{"id":17057,"date":"2020-01-14T04:13:35","date_gmt":"2020-01-14T04:13:35","guid":{"rendered":"https:\/\/intelitek.com\/?page_id=17057"},"modified":"2023-04-03T10:19:05","modified_gmt":"2023-04-03T15:19:05","slug":"jobmaster-for-hydraulics-technology","status":"publish","type":"page","link":"https:\/\/staging2.intelitek.com\/jobmaster-for-hydraulics-technology\/","title":{"rendered":"Jobmaster for Hydraulics Technology"},"content":{"rendered":"\t\t
Intelitek Hydraulic Technology curriculum introduce students to the principles of hydraulics and hydraulically controlled systems commonly used in automated manufacturing environments. Using Hydraulic simulation software, trainees create, modify, operate and observe simulated industrial grade hydraulic and electro-hydraulic devices and circuits. Students will connect different components, change physical parameters and observe system responses.<\/span><\/p>\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t The Hydraulics Technology 1 course introduces students to the principles of hydraulics and the use of fluid power in automated manufacturing environments. Students create, modify and operate hydraulic and electro-hydraulic circuits. Using industrial components, students conduct applied science experiments to demonstrate the physical principles of fluid power.<\/p> Students first test and troubleshoot simulated circuits then use the integrated hardware components to design solutions for industrial hydraulic applications with emphasis on relevant industrial challenges, such as power losses across components, system overheating and optimizing hydraulic power.<\/p> Course Outline<\/p> In the Hydraulics Technology 2 course students create, modify, operate and observe simulated hydraulic and electro-hydraulic devices and circuits. They also have the opportunity to configure and connect simulated components to create a variety of applications, changing physical parameters and observing system responses.<\/p> In the lab, students use the training panel with a wide assortment of industrial grade hydraulic components. Students mount and configure components on the panel in order to create a variety of applications. Students connect different components, change physical parameters and observe system responses. The combination of software and industrial equipment allows students to test and troubleshoot simulated circuits before hardware connections are made.<\/p> Students design solutions for industrial hydraulic applications with emphasis on real industrial concerns, such as power losses across components, system overheating and optimized hydraulic power.<\/p> Course Outline<\/p> The Hydraulics Technology 3 course introduces students to advanced hydraulics and electro-hydraulics and the use of fluid power in automated manufacturing environments. Students use software to create, modify, operate and observe simulated hydraulic and electro-hydraulic devices and circuits.<\/p> Course Outline<\/p> The Hydraulics Technology 1 course introduces students to the principles of hydraulics and the use of fluid power in automated manufacturing environments. Students create, modify and operate hydraulic and electro-hydraulic circuits. Using industrial components, students conduct applied science experiments to demonstrate the physical principles of fluid power.<\/p> Students first test and troubleshoot simulated circuits then use the integrated hardware components to design solutions for industrial hydraulic applications with emphasis on relevant industrial challenges, such as power losses across components, system overheating and optimizing hydraulic power.<\/p> Course Outline<\/p>Curriculum<\/h4>\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t