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UW-Stout's Bachelor of Science (B.S.) in Manufacturing Engineering program equips you with critical knowledge and practical skills, positioning your company at the forefront of today's competitive economic landscape. In this program, you will delve into all aspects of the production process, encompassing product design, development, and post-sale service. As part of a dynamic production team, you will collaborate with experts to craft products, harnessing advanced automated systems for manufacturing. This comprehensive approach ensures that you emerge as a versatile manufacturing engineer, ready to innovate and lead in the industry.
Almost all lecture areas have state-of-the-art instructional media which include overhead digital projectors, DVD players and wireless internet access for students using their laptop computers.
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Science and mathematics classes form the foundation for engineering science courses, and their application to analysis, synthesis and creative design.
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"My final semester capstone project made me ready. It was the most time-consuming group project of my college career. However, because I was so passionate about the project and my field of study, it hardly felt like work to me. Now I feel confident to take on my first job after graduation."
7X and 12.5X High Precision Zoom Lenses are modular lens systems that consist of a camera mount, camera tube, core module, lower function module, and lower lens. Added versatility is achieved by swapping out modules to change magnification, field of view, or the optical pathway. 7X and 12.5X High Precision Zoom Lenses are compatible with M26 x 36 TPI Mitutoyo-style objectives and with camera sensor coverages and mounts ranging from C-Mount to F-Mount and to 35mm DSLR cameras. 50/50 and 90° cubes are available to introduce right angle turns or to support multiple imaging paths. A motor controller for multi-axis zoom and focus functionality is also available and can be connected to USB, Ethernet, or RS-232/422/285 ports.
We're the only undergraduate manufacturing engineering program among the Universities of Wisconsin and one of about 25 in the country. Our graduates are experts in selecting materials, processing them into usable products and controlling automated production systems.
UW-Stout has outstanding laboratory facilities available to students in the manufacturing engineering program. Fifteen individual labs cover more than 35,000 square feet. All of these facilities are used for manufacturing engineering courses. When compared with other engineering programs, UW-Stout has a tremendous amount of manufacturing lab space for undergraduate student use. Program laboratories include:
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As you work through the program, the courses will emphasize modern manufacturing techniques such as computer-aided design and manufacturing (CAD/CAM), robotics, and microprocessor control of manufacturing. You'll receive extensive laboratory experience in those and related areas, including computer-controlled manufacturing systems, statistical process control, electronic instrumentation, and materials processing and testing.
The curriculum has been designed to prepare you to work with both traditional and cutting-edge manufacturing processes and technologies. As you progress toward your degree, both our cooperative education program and the nationally recognized Stout Technology Transfer Institute provide opportunities to learn through on-the-job experiences while you are still enrolled at the university.
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With the training our program provides, you'll become an expert on selecting the right materials, and you'll know how to process them into usable products. You'll understand how to control automated production systems with computers and utilize advanced technologies when appropriate. You'll benefit from learning in up-to-date facilities with labs specifically designed to promote understanding of the technologies involved in manufacturing.
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The demand for manufacturing engineers is good in manufacturing centers across the United States. Many American firms also have companies overseas, presenting graduates with international career opportunities.
Industry's manufacturing problems are not only technical in nature. They're also social and economic. As a manufacturing engineer, you must therefore have a broad education.
As a student in the Manufacturing Engineering program, you must have an aptitude for science and mathematics. We encourage you to take as many upper-level math and science courses in high school as possible, including mathematics through algebra and trigonometry, plus physics and chemistry. Early development of computer skills is also very helpful.
Use the Request Information form to receive a program summary and learn more about the Bachelor of Science degree in Manufacturing Engineering.
Manufacturing engineers have rewarding careers in industry, government, research, service and entrepreneurship. The average starting salary for program graduates in 2015–16 was $60,000 a year. Graduate employment has been more than 92 percent for the past 11 years. Many companies consider manufacturing engineers good candidates for advancement to management positions.
Students can also elect to pursue an accelerated B.S. Manufacturing Engineering + M.S. Manufacturing Engineering program that reduces the cost and time it takes to earn a master's degree through shared credits.
The first two years of your program will include English composition, communication, and other general education offerings, as well as mathematics, physics and engineering fundamentals.
A complete zoom lens requires a camera mount, camera tube, zoom module, lower function module, and lower lens. An item selection guide can be found on the Technical Information tab.