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"This book is intended as a report of my final project under the EEB889 subject. The objective of the project is to give an opportunity for student to gain experience in a situation similar to what would be encountered in the real workplace. The project involves investigation, planning, design, implementation, operation and testing over a time-frame of two semesters. This final project is about Radio frequency (RF) spread spectrum receiver using Phase Locked Loop (PLL). The progress of the project is monitored and assessed by Dr. John Edwards, Senior Lecturer in QUT faculty of Build Environment and Engineering (BEE). During the making of this project, I also had to study and do assignments from other subjects that I had taken for the last two semesters. I had done study and research through books, lecture notes, and internet regard to this project. I encountered many problems and difficulties to understand the whole pieces of the project and also to design and test the simulation and the circuit of the project. Thanks to my supervisor, Dr. John Edwards, who helped me to understand and solved the problems that I encountered."
Fakultas Teknik Universitas Indonesia, 2007
S40431
UI - Skripsi Membership  Universitas Indonesia Library
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New York: McGraw-Hill, 1994
R 621.382 SIM s
Buku Referensi  Universitas Indonesia Library
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Holmes, Jack K.
New York: John Wiley & Sons, 1982
621.380 43 HOL c
Buku Teks  Universitas Indonesia Library
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Dixon, Robert C.
New York: John Wiley & Sons, 1984
621.38 DIX s
Buku Teks SO  Universitas Indonesia Library
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Feher, Kamilo
Upper Saddle River, N.J. : Prentice-Hall, 1995
621.384 5 FEH w
Buku Teks  Universitas Indonesia Library
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Universitas Indonesia, 1999
TA344
UI - Tugas Akhir  Universitas Indonesia Library
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"Wireless receiver architectures and design presents the various designs and architectures of wireless receivers in the context of modern multi-mode and multi-standard devices. This one-stop reference and guide to designing low-cost low-power multi-mode, multi-standard receivers treats analog and digital signal processing simultaneously, with equal detail given to the chosen architecture and modulating waveform. It provides a complete understanding of the receiver‘s analog front end and the digital backend, and how each affects the other. The book explains the design process in great detail, starting from an analysis of requirements to the choice of architecture and finally to the design and algorithm development. The advantages and disadvantages of each wireless architecture and the suitability to a standard are given, enabling a better choice of design methodology, receiver lineup, analog block, and digital algorithm for a particular architecture.
This book is your one-stop reference and guide to designing low-cost low-power multi-mode multi-standard receivers. The material in this book is organized and presented to lead you from applied theory to practical design with plenty of examples and case studies drawn from modern wireless standards."
Oxford, UK: Academic Press, 2014
e20427708
eBooks  Universitas Indonesia Library
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Lubis, Arifin Saleh
Depok: Fakultas Teknik Universitas Indonesia, 1998
TA3059
UI - Tugas Akhir  Universitas Indonesia Library
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Irwan Fauzi
"Rangkaian RF penerima tersusun atas beberapa tingkat-tingkat proses, yaitu LNA, filter bandpass, mixer, AGC, dan PLL. Dalam penelitian ini dirancang rangkaian low noise amplifier (LNA) dan automatic gain control (AGC). Perancangan LNA dan AGC untuk m-WiMAX dilakukan dengan Advance Design System (ADS) 2009 update 1. LNA yang dirancang menggunakan current-reused karena memberikan keuntungan antara lain konsumsi daya rendah, isolasi dan noise figure yang baik. Sedangkan untuk AGC dengan menggunakan gilbert cell karena dapat menjaga bandwidth loop AGC lebih stabil dibandingan dengan tipe linear.
Pada LNA yang dirancang diperoleh gain diperoleh sebesar 20,136dB, NF diperoleh sebesar 0,259dB, VSWR diperoleh sebesar 1,048, Stabilitas sebesar 1,21. Untuk IP3 yang terdiri atas berbagai bentuk diperoleh upper IIP3 diperoleh sebesar 5,469dBm, upper OIP3 diperoleh sebesar 22,819dBm, lower IIP3 diperoleh sebesar 4,613dBm, dan lower OIP3 diperoleh sebesar 21,963dBm. Selanjutnya, Sensitivitas daya diperoleh -115,201dBm dengan daya output LNA - 97,851dBm. Parameter pada AGC diperoleh Gain maksimum diperoleh sebesar 103,940dB, VSWR diperoleh sebesar 1,117.
Evaluasi output AGC yang terjadi mengalami kenaikan dalam gain pada titik puncak hingga 26.693dBm pada 10ns sebelum menurun menjadi daya output sebesar 5.217dBm pada kestabilan daya output setelah 40ns dan selanjutnya dihasilkan daya output dalam keadaan linear dan stabil. Evaluasi tegangan kendali dari AGC dimana terjadi kenaikan tegangan hingga diperoleh tegangan sebesar 2.583e-9volt pada 40ns dan selanjutnya akan dihasilkan dalam tegangan kendali yang linear dan stabil. Evaluasi tegangan acuan yang digunakan untuk menghasilkan daya output sebesar 5,217 dBm adalah 0,577 Volt.

RF receiver circuit is composed of several levels of the process, ie LNA, bandpass filter, mixer, AGC, and PLL. In this research designed a series of low noise amplifier (LNA) and automatic gain control (AGC). Design of LNA and AGC for the m-WiMAX done by Advance Design System (ADS) 2009 Update 1. LNA designed using a current-reused because they offer advantages such as low power consumption, isolation and a good noise figure. While for AGC using Gilbert cell because it can maintain more stable AGC loop bandwidth compared with the linear type.
In the LNA gain is found it is obtained at 20.136 dB, NF is obtained at 0.259 dB, VSWR is obtained at 1.048, Stability of 1.21. For IP3 which consists of various forms of acquired upper dBm IIP3 obtained at 5.469, upper dBm OIP3 is obtained at 22.819, the lower was obtained at 4.613 dBm IIP3, and lower at 21.963 dBm OIP3 obtained. Furthermore, the power sensitivity obtained -115.201 dBm -97.851 dBm output power LNA. AGC parameters obtained at the maximum gain obtained is 103.940 dB, VSWR obtained is 1.117.
Evaluation of the AGC output occurs an increase in gain on cusp until 26.693dBm at 10ns before declining to the power output of 5.217dBm on the stability of output power after 40ns and subsequently resulted in a state of linear output power and stable. Evaluation of the AGC control voltage where the voltage increases until the voltage obtained by 2.583e-9volt at 40ns and thereafter will be generated in the control voltage is linear and stable. Evaluation of the reference voltage used to generate the output power of 5.217 dBm is 0.577 Volt.
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Depok: Fakultas Teknik Universitas Indonesia, 2010
T27581
UI - Tesis Open  Universitas Indonesia Library
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