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Contact Name
Syah Alam
Contact Email
syah.alam@trisakti.ac.id
Phone
+6285710034984
Journal Mail Official
syah.alam@trisakti.ac.id
Editorial Address
Jl Kyai Tapa No.1
Location
Kota adm. jakarta barat,
Dki jakarta
INDONESIA
Jurnal Ilmiah Teknik Elektro
Published by Universitas Trisakti
ISSN : 2541089X     EISSN : 2541089X     DOI : https://doi.org/10.25105/jetri
Jetri is a scientific journal aims to publish high quality and up to date articles in electrical engineering field. Its scope includes (but not limited to): - Power Systems: nonrenewable and renewable energy power generation, power transmission and distribution, power conversion, protection system, electrical material, power system analysis, etc. - Telecommunications: modulation and signal processing for telecommunication, antenna and wave propagation, wireless and mobile communications, radar, satellite, communication network and systems, etc. - Control Systems: optimal controls, adaptive controls, non linear and stochastic controls, modeling and simulation, robotics, optimization, intelligent systems, fuzzy logic, etc. - Electronics: electronic materials, electronics system, microelectronic devices and system, VLSI, ASIC, system-on-a-chip (SoC), electronic instrumentations, medical electronics and instrumentation, etc. Computer Systems/Informatics: computer architecture, parallel processing, computer network, embedded system, human-computer interaction, virtual reality, computer security, machine learning and data mining, software
Articles 152 Documents
Perancangan Rangkaian Pengali Bilangan Binner Menggunakan Digital Electronics Education and Design Suite Simulator Laily Muntasiroh; Ilham Yustar Afif
Jetri : Jurnal Ilmiah Teknik Elektro Jetri, Volume 21, Nomor 1, Agustus 2023
Publisher : Website

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25105/jetri.v21i1.17206

Abstract

The research aim to determine the effectiveness of the Digital Electronics Education and Design Suite Simulator to design a series of binary multipliers. This research methode begins by determining the problem boundary, where this binary number multiplier circuit is only able to perform 2 (two) bit binary multiplication operation. So the minimum value of the multiplication results is 0000 with a decimal value of 0 to 1111 with a decimal value of 15. The design is done by simplifying the problem by using the Boolean theorem. The results of this research is the construction of simulation circuit that can be used to perform multiplication operation 2 (two) binary numbers. Simplification of the circuit with the Boolean theorem method using Digital Electronics Education and Design Suite Simulator is able effectively design series of binary multipliers with an accuracy value of 100%.
Sistem Hash Password dan Enkripsi AES-256 pada Website Rekam Medis Elektronik Muhamad Misbahudin Sobirin; Asri Wulandari; Riza Adi Pratama
Jetri : Jurnal Ilmiah Teknik Elektro Jetri, Volume 21, Nomor 1, Agustus 2023
Publisher : Website

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25105/jetri.v21i1.18007

Abstract

The rapid advancement of Information Technology demands efficient data management, especially within hospital settings to provide optimal services. Medical records play a crucial role in this context, encompassing patient health information stored by healthcare professionals. The transition towards electronic-based medical records is a prevailing trend, albeit accompanied by concerns regarding data security risks. Therefore, this study aims to implement a medical record data management system with a security approach that includes a password hashing system and AES-256 encryption. This research aims to design a password hashing system, encryption-decryption mechanism, and analyze the security level of password hashing against brute force attacks. The methodology focuses on utilizing the bcrypt algorithm for password hashing and the AES-256 algorithm for medical record data encryption. Test results indicate that the password hashing system utilizing the bcrypt algorithm generates secure hashes, and the AES-256 encryption system successfully encrypts medical record data with a 100% success rate. Brute force testing proves the effectiveness of the bcrypt algorithm in safeguarding password hash values. This research confirms that the implementation of password hashing and AES-256 encryption provides a robust layer of security in electronic medical record systems, supporting the transition towards safer and more efficient data management.