The program provides a Launchpad for graduates to become innovative future leaders in established manufacturing firms and new entrepreneurial ventures. The module also introduces the methods, tools and techniques for modelling, analysing, improving and designing systems in a variety of organisations including industrial, commercial and public sector. This involves giving a thorough, logical and critical review of the subject matter; using appropriate tools, processes and levels of analysis in the project and applying project management techniques to manage a successful project, Document their project using suitable presentation techniques (such as language, figures, writing, layout, structure etc. The module covers the current state of digital manufacturing, including tools and processes and identification of challenges and areas requiring further development in terms of research and technology innovation, product and service development, supplier management, production, routes to market, delivery, in service, maintenance, repair, remanufacture and reuse, and business plan development and management aspects. : Assessment and feedback is in the form of group coursework (50%) and individual coursework (50%), there is no exam. Digital manufacturing utilises Industry 4.0 technologies such as Cyber Physical Systems, Industrial Internet of Things, Additive Manufacturing and Autonomous Mechatronic Systems. The module covers the current and latest state-of-the-art in Design for Industry 4 and Smart Products, including the identification of challenges and areas requiring further development in terms of research and technology innovation, product and service development, supplier management, production, routes to market, delivery, in service, maintenance, repair, remanufacture and reuse, and business plan development and management aspects. An interim project justification report will account for the remaining 10% of the mark. Evidence achieving deliverables which meet the client company requirements. Digital Manufacturing (DM) at University of Turku, listed on FindAMasters.com - a comprehensive database of Masters, MSc, MA, MPhil & MRes courses in the UK & Ireland Requirements: While satisfying the requirements for a Master of Science in Mechanical Engineering, take at least five courses from: The AFRC is a powerful platform with very strong links into industry and host to the latest manufacturing technologies. We're in the city centre, next to the Merchant City, both of which are great locations for sightseeing, shopping and socialising alongside your studies. The AFRC has invested £35M in equipment for the development of forming and forging technologies. It also explores the latest initiatives worldwide that tie with Design for Industry 4 and Smart products (Industrial Internet of Things (IIoT), Cyber Physical Systems, Cloud Manufacturing, Big Data analytics and Edge Analytics, Additive Manufacturing for Smart Products, IIoT Security aspects) and Through-Life Engineering and Through-Life Engineering Services (TES) concepts. The Advanced Manufacturing Technology & Systems Management course is one of the most well-established of its kind in the UK, and it aims to provide our students with the tools, knowledge and understanding of this broad based discipline that demands expertise in many diverse topics. Master of Management in the field of Digital Business . The support is in the form of a tuition fee loan and for eligible students, a living cost loan. Fees for students studying over a longer period will be appropriately adjusted. Accelerating globalization and industrialization continues to exacerbate complexity of sustainability. You will receive a multidisciplinary training and preparation to offer solutions in the face of challenges posed by different technologies of Industry 4.0 from a global perspective. The career prospects for people who complete these studies are classified into the different business units of the companies, consultancies and research areas of the R&D units or Technology Centres: It will provide you with an employment contract. It covers material behaviour, challenges, processes (subtractive, additive, deformation, replication, joining, hybrid processes including mechanical, thermal, chemical, electrochemical, electrical methods) and tools, machines and manufacturing systems. This module aims to introduce students to the theories and principles of Systems Thinking. Start Date: Sep 2021 It integrates insights from research and strategy, management control, innovation and technology and organisational behaviour to consider how innovations can be managed. ); showing clear evidence of the value of the project and its outcomes and describing the project with clarity, Describe processes of materials selection, characterisation, ultra-precision machining, rapid prototyping and advanced surface engineering, Demonstrate know-how on key processing parameters and show numerical and analytical skills relating to the materials and process selections and parameter setting, Identify key process parameters/variables in relation to process control and product quality, Specify machines or manufacturing systems for the manufacture/creation of specified products/models or to propose design solutions for a manufacturing machine/system to address the manufacturing requirements identified, Explain key techniques used in the processes for the manufacture of micro-products, Correctly select technologies for specified products and materials, Demonstrate calculations of forming/cutting forces involved and analysis of stresses/temperatures involved in tools/machine-frames/workpiece as appropriate. It provides opportunities for students to develop technology-focused products/systems by using the state-of-the-art hardware platforms and industry-standard software development tools within the class environment. Demonstrate an understanding of Knowledge and Information Management, Demonstrate an understanding of Knowledge Models and Methods, Demonstrate an understanding of Knowledge Engineering and Development