
Public learning track
Digital Signal Regeneration and Pulse Modulation
11th Grade · Technology · UK A-Level
5 lessons
Goal
Design Schmitt trigger regeneration circuits and analyse PAM, PWM, and PPM waveforms.
Featured Diagrams
Designing Inverting and Non-Inverting Schmitt Triggers for Signal Regeneration
5 lessons
0 of 5 done
- 1Schmitt Trigger Switching Thresholds and Hysteresis CalculationsUp nextStart
- 2Designing Inverting and Non-Inverting Schmitt Triggers for Signal RegenerationPremiumNot started yet
- 3Graphical Analysis of Pulse Amplitude Modulation WaveformsNot started yet
- 4Graphical Analysis of Pulse Width and Pulse Position ModulationNot started yet
- 5Comparative Analysis of Analogue Pulse Modulation and Digital PCMNot started yet
Standards Covered
- ELEC-15.1General Certificate of Education Advanced Level (UK A-Level) · Electronics · Year 13 (A2 Level) · Grade 11the analysis and design of Schmitt trigger circuits to regenerate a digital signal
- ELEC-15.2General Certificate of Education Advanced Level (UK A-Level) · Electronics · Year 13 (A2 Level) · Grade 11the production and analysis of graphs to illustrate pulse modulation techniques: pulse width modulation (PWM), pulse amplitude modulation (PAM), pulse code modulation (PCM)
Curriculum Framework
11th Grade · Technology · UK A-Level
1
5 lessons
Digital Signal Regeneration and Pulse Modulation
Design Schmitt trigger regeneration circuits and analyse PAM, PWM, and PPM waveforms.
2
5 lessons
Pulse Code Modulation Systems and Architecture
Understand the complete block diagram, operation, and quantisation mechanics of a PCM communication system.
3
4 lessons
Sampling Frequency, Nyquist Criterion, and Aliasing
Apply the Nyquist sampling theorem, evaluate aliasing distortion, and specify anti-aliasing filters for PCM links.
4
6 lessons
Time-Division Multiplexing and Channel Capacity
Design and calculate capacity, frame structure, and channel limitations for time-division multiplexed PCM communications links.