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Everything you need to know about Electronic Basics. The first Step into Understanding Electronics & There Components.

What you will learn

This is a complete basic course in Electronics. Students will learn about Current flow and how Electronic Circuits Work

Description

This course starts off with a Brief History of Electronics. It then introduces the first time student to Current Flow, Voltage and Resistance. The course also offers an introduction of Ohm’s Law with several examples explained and the student are presented with Problems that they can solve, with the answers that follow.

The next section covers the Basics In AC and DC Voltage. AC and DC Current and Current Direction. Defines the term quantity Ampere also Covers Basic characteristics of Resistance and Explains the Color Code System and the Tolerance System for Fixed Resistors and other Passive Components that provide Resistance in an Electronic Circuit. This is first step for someone who is entering the field of electronics.

The Math section will cover many different Math Topics Related to the Decimal Numbering System. Al explains the mechanics involved in Addition, Subtraction, Multiplication and Division with both positive and negative numbers’ Al explains fractions and decimal fractions along with Algebra basics. Section ends with an introduction to Trigonometry. All Concepts are backup with Problems so student can reinforce the material that was just explained.

The Next Section (Circuit Analysis) takes the Student thru Calculating Voltage, Current and Resistance on a Series, Parallel and Series Parallel Circuits! Al gives the student a step by step instruction on how to solve these circuit properties. After finishing this course the student should have a very good understanding of Voltage drops, Current Division and Power consumption in a Electronic Circuit.

Advance Circuit Analysis Covers Kirchhoff’s Circuit Laws and Network Theorems , Super Position, Thevenin Theorem and Norton Conversions. Al Gives a detailed explanation on each of these Circuit Analysis Techniques. This course is Broken into two Sections. Section one is Kirchhoff’s Circuit Laws and Section two, network theorems and how they are used to analysis a circuit. Each section is accompanied with problems that the student can perform to reinforce their learning experience.

Capacitance Basic Section, Al Explains what is a Coulomb, and how to determine the charge on a capacitor. How Capacitance reacts in a AC Circuit (Capacitance Reactance) and DC Circuits. What is an RC Time Constantโ€™s? How waveforms are calculated in a RC Circuit. How capacitors add in series and Parallel Circuits.


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Inductance Basic Section, Al Explains the principle of Inductance and Inductive Reactance. The Circuit Examples will show how Current and Voltage are affected in a Pure Inductive Circuit and how these properties change as Resistance is added to the mix, in addition to this frequency of the Ac source voltage will be discussed and will show how the phase angle between the Voltage and current will be affected.

Al Explains how Capacitive Reactance (XC) and Inductive Reactance(XL) and Resistance (R) behaves in Alternating Voltage Circuits. Series R L C Circuits & Parallel R L C Circuits are Explained. AL Explains how to find total Impedance ( Z) of the circuit and how the phase angle are calculated with both Current and Voltage. The student should have a understanding of ohms law and basic math skills to take full advantage of this.

The next section Resonance & Resonance Effect. Al Explains a Series Resonant circuit, calculation of the resonant frequency. The characteristics of XC and XL at Resonance. What is tuning. Al Explains the Resonance Frequency Equation for the correct solution . Al also Explains Calculations of Current in a Series Resonant Circuit. Voltage across Resonant Components.

RLC Section, Al Explains R C Low Pass & R L Low filters for Cut off frequency (fc) & phase Angle. Al Explains R C High pass & R L High pass filters for Cut off frequency (fc) & Phase Angle.

