Germany offers 30 Master's programmes in Engineering and Technology across 10 universities, including some of Europe's most respected technical institutions. Technische Universität Berlin, Technical University of Munich, Karlsruhe Institute of Technology, and Fachhochschule Aachen are among the listed providers, offering graduate engineering programmes in mechanical, electrical, civil, and systems engineering, often with strong industry collaboration and research output.
Tuition ranges from free (many public university programmes charge no tuition) to approximately €36,000 per year for private or international programmes, giving students a wide range of cost options. Germany's strong engineering industry ensures excellent graduate employment prospects both domestically and internationally.

This Master of Engineering program focuses on the rapidly evolving field of Artificial Intelligence (AI) for Autonomous Systems. You will gain the skills to design, develop, and implement intelligent systems capable of learning, making decisions, and operating independently. The curriculum integrates core AI engineering methods with the foundational technologies of autonomous systems, including sensor networks, data fusion, data engineering, computing, and communication. The program emphasizes practical, hands-on experience, preparing you for the challenges and ethical considerations of developing autonomous technologies. Graduates will be well-equipped to contribute to industries being transformed by AI, such as mobility, production, logistics, agriculture, and medical engineering.

The Master of Science in Applied Research in Engineering Sciences is an individualized study program designed to foster professional, methodological, and personal development. Unlike traditional master's programs, this 'research master's' features fewer modules, allowing students to dedicate significant time to engaging in exciting research projects. This hands-on approach ensures knowledge is deeply rooted, continuously expanded, and put into practice. Throughout the program, students receive consistent support from experienced mentors who act as reliable points of contact. The program prioritizes the student's interests, projects, and development, offering a supportive environment with structured project work and targeted theory teaching. Students are integrated into research groups from the outset, gaining access to modern laboratory infrastructure and participating in real research activities. This structure facilitates continuous exchange, orientation, and reliability, laying a strong foundation for academic success and future careers.

The Master of Science in Computational Science and Engineering (CSE) at the Technical University of Munich (TUM) is a comprehensive, full-time program designed for students interested in the intersection of applied mathematics, computer science, and scientific or engineering applications. This program equips graduates with advanced skills in numerical simulation, mathematical modeling, and efficient algorithms to tackle complex problems that are often too challenging, costly, or dangerous for traditional experimental study. CSE focuses on developing robust problem-solving methodologies and tools for understanding phenomena and processes across science and engineering disciplines. Students will gain expertise in areas such as advanced programming, computer architecture, parallel computing, and scientific visualization, preparing them for diverse professional and academic careers. The curriculum is interdisciplinary, offered in collaboration with seven TUM departments, ensuring a broad and deep understanding of the field.
The Master of Science program in Computer Engineering equips students with the interdisciplinary knowledge needed to design efficient, user-friendly, and secure hardware and software systems. This program bridges computer science and electrical engineering, preparing graduates for technically oriented careers and leadership roles in industry, commerce, and administration. It emphasizes the development of both hardware and software, offering direct engagement with current research through seminars, practical projects, and the master's thesis. Students will gain in-depth understanding of how computer systems function in various applications, from communication technology to robotics. The curriculum is designed to foster a holistic view of computer engineering, enabling graduates to tackle complex challenges and innovate in a rapidly evolving field. The program is closely aligned with the research activities of the faculty, ensuring that students are at the forefront of technological advancements.

The Master of Science program in Computer Science and Systems Engineering is designed for students who hold a relevant undergraduate degree and wish to deepen their knowledge and skills in this field. Offered by the Faculty of Information, Media and Electrical Engineering, this full-time program provides an advanced understanding of computer science and systems engineering principles. The program aims to equip students with the expertise necessary to excel in complex technological environments.

The Master of Science in Data Engineering and Analytics focuses on managing, analyzing, and processing very large datasets using advanced computer science techniques. This program addresses the growing importance of 'Big Data' across various scientific and industrial fields, driven by the decreasing cost of data storage, the proliferation of smart devices, and advancements in computing power. Graduates will be equipped to design and implement industry-grade Big Data solutions, preparing them for careers in data science, data engineering, and research.
This interdisciplinary Master of Science program in Digital Media and Technology is a joint degree offered by three leading Berlin universities: TU Berlin, Freie Universität Berlin, and Humboldt-Universität Berlin, in collaboration with Filmuniversität Babelsberg Konrad Wolf. The program leverages the strengths of each institution, with TU Berlin focusing on computer science, mathematics, and technology; Freie Universität Berlin covering communication and social sciences; and Humboldt-Universität Berlin contributing expertise in information science. Students will gain comprehensive knowledge at the intersection of software development, digital media, journalism, communication science, media research, and media management. The program is designed to equip students with the skills to understand, design, produce, and apply digital media. It emphasizes interdisciplinary learning, combining technical expertise with insights into the social and communicative aspects of digital technologies. Graduates will be well-prepared for a variety of career paths in the rapidly evolving digital landscape.

