Adil Khan 1 year ago
AdiKhanOfficial #FYP Ideas

Synthesis and design of Reconfigurable microstrip filter

Basically our project is technicaly based upon analogue filter to achieve desirable results. A filter is limited as to which frequencies can be suppresssed. To accomodate different frequencies, it is necessary to use a different filter. So a large chip area is used nto accomodate different operating

Project Title

Synthesis and design of Reconfigurable microstrip filter

Project Area of Specialization

Electrical/Electronic Engineering

Project Summary

Basically our project is technicaly based upon analogue filter to achieve desirable results. A filter is limited as to which frequencies can be suppresssed. To accomodate different frequencies, it is necessary to use a different filter. So a large chip area is used nto accomodate different operating frequencies. To overcome this problem, a minituarize filter with tunable/reconfigurable frequencies is designed.

Project Objectives

In this project, we have designed a compact size microstrip filter with tunable frequency. The design have following three attributes:

  • Compact Size
  • Out of band rejection
  • Cost effective

Project Implementation Method

First of all, filter specification and topology have been finalized. To implement the finalize topolgy, we have designed it on Adnavce design system software by using microstrip transmission line on Roger Duroid substrate. To obtain the efficient results, we have performed full wave EM simulation.

Benefits of the Project

Currently, several microwave filter designs contend for use in wireless communications. Among various microstrip filter designs, the reconfigurable planar filter presents more advantages and better prospects for communication applications, being compact in size, light-weight and cost-effective. Tuneable microwave filters can reduce the number of switches between electronic components.

Technical Details of Final Deliverable

Our designed topology results comprise of three band having less insertion loss and better return loss. Following are the frequency ranges of three bands:

  • 2.7-3.5 GHz
  • 4.5- 7.9 GHz
  • 9.2-9.5 GHz
  • Out of band rejection goes upto 100GHz

After getting the results we have fabricated our design on Roger Duriod Substrate.

Final Deliverable of the Project

Hardware System

Core Industry

Telecommunication

Other Industries

IT

Core Technology

Internet of Things (IoT)

Other Technologies

Internet of Things (IoT)

Sustainable Development Goals

Industry, Innovation and Infrastructure

Required Resources

Item Name Type No. of Units Per Unit Cost (in Rs) Total (in Rs)
Roger Duroid(5880) Equipment17000070000
Fabrication Miscellaneous 11000010000
Total in (Rs) 80000
If you need this project, please contact me on contact@adikhanofficial.com
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