Explore Training Programs
Whether you're just getting started, switching careers or sharpening your skills, there are over 900 training programs across all 50 states to help you grow your career in shipbuilding — many that take less than 6 months to complete.
The Advanced Industrial Maintenance Technology (AIMT) program contains seven courses, approximately 30 weeks, and 27.5 semester credit hours. The objective of the AIMT program is to train and prepare students for entry as industrial service and maintenance technicians in jobs that utilize technologies employed in the fields of manufacturing, distribution, energy production and facility maintenance. Students completing this program should have an understanding of mechanical and electrical principles, hazard awareness and mitigation, as well as manufacturing and distribution operations, and will have practical exposure to diagnosing, servicing and repairing common types of problems in related equipment. Upon successful completion of this program, students will receive a Diploma.
The electrical technology associate degree program at Monroe Community College is led by outstanding faculty who’ve spent years in the electronics industry. You’ll get a broad background that prepares you for a wide range of careers in electrical technology, while taking courses in:Circuit analysisComputer applicationsDigital electronicsMicroprocessorsApplied physicsTechnical writingAfter completing MCC’s two-year degree in electrical technology, you’ll be well prepared to transfer to a four-year school for a bachelor’s degree in electrical engineering. Or you can go straight into the work force, with strong credentials for entry-level positions in electronics. MCC graduates have a strong track record of job placement and career success.
The Industrial Maintenance Technology program prepares students to install, adjust, troubleshoot, and repair a variety of industrial machinery used in manufacturing settings. Technicians may work in factories that manufacture, finish, or assemble many different types of products. This highly skilled trade offers many employment opportunities. Since each production facility has different needs, the program allows students to select technical electives specific to a particular production area.
Graduates will learn to analyze, troubleshoot, and align mechanical and automated industrial machinery. Program course work includes electronics, industrial wiring, motor controls, programmable logic controls, instrumentation, industrial fluid power, manufacturing automation concepts and robotics.
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Job Corps’ OTP Advanced Manufacturing training program connects Job Corps students with other local training providers like technical or community colleges, trade schools or employers to provide specialized education and training services. Students learn skills like reading and understanding schematics and blueprints, positioning or aligning components and parts either manually or with hoists, using hand tools or machines to assemble parts, conducting quality control checks, and describing the commonalities and differences of the alternating current and direct current (AC/DC) systems (e.g., wire color codes in both). These skills prepare students for a career in manufacturing, production engineering and machine shops. Students who complete Advanced Manufacturing training at Job Corps can earn nationally recognized credentials from the American Welding Society (AWS) and the National Institute for Metalworking Skills (NIMS).
The 288-hour Metalwork Pre-Apprenticeship Training Program includes theory as well as hands-on skills training and introduces participants to the fundamental concepts and skills required to be a machinist in the field of advanced manufacturing. Typical jobs obtained after training: Machinist, CNC Operator, Q & A Inspector. Workers skilled in Metalwork are in high demand and Bucks County Community College has partnered with local employers to fill numerous positions. Average starting rate of $19-$22/hour with benefits!
Job Corps’ Painting, Pre-Apprentice training program teaches students the skills like how to apply paint, stain and coatings to walls and ceilings, buildings, bridges or other items such as cars, jewelry and ceramics, use machinery to apply the paints or use scaffolding and raise ladders, fill holes and cracks with plaster and putty, and utilize simple math to calculate dimensions. This program specifically prepares students for a Registered Apprenticeship after graduation. Students who complete the Painting, Pre-Apprentice training program can earn industry-recognized credentials from organizations such as the National Center for Construction Education and Research (NCCER) and certifications in construction safety from the Occupational Safety and Health Administration (OSHA).
The Electronics Engineering Technology program guides learners in developing relevant and critical skills to be job ready as an electrical controls systems engineering technician in modern manufacturing and industrial environments. Students in this program are exposed to power electronics, switch mode power supply design, specification and technical writing, and programmable logic controllers. Students are prepared to design, analyze, and optimize an electrical control system. This program supports industries such as aerospace, automobile, product manufacturers, and oil & gas as electrical controls engineering technicians. Graduates earn the Electronics Engineering Technology Associate in Science Degree.
The Precision Machining Technology program provides training in a broad technical background in CNC machine shop operations required of today's precision machining technicians. Covering an array of equipment and processes used to manufacture components used in the automotive, medical, military, and gas & oil industries, the students will learn basic and advanced principles and techniques using sawing, cutting, grinding, milling, and turning machine tools. Training will also provide an opportunity to learn basic and advanced precision measuring tools and techniques related to quality control and inspection of completed components. Advanced training will provide skills in G&M coding, Computer-Aided Manufacturing (CAM) programming, Computer-Aided Drawing (CAD), and setup and operation of Computerized Numerical Control (CNC) machine tools such as Mills, Lathes, Wire EDM's, and Water Jet.
The Tennessee Board of Regents community colleges and the state's public universities have joined together to develop a common core of courses for the Associate of Science (A.S.) degree. This common curriculum allows students to transfer, without loss of credit, from Pellissippi State to any Tennessee public university as juniors. All earned outlined on the pathway will apply toward a bachelor's degree in the same discipline. The pathway guarantees admission to all public universities in the state, except for the University of Tennessee, Knoxville, where competitive admission standards will still apply.Upon completion of the Associate of Science transfer program, the graduate will have developed the skills, knowledge and abilities to accomplish the following:Demonstrate knowledge and/or skills acquired within the general education core. Demonstrate knowledge and/or skills acquired from transfer electives. Locate and evaluate information from a range of credible sources using proper attribution and citation. Solve problems using skills developed across the curriculum.
Engineering technicians build, test, service, and repair electronic equipment used in a variety of industries. Topics covered in this program include DC, AC, and digital circuits, PLC, motor controls, hydraulics and pneumatics.








