GEOMETRICAL AND DESIGN ANALYSIS OF BETAVOLTAIC BATTERY USING P-N JUNCTION SILICON SEMICONDUCTOR AND RADIATED BY TRITIUM

Nuclear Battery is an alternative energy source which have long life operation time. Betavoltaic battery is one of nuclear battery type. Tritium is one of the most commonly used radioisotope in betavoltaic battery and silicon is one of the most commonly used semiconductor in betavoltaic battery. Bet...

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Main Author: Pahlevi, Rheza
Format: Final Project
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/41213
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:41213
spelling id-itb.:412132019-07-31T10:03:29ZGEOMETRICAL AND DESIGN ANALYSIS OF BETAVOLTAIC BATTERY USING P-N JUNCTION SILICON SEMICONDUCTOR AND RADIATED BY TRITIUM Pahlevi, Rheza Fisika Indonesia Final Project Betavoltaic,Silicon Depth, Tritium Depth,MCNP, Battery Design. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/41213 Nuclear Battery is an alternative energy source which have long life operation time. Betavoltaic battery is one of nuclear battery type. Tritium is one of the most commonly used radioisotope in betavoltaic battery and silicon is one of the most commonly used semiconductor in betavoltaic battery. Betavoltaic battery have small efficiency. Ineffective design and geometry in betavoltaic can reduce efficiency. Therefore, geometrical of silicon and tritium must be calculated as well as battery design to improve interaction between beta particle and semiconductor atom. Monte Carlo method is one of the most commonly used to calculate the performance of betavoltaic battery. Deposited energy in silicon from beta particle can be simulated by MCNP software. There are some semiconductor parameters which used in current density calculation like diffusion lenght, surface recombination velocity and diffusion coefficient has been calculated as a function of dopant. Radioisotope parameter achieved from datasheet. Short circuit current and open circuit voltage calculated using minority carrier diffusion equation, which is using parameters achieved from previous calculation. Then, the battery performance can be simulated using J-V characteristic curve, power density curve, fill factor and efficiency of the battery. 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
topic Fisika
spellingShingle Fisika
Pahlevi, Rheza
GEOMETRICAL AND DESIGN ANALYSIS OF BETAVOLTAIC BATTERY USING P-N JUNCTION SILICON SEMICONDUCTOR AND RADIATED BY TRITIUM
description Nuclear Battery is an alternative energy source which have long life operation time. Betavoltaic battery is one of nuclear battery type. Tritium is one of the most commonly used radioisotope in betavoltaic battery and silicon is one of the most commonly used semiconductor in betavoltaic battery. Betavoltaic battery have small efficiency. Ineffective design and geometry in betavoltaic can reduce efficiency. Therefore, geometrical of silicon and tritium must be calculated as well as battery design to improve interaction between beta particle and semiconductor atom. Monte Carlo method is one of the most commonly used to calculate the performance of betavoltaic battery. Deposited energy in silicon from beta particle can be simulated by MCNP software. There are some semiconductor parameters which used in current density calculation like diffusion lenght, surface recombination velocity and diffusion coefficient has been calculated as a function of dopant. Radioisotope parameter achieved from datasheet. Short circuit current and open circuit voltage calculated using minority carrier diffusion equation, which is using parameters achieved from previous calculation. Then, the battery performance can be simulated using J-V characteristic curve, power density curve, fill factor and efficiency of the battery.
format Final Project
author Pahlevi, Rheza
author_facet Pahlevi, Rheza
author_sort Pahlevi, Rheza
title GEOMETRICAL AND DESIGN ANALYSIS OF BETAVOLTAIC BATTERY USING P-N JUNCTION SILICON SEMICONDUCTOR AND RADIATED BY TRITIUM
title_short GEOMETRICAL AND DESIGN ANALYSIS OF BETAVOLTAIC BATTERY USING P-N JUNCTION SILICON SEMICONDUCTOR AND RADIATED BY TRITIUM
title_full GEOMETRICAL AND DESIGN ANALYSIS OF BETAVOLTAIC BATTERY USING P-N JUNCTION SILICON SEMICONDUCTOR AND RADIATED BY TRITIUM
title_fullStr GEOMETRICAL AND DESIGN ANALYSIS OF BETAVOLTAIC BATTERY USING P-N JUNCTION SILICON SEMICONDUCTOR AND RADIATED BY TRITIUM
title_full_unstemmed GEOMETRICAL AND DESIGN ANALYSIS OF BETAVOLTAIC BATTERY USING P-N JUNCTION SILICON SEMICONDUCTOR AND RADIATED BY TRITIUM
title_sort geometrical and design analysis of betavoltaic battery using p-n junction silicon semiconductor and radiated by tritium
url https://digilib.itb.ac.id/gdl/view/41213
_version_ 1821998276620058624