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Timers: LED Displays and Drivers
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Related lectures (28)
Managing Time: Outputs
Explores time management in microcontrollers, covering instruction duration, active waiting, calibration, and multitasking efficiency.
Priority Encoders: Example and Operation
Explains the operation of priority encoders and provides examples of 8-input priority encoders.
PWM: Pulse Width Modulation
Covers the principles and applications of Pulse Width Modulation (PWM) in LED displays.
Timers: Microcontrollers
Explains Timer-Counter, TCNT, TCCR1, TOV, PWM, OCRA, ICRn, and their functionalities in microcontrollers and Arduino applications.
Synchronous Logic Circuits: Modeling and Optimization
Explores synchronous logic circuits, modeling techniques, state minimization, and finite-state machine optimization for area reduction.
LED Displays: Parallel Registers
Explores parallel registers for LED displays, covering the 74HC595 circuit and programming techniques for serial data transmission.
Timers and Counters: Architecture and Applications
Explores the architecture and applications of timers and counters in microcontrollers for generating precise time bases and signals.
Timing Analysis: Synchronous Circuit Design
Covers timing analysis of synchronous circuits, focusing on flip-flops, timing constraints, and metastability issues.
Synchronous Logic Circuits: Modeling and Optimization
Explores synchronous logic circuits, state-based modeling, optimization techniques, and finite-state machine state minimization.
Introduction: LED Signs and Displays
Covers the basics of LED signs and displays, including LED technology, fixed patterns, and variable information display.
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 Gates and Hazard Elimination
Explores logic gates, hazard elimination, ALUs, counters, and shift registers in semiconductor technology.
Finite State Machines: Design and Analysis Techniques
Provides an overview of finite state machines, covering their design, analysis, and practical applications in digital systems.
Digital Systems: Finite State Machines Overview
Covers finite state machines, their types, structures, and practical applications in digital systems.
Logic: Building Blocks of Machines
Covers basic logic elements, sequential circuits, and binary counting concepts in digital systems.
Logic Systems: Sequential and Combinatorial Circuits
Covers fundamental concepts of logic systems, including sequential and combinatorial circuits, state diagrams, and finite state machines.
Logic Systems: Technology Overview
Provides an overview of the technology behind logic gates, covering TTL and CMOS families and addressing static and dynamic hazards, gated clocks, and switch debouncing.
Synchronous Digital Circuits: Principles and Design
Covers principles of synchronous RTL design, custom digital circuits, Y-Diagram visualization, signal classes, and hierarchy management.
Time Management: Inputs
Covers the management of time in microcontrollers, focusing on handling inputs.
Programmable Logic Circuits, FPGA
Explores logic circuit classification, FPGA design methodology, implementation, and Altera Cyclone IV architecture.
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