
Public learning track
Interrupts and Embedded System Integration
11th Grade · Technology · UK A-Level
5 lessons
Goal
Design and analyse real-time microcontroller systems utilizing hardware interrupts, sensor interfacing, and dedicated control sub-systems.
Featured Diagrams
Polling versus Interrupt-Driven Control
5 lessons
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- 1Polling versus Interrupt-Driven ControlUp nextStart
- 2Hardware Interrupt Sources and Vector ExecutionPremiumNot started yet
- 3Writing Interrupt Service Routines and Context SavingNot started yet
- 4Microcontroller Applications in Automation and MonitoringNot started yet
- 5Designing and Analysing Complete Microcontroller SystemsNot started yet
Standards Covered
- ELEC-11.4General Certificate of Education Advanced Level (UK A-Level) · Electronics · Year 13 (A2 Level) · Grade 11the use of interrupts to allow an external device to be serviced on request
- ELEC-11.7General Certificate of Education Advanced Level (UK A-Level) · Electronics · Year 13 (A2 Level) · Grade 11programming microcontrollers using assembler language
- ELEC-11.5General Certificate of Education Advanced Level (UK A-Level) · Electronics · Year 13 (A2 Level) · Grade 11the applications of a microcontroller
- ELEC-11.6General Certificate of Education Advanced Level (UK A-Level) · Electronics · Year 13 (A2 Level) · Grade 11the design and analysis of systems with a microcontroller sub-system
Curriculum Framework
11th Grade · Technology · UK A-Level
1
4 lessons
Microcontroller Architecture and Hardware Systems
Understand the internal architecture of a microcontroller and how its functional blocks interface with external circuits.
2
5 lessons
Flowchart Programming and Algorithmic Control
Design, analyse, and debug structured flowchart programs to control microcontroller-based electronic systems.
3
6 lessons
Assembly Language Programming and Low-Level Control
Write, analyse, and trace assembly language programs for microcontroller register manipulation and hardware control.
4
5 lessons
Interrupts and Embedded System Integration
Design and analyse real-time microcontroller systems utilizing hardware interrupts, sensor interfacing, and dedicated control sub-systems.