Unit 4006 Mechatronics Assignment Brief
| Unit Number | 4006 |
| Unit Title | Mechatronics |
| Unit Reference Number | Y/651/0716 |
| Unit Level | 4 |
| Credits | 15 |
Introduction
Auto-focus cameras, car cruise control and automated airport baggage handling systems are examples of mechatronic systems. Mechatronics is the combination of mechanical, electrical, and computer/controlled engineering working together in automated systems and ‘smart’ product design.
Among the topics included in this unit are: consideration of component compatibility, constraints on size and cost, control devices used, British and/or European standards relevant to application, sensor types and interfacing, simulation and modelling software functions, system function and operation, advantages and disadvantages of software simulation, component data sheets, systems drawings, flowcharts, wiring and schematic diagrams.
On successful completion of this unit students will be able to learn about the basic mechatronic system components and functions, designing a simple mechatronic system specification for a given application, appropriate simulation and modelling software to examine its operation and function, and solving faults on mechatronic systems using a range of techniques and methods.
Learning Outcomes and Assessment Criteria
| Pass | Merit | Distinction |
| LO1 Explain the design and operational characteristics of a mechatronic system | D1 Evaluate the mechatronic system specification and propose an alternative solution. | |
| P1 Explain the key requirements and components of a given mechatronics system P2 Explain the types of actuators, sensors and transducers used in a given mechatronics system. |
M1 Analyse how the components operate as part of an integrated mechatronic system. M2 Analyse the methods of control used by the mechatronic system. |
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| LO2 Produce a mechatronic system design specification for a given application | D2 Evaluate the operational capabilities and limitations of the mechatronic system design specification produced. | |
| P3 Produce a design specification for a given mechatronic system application including the details of the sensor and actuator technologies. | M3 Justify the sensor and actuator technologies selected with reference to available alternatives. | |
| LO3 Examine the operation and function of a mechatronics system using simulation and modelling software | D3 Evaluate the advantages and disadvantages of the simulation/modelling software used, based on the results obtained, with recommended improvements. | |
| P4 Examine the operation and function of a given mechatronics system using industry standard simulation/modelling software. | M4 Analyse the operation and function of a simulated/modelled mechatronics system, with improvements to the system. | |
| LO4 Demonstrate fault finding skills and fault analysis on a mechatronic system | D4 Investigate the causes of faults in a given mechatronic system, with suggested amendments to the design specification to improve system reliability. | |
| P5 Explain the safe use of fault finding test equipment P6 Demonstrate fault finding analysis by locating and rectifying faults on a given mechatronic system. |
M5 Apply and document the safe and correct use of fault-finding equipment and techniques/methods on a given mechatronic system. | |
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