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所在平台: Udemy |
课程主页: https://www.udemy.com/course/microwaverf-engineering-microwave-design-and-applications/
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课程名称:微波工程:微波与射频电路基础 课程概述: 本课程深入探讨微波/射频工程的原理及应用,覆盖1 GHz至300 GHz的微波频段。学生将学习微波电路和系统的设计、分析以及案例研究。课程由拥有超过15年RF(射频)、天线和微波领域经验的Hitesh Dholakiya教授授课,他热爱教学并具有丰富的行业知识,致力于帮助学生实现他们在微波/射频工程领域的学术和职业目标。 该课程专为希望深入了解微波/射频系统的工程师、专业人士、研究人员和爱好者设计,具有独特性。课程旨在让学生全面掌握微波/射频系统的原理、应用及设计的复杂性。微波系统在航空、国防、气象和遥感等多个行业中扮演着关键角色,强调其重要性。通过深入的理论基础和现代微波工程的进展,本课程为参与者提供了扎实的知识基础。 课程内容简介: 1. 微波工程导论:微波频带、微波应用、微波信号的优势。 2. 传输线:传输线基本概念、类型、等效电路、参数及损耗。 3. 史密斯图:基本概念、数学原理及参数分析。 4. 散射参数:散射参数的基本性质及在不同网络中的应用。 5. 微波波导:波导的基本知识、比较传输线、波导的模式等。 6. 微波器件:波导不连续、耦合机制及微波隔离器等。 7. 微波源:反射克莱斯特龙、磁控管、行波管等微波源的比较。 8. 微波二极管:多种类型的微波二极管及其应用。 9. 微波测量:EMI、EMC、功率、VSWR、阻抗等的测量方法。 立即报名,迈出掌握微波/射频工程的第一步!加入我们的社区,与已经通过专家领导的微波/射频工程课程改变职业生涯的学生一起学习!期待在微波/射频工程课程中见到你!你会爱上这门课程的!谢谢……
A Microwave/RF Engineering course delves into the principles and applications of microwave frequencies, typically ranging from 1 GHz to 300 GHz. In this course of Microwave/RF Engineering, Students can explore the design, analysis, and case studies of microwave circuits and systems.Prof. Hitesh Dholakiya is a Microwave/RF/Communication Engineer with over 15 years of experience in RF (Radio Frequency), antennas, and microwaves. 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 Microwave/RF Engineering.The Microwave/RF Engineering course caters specifically to Engineers, Professionals, Researchers, and Enthusiasts keen on delving into Microwave/RF Systems. It stands out as a distinctive offering within the online learning landscape.This Microwave/RF Engineering course aims to give students an in-depth grasp of Microwave/RF systems, encompassing their principles, applications, and design intricacies. Microwave systems serve as pivotal components across diverse sectors such as aviation, defense, meteorology, and remote sensing, underscoring their significance. This course equips participants with a robust knowledge base by delving into theoretical underpinnings and contemporary advancements in Microwave Engineering.This Microwave/RF course includes videos related to Microwave Engineering and covers all Microwave/RF Engineering fundamentals.The following chapters are covered in this course on Microwave/RF Engineering.1. Introduction to Microwave Engineering2. Transmission Line 3. Smith Chart4. Scattering Parameters5. Waveguide in Microwave6. Microwave Devices7. Microwave sources8. Microwave Diodes9. Microwave MeasurementTopic wise Detailed Syllabus of Microwave/RF Engineering is as follows:1. Introduction to Microwave Engineering:Microwave Frequency Bands, Microwave Applications, Advantages of Microwave Signals.2. Transmission Line:Basics of Transmission Line, Types of Transmission Line {Two Parallel Wire Transmission Line, Coaxial Transmission Line and Microstrip Transmission Line}, Transmission Line Equivalent Circuit, Transmission Line Equations, Parameters of Transmission Line {Propagation Constant, Attenuation Constant, Phase Constant, Characteristics Impedance, Reflection Coefficient, Transmittance Coefficient, VSWR, Standing Patter, Input Impedance}, Generation of Phase Delay in Transmission Line, Examples on Transmission Line, Transmission Line Parameters, Impedance matching of Transmission Line, Losses in Transmission Line.3. Smith Chart:Basics of Smith Chart, Mathematics of Smith Chart, Examples on Smith Chart, Parameters of Smith chart like VSWR, Reflection Coefficient, Load Impedance, Input Impedance, Line Impedance, Vmax and Vmin location, Admittance, Parallel stub Impedance matching, Series stub Impedance matching.4. Scattering Parameters:Basics of Scattering parameters, Properties of Scattering parameters, Scattering parameters for two port network, Scattering parameters for four-port network, Examples of Scattering parameters.5. Waveguide in Microwave:Basics of Waveguide, Parameters of Waveguide, Comparison of Waveguide and Transmission line, Why TEM Mode is not possible in rectangular Waveguide, Parallel plate waveguide, Rectangular Waveguide, Group velocity and phase velocity in rectangular Waveguide, Modes in Rectangular Waveguide, Degenerated Modes in Rectangular Waveguide, Dominant Modes if Waveguide, Cut off frequency in rectangular Waveguide, Circular Waveguide, Comparison of Rectangular Waveguide and Circular Waveguide, Examples of circular Waveguide, Comparison of circular waveguide and rectangular waveguide, Examples on waveguide.6. Microwave Devices:Waveguide Discontinuities, Coupling Mechanisms in Waveguides, Waveguide Attenuators, Waveguide Phase Shifters, Isolator in Microwave, Waveguide Gyrators, Circulator in Microwave, Examples on Circulators in Microwave, Directional Coupler in Microwave, Examples of directional couplers in Microwave, Two holes directional coupler in Microwave, E plane Tee, H plane Tee, Magic Tee, Hybrid Ring or Rat Race coupler.7. Microwave sources:Reflex Klystron, Two cavity Klystron amplifier, Comparison of Reflex klystron and two cavity klystron, Magnetron Oscillator, Travelling wave tube, Parametric Amplifier, MASER - Microwave Amplification Stimulated Emission Radiation, Cavity Resonator, Limitations of conventional tubes over microwave tubes.8. Microwave Diodes:Schottky Diode, Gunn Diode, Varactor Diode, TRAPATT Diode, Tunnel Diode, IMPATT Diode, BARITT Diode, PIN Diode.9. Microwave Measurement:EMI, EMC, Power Measurement {Bolometer}, Attenuation Measurement {Power Ratio Method}, Phase Shift Measurement, VSWR Measurement, Impedance Measurement, Quality Factor Measurement.Enroll now and take the first step toward mastering Microwave/RF Engineering! Join Our Community of students who have transformed their careers with our expert-led course on Microwave/RF Engineering! See you in the Microwave/RF Engineering course! You're going to love it!Thank You…