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Related lectures (12)
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Datapath Subsystems Design
Covers the design of datapath subsystems, focusing on basic combinational components and various implementation options for adders, multipliers, and shifters.
Undetermined States in D-Flip-Flops
Explores undetermined states in D-flip-flops, multiplexers, tri-state gates, decoders, and complex binary decoders.
SR Latch and D Flip-Flop: Memory Elements in Logic Systems
Explores SR latch, D flip-flop, multiplexers, XOR gates, and tristate gates in logic systems.
Logic Systems: Multiplexers and Flip-Flops
Explains SR latch circuits, D-latches, D-flip-flops, clock signals, and multiplexers in logic systems.
Multiplexers: Design and Functionality
Covers the design and operation of 2-to-1 and 1-to-2 multiplexers, including transistor count and truth table analysis.
LED Displays: Multiplexed Matrix
Explores LED displays, emphasizing multiplexed matrix setups and programming techniques for effective animation.
Analog to Digital Conversion
Explores analog to digital conversion principles, challenges, and different converter scales for high-resolution digital outputs.
Multiplexing: Techniques and Applications
Explores multiplexing techniques, including FDM, TDM, WDM systems, and OTDM in optical communication.
Programmable Logic Circuits, FPGA
Explores logic circuit classification, FPGA design methodology, implementation, and Altera Cyclone IV architecture.
VHDL for Synthesis
Covers basic VHDL constructs for RTL design, including arithmetic, multiplexers, registers, and instantiation.
Logic Synthesis: Designing Efficient Digital Circuits
Discusses logic synthesis techniques for designing efficient digital circuits from functional descriptions and truth tables.
Logic Synthesis: Designing Efficient Digital Circuits
Discusses logic synthesis techniques for designing efficient digital circuits using minterms, maxterms, and new gates like XOR and XNOR.
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