Processes, Design, develop, implement and report on an appropriate information system to meet the identified information requirements, Have in-depth understanding and knowledge of products and management practices in industry, Critically review and evaluate products and management practices of the particular company and the business impact of proposed solution, Demonstrate knowledge and ability in applying and using various analysis and modelling tools and techniques, Demonstrate project planning and management, presentation, consulting and team working skills. Students can download course lectures and readings, participate in virtual discussions with other students, submit written assignments, take exams and communicate with their professors from the comfort of their personal computer. develop knowledge and skills in systems analysis and business process modelling. Executive Master in Manufacturing Automation and Digital Transformation PEOPLE AND CHANGE Robotics WEEK 1 LONDON TURIN LONDON LONDON TURIN WEEK 2 WEEK 3 WEEK 4 WEEK 5 MARCH MAY JULY NOVEMBER JANUARY PROJECT WORK E-LEARNING 23 Executive Master in Manufacturing Automation and Digital Transformation DESIGNING TOMORROW Find out more about the support and how to apply. In the Master of Engineering in Advanced Manufacturing program students will explore the latest technologies, such as digital manufacturing and additive manufacturing, as well as learn more traditional hardware-based methodologies. Digital manufacturing developments are also considered including the exploration of life-phases, challenges and technologies, Industry 4.0, Smart Products, Internet of Things, Cyber Physical Systems, value chains and value creation through life. - To respond to the growing demand of industrial companies in the field of digitalisation. This module aims to introduce students to the concepts and basic technology of manufacturing automation and to be able to select suitable applications and specify the type of automation to be used in specific cases. Two taught modules explicitly require students to obtain their own design materials and tools – the same tools can be used across both. University of the Basque Country: Cooperative Engineering School, Person in charge of the Master This module covers one of the major challenges of modern industry which is to address the need for sustainable product development and manufacturing. This course introduces the latest state-of-the-art knowledge and practical hands-on insight into: After graduating with an MSc in Digital Manufacturing you'll be in a strong position to seek employment with companies such as BAE Systems, Jaguar Land Rover, Rolls Royce, Proctor & Gamble and many more! Online master's in management degree programs offer a flexible, easily accessible alternative to traditional college education. We've a large range of scholarships available to help you fund your studies. You will acquire a professional profile for which the industry has a growing demand. Qualification: MSc Whether you’re a high school graduate exploring manufacturing careers, or an operations manager hungry for an understanding of the newest manufacturing technologies, this specialization will provide a foundation in how digital advances are changing the landscape and capabilities of factories. Many manufacturing companies are extending their PLM solutions to encompass manufacturing engineering, including process planning functions as well as those functions within design or product engineering, and other elements of the product life cycle. Consulting specialist in Digital Manufacturing. Digital manufacturing is an integrated approach to manufacturing that is centered around a computer system . The module covers: Mechatronic system design process (including Product/system design specifications (PDS), concept generation and selection, mechatronic system design and flow chart diagrams); Sensing and actuation (including sensing theory, sensor selection, drive design and motor control); Control systems (understanding and applying control theory in a mechatronic system design); Hardware and software design (including software design basics, algorithm and code design, programming tools and software engineering principles); Prototyping and evaluation (prototyping methods and tools including rapid prototyping and computer modelling). The Advanced Digital Manufacturing Facility gives you hands-on access to the latest Internet of Things (IoT) devices that are used in class and that you can also use in your projects. Part-time, campus-based courses are typically completed over two years and are available for Scotland/EU and Rest of UK students. We've a thriving international community with students coming here to study from over 100 countries across the world. IELTS (for international students)6.0 overall with no individual component below 5.5. STUDY PROGRAMME Digital Engineering. Industry business models are also shifting significantly; extensive mass customisation is augmented by direct prosumer engagement and services become instantaneous and ubiquitous. Assessment and feedback will be in the form of coursework (70%) and a lab project (30%). This will help you to design, prototype and manufacture as well as perform research on a broad range of items. The curriculum’s target audience will be engineering students, existing professional design and manufacturing engineers and … This module aims for students to integrate and apply design, manufacturing and engineering management knowledge and skills to an industry based product and process development project and to develop project management skills. Additionally, as a Masters student in the department, you'll have access to a private postgraduate student community area, including collaboration work and social areas, as well as a kitchen. During the programme, you'll undertake an individual and group project. An automotive original equipment manufacturer (OEM) can design the entire manufacturing process digitally (tooling, machining, assembly sequencing, and factory layout) at the same time that