The Master of Engineering in Embedded Systems Engineering program prepares you for advanced roles in research and professional practice, equipping you with skills for technical careers and project management. The program covers how to model control systems, implement algorithms for distributed embedded systems, evaluate software engineering tools, and lead cross-domain mechatronic system designs. It offers a comprehensive understanding of the complete systems engineering design flow, enabling you to work effectively in international, cross-domain project teams. The 4-semester program includes foundational compulsory courses in the first two semesters, followed by a 2-semester research phase with electives and thesis work. It integrates with the Ruhr Master School (RMS) for cross-university electives, international projects, summer schools, and symposia. The total workload is 3,600 hours, including the Master's thesis, requiring the accumulation of 120 ECTS credit points.
The Master of Science in Engineering Science is a practically relevant program with a strong mathematical and physical focus, designed to prepare you for research and development roles. You will learn to create mathematical-physical models for technical systems and analyze them using experimental, analytical, and numerical methods. The curriculum emphasizes the interdisciplinary nature of engineering problems, enabling you to develop targeted solutions. A wide range of elective modules allows for specialization in areas such as numerics and simulation, fluid mechanics, mechatronics, solid mechanics, thermodynamics, and technical acoustics. The program equips you with advanced knowledge in mathematics and physics, alongside practical skills in applying analytical and experimental methods to real-world engineering challenges. You will gain experience in interdisciplinary teamwork and develop a holistic approach to problem-solving, staying current with the latest research findings. This program also prepares you for doctoral studies.

The Master of Science (M.Sc.) in Food Technology program at the Technical University of Munich (TUM) is designed for students passionate about shaping the future of food production. This program blends a strong foundation in natural sciences and engineering with specialized skills in innovation, process automation, and food process engineering. You will delve into modern food production, focusing on ecological, social, and economic sustainability, while developing new products, researching preservation methods, planning production facilities, and analyzing economic efficiency. With extensive expertise and located at the Weihenstephan campus, TUM offers a comprehensive learning experience. The curriculum expands your knowledge in engineering and natural sciences, enhancing your analytical and methodological skills. You will study engineering, process engineering, and technological processes in food production, alongside the quality criteria of modern foods. The program enables you to design environmentally friendly processes, plan production facilities, control product properties, and develop innovative food solutions. You can further specialize through a wide range of elective modules, focusing on process engineering, process automation, and food technology. Graduates will be experts in all facets of food production, equipped with a deep understanding of food's biological and chemical properties and the process engineering requirements for production. Key skills include planning and optimizing production processes, developing new equipment and processes, designing packaging solutions, creating innovative products, ensuring quality assurance, and conducting comprehensive food analysis. These competencies prepare you for advanced roles in the global food and beverage industries, as well as related sectors like chemical and pharmaceutical industries, and plant engineering.
The Global Production Engineering Master of Science program is taught entirely in English, equipping students with specialized knowledge in production, engineering, management, and intercultural communication. This internationally focused program balances research with practical, professional issues, preparing graduates with transdisciplinary production engineering skills. You will develop problem-solving abilities in international engineering, management, and renewable energy technologies, alongside essential soft skills in intercultural communication and teamwork. The program allows for early specialization, enabling you to shape your individual focus. You will benefit from modern facilities including adaptable seminar rooms, mobile labs for solar and wind technology, simulation labs, additive manufacturing tools, 3D printers, a maker space, and a learning factory.

