{"@id":"https://credentialengineregistry.org/resources/ce-431c1b48-ce47-497d-a94a-6471b5315963","@type":"ceterms:AssociateDegree","@context":"https://credreg.net/ctdl/schema/context/json","ceterms:ctid":"ce-431c1b48-ce47-497d-a94a-6471b5315963","ceterms:name":{"en-US":"Associate’s Degree Additive and Digital Manufacturing"},"ceterms:requires":[{"@type":"ceterms:ConditionProfile","ceterms:condition":{"en-US":["No Prerequisite"]},"ceterms:description":{"en-US":"To earn this credential the following program is one that would satisfy this requirement."},"ceterms:targetLearningOpportunity":["https://credentialengineregistry.org/resources/ce-265ff1fe-d108-4577-a002-96d1d7c8b184"]}],"ceterms:offeredBy":["https://credentialengineregistry.org/resources/ce-19026300-6e0e-4ea1-acfc-a2b6bcf4dc42"],"ceterms:inLanguage":["en-US"],"ceterms:description":{"en-US":"Digital Manufacturing technologists use principles and theories of science, technology, engineering art, and mathematics (STEAM) to solve technical problems in today's manufacturing environments. An engineering technician, today, will combine fundamental principles of mechanical engineering technology, digital technology, and computer automation knowledge utilizing electrical and electronic circuits to design, develop, test, and manufacture systems. Advanced digital manufacturing, typically called 3D printing, is expanding new dimensions found in traditional manufacturing settings. Increasingly our high-technology economy is dependent on having a supply of qualified and skilled 'digital workers' who possess skills in computer-based design/simulation, electronics, programming, mechanics, 3D printing, and manufacturing automation to develop and maintain advanced digital-based manufacturing systems used in business and today's industry.This program prepares students to work as applied digital technologists in industries where manufacturing process utilize systems of control and automation in manufacturing. Graduates of the Additive Digital Manufacturing program may develop and test industrial process control systems, supervise the building and testing of prototypes including 3D printing, supervise and conduct the installation and operation of automated machine systems, and work in the rapidly growing IoT (Internet of Everything) field.  Graduates will be able to calibrate and control automated machine cells, assist in applied research under the direction of scientists and engineers, and set up and operate specialized diagnostic equipment in order to test, trouble shoot, and analyze performance. The program has an emphasis on communication, leadership, project management, and digital manufacturing ecosystems."},"ceterms:estimatedCost":[{"@type":"ceterms:CostProfile","ceterms:price":9924.0,"ceterms:currency":"USD","ceterms:costDetails":"http://www.century.edu","ceterms:description":{"en-US":"Estimated total Minnesota resident tuition and fees for all program required courses are shown. Books and supply expenses and tuition and fees for developmental courses or prerequisite courses are not included.Depending upon the courses taken, students ma"},"ceterms:directCostType":{"@type":"ceterms:CredentialAlignmentObject","ceterms:framework":"https://credreg.net/ctdl/terms/CostType","ceterms:targetNode":"costType:Tuition","ceterms:frameworkName":{"en-US":"CostType"},"ceterms:targetNodeName":{"en-US":"Tuition"}}}],"ceterms:subjectWebpage":"https://www.century.edu/programs/additive-and-digital-manufacturing","ceterms:credentialStatusType":{"@type":"ceterms:CredentialAlignmentObject","ceterms:framework":"https://credreg.net/ctdl/terms/CredentialStatus","ceterms:targetNode":"credentialStat:Active","ceterms:frameworkName":{"en-US":"CredentialStatus"},"ceterms:targetNodeName":{"en-US":"Active"}}}