Learn how to Design & Analyze Microstrip Patch Antennas using Different Feeds & Substrates using Keysigh ADS RAHAE209-L
Microstrip Patch Antenna Design using Keysight ADS
Design and Analysis of Microstrip Patch Antenna using Rogers5880 with Keysight ADS
Characteristics of Microstrip Patch Antenna, Advantages
Different Feed Technique
Optimization and Result Analysis of MSA
Description
In RAHAE 209-L we would be concentrating on Hand on Antenna Design using PathWave Advanced Design System (ADS). This course will cover Antenna design using different feed techniques. This course will help you to learn design steps of Microstrip Patch Antenna with the help of equations and design part in ADS. This course help to design different feeds to feed the patch antenna. The comparative analysis of different feeds and substrate with different thickness of dielectric material is included in this course. Easily understanding of antenna parameters like S-parameter, Realized gain, Efficiency, Directivity with the help of ADS software.
PLEASE NOTE PathWave Advanced Design System (ADS) software is not provided in this course however you can ask for a 1 month free trial through Keysight and also ask for extension (which most of our students have been able to extend up to additional 2 months)
You can also ask your school for the software if you are a student
Course content
- Introduction
Chapter:1 Microstrip Patch Antenna
- Microstrip patch antenna introduction
- Characteristics of Microstrip Patch Antenna, Advantages
- Applications of MSA
- Different Feed Technique
- Design steps of Microstrip Patch Antenna
- Design of Microstrip Patch Antenna at 3.5 GHz
- Microstrip Patch Antenna Design using FR4 Substrate at 3.5GHz
- Result Analysis of Microstrip Patch Antenna
- Optimization and Result Analysis of MSA
- Gain, Directivity, Efficiency and Power radiated plot
- Optimization of the Microstrip Patch Antenna
- Optimization of feed length and width
- Feed optimization continued
- Feed optimization simulation results
- Design of Microstrip Patch Antenna at 3.5 GHz with 3.2mm thick substrate
- Design of Microstrip Patch Antenna with 3.2mm thick FR4 substrate
- Result Analysis
- Result Analysis Continued…
- Microstrip Patch Antenna Optimization
- Design of Microstrip Patch Antenna at 3.5 GHz with 4.8mm thick substrate
- Design of Microstrip Patch Antenna with 4.8mm thick FR4 substrate
- Simulations result analysis
- Comparative analysis of microstrip patch antenna with different substrate thickness
Chapter:2 Design and Analysis of Microstrip Patch Antenna using Rogers5880
- Design and Analysis of Microstrip Patch Antenna using Rogers5880
- Design of microstrip patch antenna
- Result Analysis
- How Rogeers5880 affects the performance of microstrip patch antenna
- Effect of permittivity on gain of the MSA
- Design of Microstrip Patch Antenna at 3.5 GHz with 3.2mm thick Rogers substrate
- Design of Microstrip Patch Antenna at 3.5 GHz with 3.2mm thick Rogers substrate
- Far field cut of the MSA antenna
- Design of Microstrip Patch Antenna at 3.5 GHz with 4.8mm thick Rogers substrate
- Design of Microstrip Patch Antenna at 3.5 GHz with 4.8mm thick Rogers substrate
- Result Analysis
- Comparative Analysis of the MSA with 1.6mm, 3.2mm, 4.8mm thickness of the substrate
- Comparison of the antenna performance with different substrate thickness
- Comparison of MSA using FR4 and Rogers5880 Substrate for different substrate thickness
- Result Analysis of Rogers5880 and FR4 Substrate with different thickness
- What is the frequency range for Rogers5880 and FR4 Substrate and which one is better
- What is the frequency range for Rogers5880 and FR4 Substrate and which one is better
English
Language
Microstrip Patch Antenna
Before We Start
Microstrip patch antenna introduction
Characteristics of Microstrip Patch Antenna, Advantages
Applications of MSA
Different Feed Technique
Design steps of Microstrip Patch Antenna
Microstrip Patch Antenna Design using FR4 Substrate at 3.5GHz
Optimization and Result Analysis of MSA
Gain, Directivity, Efficiency and Power radiated plot
Optimization of the Microstrip Patch Antenna
Optimization of feed length and width
Feed optimization continued
Feed optimization simulation results
Design of Microstrip Patch Antenna with 3.2mm thick FR4 substrate
Result Analysis
Result Analysis Continued…
Microstrip Patch Antenna Optimization
Design of Microstrip Patch Antenna with 4.8mm thick FR4 substrate
Simulations result analysis
Comparative analysis of microstrip patch antenna different substrate thickness
Design and Analysis of Microstrip Patch Antenna using Rogers5880
Design of microstrip patch antenna
Result Analysis
How Rogeers5880 affects the performance of microstrip patch antenna
Effect of permittivity on gain of the MSA
Design of Microstrip Patch Antenna at 3.5 GHz with 3.2mm thick Rogers substrate
Far field cut of the MSA antenna
Design of Microstrip Patch Antenna at 3.5 GHz with 4.8mm thick Rogers substrate
Result Analysis
Comparison of the antenna performance with different substrate thickness
Result Analysis of Rogers5880 and FR4 Substrate with different thickness
Frequency range for Rogers5880 and FR4 Substrate and which one is better
Design and Analysis of Microstrip Patch Antenna using Rogers6002 Substrate
Design of Microstrip Patch Antenna using Rogers6002 on 1.6mm thick substrate
Result Analysis
Design of Microstrip Patch Antenna using Rogers6002 on 3.2mm thick substrate
Design of Microstrip Patch Antenna using Rogers6002 on 4.8mm thick substrate
Design and Analysis of Microstrip Patch Antenna using Polystyrene Substrate
Design of Microstrip Patch Antenna using Polystyrene on 1.6mm thick substrate
Design of Microstrip Patch Antenna on 1.6mm thick substrate Result analysis
Design of Microstrip Patch Antenna using Polystyrene on 3.2mm thick substrate
Design of Microstrip Patch Antenna using Polystyrene on 4.8mm thick substrate
Comparative analysis of microstrip patch antenna different substrate thickness
Design and Analysis of Microstrip Patch Antenna using Ceramic Substrate
Design of Microstrip Patch Antenna using Ceramic on 1.6mm thick substrate
Design of Microstrip Patch Antenna using Ceramic on 3.2mm thick substrate
Design of Microstrip Patch Antenna using Ceramic on 4.8mm thick substrate
Comparative analysis of microstrip patch antenna substrate (Ceramic)
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