The Industrial Engineering M.Sc. program at FH Aachen focuses on optimizing production and logistics processes. Students tackle real-world challenges, such as shortening queues, improving manufacturing speed and cost-efficiency, and streamlining warehouse operations. The program integrates expertise from both the Faculty of Business Studies and the Faculty of Mechanical Engineering and Mechatronics to prepare graduates for management roles in goods and services production. Students will learn to plan and manage all stages of the production process, from order placement to delivery.
The Master of Education (M.Ed.) program in Engineering Pedagogy for Engineers at Karlsruhe Institute of Technology (KIT) allows you to build upon your undergraduate engineering qualifications. This program is designed for individuals holding an engineering bachelor's degree who wish to transition into teaching at vocational schools. It provides a foundational understanding of scientific work, social research methodologies, the vocational education system, didactics, and practical aspects of professional teaching and learning. The degree qualifies you for a career in vocational education teaching.

The Master of Science in Logistics Engineering and Management program at Technical University of Munich (TUM) Asia, located in Singapore, prepares students to expertly navigate the complex demands of global logistics and supply chains. This program is designed for a dynamic world, addressing ecological, economic, and geopolitical factors that influence the flow of goods internationally. Students will develop skills in planning, organizing, and controlling these intricate systems. The curriculum integrates essential aspects of supply chain management, logistics, engineering, and general management. You will gain proficiency in statistical methods, modeling, predictive analytics, traffic planning, and optimizing decision-making processes. The program offers flexibility with elective modules in areas such as Green Supply Chain and Risk Management, Airport and Harbour Design, or Business Administration, allowing you to tailor your studies to your interests and career goals. Graduates emerge as highly qualified professionals, capable of designing and implementing efficient, sustainable supply chain systems. This degree opens doors to responsible positions in procurement, inventory analysis, warehouse design, logistics engineering, and process engineering, or provides a strong foundation for further doctoral studies.
The Master of Science in Food Technology is an interdisciplinary program combining aspects of agricultural science, nutrition science, engineering, and natural sciences. It focuses on optimizing production processes and understanding the physical, microbiological, and chemical changes that affect food structure, preservation, and sensory properties. The program also covers resource management, sustainability, and the extraction of raw materials from plant and animal sources. The goal of this Master's program is to provide an interdisciplinary, research-oriented education. Graduates will be equipped to analyze challenges in various fields from scientific, technical, industrial, and societal perspectives, and to independently develop innovative and goal-oriented process engineering and technological solutions. The curriculum emphasizes methodological skills through compulsory modules, enabling students to tackle complex food technology problems. A significant portion of elective modules allows for specialization within food technology or expansion into related engineering disciplines such as biotechnology, energy and process engineering, or environmental engineering. The program integrates lectures, practicals, exercises, seminars, and projects, culminating in an interdisciplinary practical project and the Master's thesis for independent scientific work.
The Master of Applied Research in Engineering Sciences (MAPR) is a research-focused master's program offered in cooperation with several Bavarian universities. It emphasizes project-related, application-oriented research, leading to its description as a 'research master' or 'project master'. The program is designed for students with a strong academic background and a keen interest in independent scientific work. The curriculum integrates research modules, elective courses, and inter-university block courses, providing a comprehensive approach to engineering research.

