Analog Electronics Design & Simulate BJT Circuits on Proteus

所在平台: Udemy

课程主页: https://www.udemy.com/course/analog-electronics-part-2-all-about-transistors-in-depth/

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课程名称:模拟电子设计与在Proteus上模拟BJT电路 概述:本课程适合电气、电子、仪器、 biomedical 和机器人工程专业的学生。在报名参加本课程之前,您需要对电流、电力半导体、二极管、电容器等有一定的了解。如果您对此不太熟悉,可以先参加我其他的课程,深入学习这些概念。您知道您的智能手机中有数百万亿个晶体管,但您是否知道它们的重要性和工作原理?为了从心脏获取心电图,除了电极外,您还需要信号调理电路来增强整体信号。在各种低端应用中,通常需要通过晶体管来控制电机,而信号放大器则用于信号放大。在智能手机中,有许多逻辑门迅速开关来执行特定任务,所有这些都与晶体管相关。因此,本课程极力推荐给生物医学、电气、电子、仪器和机器人工程专业的学生。 课程亮点: - 了解晶体管的重要性和定义 - 探索各种类型的晶体管,重点关注BJT晶体管 - 理解BJT晶体管的基础知识,并了解为何NPN优于PNP - 学习BJT的特性及其稳定性影响因素 - 深入了解晶体管的不同偏置技术 - 通过Proteus软件获得数值和电路仿真实践经验 - 探索BJT作为开关和放大器的应用 - 参与三个在Proteus软件上模拟的迷你项目 课程结构: - 晶体管的重要性 - 晶体管的定义 - 晶体管的类型 - 理解BJT晶体管的基础 - BJT的类型 - 为什么NPN优于PNP - 集电区域为何大于发射区域 - BJT的特性 - 什么是偏置及其必要性 - 晶体管的不同偏置技术 - 稳定性因子 - 在Proteus软件上进行的数值和电路仿真 - BJT作为开关 - BJT作为放大器 - 三个迷你项目 课程成果: - BJT电路 - 20多个数值 - 在Proteus软件上进行的电路仿真 - 三个在Proteus软件上模拟的迷你项目 - 每个视频课程后提供免费的PDF用于复习 加入这个课程,提升您的知识与技能,享受全面的学习体验,为您的工程学习之旅增光添彩!

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课程详情

This course is ideal for Electrical, Electronics, Instrumentation, Biomedical, and Robotic Engineering Students.Before enrolling in the course I expect that you must have a good idea about current electricity, semiconductors, diodes, capacitors, etc. If you don't have any idea about it then you can enroll in the rest of my courses which deal with all these concepts in depth.Do you know that your smartphone has millions and billions of transistors but I'm damn sure you don't what is their significance or how they work? To take ECG from the heart, along with an electrode you will require signal conditioning circuits which will enhance the overall signal, In various low-end applications, you need to control the motor and this is generally done by transistors, To amplify the signal amplifier is required, In your smartphone, lots of logic gates are present that switch on and off very quickly to carry out certain tasks and all of these things are done by Transistor. Thus this course is highly recommended for Biomedical, Electrical, Electronics, Instrumentation, and Robotic engineering students. @ Course Highlights:-Explore the importance and definition of transistors.Dive into the various types of transistors, with a focus on BJT transistors.Understand the basics of BJT transistors and discover why NPN is preferred over PNP.Learn about the characteristics of BJT and the factors influencing stability.Delve into the different biasing techniques of transistors.Gain hands-on experience with numerical and circuit simulations using Proteus software.Explore BJT's applications as a switch and amplifier.Engage in three exciting mini-projects with simulations on Proteus software. @ Roadmap:-Importance of TransistorDefinition of TransistorTypes of TransistorsUnderstanding the basics of BJT transistors.Types of BJT transistorsWhy NPN is preferred over PNPWhy area of the collector region is greater than the emitter region?Characteristics of BJTWhat is biasing and the need for biasing transistors?Different biasing techniques of transistorsStability factor Numericals + Simulation of circuits on proteus software BJT as a switch BJT as an amplifier3-Mini projects@ Outcome:- BJT circuits20+ NumericalsSimulation of circuits on proteus softwareThree Mini projects simulated on proteus software Free PDFs are available after each video session for revision purposesI hope you will surely enjoy my course. Don't miss out on this opportunity to enhance your knowledge and skill set. Enroll now and enjoy a comprehensive learning experience that will empower you in your engineering journey!

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