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课程名称:模拟电子学:掌握模拟电路设计 课程概述: 欢迎来到模拟电子学的世界!本课程将深入探讨模拟电路的基本原理和应用。从运算放大器到滤波器、振荡器等,您将探索模拟电子学的复杂领域,获得设计、分析和故障排除各种电路的技能,这些电路对现代电子设备至关重要。讲师Hitesh Dholakiya教授是一位拥有超过15年核心电子/电气领域以及天线/RF/通讯领域经验的电子与通信设计工程师。凭借对教学的热情和丰富的行业知识,Dholakiya教授致力于帮助学生在模拟电子学领域实现学术和职业目标。 本课程特别为希望掌握模拟电子学基础到高级知识的学生设计,同时也适用于在职专业人士。它为进入嵌入式系统、VLSI、仪器等领域奠定了基础,覆盖了几乎所有大学的课程大纲。在在线市场上,这门模拟电子学课程独具特色,适用于学位、文凭和理科学生。完成本课程后,学生将能够理解从基础到高级的模拟电子学概念,如运算放大器、锁相环、压控振荡器、固定电压调节器等,成为许多高薪职业领域的起点。 课程内容包括: 1. 模拟电子学中的二极管电路 2. 模拟电子学中的BJT电路 3. 模拟电子学中的运算放大器 4. 模拟电子学中的555定时器 5. 模拟电子学中的锁相环(PLL) 6. 模拟电子学中的压控振荡器(VCO) 7. 模拟电子学中的固定和可调电压调节器 课程详细大纲: 1. 二极管电路在模拟电子学中的应用 2. BJT电路的结构与工作原理 3. 运算放大器的基本概念及应用 4. 555定时器的多重振荡器设计 5. 锁相环的工作原理及其应用 6. 压控振荡器的设计与应用 7. 固定与可调电压调节器的原理及应用 现在就报名,迈出掌握模拟电子学核心概念的第一步吧!加入我们的社区,成就那些通过专家讲授的模拟电子学课程改变职业生涯的学生!期待在模拟电子学课程中见到您! 祝您一切顺利!
Welcome to the world of Analog Electronics! In this course on Electronic Devices and Circuits, we'll delve into the fundamental principles and applications of analog circuits. From operational amplifiers to filters, oscillators, and more, you'll explore the intricate world of analog electronics, gaining the skills to design, analyze, and troubleshoot a variety of circuits essential for modern electronics.Prof. Hitesh Dholakiya is an Electronics and Communication Design Engineer with over 15 years of experience in the core Electronics/Electrical domain as well as in the Antenna/RF/Communication field. With a passion for teaching and a wealth of industry knowledge, Prof. Hitesh Dholakiya is dedicated to helping students achieve their academic and professional goals in the Analog Electronics domain.This Analog Electronics course is specially designed for students who want to clear basic to advanced fundamentals of Analog Electronics. It is also useful for working professionals. It forms the foundation for entering fields like Embedded Systems, VLSI, Instrumentations, etc. This Analog Electronics course covers almost all universities' syllabus. This Analog Electronics is a unique course in the online marketplace.This Analog Electronics course applies to Degree, Diploma, and Science Students. After completing this course students will be able to understand basic to advanced-level concepts of Analog Electronics such as OP-AMP, PLL, VCO, Voltage Regulators, etc. which will be a stepping stone for starting many lucrative career fields.This course on Analog Electronics covers the following Chapters.1. Diode Circuits in Analog Electronics2. BJT Circuits in Analog Electronics3. Operational Amplifier in Analog Electronics4. 555 Timer in Analog Electronics5. Phase Lock Loop (PLL) in Analog Electronics6. Voltage Controlled Oscillator (VCO) in Analog Electronics7. Fixed Voltage Regulators and Adjustable Voltage Regulators in Analog ElectronicsTopic wise Detailed Syllabus of Analog Electronics is as follows:1. Diode Circuits in Analog Electronics: Energy Bands and Classifications of Solid Materials, Types of Semiconductor Materials, PN Junction Diode, VI Characteristics of PN Junction Diode, Dynamic Resistance of Diode, Effect of Temperature in PN Junction, Diode Testing and Diode Quality verification, Ideal Diode and Practical Diode Approximation, Diode Ratings, Half Wave Rectifier, Parameters of Half Wave Rectifier, Full Wave Rectifier, Parameters of Full Wave Rectifier, Comparison of Half Wave Rectifier and Full Wave Rectifier, Filters in Rectifier, Capacitor Filter, Inductor Filter, Pi Filter and T Filter in Rectifier, Linear and Nonlinear Wave Shaping Circuit, Clipper Circuits, Examples of Clipper Circuits, Clamper Circuits, Examples of Clamper Circuits, Zener Diode, Zener Diode as Voltage Regulator, Examples of Zener Diode.2. BJT Circuits in Analog Electronics: BJT, BJT Operational Regions, BJT Working, Common Base Configuration of BJT, Common Emitter Configuration of BJT, Relationship of Alpha, Beta and Gamma of BJT, DC Load Line of BJT, Bias Stabilization of BJT, Stability Factor of BJT, Fixed