MSc Digital Business
The MSc in Digital Business program at the University of Salford provides students with...
Manchester
INTAKE: September
The BEng (Hons) Electronic Engineering with Placement year at the University of Salford is a comprehensive program designed to provide students with a solid foundation in electronic engineering theory and practical skills, along with valuable industry experience gained through a year-long placement. The program covers a wide range of topics including circuit theory, digital electronics, signal processing, communication systems, and control engineering. Students have the opportunity to apply their knowledge and skills in real-world engineering projects and gain hands-on experience through laboratory work, design projects, and industrial placements.
Curriculum: The curriculum of the BEng (Hons) Electronic Engineering with Placement year program is structured to provide students with a balanced mix of theoretical knowledge and practical experience. Courses cover fundamental concepts in electronic engineering as well as advanced topics in specialized areas such as embedded systems, power electronics, and telecommunications. Students engage in laboratory experiments, design projects, and case studies, allowing them to develop technical proficiency, problem-solving abilities, and teamwork skills essential for success in the field.
Research Focus: The University of Salford is committed to research excellence in electronic engineering and related fields. Faculty members and students engage in cutting-edge research projects that address key challenges and emerging trends in electronic engineering, such as renewable energy systems, IoT applications, biomedical electronics, and smart technologies. Research findings contribute to advancements in technology, inform industry practices, and foster innovation in electronic engineering applications.
Industry Engagement: The BEng (Hons) Electronic Engineering with Placement year program at the University of Salford emphasizes industry engagement as a core component of the curriculum. Students have the opportunity to undertake a year-long placement with leading engineering companies, gaining practical experience, industry insights, and professional networks. The university collaborates closely with industry partners to ensure that placement opportunities align with students' career interests and provide valuable learning experiences that enhance their employability and career prospects upon graduation.
Global Perspective: The program also emphasizes a global perspective, preparing students to work in multicultural and international environments. Students learn about international standards, regulations, and best practices in electronic engineering, gaining awareness of global trends and emerging technologies shaping the electronics industry worldwide. The university offers opportunities for international collaborations, study exchanges, and research partnerships, allowing students to broaden their horizons and develop a global mindset as future engineers and innovators.
Manchester
IELTS 6
£ 17040
Undergraduate Entry Requirements
Academic Qualifications: International students applying for undergraduate programs at the University of Salford should have a minimum academic qualification of 65% or above in their respective educational systems.
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 Salford offers a range of scholarships and financial support options to help international students pursue their studies at the university. These scholarships recognize academic excellence, encourage diversity, and provide assistance with tuition fees.
Vice-Chancellor's Excellence Scholarship: This scholarship is awarded to high-achieving international students applying for undergraduate or postgraduate programs. It offers a partial tuition fee reduction of up to £5,000.
International Excellence Scholarship: This scholarship is open to international students applying for undergraduate or postgraduate programs. It provides a partial tuition fee reduction of up to £3,000.
Country-specific Scholarships: The university offers scholarships specifically tailored to students from certain countries. These scholarships may have different eligibility criteria and application processes, providing financial support to students from specific regions.
Chevening Scholarships: The University of Salford is a Chevening partner, offering scholarships to outstanding international students selected by the Chevening Scholarship program. Chevening Scholarships cover full tuition fees, living expenses, and other allowances.
Commonwealth Scholarships: The university participates in the Commonwealth Scholarship and Fellowship Plan, offering scholarships to students from Commonwealth countries. These scholarships cover tuition fees, living expenses, and other related costs.
Santander Scholarships: The university has partnered with Santander Bank to offer scholarships to international students. These scholarships aim to support students in areas such as entrepreneurship, research, and community engagement.
It is important to note that scholarship availability, eligibility criteria, and application deadlines may vary each year.
Graduates of the BEng (Hons) Electronic Engineering program with a Placement year at the University of Salford are equipped with a diverse skill set and practical experience that prepare them for various rewarding career opportunities in the field of electronic engineering.
Electronics Engineer: Graduates can pursue careers as electronics engineers, designing, developing, and testing electronic systems and devices for industries such as telecommunications, consumer electronics, automotive, aerospace, healthcare, and renewable energy. They work on projects ranging from circuit design and PCB layout to system integration and testing, contributing to the development of innovative electronic products and technologies.
Embedded Systems Engineer: Graduates can specialize in embedded systems engineering, focusing on designing and programming embedded systems for applications such as IoT devices, industrial automation, automotive control systems, and consumer electronics. They develop firmware and software for microcontrollers and microprocessors, optimizing performance, power consumption, and reliability for embedded applications.
Digital Design Engineer: Graduates can work as digital design engineers, designing and verifying digital circuits and systems using hardware description languages (HDLs) such as Verilog and VHDL. They develop digital logic designs for applications such as FPGAs, ASICs, digital signal processors (DSPs), and microprocessors, ensuring functionality, performance, and compliance with design specifications.
Analog Design Engineer: Graduates can specialize in analog design engineering, focusing on designing and testing analog circuits for applications such as amplifiers, filters, voltage regulators, and data converters. They analyze circuit performance, conduct simulations, and optimize designs for factors such as noise, bandwidth, and linearity, ensuring high performance and reliability in analog electronic systems.
Communications Engineer: Graduates can pursue careers as communications engineers, designing, optimizing, and maintaining communication networks and systems for telecommunications companies, service providers, and equipment manufacturers. They specialize in areas such as wireless communications, digital modulation, signal processing, and network protocols, ensuring reliable and efficient communication between devices and users.
Power Electronics Engineer: Graduates can work as power electronics engineers, designing and implementing power electronic circuits and systems for applications such as renewable energy systems, electric vehicles, industrial motor drives, and power supplies. They design efficient and reliable power converters, inverters, and motor controllers, optimizing performance, efficiency, and cost-effectiveness for power electronic applications.
Control Systems Engineer: Graduates can specialize in control systems engineering, designing and implementing control algorithms and systems for applications such as robotics, automation, process control, and mechatronics. They develop feedback control systems, PID controllers, and model-based controllers, ensuring stability, accuracy, and reliability in dynamic control systems.
Research and Development (R&D) Engineer: Graduates can work in research and development roles in industries such as electronics, semiconductor manufacturing, and technology innovation. They conduct research, design experiments, and develop prototypes for new electronic products, technologies, and solutions, contributing to advancements in the field of electronic engineering.
Placement Coordinator: Graduates can also pursue careers as placement coordinators or career advisors, leveraging their industry experience and knowledge to help students secure valuable placement opportunities, develop employability skills, and launch successful careers in electronic engineering. They work closely with industry partners, academic departments, and students to facilitate placement placements, monitor progress, and provide support and guidance throughout the placement process.