Design a test circuit using altium designer

The process of planning and designing of a Printed Circuit Board (PCB) used in testing an IC chip with a footprint of DIP 40, designed by a PhD student, is presented in this report. Firstly, the IC chip is being studied in this project and its features, such as the voltage requirements and the numbe...

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Main Author: Ng, Shun Qiang.
Other Authors: Jong Ching Chuen
Format: Final Year Project
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10356/53344
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-533442023-07-07T16:24:42Z Design a test circuit using altium designer Ng, Shun Qiang. Jong Ching Chuen School of Electrical and Electronic Engineering DRNTU::Engineering The process of planning and designing of a Printed Circuit Board (PCB) used in testing an IC chip with a footprint of DIP 40, designed by a PhD student, is presented in this report. Firstly, the IC chip is being studied in this project and its features, such as the voltage requirements and the number of inputs and outputs, were outlined in this report. An alternate testing unit was also chosen and discussed. A software named Altium Designer is being used for the designing and creating of the PCB. This software is evaluated in this project and the procedure of creating the test circuit, creating the components, drawing of the schematic, components placement and routing, validation, as well as fabrication output files is presented. Also, the various functions of the Altium Designer such as the auto routing capability, interactive routing capability, design rule checking and multi-sheet design will be highlighted. The PCB design has incorporated many discrete components and they are: voltage regulators, decoupling capacitors, clock implementation, current sense amplifier, field programmable gate array. All the components are being presented in this report. On top of that, there are also external equipment involved and they are: DC power supply, pulse generator, and oscilloscope. The challenges of implementing a high clocking frequency of 350 MHz and the measuring of current at a particular clock cycle into the chip will be presented together with the solutions in the later part of the report. Bachelor of Engineering 2013-05-31T07:30:06Z 2013-05-31T07:30:06Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/53344 en Nanyang Technological University 58 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Ng, Shun Qiang.
Design a test circuit using altium designer
description The process of planning and designing of a Printed Circuit Board (PCB) used in testing an IC chip with a footprint of DIP 40, designed by a PhD student, is presented in this report. Firstly, the IC chip is being studied in this project and its features, such as the voltage requirements and the number of inputs and outputs, were outlined in this report. An alternate testing unit was also chosen and discussed. A software named Altium Designer is being used for the designing and creating of the PCB. This software is evaluated in this project and the procedure of creating the test circuit, creating the components, drawing of the schematic, components placement and routing, validation, as well as fabrication output files is presented. Also, the various functions of the Altium Designer such as the auto routing capability, interactive routing capability, design rule checking and multi-sheet design will be highlighted. The PCB design has incorporated many discrete components and they are: voltage regulators, decoupling capacitors, clock implementation, current sense amplifier, field programmable gate array. All the components are being presented in this report. On top of that, there are also external equipment involved and they are: DC power supply, pulse generator, and oscilloscope. The challenges of implementing a high clocking frequency of 350 MHz and the measuring of current at a particular clock cycle into the chip will be presented together with the solutions in the later part of the report.
author2 Jong Ching Chuen
author_facet Jong Ching Chuen
Ng, Shun Qiang.
format Final Year Project
author Ng, Shun Qiang.
author_sort Ng, Shun Qiang.
title Design a test circuit using altium designer
title_short Design a test circuit using altium designer
title_full Design a test circuit using altium designer
title_fullStr Design a test circuit using altium designer
title_full_unstemmed Design a test circuit using altium designer
title_sort design a test circuit using altium designer
publishDate 2013
url http://hdl.handle.net/10356/53344
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