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Become a hand on Radio Frequency Integrated Circuit Engineer expert by mastering simulation with ADS Keysight / Agilent
Please make sure you take RAHRF101 and RAHRF201 or go through the curriculum of the courses and make sure you have a complete knowledge of the topics prior to taking this course.
Become an ADS expert and start your path on becoming an RFIC expert by taking the Advanced Design System online course. In the ADS online course, within four weeks by downloading the free one month ads software and using the examples and pdks provided in this course you would be able to practice practical RFIC simulations and master skills needed for becoming and RF Design Engineer. Using this ADS tutorial you will become an expert and be able to start analyzing designs. Although RAHRF101 is a pre-requisite and we recommend students enrolling in RAHRF101 and RAHRF201 prior to taking the RAHRF209-L, if students have the prior knowledge or experience needed they would be able to enroll in this course.
Course Restriction
Unfortunately due to software licensing policies and the contract with Keysight, for ADS specific courses students from specific countries are not allowed to take this course.
Curriculum For This Course
Getting Started With ADS
4.1.1.1. How to start new workspace in ADS Environment.
4.1.1.2. How to add course file to your workspace.
4.1.1.3. Process design Kit (PDK) of CMOS 180nm
SIMULATION19/19
4.2.1.1. Simulations using ADS : DC Simulations
4.2.1.2. Simulations using ADS : Transistor DC simulation
4.2.2.2. Simulations using ADS:AC Simulation Of RLC circuit
4.2.2.3. Simulations using ADS :AC Simulation of Transistor
4.2.2.4. Simulations using ADS :Transistor fT using AC simulation
4.2.3.1. Simulation using ADS :Transient simulation
4.2.3.2. Simulations using ADS :Transient Simulation for given Transistor
4.2.4.1.Simulations using ADS :S-Parameter Simulation
4.2.4.2.Simulation using ADS : S-Parameter Simulation(Matched circuit)
4.2.4.3.Simulation using ADS : S-Parameter Simulation and obtain Nfmin,Max-Gain and Stability for an amplifier.
4.2.4.4. Simulations using ADS: Real Inductor
4.2.5.1.Simulations using ADS :How to make symbol?
4.2.5.2. Simulations using ADS : S-Parameter for Amplifier
4.2.6.1. Simulations using ADS : Harmonic Balance Simulation
4.2.6.2. Simulations using ADS : Harmonic Balance Simulation maximum power
4.2.6.3. Simulations using ADS : Harmonic Balance Simulation by introducing Power source
4.2.6.4.Simulations using ADS : Harmonic Balance Simulation by introducing Power with Matching circuit
4.2.7.1.Simulations using ADS :LNA simulation -S-parameter and power
4.2.7.2.Simulations using ADS :LNA simulation and XDB simulation
MATCHING USING ADS2/2
4.3.1.2. Matching using ADS: Impedance Matching of Wideband
4.3.1.3. Impedance Matching using ADS :Smith Chart tool
ADS OPTIMIZER1/1
4.4.1.1. ADS Optimizer:Simple optimization for DC simulation