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Proteus Software!
Topic 1 Fundamentals of Digital Electronics
Introduction
- What does Digital Electronics study?
- Binary and hexadecimal number systems
- Introduction to switching algebra (logical operators, fundamental theorems)
Combinational logic circuits (Logic level of abstraction)
- Structural description: Logic gates
- Functional description: Truth tables, logical expressions, logical expressions in canonical forms
- Simplification of logical functions using the Karnaugh map method
- Optional combinations. Design criteria: minimum cost and minimum risk.
- Application of De Morgan's theorem in the design of combinational logic circuits with logic gates
Topic 2 Regular Functional Logic Blocks (RTL level of abstraction)
- Definition and classification (combinatorial and sequential)
- Hierarchical approach in digital design
Regular combinatorial functional logic blocks
- Arithmetic (adders, comparators, ALU)
- Data selectors (multiplexers)
Code converters (binary decoder, BCD-7 segment, binary encoder)
- Structural (gate design) and functional description of the functional logic blocks (truth tables, functional tables, logical expressions, timing diagrams)
- Application examples
- Hierarchical design in Proteus
Topic 3 Synchronous State Machines
Synchronous State Machines (MES) Method for CSS Analysis and Design.
- Designing non-regular CSS using the synchronous state machine method.
Office automation from scratch.
Mastery of the most up-to-date WINDOWS 11 operating system environment.
WORD, POWERPOINT, EXCEL.
Computer science from scratch.
Complete computer handling.
Proficiency in the WINDOWS 11 environment.
Software Installation.
It reaches the Operating Systems installation.
PLUS!!!! ALL SIMULATED EXERCISES
Conference_1_Generalities and Laws
Lecture_2_Kirchhoff's Laws
Lecture 3: General Methods
Lecture_4_Superposition_Thévenin
Lecture_5_Thévenin Maximum Power Transfer
Ideal Conference_6_AO
Conference_7_Warehouses_1
Conference_8_RC_RL
Conference_9_RLC
Conference_10_RLC_dynamic
Conference_11_Intro_CA
Conference_12_MGenerales_CA
Conference_13_Power_CA
Conference_14_Complex_Power_CA
Conference_15_Quadripoles
Conference_16_Quadripole_Connection
Robotics and Arduino
Topic 1: Introduction to Tinkercad and Arduino
• Topic Objectives: To become familiar with the Tinkercad platform and the fundamentals of Arduino.
• Contents:
or Register and log in to Tinkercad
or Tinkercad user interface
Basic concepts of Arduino and its history
Initial setup of a project in Tinkercad
Topic 2: Programming and Simulation Structure
Topic 3: Sensors and Actuators
Topic 4: Integrative Projects
Mathematics at the primary, secondary and pre-university levels.
Mathematics from zero to advanced level.
Geometries.
Problem solving.
Trigonometry.
Solving equations of all types.
Introduction to Matlab.
Guaranteed learning.
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