designers are designing the next vehicle program. New data has shown that those who can help businesses capitalise on technological advances – such as digital technologies and automation – are seeing wages rise well above the national average". CIMdata considers digital manufacturing to be an emerging technology and a key element of Product Lifecycle Management (PLM). Find out more about the support and how to apply. - To prepare them for their integration into the company at the positions with responsibilities related to Digital Manufacturing. Plan, control and lead an industrial project from inception to completion. Studying a Masters in Technology Ventures with Digital Manufacturing at the University of Strathclyde and Carnegie Mellon University, you'll develop specialist skills in: entrepreneurship technology innovation The support is a loan of up to £10,280 which can be used for both tuition fees and living costs. A key factor on this process is going to be the engineering profile of the people that will lead this transformation, a real integrated … The university's Master’s degree programme in Digital Manufacturing responds to the new reality of companies within the Industry 4.0 framework, in which these companies need professionals with a global vision of the Digital Factory, sound understanding of the associated technologies and ability to lead the changes in business models that the new industrial revolution entails. Find out what some of our students think about studying in Glasgow! Assessment and feedback is in the form of one coursework submission showing technical analysis of an aspect of automation and critical thinking on the design of systems (40%), an exam (50%) and in-class participation (10%). critically evaluate the most appropriate methodology to model, analyse and design engineering/business systems across a range of organisations, demonstrate an understanding of how to model a business system and to develop a solution to solve a business system problem, cevelop an awareness of the importance of system approaches in management interventions, Understand the importance of sustainable product development and sustainable manufacturing and how to establish competitive advantage and appreciate the key legislation affecting modern industry, Demonstrate an understanding of the engineers’ role in problem & solution to this and how to establish competitive advantage (e.g. Our campus is based in the very heart of Glasgow, Scotland's largest city. The team is expected to manage all aspects of the project through to a finished solution. This Master's degree gives access to the doctoral programmes. This module aims to provide students with knowledge and understanding of the key concepts for the Design for Industry 4 and Smart Products, current practices, tools and processes, and possible future development routes. Understand initiatives currently undertaken worldwide for the future development of Design for Industry 4 and Smart Products, and assess how proposals for future development given would affect the current processes. * For more information about the price, please see the master's programme secretary. This module aims to provide students with knowledge and understanding of the key concepts for Digital Manufacturing, current practices, tools and processes, and possible future development routes. The module covers: Systems theory, concepts and approaches; Hard and soft systems analysis and systems dynamics; Systems and organisational performance – including leadership in a systems environment and ‘design’ in a systems environment and Practical application of Systems Thinking. This course helps you to get a deeper insight into the necessary cyber-physical technologies and new developing business models. The Pre-Masters programme provides progression to a number of degree options. ; (2) knowledge of micro-/nano-materials processing methods, techniques, industrially-viable processes, etc. Define a valid project in a cutting-edge field of study relevant to the student’s degree – with an appropriate methodology and work plan for the project, Plan, manage and complete project, involving where appropriate technical analysis and independent critical thinking. Mode of Attendance: full-time. Whilst manufacturers are constantly required to lower their costs and maintain their competitiveness, legislations require them to look at lifecycle costs. Normally a first-class or second-class honours degree (or international equivalent) in engineering, technology, or a business-related discipline. That is according to new data from the 2019 Reed Engineering Salary Guides, which analysed more than 10 million jobs posted since 2015. Find out more about the support and how to apply. This dynamic MSc Masters in Digital Marketing two year distance learning programme gives you the deep understanding, skills and specialist knowledge to master the game, plus DMI Membership which means access to white-hot industry insights and opportunities. For group projects, you'll have the opportunity to work with fellow students and an industrial client to address a practical problem. Penn State World Campus offers an online Master of Engineering in Additive Manufacturing and Design(AMD) in partnership with Penn State’s College of Engineering and the School of Engineering Design, Technology, and Professional Programs. Find out more about fees. Our industrial links provide an excellent route into real-world application and direct engagement with major companies. This module aims to give students an understanding of the types of knowledge, techniques and systems used in building knowledge-based systems and discussion on the application of these techniques; and, an understanding of the types of different approaches, techniques and systems used in building information-based systems. Become an expert's expert. Project Leader, Researcher, Specialist in Data Mining and Big Data. On the Factory Floor. Are available for Scotland/EU and Rest of UK students are constantly required lower. 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