The Master of Arts in Responsibility in Science, Engineering and Technology (M.A. RESET) program equips students with the knowledge and skills to navigate the complex societal responsibilities arising from scientific and technological advancements. It focuses on fostering communication across disciplinary and institutional boundaries, enabling graduates to understand and anticipate the consequences of emerging technologies and contribute to responsible innovation. The program emphasizes practical application, interdisciplinary learning, and critical reflection on the ethical, social, economic, and political dimensions of technology. The curriculum is designed to provide a comprehensive understanding of the interdependencies between science, technology, politics, and societal dynamics. Students will explore theories and methods from various fields, including Science and Technology Studies (STS), public policy, innovation studies, economics, law, media studies, and ethics. A distinctive feature is the program's focus on translating theoretical knowledge into practical solutions for contemporary technosocial challenges. Graduates will be prepared for roles in governmental institutions, international organizations, innovative companies, NGOs, think tanks, consulting, and academia. The program also qualifies students for doctoral research, providing a strong foundation for advanced academic and professional pursuits in areas at the intersection of science, innovation, and society.
This on-campus Master's program in Industrial Engineering focuses on sustainability, integrating technical, economic, and environmental perspectives. It is designed for graduates with a relevant Bachelor's degree who wish to develop expertise in managing complex challenges at the intersection of technology, business, and sustainable development. The program aims to equip students with the skills needed for leadership roles in industries that require professionals capable of merging technical requirements with economic goals and sustainable strategies. The curriculum emphasizes both technical systems (digital automation, production automation, intelligent systems) and business management (corporate leadership, international management, strategic decision-making), with a strong focus on sustainability science and management. Students can specialize in either Sustainability Management or Sustainability Technology, allowing for a tailored learning experience. The program culminates in a Master of Engineering (M.Eng.) degree, preparing graduates for advanced roles in industry and sustainable business development.
The Master of Science in Financial Engineering program at HECTOR School equips you with a unique blend of finance theory, engineering methods, management tools, and computational techniques, including artificial intelligence and data science. It focuses on practical, hands-on applications using Python to address challenges in pricing, hedging, trading, and portfolio management. The program is designed for working professionals, offering a part-time structure that allows you to continue your career while gaining advanced skills. This program emphasizes data-driven decision-making, enabling you to develop innovative solutions grounded in economic principles and engineering perspectives. Graduates are prepared for demanding roles in the financial sector and non-financial corporations, applying advanced analytical and technological skills to modern business challenges.
The Master's program in Wirtschaftsingenieurwesen (Industrial Engineering and Management) at Fern-Fachhochschule Hamburg (HFH) is designed for graduates seeking to take on highly qualified professional and leadership roles in companies. This interdisciplinary program combines economic and technical knowledge, equipping you with the skills to tackle complex challenges, think critically, and drive innovation. You can pursue either a Master of Science (M.Sc.) or, under specific conditions, a Master of Engineering (M.Eng.). The program is application-oriented, allowing you to immediately apply your learning to your professional practice. It caters to graduates with a first degree in Industrial Engineering, or those with engineering, natural science, technical, or economic backgrounds. You can tailor your study path based on your prior knowledge, with options for 60, 90, or 120 ECTS points over 3, 4, or 5 semesters.
The Master of Science in Material Science and Engineering at Karlsruhe Institute of Technology (KIT) offers an advanced study program focused on the development and application of new and improved materials. This research-oriented program integrates technological and scientific principles, providing a comprehensive view from atomic structure to processing and final product application. Students can deepen their knowledge from a relevant Bachelor's degree and specialize in areas like structural materials, computational materials science, or functional materials. The program can be studied in either German or English.

The Materials Science and Engineering Master's program addresses the growing need for experts with interdisciplinary skills. It offers a scientific and engineering education drawing from seven university departments, enabling students to model complex systems, understand fundamental engineering principles, and apply probabilistic approaches to material properties. The program is housed within the Munich School of Engineering (MSE), which fosters interdisciplinary studies. Graduates will gain in-depth knowledge of modeling, prediction, monitoring, and testing of innovative material solutions, with an emphasis on quantifying uncertainty and risk in their analyses. This equips them for careers in research, development, and industry sectors requiring interdisciplinary expertise.

The Master's program in Mathematics in Science and Engineering at the Technical University of Munich (TUM) offers a rigorous mathematical education combined with a strong focus on applied fields in engineering and natural sciences. It is designed for students passionate about advanced mathematics and its practical applications in scientific and engineering contexts. Students will delve into core mathematical specialties such as mathematical modeling, numerical analysis, applied analysis, stochastic processes, and computer science. This theoretical foundation is then complemented by a chosen applied field, providing specialized knowledge and preparing graduates for interdisciplinary work. Graduates will be equipped to model and analyze complex engineering and natural science problems mathematically, effectively communicate results across disciplines, and pursue careers in software, technology, development, and research within engineering and natural sciences.

The Master of Business Administration (MBA) with a specialization in Engineering Management at IU Internationale Hochschule is designed to equip you with leadership skills and a deep understanding of managing engineering and technology-driven projects. The program combines essential business administration principles with specialized knowledge in modern production methods, innovation, and strategic decision-making in technologically advanced environments. You will learn to lead and strategize within digitally networked contexts, drive innovation, and confidently manage financial, operational, and market-oriented decisions. This degree offers an international perspective, enhancing your career prospects globally.
The Media Technology Master of Science program at TU Berlin is an interdisciplinary and practice-oriented course of study designed to equip you with advanced technical and engineering skills. It focuses on the rapidly evolving fields of networked media systems, human-machine interaction, and the application of communication-based media using image and sound. The program is particularly relevant given the increasing demand for innovative studio technology, new media transmission systems, and sophisticated multimodal human-machine interfaces, as well as the burgeoning potential of virtual and augmented reality, machine learning, and artificial intelligence. Building upon the Bachelor's program in Media Technology, this Master's degree is also open to graduates from related fields like Digital Media & Technology, Computer Engineering, or Electrical Engineering. It offers a distinct media-focused alternative to other engineering Master's programs at TU Berlin. Graduates will gain in-depth knowledge and practical application skills in media technology, enabling them to contribute to the future development of innovative media technologies and applications.

