Massachusetts Institute of Technology (MIT) Campus
Master of Engineering
Blended
Massachusetts Institute of Technology (MIT) Logo
Massachusetts Institute of Technology (MIT)
Cambridge
United States

Advanced Manufacturing and Design

About

The Master of Engineering in Advanced Manufacturing and Design at Massachusetts Institute of Technology (MIT) offers a one-year, blended learning program designed to prepare students for leadership roles in the rapidly evolving manufacturing industry. Combining online and on-campus coursework, this program integrates advanced engineering principles with cutting-edge design practices, equipping students with the skills necessary to develop and optimize manufacturing processes and products. Students learn to apply design thinking to manufacturing challenges, emphasizing sustainability, efficiency, and innovation in every phase of product development and production.

MIT’s program focuses on advanced manufacturing technologies, including additive manufacturing, robotics, and automation, as well as principles of product design, system integration, and supply chain management. Students engage in a combination of theoretical study and hands-on experience, including practical projects and internships, where they apply their skills to real-world manufacturing challenges. By the end of the program, graduates will be capable of driving innovation in manufacturing systems and creating designs that enhance both product quality and manufacturing efficiency in a variety of industries.

Key information

Duration
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Tuition fee
$64,310.00/year
Start dates & application deadlines
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More details
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Key Facts

  • Program Title: Advanced Manufacturing and Design
  • Degree Type: Master of Engineering
  • Duration: 1 year
  • Mode of Study: Full-time, Blended
  • Application Deadline: 15 December 2025
  • Location: Massachusetts Institute of Technology (MIT), United States
  • Field of Study: Design
  • Language of Instruction: English

Program Structure

Semester 1 – Foundations in Advanced Manufacturing and Design

·        Introduction to Manufacturing Processes and Systems

·        Product Design and Development Principles

·        Additive Manufacturing and 3D Printing Technologies

·        Materials Science for Manufacturing Applications

·        Lean Manufacturing and Process Optimization

Semester 2 – Advanced Manufacturing Technologies and Integration

·        Robotics and Automation in Manufacturing

·        Advanced Product Lifecycle Management

·        Digital Manufacturing and Smart Factories

·        Sustainability and Environmental Impact of Manufacturing

·        Data Analytics and Simulation for Manufacturing Systems

Semester 3 – Capstone Project and Industry Collaboration

·        Industry-Sponsored Capstone Project: Real-World Manufacturing Challenges

·        Collaborative Problem-Solving with Industry Leaders

·        Final Project Development and Design Presentation

·        Leadership and Innovation in Manufacturing

Career Opportunities

Graduates of the Advanced Manufacturing and Design Master’s program at MIT are well-equipped to take on leadership roles in the manufacturing industry, where they can drive innovation and lead teams in the design and optimization of manufacturing systems. With expertise in advanced manufacturing technologies, product design, and systems integration, they are prepared for positions such as manufacturing engineers, product development managers, operations directors, and supply chain leaders in industries such as automotive, aerospace, electronics, and consumer goods. Graduates can also explore roles in consulting or entrepreneurship, where they can apply their knowledge to help companies enhance their manufacturing processes or launch innovative new products. MIT’s extensive industry connections and strong alumni network provide graduates with access to a wide range of career opportunities across the globe.


Why Choose This Program

The Advanced Manufacturing and Design Master’s program at MIT provides a unique opportunity to gain practical experience in advanced manufacturing techniques while also building a strong foundation in product design and engineering principles. The blended learning format offers students flexibility, allowing them to balance their studies with professional commitments while benefiting from MIT’s world-class resources and faculty. The program emphasizes real-world application, ensuring that students gain hands-on experience working with industry leaders and tackling contemporary manufacturing challenges. Graduates leave the program with both advanced technical skills and the leadership capabilities needed to transform manufacturing operations and drive innovation in a range of industries.

Contact Information

For further information, please contact the admissions office at:
Phone: +1 617-253-1000
Email: admissions@mit.edu
Address: University of MIT, 77 Massachusetts Avenue, Cambridge, MA 02139, USA