Master of TESOL and Applied Linguistics (Extension)
The Master of TESOL and Applied Linguistics (Extension) program at UTS is a prestigious...
City Campus - Sydney
INTAKE: Jul & Feb
The Master of Engineering (Computer Control Engineering) program at UTS is a hallmark of excellence in education and research. It offers a comprehensive, dynamic, and advanced learning experience, merging theoretical knowledge, hands-on training, and research initiatives to ensure students are well-prepared for the challenges in the field of computer control engineering.
Curriculum: The curriculum of this program is meticulously designed to provide students with a deep understanding of computer control engineering principles and applications. It encompasses a wide range of subjects, including control systems design, robotics, automation, and artificial intelligence. Students have access to cutting-edge technology, laboratories, and software tools, enabling them to engage in hands-on projects that bridge engineering and automation. The program emphasizes the integration of theoretical knowledge with practical application, ensuring graduates are well-prepared to develop innovative solutions in computer control engineering.
Research Focus: The Master of Engineering (Computer Control Engineering) program at UTS places a strong emphasis on research. Students are encouraged to participate in advanced research projects, often working closely with esteemed faculty members on innovative initiatives. This research-driven approach enriches students' academic experience and equips them with the skills necessary to contribute to the advancement of computer control engineering as a discipline.
Industry Engagement: The program maintains robust connections with the computer control engineering industry, ensuring students benefit from real-world insights and experiences. Accomplished professionals from automation companies, research institutions, and tech firms contribute to the curriculum through guest lectures, industry collaborations, and practical projects. This industry engagement keeps students informed about the latest industry trends and challenges, while also providing valuable networking opportunities and potential career prospects.
Global Perspective: The Master of Engineering (Computer Control Engineering) program at UTS is designed to provide a global perspective. The curriculum often addresses international engineering challenges, preparing students for careers that span across geographical boundaries. UTS fosters a diverse and inclusive learning environment that attracts students from around the world, enhancing the global perspective of the program.
City Campus - Sydney
IELTS 6.5
AUD 44240
Postgraduate Entry Requirements:
Academic Qualifications: International students applying for postgraduate programs at UTS are generally required to hold a bachelor's degree or equivalent with a minimum score of 60% or above. However, specific program requirements may vary.
English Language Proficiency:
Students must provide:
Work experience: Some postgraduate courses may require relevant work experience in the field.
It's important to note that entry requirements can vary by program and may change over time. Additionally, some programs may have additional requirements, such as interviews, portfolios, or work experience.
The University of Technology Sydney (UTS) offers a range of scholarships and grants to assist students with the cost of their education. These scholarships are available to both domestic and international students and cover a range of academic fields.
Graduates of the Master of Engineering (Computer Control Engineering) program at UTS are well-prepared for a wide range of career options in the field of computer control engineering.
Control Systems Engineer: Graduates can work as control systems engineers, specializing in the design and maintenance of automated control systems in various industries.
Robotics Engineer: Graduates can take on roles in robotics engineering, focusing on the design and programming of robotic systems for manufacturing, healthcare, and more.
Automation Specialist: Graduates can work as automation specialists, implementing and managing automated processes in industries such as manufacturing, energy, and logistics.
Artificial Intelligence Engineer: For those interested in AI and machine learning, graduates can pursue roles in AI engineering, developing intelligent control systems and algorithms.
Research Scientist: Graduates can engage in research positions, contributing to advancements in computer control engineering, automation, and robotics.