Output stage part 2 LT spice emitter follower as outputstage
YOMS Electronics
Output stage part 2 LT spice emitter follower as outputstage
13:25
Part 10 | Cascode Differential Amplifier Explained (BJT) | High Gain & High Output Resistance
YOMS Electronics
Part 10 | Cascode Differential Amplifier Explained (BJT) | High Gain & High Output Resistance
13:54
Ouptput Stage part 1
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Ouptput Stage part 1
12:19
PNP and NPN current mirrors
YOMS Electronics
PNP and NPN current mirrors
7:40
Active load on differential amplifiers or how to connected a differential output into a single ended
YOMS Electronics
Active load on differential amplifiers or how to connected a differential output into a single ended
18:15
Part 9: Half-Circuit Analysis & Gain of Differential Amplifiers (BJT Explained)
YOMS Electronics
Part 9: Half-Circuit Analysis & Gain of Differential Amplifiers (BJT Explained)
12:20
Nortons theorem worked examples
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Nortons theorem worked examples
6:40
Norton’s Theorem Made Practical | Step-by-Step Numerical Examples (Applied Electricity Part 1)
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Norton’s Theorem Made Practical | Step-by-Step Numerical Examples (Applied Electricity Part 1)
9:14
Why Differential Gain Equals Half-Circuit Gain | Intuitive Proof (Part 8)
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Why Differential Gain Equals Half-Circuit Gain | Intuitive Proof (Part 8)
10:47
Large-Signal Analysis of Differential Amplifiers | Tanh Model Explained (Part 7)
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Large-Signal Analysis of Differential Amplifiers | Tanh Model Explained (Part 7)
18:55
Input and Output Characteristics of Differential Amplifiers Explained (Part 6)
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Input and Output Characteristics of Differential Amplifiers Explained (Part 6)
20:20
Current Steering in Differential Amplifiers: How Tail Current Shifts with Input Variation (Part 5)
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Current Steering in Differential Amplifiers: How Tail Current Shifts with Input Variation (Part 5)
9:14
LTspice Simulation of Differential Amplifiers: Visualizing Noise Cancellation (Part 4)
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LTspice Simulation of Differential Amplifiers: Visualizing Noise Cancellation (Part 4)
23:21
Differential Signals Explained: Voltage Difference vs Common Signals (Part 3)
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Differential Signals Explained: Voltage Difference vs Common Signals (Part 3)
11:10
How Differential Amplifiers Cancel Noise | In-Depth Common-Mode Analysis (Part 2)
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How Differential Amplifiers Cancel Noise | In-Depth Common-Mode Analysis (Part 2)
9:44
Differential Amplifiers Explained: Applications & Noise Cancellation Basics (Part 1)
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Differential Amplifiers Explained: Applications & Noise Cancellation Basics (Part 1)
6:40
Oscillators Explained: Applications, Feedback & the LC Tank Circuit (Part 1)
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Oscillators Explained: Applications, Feedback & the LC Tank Circuit (Part 1)
2:51
Simulating a PNP Common emitter stage on LT spice
YOMS Electronics
Simulating a PNP Common emitter stage on LT spice
10:24
Intrinsic Gain of an NPN Transistor Explained | LTspice Simulation Tutorial
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Intrinsic Gain of an NPN Transistor Explained | LTspice Simulation Tutorial
9:04
Improving Current Mirror Accuracy Using an Emitter Follower | Part 1
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Improving Current Mirror Accuracy Using an Emitter Follower | Part 1
5:34
Improving Current Mirror Accuracy Using an Emitter Follower | Part 2
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Improving Current Mirror Accuracy Using an Emitter Follower | Part 2
3:43
Current Mirror Errors: Why Copying Too Many Outputs Breaks Accuracy
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Current Mirror Errors: Why Copying Too Many Outputs Breaks Accuracy
8:53
Current Mirror Scaling Explained | Increasing & Reducing Current Using N Copies (Part 4)
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Current Mirror Scaling Explained | Increasing & Reducing Current Using N Copies (Part 4)
8:28
Current Mirrors Explained | From Biasing Problems to the Basic BJT Current Mirror (Part 3)
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Current Mirrors Explained | From Biasing Problems to the Basic BJT Current Mirror (Part 3)
9:46
Building Up to Current Mirrors (Part 2) | Diode-Connected BJT Explained
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Building Up to Current Mirrors (Part 2) | Diode-Connected BJT Explained
6:42
Why Simple BJT Biasing Fails as a Current Source | Building Up to Current Mirrors (Part 1)
