DESIGN OF A RECTANGULAR EDGE-FED MICROSTRIP PATCH ANTENNA @ 2.4GHz.
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- Опубліковано 9 лют 2025
- This is to demonstrate the design of a rectangular edge-fed microstrip patch antenna using HFSS @ 2.4GHz. It consists of the design, analysis, simulation & tuning of the patch antenna. Enjoy!!
#Kinemarc
#Microstrip_patch_antenna
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In HFSS, you need to specify the "solution Type" of your design. There are four (4) types on solutions as follows;
1. Driven Modal: This type of solution is for passive high frequency structures such as microstrips, waveguides, and transmission lines.
2. Driven Terminal: This type also is used for simulations that deals with signal integration for models that have multi-conductor transmission lines.
3. Eigenmode: Use this type of solution type to calculate resonance of a given structure. Example is a filter.
4. Transient: This type of solution is used to employ time-domain solutions for designs with pulsed excitation such as ultra-wide band.
Tutor: Awuah Charles Marfo
Email: nanayawplatini@gmail.com
Contact: 024 865 4432
Kan adawan. Thawadah ahch. Qam Yasharahla.
Sir how to reconfigure it for different band of frequencies
Hi sir, how you determined the width and length of the feeder. Thanks for video
Hi @Zara !! You can use emtalk to carry out this process. Link here: www.emtalk.com/mscalc.php
@@kinemarc Thanks
How did the feeder become short after calculation?
he created another rectangle to extend the original feeder to decrease the overall impedance, from my understanding
At higher frequencies, the patch thickness must be taken into account. Is there such a calculator? Or a calculator as part of modern versions of the NFSS?
The formulas are mostly known. But for the edge impedance of a patch having a thickness, I don't know the formula. In addition, to calculate the length of a quarter-wave transformer, one must take into account the two-way fringing, and not just divide Lambda / 4.
Sir please snd paper' document