Semiconductor Basics Section. Al explains semiconductor Basics, Valance Electrons in Conductors. The difference between semiconductors & conductors. Describes the doping process in, semiconductor material. What is N & P type Material ? Majority & Minority Carries Explained .Diode Curves and Characteristics, of forward and reverse Current flow, by using the Characteristic Diode Curve. Physical Diode Packaging Explained. Electron flow thru Diodes Explained. Schematic Symbol of Diode, Cathode and Anode placement explained. Placement of Physical Diode Explained. How to test a diode, with an ohm meter. A simple diode application Explained. Half Wave rectification, how to calculate peak voltage and the Average DC voltage of a half wave rectification circuit. Basic capacitor filter action is also explained. Full wave rectification, full wave bridge rectification explained and the introduction of the transformers. The Average DC Value of a full wave Rectifier explained. Introduction the two types of junction transistors PNP and NPN . Details reverse and forward bias on the junction transistor(s). Introduction of the three elements of the transistor. Al Explains the Schematic Symbols of the transistor (NPN & PNP). Physical packaging of the transistors shown and explained. How to test a transistor with an ohm meter. Introduction alpha and Beta properties of the transistors along with Ie = Ib + Ic. Explanation of alpha and Beta properties of the transistors along with Ie = Ib + Ic. Introduces Load -line (s)with a common emitter circuit . Explanation of both DC and AC transistor parameterโ€™s using the load line. How to find RL using the load line. Phase shift in a common emitter transistor. Explanation of the common Collector Circuit ( also called the emitter follower) Circuit action. Common Base configuration circuit action explained. Summary of the three transistor Configurations, Common Emitter, Common Collector and Common Base.

English
language

Content

Course Study Anoucement

Al Explains the correct way to study for his Course(s)

Brief History of Electronics

A Brief History of Electronics Part 1
A Brief History of Electronics Part 2

Basic Electronic Theory

Introduction to Basic Electronics Part 1
Introduction to Basic Electronics Part 2
Introduction to Basic Electronics Part 3
Introduction to Basic Electronics Part 4

Understanding Voltage Current & Resistance

Understanding Voltage, Current and Resistance Part 1
Understanding Voltage, Current and Resistance Part 2
Understanding Voltage, Current and Resistance Part 2
Understanding Voltage, Current and Resistance Part 4
Understanding Voltage, Current and Resistance Part 5
Understanding Voltage, Current and Resistance Part 6
Understanding Voltage, Current and Resistance Part 7
Understanding Voltage, Current and Resistance Part 8

Understaning Resistance

How Resistors are used Part 1
How Resistors are used Part 2
How Resistors are used Part 3
How Resistors are used Part 4
How Resistors are used Part 5

Math for Electronics

Introduction
Order Places 1
Order of Places 2
Addition 1
Addition 2
Subtraction
Multiplication 1
Multiplication 2
Division 1
Divison 2
Decimal Manipulation of the Percent Sign ( %)
Square & Square Roots
Average Values and RMS Values
Order of operations , Rounding off a Number , Evaluation of Formulas

Math for Electronics #1 (Negative Numbers)

Adding Negative Numbers
Subtracting Negative Numbers
Multiplication, Division of Negative Numbers

Math For Electronic #2 (Using Fractions)

Multiplication of Fractions
Division of Fractions
Multiplying or Dividing a Fraction by a Whole Number
Addition & Subtracting of Fractions
Reciprocals and Decimal Fractions

Math for Electronics #3 (Powers & Roots)

Positive Exponents Powers & Roots of Positive Exponents
Powers & Roots of Negative Numbers
Powers and Roots of Numbers with Exponents

Math for Electronic #4 (Powers of Ten)

Power of Ten Basics
Multiplication & Division Using Powers of Ten
Reciprocal, Powers of 10 & Addition & Subtraction & Raising & Roots

Math for Electronics #5 (Logarithms)

Logarithms Characteristic and Mantissa of a Logarithms
Logarithms & Anti Logs
Natural Logs

Math for Electronics #6 (Metric System)

Metric Prefixes & Units
Metric System, Lengths, Weights & Temperature prefixes and Conversions

Math for Electronic #7 (Algebra)

Literal Numbers, Powers & Roots of Literal Numbers
Powers & Roots of Literal Numbers with Equation Evaluation
Multiplying or Dividing Literal Numbers with Exponents
Terms & Factors
Polynomials
Simplifying Algebraic Expressions using Factoring and Cancelling

