Introduction to RF Design Theory and Principles - RAHRF201

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Overview

Rahsoft RF Certificate Program Available courses are as below: List of courses Available toward RF Certificate RF Fundamentals, Basic Concepts Components RAHRF101 Modulation and Digital Communications in RF RAHRF152 RF Design Theory and Principles RAHRF201 Advance Design System (ADS) Basics and Applications RAHRF209-L Receiver, Transmitter and Transceiver Architectures RAHRF409 Low Noise Amplifier (LNA) Design Fundamentals RAHRF526 Low Noise Amplifier (LNA) Design lab using ADS RAHRF526-L Power Amplifier (PA) Design Fundamentals RAHRF562 Power Amplifier (PA) Design lab using ADS RAHRF562-L In RAHRF201 you would get deeper into Radio Frequency Design Theory and Principles. The reference book for this course is RF Microelectronics of Behzad Razavi. At the end of this course the student will have depth knowledge of Radio Frequency principles. The team's main goal while developing the course has been to concentrate more on the concepts in order for students to understand the topics rather than simply providing formulas. This course has helped Engineers on surviving complicated phone and onsite interviews of Fortune 500 RF Companies and gain salaries on their early careers from 70K~120K. This course is also helpful for Engineers in the industry or technicians which want to change gears towards Radio Frequency. The above course is taught on campus in groups and now it is being provided online as well for individuals. Rahsoft provides these courses online through Udemy as well as its own website and it counts toward RF Certificate provided through Rahsoft. Below you can find the topics taught in RF Design Theory and Principles (RAHRF201) Section2: PowerHave a complete understanding of power in Radio FrequencyLecture3:Instantaneous and average powerLecture4:Power Example 1Lecture5:power and phasorLecture6:Power Example 2Lecture7:Complex powerLecture8:Complex Power SummaryLecture9:Power Example 3Lecture10:Complex Power ADS simulationLecture11:Maximum powerLecture12:Max power ADS simulationLecture13:Power and Matching(Preview enabled)Lecture14:Max Power and Matching SummaryLecture15:dB, dBm and power gainSection3:Mos TransistorLecture16:MOS Transistor structure and DC characteristicsLecture17:Small signalLecture18:Small signal modelLecture19:Parasitic cap and fTLecture20:ADS FTLecture21:MOS Example 1Section4:Non LinearityLecture22:IntroLecture23:Harmonic distortionLecture24:Gain CompressionLecture25:Gain Compression ADS exampleLecture26:Harmonic Distortion and Gain Compression SummaryLecture27:Desensitization(Preview enabled)Lecture28:Desensitization ExampleLecture29:IntermodulationLecture30:Intermodulation IIP3Lecture31:Intermodulation Example 1Lecture32:Intermodulation Example 2Lecture33:Intermodulation Example 3Lecture34:Cascaded StagesSection5:NoiseLecture35:IntroLecture36:Device NoiseLecture37:Input Referred NoiseLecture38:Input Referred Noise ExampleLecture39:Noise Figure (NF) First Part(Preview enabled)Lecture40:Noise Figure (NF) Second PartLecture41:Noise Figure (NF) Example 1Lecture42:Noise Figure (NF) Example 2Lecture43:Noise in Cascaded stagesLecture44:Noise in Cascaded stages ExampleLecture45:Noise in Passive Reciprocal CircuitsLecture46:Noise in Passive Reciprocal Circuits ExampleSection6:Sensitivity and Dynamic RangeLecture47:Sesitivity(Preview enabled)Lecture48:Sensitivity ExampleLecture49:Dynamic RangeLecture50:Dynamic Range ExampleSection7:RLC circuitLecture51:RLC resonance CircuitsLecture52:Bandwidth and Quality FactorLecture53:RLC ADS simulationLecture54:Two component networksLecture55:Low Quality Factor ExampleLecture56:Matching Circuit

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