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Related lectures (30)
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Sequential Logic Circuits: LED Displays
Explores sequential logic circuits, flip-flops, binary counting, and memory registers in digital systems.
Arbiter FSM & FPGA Implementation
Covers the design of an Arbiter FSM in VHDL for digital system design, emphasizing access timing management.
Synchronous Logic Circuits: Modeling and Optimization
Explores synchronous logic circuits, state-based modeling, optimization techniques, and finite-state machine state minimization.
Logic Gates and IC Technology
Explores the implementation of logic gates in semiconductor material, focusing on TTL and CMOS technologies, ICs, hazards, clocks, D flip-flops, and switch debouncing.
Dynamic Memory Elements: Latches and Flip-Flops
Covers dynamic memory elements, latches, flip-flops, timing parameters, clock skew, and synchronous pipelining.
Sequential Circuits: Optimization and Retiming
Covers structural models, synthesis approaches, and retiming techniques for sequential circuits.
Digital Logic Circuits: Memory Elements and Sequential Logic
Introduces sequential logic circuits and memory elements, focusing on their role in digital systems and practical applications.
Logic: Building Blocks of Machines
Covers basic logic elements, sequential circuits, and binary counting concepts in digital systems.
Sequential Circuits: Synthesis and Retiming
Covers the structural model for sequential circuits, synchronous logic networks, and approaches to sequential synthesis including retiming.
Synchronous Logic Circuits: Modeling and Optimization
Explores synchronous logic circuits, modeling techniques, state minimization, and finite-state machine optimization for area reduction.