Higher Technician in Mechanical Manufacture Design
Field
Mechanical
manufacturing.
Number of courses
Usual Schedule, in the morning:
2 courses.
Methodology
Collaborative learning
based on challenges.
Duration
2000 hours. (at school and at the company).
Models
D+ Plurilingual
Field
Mechanical
manufacturing.
Number of courses
Usual Schedule, in the morning:
2 courses.
Methodology
Collaborative learning
based on challenges.
Duration
2000 hours. (at school and at the company).
Models
D+ Plurilingual
Entry requirements
Basic vocational Training passed.
E.S.O passed.
R.E.M first cycle passed.
B.U.P. second course passed.
FP1 (Vocational Training) certified.
In hold of an Intermediate level vocational training cycle (certified technician)
In hold of the corresponding access test
Ask for information
Professional Module
Hours
Year
0245. Graphic representation in mechanical manufacturing
198
1st
0427. Mechanical products design
297
1st
0431. Manufacturing automation
198
1st
0432. Mechanical manufacturing techniques
198
1st
0434. Career training and guidance
99
1st
0428. Design of processing tools for sheet metal and stamping
240
2nd
0429. Design of molds and models for casting
120
2nd
0430. Mold design for polymer products
140
2nd
0433. Mechanical product design project
50
2nd
E200. Technical English
40
2nd
0435. Enterprise and entrepreneurship
60
2nd
0436. Work placement
360
2nd
Duration of the cycle
2.000
The holder of this diploma will be able to:
• Devise constructive solutions for mechanic manufacturing products, performing the calculations necessary for their dimensioning, establishing the test plans.
• Prepare, organize, and keep updated the technical documentation necessary for the manufacture of the designed products.
• Select the components and materials according to the manufacturing requirements as well as the use and result of the technical calculations made, using catalogs of industrial products or other multilingual information sources.
• Establish the plan of necessary tests and homo-logation to ensure compliance with the established requirements. • Define the automation of the proposed solution by determining the functions and parameters thereof.
• Draw the assembly and manufacturing plans according to industrial drawing rules using CAD software and equipment.
• Make modifications to the design based on the problems detected in the manufacture of the prototype.
• Optimize the design of the molds by simulating the process of filling and cooling them to ensure the quality of the molded products, the optimization of the time of the process and the used energy resources.
• Elaborate, organize and keep updated the technical documentation complementary to the project plans (instructions for use and maintenance, diagrams, spare parts, among others) using office media.
Further training:
Students enrolled on this vocational cycle may receive further training to choose from:
- Forklift handling.
- Bridge crane handling.
- The knowledge needed to carry out labour risk prevention basic level activities.
- English extra classes.
Possibility to have placement abroad with the Erasmus + programme.
Possibility to accomplish DUAL Vocational Training: Modality that allows students to alternate school training and company training.
Continue studying:
• Professional specialization courses.
• Another High Cycle Vocational Course with the possibility of establishing validation of professional modules according to current regulations.
• University studies with the possibility of establishing validations in accordance with current regulations.
*Accessible ranges of occupations:
• Project Draughtsperson.
• CAD Technician.
• Product development Technician.
• Die development Technician.
• Tool development Technician.
• Mold development Technician.
• Product and mold development Technician.