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EE5601 PROJECT Design of the Compact Dual-Band Bandpass Filter With High Isolation for GPS/WLAN ApplicationsYu-Chi Chang, Chia-Hsiung Kao, Min-Hang Weng GROUP MEMBERS: NADIM ISLAM		        AMMAR HUSSAIN KHAN STUDENT ID: 4111805STUDENT ID: 3759630
Introduction Dual-Band BPF using SIR (stepped impedance resonator)  is designed as a novel method to fulfill the need in smaller multi-service wireless communication devices. Dual passbands at 1.575 GHz (GPS) and 2.4 GHz (WLAN). Small-size – 30.14mm x 21.16mm	 High isolation between passbands – 55 dB Wide upper stopband – 38 dB from 2.7 to 5.3 GHz
Resonant Characteristic of the Asymmetric SIR with one step discontinuity   Input Admittance Impedance Ratio Length Ratio
‘Dual-Band’ Characteristic Impedance Ratio Length Ratio GPS- 1.575 GHz WLAN- 2.4 GHz f1/f0 = 1.524 α = 0.625
Simulated Circuit  Circuit simulated based on provided dimensions
Frequency Response Comparison Response from paper (Simulations using IE3D) Response from simulation (Simulations using SONNET)
Passbands Frequency Comparison Paper Paper Our Our Passband at 1.575 GHz Passband at 2.4 GHz
THANK YOU

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Dual-Band GPS/WLAN Filter Design

  • 1. EE5601 PROJECT Design of the Compact Dual-Band Bandpass Filter With High Isolation for GPS/WLAN ApplicationsYu-Chi Chang, Chia-Hsiung Kao, Min-Hang Weng GROUP MEMBERS: NADIM ISLAM AMMAR HUSSAIN KHAN STUDENT ID: 4111805STUDENT ID: 3759630
  • 2. Introduction Dual-Band BPF using SIR (stepped impedance resonator) is designed as a novel method to fulfill the need in smaller multi-service wireless communication devices. Dual passbands at 1.575 GHz (GPS) and 2.4 GHz (WLAN). Small-size – 30.14mm x 21.16mm High isolation between passbands – 55 dB Wide upper stopband – 38 dB from 2.7 to 5.3 GHz
  • 3. Resonant Characteristic of the Asymmetric SIR with one step discontinuity Input Admittance Impedance Ratio Length Ratio
  • 4. ‘Dual-Band’ Characteristic Impedance Ratio Length Ratio GPS- 1.575 GHz WLAN- 2.4 GHz f1/f0 = 1.524 α = 0.625
  • 5. Simulated Circuit Circuit simulated based on provided dimensions
  • 6. Frequency Response Comparison Response from paper (Simulations using IE3D) Response from simulation (Simulations using SONNET)
  • 7. Passbands Frequency Comparison Paper Paper Our Our Passband at 1.575 GHz Passband at 2.4 GHz