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The notes cover topics like Bipolar Junction Transistor, Configuration, and MOS Capacitor. You can also get a reference from this article and update yourself regularly with study resources:
- Best Bipolar Junction Transistor Reference Books
- Bipolar Junction Transistor questions list
- Bipolar Junction Transistor FAQs
A Brief Introduction to Bipolar Junction Transistor Notes
The Bipolar Junction Transistor notes start by explaining the definition, working, and applications of BJT. It contains an explanation of the topics with well-represented diagrams. The n-p-n transistor and p-n-p transistor are explained after the Bipolar Junction Transistor using a proper diagram. After explaining the Bipolar Junction Transistor, the Configuration of BJT is elaborated. Under Configuration of BJT, topics like:
- Transistor as a Switch
- Transistor as an Amplifier
- Types of three configurations for the operation of BJT
MOS Capacitor is explained after the topic Configuration of Bipolar Junction Transistor. Our Bipolar Junction Transistor notes have described the MOS capacitor and its working. The applications of the MOS capacitor is very well explained with good examples and diagrams. Topics like Accumulation, Depletion, and Inversion are explained under the MOS capacitor.
Bipolar Junction Transistor Curriculum
|Unit 1||Bipolar Junction Transistor (BJT)|
|Unit 2||A Simple, Low-frequency, Large Signal Model for BJT|
|Unit 3||How to Solve BJT Circuits?|
|Unit 4||BJT Switches and Logic Gates|
|Unit 5||Resistor-Transistor Logic (RTL)|
|Unit 6||Diode-Transistor Logic (DTL)|
|Unit 7||Transistor-Transistor Logic (TTL)|
1. Insulated Gate Bipolar Transistor IGBT Theory and Design: Vinod Kumar Khanna
Insulated Gate Bipolar Transistors (IGBT): Theory and Design contain fundamental theory & design features of IGBTs, together with the choosing of silicon, attaining specific specifications by device & process design, & device packaging. After establishing the groundwork in MOS & bipolar fields, the author builds the necessary level of power device physics useful to understand clearly regarding the subject affair, consisting of lessons on:
Specific in concentrating on IGBT in its totality, this book will be a priceless source for engineering students & professionals alike. Complete coverage of the design & invention of IGBT.
- All-in-one support
- Illustrates the basics of MOS & bipolar physics.
- Includes IGBT working, device & process design, power modules, & latest IGBT structures
2. Analysis of Bipolar and CMOS Amplifiers: Amir M. Sodagar
The traditional strategy to analog circuit study is a demoralizing survey of several pupils. Those pupils for whom this strategy is a demoralizing survey, demand unexciting details of bestowing circumstances & long computations. Many textbooks use this inconvenient strategy for small-signal amplifiers, which grows more complicated because of the number of components. “Analysis of Bipolar and CMOS Amplifiers” provides learners with an option that allows immediate & automatic interpretation & plan: the analysis-by-inspection strategy.
This practical & student-friendly writing illustrates the ways to obtain estimated outputs. These outputs lie inside an area of correctness & sound scientific principles are their basis.
The author starts from the basics of amplifiers & transistors to biasing, single & multistage amplifiers, current sources & mirrors, & analysis at mid-band, low, & high frequencies. He also illustrates the interrelationship among performance in both the time & frequency realms & maintains the study among bipolar & CMOS circuits.
Every lesson ends, including a set of simulation instances in SPICE & MATLAB, which provide learners hands-on expertise by practicing the theories & techniques involving industry-standard tools.
3. Analysis and Design of Analog Integrated Circuits: Paul R Gray
This Sixth Edition of Analysis and Design of Analog Integrated Circuits gives a complete operation of analog integrated circuit analysis & design beginning from the low-level & across modern technical studies. The writers connect bipolar, CMOS & BiCMOS analog integrated-circuit design into a combined method which stresses their similarities & shows their variations. Coverage of the matter presents precious intuition into the relevant powers & infirmities of certain essential technologies.
Here is a single complete book in the shop concerning engineers that comprise the design of CMOS & bipolar analog integrated circuits. The fifth edition maintains its comprehensiveness & renews the coverage of bipolar & CMOS circuits. Lessons 6, 7, 9, and 11 include a detailed study of the newest low-voltage bipolar operational amplifier. Lesson 12 is renewed to incorporate a completely differential enveloped cascade operational amplifier instance. Through its smooth & conventional coverage, so many engineers will shift to this means to investigate essential theories in this area.
This work mainly focuses on the learners & also in the form of a guide for employed engineers. The 5th version of the aforementioned successful engineering book is renewed to incorporate information on recently accessible integrated circuits & as well as the typical improvements in these areas.
The author has extracted the work from stuff explained to high-level seniors & graduate learners at the University of California’s Berkeley & Davis engineering departments. The writing embraces topics like The Physics of Bipolar and MOS transistors, the technology of integrated circuit (IC) fabrication & the design & applications of operational amplifiers, and also several excellent points in IC principles & systems.
This text is helpful to those individuals who are performing analog circuit design. Even if you are not designing custom ICs, you can refer to this book. (Many topics that it addresses are beneficial for the integrated or discrete system) It generates an analog system through transistors’ primary operating principles, recognizing the basic building blocks applied in many analog circuits.
The book is quite math-heavy, although it doesn’t expect a broad knowledge of physics. It possesses many circuit instances.
It is extensively prescribed for anyone studying or learning analog electronics.
Why is a transistor referred to as a current-controlled device?
In a transistor, the input current manages the output voltage, current, or power. Hence, it is called the current-controlled device.
Elaborate on the reason behind an ordinary junction transistor being called bipolar?
The ordinary junction transistor is referred to as bipolar. The reason behind this is that the transistor working is brought about by two kinds of charge carriers (majority & minority carriers).
Which are the continuously most enormous transistor currents? Which is always the smallest? Which two currents are relatively close in magnitude?
The emitter current IE is continuously the greatest one. The base current IB is forever the least. The collector current IC & emitter current IE are nearly equal insignificance.
What can be the reason behind silicon type transistors being more frequently applied as compared to germanium type?
Silicon type transistors are more frequently applied as compared to germanium type. The reason behind this is that silicon transistors hold a smaller cut-off current ICBO, slight variations in ICBO because of the fluctuations in temperature & large working temperature as contrasted with that in the case of the germanium kind.
What is the reason behind the collector being built more significantly as compared to the emitter & base?
The body of the collector is built more massive as contrasted to that of the emitter & base. The reason behind this is that the collector is to disperse a significant amount of power.
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