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Published byNatalie Ford Modified over 8 years ago
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Radio Frequency Sniffer : Design Review by Liem Nguyen 1
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Problem statement Radio frequency: good and bad Bad – Unwanted radio freq. during device testing/ medical zones – i.e Cell phones in WAT 322 – RF interference with medical devices – “Spying”/ eavesdropping Solution – 1.8 GHz RF detector (i.e cell phone) 2
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Methods: Block Diagram Figure 1: Block Diagram of RF receiver used in Sniffer Circuit. 3
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Methods: Circuit Original Schematics Courtesy: Kainka B. [1], Varner G. [2] Figure 2: Directional RF Sniffer circuit with speaker output. 4
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Methods: Specs Dual λ/2 Dipole antennae at 90° – Target frequency = 1.8 Ghz – Dipole arm length : λ/4 LM358 – High gain Speaker output – Adjust gain with 1M-ohm Linear Pots Figure 3 [3]: LM358 pin layout 5
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Summary Antenna - Dipole arm lengths ~ 3cm Circuit layout 75% Complete -Missing Schottky diodes, Speaker + Driver Further improvements - Calibration with known rf source -Tune Inductance loading 6
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Timeline Dec. 12, 2013 Build Dipole antenna Observe signals on scope Dec. 16, 2013 Final Calibration Solder to permanent board Dec. 17, 2013 Final Presentation Dec. 13-15, 2013 Refine antenna length Build and test w/ speakers Gather final materials 7
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References [1] Kainka, B. (2002). “Mobile Phone Sniffer” Elektor Electronics. Pp64-66. Web. 21 November, 2013. [2] Varner, G. (2013) Physics 475 Website. [3] Texas Instruments Website: LM358 Op Amp Available [Online]: http://www.ti.com/product/lm358 8
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Questions?? 9
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