Math for Electronic #8 (Methods for Solving Equations )

Isolating The Literal Number in an Equation ,using Addition & Subtraction
Isolating The Literal Number in an Equation ; Using Multiplication & Division #1
Isolating The Literal Number in an Equation ; Using Multiplication & Division #2
Isolating The Literal Number in an Equation ; Using Multiplication & Division #3
Isolating The Literal Number in an Equation ; Using Multiplication & Division #4
Solutions for Literal Number Exercise

Math for Electronic #9 (Simultaneous Linear Equations)

Solving Simultaneous Linear Equations ,Using the Adding or Subtracting Method
Solving Simultaneous Linear Equations ,Using the Matrix Method
Solving Simultaneous Linear Equations . Determinate’s for Three Equations. #1
Solving Simultaneous Linear Equations . Determinate’s for Three Equations. #2

Math for Electronic #10 (Introduction to Trigonometry )

Trigonometric Function, Right Triangle #1
Trigonometric Function, Right Triangle #2
Trigonometric Triangle Functions

DC Circuit Analysis (Series Circuits)

Introduction
Series Circuit #1
Series Circuit #2
Series Circuit #3

DC Circuit Analysis ( Parallel Circuits)

Parallel Circuits #1
Parallel Circuits #2
Parallel Circuits #3

DC Circuit Analysis (Series Parallel Circuits)

Series Parallel Circuits

How Resistors work

How Resistors are used Part 1
How Resistors are used Part 2
How Resistors are used Part 3
How Resistors are used Part 4
How Resistors are used Part 5

Advanced Circuit Analysis (Kirchhoff’s Law(s) )

Al Explains Kirchhoff’s Current and Voltage Law
Al Explains Kirchhoff’s Branch Current Method for finding Voltage Current
Al Explains Kirchhoff’s Node Voltage Theorem & Kirchhoff’s Mesh Current Theorem
Al Explains Kirchhoff’s Node Voltage Analysis & Mesh Current Analysis

Advance Circuit Analysis ( Network Theroums )

Al Explains Superposition & Thevenin Network Theorems
Al Explains Thevenin & Norton Network Theorems
Thevenin & Norton Network Conversions, Y to Delta Network Conversions

Capacitance Basics

Ac Voltage Review
Capacitor Basics #1
Capacitor Basics #2

Capacitance Basics (Capacitance Reactance)

Capacitance Reactance

RC Time Constants

RC Time Constants 1
RC Time Constants 2

Inductance Properties

AC Review

Inductance (Inductance Properties)

Inductance Part 1
Inductance Part 2
Inductance Part 3
Inductance Part 4

Resistance & Inductance , Capacitance Properties in Electronic Circuits

RLC#1
RLC#2
RLC#3
RLC#4

Electronic Rasonance Circuits

Series Resonance
Parallel Resonance
Parallel Resonance Continued

R C L Filters

Filters

Introduction to Semiconductors, Diodes & Transistors

Introduction to Semiconductors

Diode Basics

Diode Introduction
Diodes #1
Diodes #2
Diodes #3

Transistor Basics

Transistor Basic 1
Transistor Basic 2
Transistor Basic 3

Awesome Electronics Lab

Introduction to Awesome Electronics Lab#1
Multi Meter Intro #1 Measuring Voltage
Multi Meter Intro #2 Measuring Voltage
Analog Meter Intro
Follow Along Lab 1
Follow along Lab 1 Continued
Multi-Meter Intro #3 Measuring Current
Follow Along Lab 2 Measuring Current
Follow Along Lab 2 Continued Measuring Current
Intro to Multi_Meter Measuring Resistance
Follow Along Lab on Measuring Resistance

Awesome Electronics Lab#2

Transformer_Review
Transformer Review #2
Awesome Electronics Lab#2 Part One
Measure Ac Current

Linear Power Supply Theory, Design & Operations Coming August September

Linear Power Supply Theory, Design & Operations Coming August September