
Public learning track
Bandwidth, Data Rate, and Multiplexing in Communications Systems
11th Grade · Technology · UK A-Level
10 lessons
Goal
Analyse the fundamental theoretical limits governing channel capacity, bandwidth, and bit rate, and design frequency- and time-division multiplexing schemes for multi-channel communication networks.
Featured Diagrams
Information Rate, Signal Bandwidth, and Channel Capacity
10 lessons
0 of 10 done
- 1Information Rate, Signal Bandwidth, and Channel CapacityUp nextStart
- 2Distinguishing Between Bit Rate and Baud RatePremiumNot started yet
- 3Nyquist Bit Rate Formula for Noiseless ChannelsNot started yet
- 4Spectral Efficiency and Multi-Level SignallingNot started yet
- 5Bandwidth Expansion and Trade-Offs in Digital ModulationNot started yet
- 6Necessity and Economic Benefits of Signal MultiplexingNot started yet
- 7Principles of Frequency-Division Multiplexing and Guard BandsNot started yet
- 8Principles of Time-Division Multiplexing and Frame SynchronisationNot started yet
- 9Bit Interleaving Versus Byte Interleaving in TDMNot started yet
- 10Comparing Synchronous and Statistical Time-Division MultiplexingNot started yet
Standards Covered
- ELEC-14.1General Certificate of Education Advanced Level (UK A-Level) · Electronics · Year 13 (A2 Level) · Grade 11the relationships between bandwidth, data rate and information-carrying capacity
- ELEC-14.2General Certificate of Education Advanced Level (UK A-Level) · Electronics · Year 13 (A2 Level) · Grade 11the necessity for multiplexing a number of signals and the principles of frequency and time-division multiplexing
Curriculum Framework
11th Grade · Technology · UK A-Level
1
10 lessons
Bandwidth, Data Rate, and Multiplexing in Communications Systems
Analyse the fundamental theoretical limits governing channel capacity, bandwidth, and bit rate, and design frequency- and time-division multiplexing schemes for multi-channel communication networks.
2
10 lessons
Noise, Distortion, and Signal Attenuation in Communications Channels
Distinguish between noise, non-linear distortion, and channel attenuation, and calculate signal-to-noise ratios, total harmonic distortion, and decibel link budgets in transmission lines.