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Pcb characterization of differential low noise amplifier / Atikah Raihan Ramly

Pcb characterization of differential low noise amplifier_Atikah Raihan Binti Ramly_E3_2011_875003919_00003089475_NI
Laporan ini mengenai FR4 Printed Circuit Board (PCB) direka bagi frekuensi 1.35 GHz dengan menggunakan Penguat Hingar Rendah (LNA) jenis pembezaan. Litar Penguat Hingar Rendah jenis pembezaan ini mengambil contoh daripada litar yang sedia ada dan litar yang menjadi rujukan adalah daripada MAXIM iaitu MAX9626 Evaluasi Kit. Tujuan PCB direka adalah untuk memastikan PCB tersebut boleh ke proses seterusnya iaitu fabrikasi. Dengan menggunakan papan litar jenis FR4, dielektrik malar, er = 5:4 dan ketinggian, h = 1:6 mm, lebar,W = 2:6 mm diperoleh. _________________________________________________________________________________________ In this report, the design of FR4 Printed Circuit Board (PCB) for 1.35 GHz using differential LNA circuit is explained. The differential LNA circuit was adapted from prior work and a reference design from MAXIM. MAX9626 Evaluation Kit is used as the reference design. The schematic circuit and the PCB schematic layout were created based on the reference design. The designed PCB was created to verify its ability to proceed to the next process which is fabrication. By using FR4 type board, dielectric constant and thickness, h = 1:6 mm was used in order to obtain the satisfied width,W = 2:6 mm.k
Contributor(s):
Atikah Raihan Binti Ramly Ramly - Author
Primary Item Type:
Final Year Project
Identifiers:
Accession Number : 875003919
Language:
English
Subject Keywords:
Evaluation; is fabrication.; dielectric constant
First presented to the public:
4/1/2011
Original Publication Date:
6/11/2018
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Electrical & Electronic Engineering
Citation:
Extents:
Number of Pages - 36
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2018-06-11 16:23:17.822
Date Last Updated
2019-01-07 11:24:32.9118
Submitter:
Nor Hayati Ismail

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