DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER

ABSTRACT DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER By Ivy Averina NIM: 13216057 (Electrical Engineering Program) Spectrophotometer is an instrument for measuring the reflectance or transmittance properties of an object as a functi...

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Main Author: Averina, Ivy
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/63338
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:63338
spelling id-itb.:633382022-01-31T08:55:32ZDESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER Averina, Ivy Indonesia Final Project battery, portabel, power management, Solidworks, spectrophotometer. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/63338 ABSTRACT DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER By Ivy Averina NIM: 13216057 (Electrical Engineering Program) Spectrophotometer is an instrument for measuring the reflectance or transmittance properties of an object as a function of wavelength. Traditionally, spectrophotometers are manufactured in bulky shape and weight to use in laboratory purposes. These design however, limits spectrophotometry for field usage where logistic capabilities are limited, and electric sources are uncertain. This problem calls for a small and lightweight portable spectrophotometer. To fufill its main spectrometry function, a spectrophotometer requires some proper design in optical components placement to produce light and to control its light beam in the correct position. In this study we made the physical design dan implement lighting subsystem of a portable spectrophotometer with Solidworks and printed with a black PETG. The result shows a final product with dimension of 190 x 100 x 121 mm dan weighted 1 kg. Implementation of lightning subsystem resulted in an array of monochromatic light, captured by the digital camera. Furthermore, to enable a portable spectrophotometer, this device is equipped with batteries. These batteries are accompanied with protection circuit and voltage level translator circuit to ensure that the batteries can be recharged multiple times safely. Battery capability test of power management subsystem shows a usage time limit of 5 hours. Keywords: battery, portabel, power management, Solidworks, spectrophotometer. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description ABSTRACT DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER By Ivy Averina NIM: 13216057 (Electrical Engineering Program) Spectrophotometer is an instrument for measuring the reflectance or transmittance properties of an object as a function of wavelength. Traditionally, spectrophotometers are manufactured in bulky shape and weight to use in laboratory purposes. These design however, limits spectrophotometry for field usage where logistic capabilities are limited, and electric sources are uncertain. This problem calls for a small and lightweight portable spectrophotometer. To fufill its main spectrometry function, a spectrophotometer requires some proper design in optical components placement to produce light and to control its light beam in the correct position. In this study we made the physical design dan implement lighting subsystem of a portable spectrophotometer with Solidworks and printed with a black PETG. The result shows a final product with dimension of 190 x 100 x 121 mm dan weighted 1 kg. Implementation of lightning subsystem resulted in an array of monochromatic light, captured by the digital camera. Furthermore, to enable a portable spectrophotometer, this device is equipped with batteries. These batteries are accompanied with protection circuit and voltage level translator circuit to ensure that the batteries can be recharged multiple times safely. Battery capability test of power management subsystem shows a usage time limit of 5 hours. Keywords: battery, portabel, power management, Solidworks, spectrophotometer.
format Final Project
author Averina, Ivy
spellingShingle Averina, Ivy
DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER
author_facet Averina, Ivy
author_sort Averina, Ivy
title DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER
title_short DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER
title_full DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER
title_fullStr DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER
title_full_unstemmed DESIGN AND IMPLEMENTATION OF POWER MANAGEMENT SUBSYSTEM AND PHYSICAL DESIGN OF PORTABLE SPECTROPHOTOMETER
title_sort design and implementation of power management subsystem and physical design of portable spectrophotometer
url https://digilib.itb.ac.id/gdl/view/63338
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