The Master of Science in Patent Engineering is designed for graduates with a Bachelor's degree in engineering or natural sciences who are interested in the intersection of technology and intellectual property (IP). This program equips students with the theoretical knowledge and practical skills necessary to work as patent engineers in patent, research, and development departments. The curriculum uniquely combines in-depth technical content, particularly in electrical engineering and information technology, with essential IP know-how, including German, European, and international patent law, employee invention law, and know-how protection. Graduates will be prepared to analyze and manage complex issues related to technical inventions, their legal protection, economic viability, and strategic application.
The Master of Science in Patent Engineering at Technische Universität Berlin equips you with the knowledge and skills to excel in fields related to patenting, research, and development. This program focuses on analyzing and evaluating technical inventions from legal, economic, and strategic perspectives. You will gain expertise in mechanical engineering, combined with specialized legal education in intellectual property law, patent law, design law, and patent management.

The Master of Arts (M.A.) in Science and Technology Studies (STS) at the Technical University of Munich explores the deep connections between science, technology, society, and politics. This program prepares students to critically analyze how scientific and technological advancements shape our world, addressing challenges from biotechnology and energy transitions to automated mobility and data security. It offers a research-oriented graduate education for those interested in a comprehensive social science perspective on today's highly technologized societies. Students will gain an in-depth understanding of how scientific and technological knowledge is produced and disseminated, examining its conditions and consequences. The interdisciplinary curriculum integrates theories and research methods from various fields, including social sciences, philosophy, and the humanities, enabling students to apply these to real-world techno-scientific problems with a critical, problem-solving approach. The program fosters essential reflexive, collaborative, and communicative skills.
This Master's program uniquely combines socio-scientific knowledge with insights from technology studies, addressing the complexities of modern, high-tech societies. It aims to equip students with the expertise needed to critically analyze technology's societal impacts and forecast future consequences. Graduates will be prepared to tackle the challenges posed by technological advancements in various social contexts.
This research-oriented Master's program delves into the Theory and History of Science and Technology, integrating diverse perspectives from philosophy, history of literature, and science and technology studies. You will gain specialist knowledge on the conceptual principles of science and technology, their historical evolution, societal influences, and ethical implications, with opportunities to specialize in specific disciplines. The program aims to enhance your understanding of how science and technology shape our present and future, fostering your ability to develop independent research interests.
The Master of Science (M.Sc.) in Water Science and Engineering at Karlsruhe Institute of Technology (KIT) provides an interdisciplinary, research-oriented education focusing on water-related engineering and natural sciences. Over four semesters, you will gain 120 ECTS credit points, learning to develop strategies and technical solutions for the sustainable use and protection of water resources, addressing challenges like resource scarcity, extreme weather, and global change. The program equips you with a deep understanding of fundamental engineering and natural science principles, alongside interdisciplinary skills. You will learn to apply theoretical knowledge to quantitative models and analyze complex systems using advanced methods. The curriculum allows for specialization in one of four profiles: Water Technologies & Urban Water Cycle, Fluid Mechanics & Hydraulic Engineering, Hydrological Dynamics & Hazards, or Sustainable Management of Rivers and Floodplains. You can tailor your studies to your interests with guidance from a mentor.
There are 30 Master's in Engineering and Technology programmes across 10 universities in Germany.
Notable institutions include Technical University of Munich, Technische Universität Berlin, Karlsruhe Institute of Technology, Fachhochschule Aachen, Fachhochschule Dortmund, and Technische Hochschule Ingolstadt.
Tuition ranges from free (many public programmes charge no tuition) to approximately €36,000 per year for premium or privately run programmes.
Yes, German universities actively welcome international engineering students; a student visa, recognised undergraduate degree, and German or English language proficiency (depending on programme language) are required.
Applicants generally need a bachelor's degree in a relevant engineering or science field, a strong academic record, and language proficiency documentation in the programme's language of instruction.