students in achieving their educational goals.
Surrey Merit Scholarships: The Surrey Merit Scholarships are awarded to high-achieving undergraduate students who demonstrate outstanding academic performance. These scholarships provide financial support and recognition for students who have achieved excellent grades in their previous studies. The scholarships are available for both UK and international students.
Surrey Business School Scholarships: The Surrey Business School offers a range of scholarships for undergraduate and postgraduate students studying business-related disciplines. These scholarships aim to attract and reward talented students who demonstrate academic excellence, leadership potential, and commitment to their field of study.
Surrey Sports Scholarships: The Surrey Sports Scholarships are available to students who excel in sports and are both their academic and athletic pursuits. These scholarships provide financial support, access to training facilities, coaching, and other benefits to help athletes balance their studies and sports commitments.
Undergraduate Bursaries: The University of Surrey also offers a range of undergraduate bursaries based on financial need. These bursaries aim to ensure that students from diverse backgrounds have equal access to higher education and can fully participate in university life.
Graduates of the BEng (Hons) Electronic Engineering program at the University of Surrey have a diverse range of career opportunities available to them, owing to their strong technical skills, problem-solving abilities, and practical experience gained during their studies.
Electronics Design Engineer: Many graduates pursue careers as electronics design engineers, where they design and develop electronic circuits, systems, and devices. They work in industries such as consumer electronics, telecommunications, automotive, and aerospace, designing innovative products ranging from smartphones and wearable devices to control systems and satellite communications equipment.
Embedded Systems Engineer: Graduates may opt to become embedded systems engineers, specializing in the design and development of embedded software and hardware systems. They work in industries such as automotive, medical devices, industrial automation, and IoT (Internet of Things), creating embedded systems for applications such as automotive control systems, medical monitoring devices, and smart home appliances.
Telecommunications Engineer: Some graduates become telecommunications engineers, working in the design, installation, and maintenance of communication networks and systems. They work for telecommunications companies, internet service providers, or consulting firms, designing and optimizing networks for voice, data, and multimedia communication services such as mobile, broadband, and satellite communications.
RF (Radio Frequency) Engineer: Graduates may work as RF engineers, specializing in the design and optimization of radio frequency systems and components. They work in industries such as wireless communications, radar systems, and satellite communications, designing RF circuits, antennas, and transmitters for applications such as mobile phones, Wi-Fi networks, and satellite communication systems.
Power Electronics Engineer: With the increasing demand for energy-efficient technologies, graduates may pursue careers as power electronics engineers. They design and develop power electronic systems and devices for applications such as renewable energy systems, electric vehicles, and industrial power systems, ensuring efficient energy conversion and management.
Automation and Control Engineer: Some graduates become automation and control engineers, working in industries such as manufacturing, process control, and robotics. They design and implement control systems to automate processes, improve efficiency, and ensure quality and safety in manufacturing operations, chemical plants, and robotic systems.
Semiconductor Engineer: Graduates may work in the semiconductor industry, designing, testing, and manufacturing semiconductor devices such as integrated circuits (ICs), microprocessors, and memory chips. They work for semiconductor companies, research institutions, or manufacturing facilities, developing cutting-edge technologies for applications such as computing, telecommunications, and consumer electronics.
Research and Development (R&D) Engineer: With their strong technical background, graduates may work in research and development roles, conducting innovative research, designing prototypes, and testing new technologies. They work in industries such as technology, healthcare, and aerospace, contributing to the development of new products, processes, and solutions.
Consultant: Some graduates become engineering consultants, providing expertise and advice to businesses, governments, and organizations. They may specialize in areas such as electronics design, telecommunications, or technology implementation, helping clients solve complex engineering challenges and achieve their goals.
Entrepreneur: With their technical skills and innovative mindset, graduates may start their own electronics businesses or ventures. They identify market opportunities, develop prototypes, and launch products or services to address specific needs or problems in the market, leveraging their knowledge and expertise to create value and drive innovation.