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Why Simple BJT Biasing Fails as a Current Source | Building Up to Current Mirrors (Part 1)
4:28
PNP & NPN Current Sources Explained | Introduction to Current Mirrors (Part 1)
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PNP & NPN Current Sources Explained | Introduction to Current Mirrors (Part 1)
8:53
More Thévenin’s Theorem Examples | Exam-Style Problems & Common Mistakes
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More Thévenin’s Theorem Examples | Exam-Style Problems & Common Mistakes
7:40
Part 1 Thévenin’s Theorem Worked Examples | Step-by-Step Problem Solving (Applied Electricity)
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Part 1 Thévenin’s Theorem Worked Examples | Step-by-Step Problem Solving (Applied Electricity)
6:50
Final Year Project Made Simple | From Project Work to Publishable Paper (Mendeley Guide)
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Final Year Project Made Simple | From Project Work to Publishable Paper (Mendeley Guide)
29:49
Cascode Amplifier BJT part c6 | using easy gain formula
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Cascode Amplifier BJT part c6 | using easy gain formula
15:11
Cascode BJT Amplifier Explained | Gain, Output Impedance & Why Cascodes Matter (Part C5)
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Cascode BJT Amplifier Explained | Gain, Output Impedance & Why Cascodes Matter (Part C5)
9:42
Emitter Degeneration vs Cascode BJT Current Sources | Detailed Analysis (Part C4)
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Emitter Degeneration vs Cascode BJT Current Sources | Detailed Analysis (Part C4)
5:56
Cascode vs Degenerated vs Simple BJT Current Sources | LTspice Comparison (Part C3)
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Cascode vs Degenerated vs Simple BJT Current Sources | LTspice Comparison (Part C3)
12:14
Cascode BJT Current Source (Part C2) – Output Impedance Improvement Explained
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Cascode BJT Current Source (Part C2) – Output Impedance Improvement Explained
3:52
Cascode BJTs Explained (Part C1): BJT Current Sources & Output Impedance Basics
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Cascode BJTs Explained (Part C1): BJT Current Sources & Output Impedance Basics
13:11
Troubleshooting LT spice common emitter cascaded with common collector stage part s14
YOMS Electronics
Troubleshooting LT spice common emitter cascaded with common collector stage part s14
23:30
BJT Spin-Off (Part S13): Cascading CE & Emitter Follower to Drive a Speaker | LTspice Tutorial
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BJT Spin-Off (Part S13): Cascading CE & Emitter Follower to Drive a Speaker | LTspice Tutorial
8:13
Part S12 – BJT Input & Output Impedance | Early Voltage, Emitter Degeneration & Base Effects
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Part S12 – BJT Input & Output Impedance | Early Voltage, Emitter Degeneration & Base Effects
7:42
How an Emitter Follower Drives a Speaker | CE + CC Cascaded Amplifier (Part S11)
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How an Emitter Follower Drives a Speaker | CE + CC Cascaded Amplifier (Part S11)
5:10
How to Bias CE, CB & CC Amplifier Stages (BJT Theory) | Part S10
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How to Bias CE, CB & CC Amplifier Stages (BJT Theory) | Part S10
11:55
Norton’s Theorem Using Source Transformation | A Practical View
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Norton’s Theorem Using Source Transformation | A Practical View
10:31
Thévenin’s Theorem Made Practical | Measure Voltage, Measure Current, Simplify
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Thévenin’s Theorem Made Practical | Measure Voltage, Measure Current, Simplify
19:35
Emitter Degeneration in BJTs (LTspice) – Part 2 | Stability, Gain & Headroom Trade-offs (S9)
YOMS Electronics
Emitter Degeneration in BJTs (LTspice) – Part 2 | Stability, Gain & Headroom Trade-offs (S9)
10:06
Emitter Degeneration in BJTs (LTspice) | Stability, Gain & Headroom Visualised – Part S8
YOMS Electronics
Emitter Degeneration in BJTs (LTspice) | Stability, Gain & Headroom Visualised – Part S8
15:50
Emitter Degeneration & Headroom Loss in BJTs | Why Forward-Active Mode Costs Voltage (Part S7)
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Emitter Degeneration & Headroom Loss in BJTs | Why Forward-Active Mode Costs Voltage (Part S7)
5:43
BJT Headroom Explained | Why Biasing, Gain & Linearity Compete (Part S6 – Spin-Off Series)
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BJT Headroom Explained | Why Biasing, Gain & Linearity Compete (Part S6 – Spin-Off Series)
5:46
BJT Small-Signal Analysis 2 Part s4
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BJT Small-Signal Analysis 2 Part s4
8:02
Small-Signal Analysis of BJTs | prerequisite for headroom (Part S5)
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Small-Signal Analysis of BJTs | prerequisite for headroom (Part S5)
11:36
Small-Signal Analysis of BJT Amplifiers | Transconductance, Biasing & Gain (Part S3)
