Development of microcontroler-based body statistic analyzer / by Jumel R. Hernandez and Kevin I. Lungcay.

By: Contributor(s): Material type: TextTextLanguage: English Publication details: Indang, Cavite : 2014. Cavite State University- Main Campus,Description: xvii, 99 pages : illustrations ; 28 cmContent type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
Subject(s): DDC classification:
  • 620.112  H43 2014
Online resources: Production credits:
  • College of Engineering and Information Technology (CEIT)
Abstract: HERNANDEZ, JUMEL R. and LUNGCAY, KEVIN I., Development Microcontroller-Based Body Statistics Analyzer. Undergraduate Design Project. Bachelor of Science in Computer Engineering and Bachelor of Science in Electronics and Communications Engineering. Cavite State University, Indang, Cavite. April 2014. Adviser: Engr. Michael T. Costa The main objective of the project was to develop a microcontroller-based body statistics analyzer. Specifically, it aimed to design and construct the circuit of the device. The interfacing of the sensors, specifically the load cell, ultrasonic sonar sensor, and pulse oximeter; LCD module; thermal printer; coin slot; and keypad to the microcontroller of the device. The test and evaluation of the design project was done by the comparing the results obtained in the digital body statistics analyzer to actual measurements and computations. The cost computation of the study was also conducted. The microcontroller-based body statistics analyzer consisted of GizDuino X microcontroller as the processing unit. The microcontroller was responsible for the entire operation of the system. The testing and evaluation of the project was done at the Engineering Science Building of the Department of Computer and Electronics Engineering by 30 participants to determine the accuracy, consistency, efficiency, and reliability of the designed project. The adviser, technical critic, some faculty member of CvSU tested the functionality of the device. Based on the results of the evaluation, the device proved to be accurate by the statistical analysis from the results of the evaluations. The total cost of the design project was PhP 22,725.25.
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Theses / Manuscripts Theses / Manuscripts Ladislao N. Diwa Memorial Library Theses Section Non-fiction 620.112 H43 2014 (Browse shelf(Opens below)) Link to resource Room use only T-5300 00008720

Thesis (BS Electronic and Communications Engineering) Cavite State University

Includes bibliographical references.

College of Engineering and Information Technology (CEIT)

HERNANDEZ, JUMEL R. and LUNGCAY, KEVIN I., Development Microcontroller-Based Body Statistics Analyzer. Undergraduate Design Project. Bachelor of Science in Computer Engineering and Bachelor of Science in Electronics and Communications Engineering. Cavite State University, Indang, Cavite. April 2014. Adviser: Engr. Michael T. Costa

The main objective of the project was to develop a microcontroller-based body statistics analyzer. Specifically, it aimed to design and construct the circuit of the device. The interfacing of the sensors, specifically the load cell, ultrasonic sonar sensor, and pulse oximeter; LCD module; thermal printer; coin slot; and keypad to the microcontroller of the device. The test and evaluation of the design project was done by the comparing the results obtained in the digital body statistics analyzer to actual measurements and computations. The cost computation of the study was also conducted. The microcontroller-based body statistics analyzer consisted of GizDuino X microcontroller as the processing unit. The microcontroller was responsible for the entire operation of the system. The testing and evaluation of the project was done at the Engineering Science Building of the Department of Computer and Electronics Engineering by 30 participants to determine the accuracy, consistency, efficiency, and reliability of the designed project.

The adviser, technical critic, some faculty member of CvSU tested the functionality of the device. Based on the results of the evaluation, the device proved to be accurate by the statistical analysis from the results of the evaluations. The total cost of the design project was PhP 22,725.25.

Submitted copy to the University Library. 04/24/2014 T-5300

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