Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System

Communication system consists of various circuits and having a good and regulated source is crucial in order to get the desired signals at the output. The common problems in getting such good sources are spikes, ripple and fluctuating DC input. Linear voltage regulator is a source circuit to su...

Full description

Saved in:
Bibliographic Details
Main Author: Mohamad Noor, Mardiana
Format: Monograph
Language:English
Published: Universiti Sains Malaysia 2005
Subjects:
Online Access:http://eprints.usm.my/57603/1/Design%20And%20Analysis%20Of%20Discrete%20High%20Slew%20Rate%20Low%20Noise%20Voltage%20Regulator%20For%20RF%20Transceiver%20System_Mardiana%20Mohamad%20Noor.pdf
http://eprints.usm.my/57603/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.usm.eprints.57603
record_format eprints
spelling my.usm.eprints.57603 http://eprints.usm.my/57603/ Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System Mohamad Noor, Mardiana T Technology TK Electrical Engineering. Electronics. Nuclear Engineering Communication system consists of various circuits and having a good and regulated source is crucial in order to get the desired signals at the output. The common problems in getting such good sources are spikes, ripple and fluctuating DC input. Linear voltage regulator is a source circuit to supply a steady, constant output. In addition to its basic function, an attempt to implement its usage in the radio frequency circuits has been made through out this project. Three regulator circuits have been designed, which are negative voltage regulator, positive voltage regulator and ripple rejection voltage regulator. The basic schematics for these circuits were implemented from two types of integrated chips; LM317 and µA723. The positive voltage regulator is used to detect positive peak of ripple input voltage and negative voltage regulator performs vice versa task. Ripple rejection voltage regulator acts as an auto-ripple rejecter circuit, which will reject the ripple detected by positive and negative voltage regulators and supply smooth and constant input to the next circuitry. As the gain of the ripple rejection voltage regulator is very small compared to the input voltage, this regulator also can be applied in the gain compression circuit. Those circuits designed in this project are direct transformation from the schematics used in the low frequencies to the design using microstrips for RF circuits. Universiti Sains Malaysia 2005-03-01 Monograph NonPeerReviewed application/pdf en http://eprints.usm.my/57603/1/Design%20And%20Analysis%20Of%20Discrete%20High%20Slew%20Rate%20Low%20Noise%20Voltage%20Regulator%20For%20RF%20Transceiver%20System_Mardiana%20Mohamad%20Noor.pdf Mohamad Noor, Mardiana (2005) Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System. Project Report. Universiti Sains Malaysia, Pusat Pengajian Kejuruteraan Elektrik dan Elektronik. (Submitted)
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
language English
topic T Technology
TK Electrical Engineering. Electronics. Nuclear Engineering
spellingShingle T Technology
TK Electrical Engineering. Electronics. Nuclear Engineering
Mohamad Noor, Mardiana
Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System
description Communication system consists of various circuits and having a good and regulated source is crucial in order to get the desired signals at the output. The common problems in getting such good sources are spikes, ripple and fluctuating DC input. Linear voltage regulator is a source circuit to supply a steady, constant output. In addition to its basic function, an attempt to implement its usage in the radio frequency circuits has been made through out this project. Three regulator circuits have been designed, which are negative voltage regulator, positive voltage regulator and ripple rejection voltage regulator. The basic schematics for these circuits were implemented from two types of integrated chips; LM317 and µA723. The positive voltage regulator is used to detect positive peak of ripple input voltage and negative voltage regulator performs vice versa task. Ripple rejection voltage regulator acts as an auto-ripple rejecter circuit, which will reject the ripple detected by positive and negative voltage regulators and supply smooth and constant input to the next circuitry. As the gain of the ripple rejection voltage regulator is very small compared to the input voltage, this regulator also can be applied in the gain compression circuit. Those circuits designed in this project are direct transformation from the schematics used in the low frequencies to the design using microstrips for RF circuits.
format Monograph
author Mohamad Noor, Mardiana
author_facet Mohamad Noor, Mardiana
author_sort Mohamad Noor, Mardiana
title Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System
title_short Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System
title_full Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System
title_fullStr Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System
title_full_unstemmed Design And Analysis Of Discrete High Slew Rate Low Noise Voltage Regulator For RF Transceiver System
title_sort design and analysis of discrete high slew rate low noise voltage regulator for rf transceiver system
publisher Universiti Sains Malaysia
publishDate 2005
url http://eprints.usm.my/57603/1/Design%20And%20Analysis%20Of%20Discrete%20High%20Slew%20Rate%20Low%20Noise%20Voltage%20Regulator%20For%20RF%20Transceiver%20System_Mardiana%20Mohamad%20Noor.pdf
http://eprints.usm.my/57603/
_version_ 1761617420692226048
score 13.160551