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Small-Signal Analysis of BJT Amplifiers | Transconductance, Biasing & Gain (Part S3)
8:26
How a BJT Works as a Voltage Amplifier | BJT Theory Spin-Off (Part S2)
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How a BJT Works as a Voltage Amplifier | BJT Theory Spin-Off (Part S2)
11:11
BJT Theory (Spin-Off) – Part S1: Transistors as Voltage-Dependent Current Sources
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BJT Theory (Spin-Off) – Part S1: Transistors as Voltage-Dependent Current Sources
11:57
Applied Electricity |  Kirchhoff’s Laws Part 4
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Applied Electricity | Kirchhoff’s Laws Part 4
26:40
Applied Electricity – Part 3 | Current Divider Rule & Voltage Drops Explained
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Applied Electricity – Part 3 | Current Divider Rule & Voltage Drops Explained
24:17
Applied Electricity – Part 2 | Resistors in Series & Parallel (Equivalent Resistance)
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Applied Electricity – Part 2 | Resistors in Series & Parallel (Equivalent Resistance)
19:27
Part 13 – BJT Self-Biasing Explained | Simple Biasing, Self-Correction & LTspice Tutorial
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Part 13 – BJT Self-Biasing Explained | Simple Biasing, Self-Correction & LTspice Tutorial
12:27
Part 12 – Emitter-Degenerated Voltage Divider Bias Explained | Feedback & Branch Currents in LTspice
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Part 12 – Emitter-Degenerated Voltage Divider Bias Explained | Feedback & Branch Currents in LTspice
56:33
Part 11b. Voltage Resistive divider biasing with some troubleshooting
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Part 11b. Voltage Resistive divider biasing with some troubleshooting
14:18
Part 11 – Voltage Divider Bias Explained | Stable BJT Biasing with a Single Suppl
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Part 11 – Voltage Divider Bias Explained | Stable BJT Biasing with a Single Suppl
29:06
Applied Electricity (Foundations of Circuits)
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Applied Electricity (Foundations of Circuits)
12:03
Part 10 – Practical BJT Biasing with a Single Supply  Resistor Design, Headroom  & LTspice
YOMS Electronics
Part 10 – Practical BJT Biasing with a Single Supply Resistor Design, Headroom & LTspice
26:58
Final Year Project to Journal Paper | A Practical Guide for FYP & MSc Students
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Final Year Project to Journal Paper | A Practical Guide for FYP & MSc Students
39:19
Part 9 – Input & Output Impedance Explained | Effects of Emitter Degeneration & Early Voltage
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Part 9 – Input & Output Impedance Explained | Effects of Emitter Degeneration & Early Voltage
16:51
Part 8– Small-Signal Analysis & Transconductance 𝑔𝑚​ Explained | BJT Amplifier Fundamentals
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Part 8– Small-Signal Analysis & Transconductance 𝑔𝑚​ Explained | BJT Amplifier Fundamentals
13:01
Part 7 – BJT Output Characteristics Explained | IC vs 𝑉𝐶𝐸 ​, Early Voltage & Regions of Operation
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Part 7 – BJT Output Characteristics Explained | IC vs 𝑉𝐶𝐸 ​, Early Voltage & Regions of Operation
16:34
Part 6 – BJT  IC–VBE ​ Characteristics Explained | LTspice Simulation
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Part 6 – BJT IC–VBE ​ Characteristics Explained | LTspice Simulation
7:41
Early Voltage Effect Explained | Transistor Regions & Current Source Trade-Offs (Part 5b)
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Early Voltage Effect Explained | Transistor Regions & Current Source Trade-Offs (Part 5b)
13:50
Early Voltage Effect in LTspice | Why BJTs Aren’t Ideal Current Sources (Part 5)
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Early Voltage Effect in LTspice | Why BJTs Aren’t Ideal Current Sources (Part 5)
13:28
Q-Point Biasing & Headroom Optimization in LTspice | Practical Demo (Part 4b)
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Q-Point Biasing & Headroom Optimization in LTspice | Practical Demo (Part 4b)
8:32
Maximizing Voltage Headroom | Biasing the Q-Point for Full Output Swing (Part 4)
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Maximizing Voltage Headroom | Biasing the Q-Point for Full Output Swing (Part 4)
8:31
Voltage Headroom Explained | Why Output Clipping Happens at Low Vcc (Part 3)
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Voltage Headroom Explained | Why Output Clipping Happens at Low Vcc (Part 3)
9:33
Understanding the Common Emitter Amplifier | Theory & Analysis (Part 2)
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Understanding the Common Emitter Amplifier | Theory & Analysis (Part 2)
14:02
The “Hello World” of LTspice | Common Emitter Amplifier (Part 1)
YOMS Electronics
The “Hello World” of LTspice | Common Emitter Amplifier (Part 1)
8:47