Bias of BJT, Emitter Bias of BJT, Collector Feedback Bias of BJT, Voltage Divider Bias of BJT, Examples of Transistor Biasing, Transistor as Switch.3. Operational Amplifier in Analog Electronics: Introduction to Operational Amplifier, Parameters of Operational Amplifier, Examples of Parameters of Operational Amplifier, Characteristics of Ideal Operational Amplifier, Feedback in Operational Amplifier, Virtual Short and Virtual Ground Concept in Operational Amplifier, Inverting Amplifier and Non-Inverting Amplifier using Operational Amplifier, Voltage Follower using Operational Amplifier, Summing Averaging and Scaling using Operational Amplifier, Summing using Differential Operational Amplifier, Subtractor using Differential Operational Amplifier, Circuit Design from Equation using Operational Amplifier, 741 IC of Operational Amplifier, Examples of Operational Amplifier Circuits, V to I Converter using Operational Amplifier, I to V Converter using Operational Amplifier, Differentiator using Operational Amplifier, Examples of Differentiator using Operational Amplifier, Integrator using Operational Amplifier, Examples of Integrator using Operational Amplifier, Monostable Multivibrator using Operational Amplifier, Pulse width Derivation of Monostable Multivibrator using Operational Amplifier, Astable Multivibrator using Operational Amplifier, Frequency Derivation of Astable Multivibrator using Operational Amplifier, Designing of Multivibrator using Operational Amplifier, Bistable Multivibrator using Operational Amplifier, Triangular wave generator using Operational Amplifier, Sample and Hold Circuit using Operational Amplifier, Peak Detector using Operational Amplifier, Comparator using Operational Amplifier, Schmitt Trigger using Operational Amplifier, Instrumentation Amplifier using Operational Amplifier, Designing of Instrumentation Amplifier using Operational Amplifier, Precision Rectifier using Operational Amplifier, Log Amplifier using Operational Amplifier, Antilog Amplifier using Operational Amplifier, Clipper Circuits using Operational Amplifier, Active Filters using Operational Amplifier, First Order Butterworth Low Pass Filter using Operational Amplifier, First Order Butterworth High Pass Filter using Operational Amplifier, Designing of First Order Butterworth Low Pass Filter and High Pass Filter using Operational Amplifier, Wide Band Pass Filter using Operational Amplifier, Narrow Band Pass Filter using Operational Amplifier, Wide Band Stop Filter using Operational Amplifier, Narrow Band Stop Filter using Operational Amplifier, RC Phase Shift Oscillator using Operational Amplifier, Designing of RC Phase Shift Oscillator using Operational Amplifier, Wein Bridge Oscillator using Operational Amplifier, Designing of Wein Bridge Oscillator using Operational Amplifier, Designing of Oscillator using Operational Amplifier, Designing of Schmitt Trigger using Operational Amplifier, Designing of Integrator using Operational Amplifier, Designing of Filters using Operational Amplifier, Solved Examples of Operational Amplifier.4. 555 Timer in Analog Electronics: 555 Timer IC, Astable Multivibrator using 555 Timer IC, Monostable Multivibrator using 555 Timer IC, Bistable Multivibrator using 555 Timer IC, Designing of Multivibrator using 555 Timer IC.5. Phase Lock Loop (PLL) in Analog Electronics: Phase Lock Loop - PLL, Phase Lock Loop IC - PLL IC - 565 IC6. Voltage Controlled Oscillator (VCO) in Analog Electronics: Voltage Controlled Oscillator - VCO, Voltage Controlled Oscillator IC - VCO IC - 566 IC.7. Fixed Voltage Regulators and Adjustable Voltage Regulators in Analog Electronics: Fixed Voltage Regulator, Adjustable Voltage Regulator.Enroll now and take the first step toward mastering Analog Electronics' core concepts! Join Our Community of students who have transformed their careers with our expert-led course on Analog Electronics! See you in the Analog Electronics course! You're going to love it! All the best...