| Learning outcome |
1.11.1 Comprehensive, theory based understanding of the underpinning natural and physical sciences and the engineering fundamentals applicable to the engineering discipline. |
1.21.2 Conceptual understanding of the, mathematics, numerical analysis, statistics, and computer and information sciences which underpin the engineering discipline. |
1.31.3 In-depth understanding of specialist bodies of knowledge within the engineering discipline. |
1.41.4 Discernment of knowledge development and research directions within the engineering discipline. |
1.51.5 Knowledge of contextual factors impacting the engineering discipline. |
1.61.6 Understanding of the scope, principles, norms, accountabilities and bounds of contemporary engineering practice in the specific discipline. |
2.12.1 Application of established engineering methods to complex engineering problem solving. |
2.22.2 Fluent application of engineering techniques, tools and resources. |
2.32.3 Application of systematic engineering synthesis and design processes. |
2.42.4 Application of systematic approaches to the conduct and management of engineering projects. |
3.13.1 Ethical conduct and professional accountability. |
3.23.2 Effective oral and written communication in professional and lay domains. |
3.33.3 Creative, innovative and pro-active demeanour. |
3.43.4 Professional use and management of information. |
3.53.5 Orderly management of self, and professional conduct. |
3.63.6 Effective team membership and team leadership. |
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A1<p>Apply Electronic Design Automation (EDA) tools to the digital design process.</p> |
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A2<p>Design, construct and test circuits, using appropriate techniques, to meet specifications.</p> |
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A3<p>Evaluate circuits to demonstrate and verify the validity of theory.</p> |
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A4<p>Design and construct semiconductor based circuits for different applications.</p> |
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A5<p>Use appropriate instrumentation and software for testing electronic systems and circuits.</p> |
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K1<p>Explain the principles used to implement logic functions and its limitations.</p> |
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K2<p>Demonstrate the principles of digital circuits and logic design techniques.</p> |
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K3<p>Describe and verify the behaviour of logic circuits used to implement various functions.</p> |
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K4<p>Identify the structure and operation of different semiconductor devices.</p> |
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K5<p>Describe the application of semiconductor devices to power supplies, power converter, and basic amplifier circuits.</p> |
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S1<p>Design, construct and test digital circuits to implement logic functions.</p> |
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S2<p>Solve digital logic design problems.</p> |
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S3<p>Employ simple fault finding techniques.</p> |
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S4<p>Perform circuit analysis on different electronic systems</p> |
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S5<p>Recognise semiconductor device configurations and determine performance expected from them.</p> |