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EE50231: Electronic systems design automation

Follow this link for further information on academic years Academic Year: 2019/0
Further information on owning departmentsOwning Department/School: Department of Electronic & Electrical Engineering
Further information on credits Credits: 6      [equivalent to 12 CATS credits]
Further information on notional study hours Notional Study Hours: 120
Further information on unit levels Level: Masters UG & PG (FHEQ level 7)
Further information on teaching periods Period:
Semester 1
Further information on unit assessment Assessment Summary: CW 100%
Further information on unit assessment Assessment Detail:
  • Technical Exercise (CW 20%)
  • Technical Report (CW 80%)
Further information on supplementary assessment Supplementary Assessment:
Like-for-like reassessment (where allowed by programme regulations)
Further information on requisites Requisites:
Further information on descriptions Description: Aims:
To provide students with the key skills required for electronic systems design automation.
To be able to use electronic design tools including schematic capture, integrated circuit layout, simulation (analogue and digital), synthesis and post processing.
Understand the key processes in design automation including simulation, layout and synthesis.

Learning Outcomes:
After successfully completing this unit the student will be able to:
Understand, design and critically appraise electronic system design processes.
Demonstrate detailed knowledge of the key concepts in design automation.
Be able to apply design automation techniques to solve design problems.
Demonstrate ability to deal with complex design issues and critically analyse information using professional simulation and design tools.
Apply design tools to independently develop an individual design.

Skills:
Numeracy: Analysis of Electronic Circuits (TFA).
Use IT to collect, analyse and present technical information; solve problems, communicate effectively and retrieve information (TFA).
Use appropriate professional simulation and design tools (TFA).
Employ a range of established and new techniques to review and critically analyse information concerning engineering problems, and to propose and implement solutions in a professional manner (FA).

Content:
Theory and practice of analogue IC design using hardware description languages and schematic capture.
Design of electronic systems using analogue and digital simulation.
Optimization and synthesis of designs.
Validation of designs using test benches and verification techniques.
Parasitic extraction and analysis.
Further information on programme availabilityProgramme availability:

EE50231 is Compulsory on the following programmes:

Department of Electronic & Electrical Engineering

EE50231 is Optional on the following programmes:

Department of Computer Science
  • RSCM-AFM51 : Integrated PhD Accountable, Responsible and Transparent Artificial Intelligence
  • TSCM-AFM51 : MRes Accountable, Responsible and Transparent Artificial Intelligence
  • TSCM-AFM52 : MSc Accountable, Responsible and Transparent Artificial Intelligence

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