Learning outcome
1.1

1.1 Comprehensive, theory based understanding of the underpinning natural and physical sciences and the engineering fundamentals applicable to the engineering discipline.

1.2

1.2 Conceptual understanding of the, mathematics, numerical analysis, statistics, and computer and information sciences which underpin the engineering discipline.

1.3

1.3 In-depth understanding of specialist bodies of knowledge within the engineering discipline.

1.4

1.4 Discernment of knowledge development and research directions within the engineering discipline.

1.5

1.5 Knowledge of contextual factors impacting the engineering discipline.

1.6

1.6 Understanding of the scope, principles, norms, accountabilities and bounds of contemporary engineering practice in the specific discipline.

2.1

2.1 Application of established engineering methods to complex engineering problem solving.

2.2

2.2 Fluent application of engineering techniques, tools and resources.

2.3

2.3 Application of systematic engineering synthesis and design processes.

2.4

2.4 Application of systematic approaches to the conduct and management of engineering projects.

3.1

3.1 Ethical conduct and professional accountability.

3.2

3.2 Effective oral and written communication in professional and lay domains.

3.3

3.3 Creative, innovative and pro-active demeanour.

3.4

3.4 Professional use and management of information.

3.5

3.5 Orderly management of self, and professional conduct.

3.6

3.6 Effective team membership and team leadership.

A1

<p>Apply Electronic Design Automation (EDA) tools to the digital design process.</p>

A2

<p>Design, construct and test circuits, using appropriate techniques, to meet specifications.</p>

A3

<p>Evaluate circuits to demonstrate and verify the validity of theory.</p>

A4

<p>Design and construct semiconductor based circuits for different applications.</p>

A5

<p>Use appropriate instrumentation and software for testing electronic systems and circuits.</p>

K1

<p>Explain the principles used to implement logic functions and its limitations.</p>

K2

<p>Demonstrate the principles of digital circuits and logic design techniques.</p>

K3

<p>Describe and verify the behaviour of logic circuits used to implement various functions.</p>

K4

<p>Identify the structure and operation of different semiconductor devices.</p>

K5

<p>Describe the application of semiconductor devices to power supplies, power converter, and basic amplifier circuits.</p>

S1

<p>Design, construct and test digital circuits to implement logic functions.</p>

S2

<p>Solve digital logic design problems.</p>

S3

<p>Employ simple fault finding techniques.</p>

S4

<p>Perform circuit analysis on different electronic systems</p>

S5

<p>Recognise semiconductor device configurations and determine performance expected from them.</p>