Claim Missing Document
Check
Articles

Found 8 Documents
Search
Journal : Electro Luceat

PERANCANGAN DAN IMPLEMENTASI APLIKASI UJIAN SEKOLAH BERBASIS KOMPUTER ATAU COMPUTER BASED TEST (CBT) DI SMK NEGERI 1 KABUPATEN SORONG Marcell Petrus Saptono; Herry Widjasena
Electro Luceat Vol 5 No 2 (2019): Electro Luceat (JEC) - November 2019
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (431.02 KB) | DOI: 10.32531/jelekn.v5i2.148

Abstract

Conventional Test System means that the test is done using paper and pencil or the current term Paper-Based Test (PBT), the constraints and shortcomings of the PBT system are no longer effective & efficient. Sorong State Vocational School 1 still uses Paper-Based Test (PBT) to carry out School Exams. Conventional systems must be replaced by computer information technology using Computer-based Tes This research resulted in an offline Computer Based Test (CBT) based test system at SMK Negeri 1 Kabupaten Sorong. The CBT system makes it easier for student and teacher examinations, the use of exam paper is reduced, examination of exam results is more efficient and effective, it can save time and money. This application system can be used for grading assignments, daily tests and midterm, final exam can even be used as a national exam tryout. The exam analysis system can make it easier for teachers or principals to accept student exam results and analyze students' abilities more quickly. Students at SMK Negeri 1 Sorong Regency will become accustomed to examinations using a computerized system or using an android mobile phone.
PROTOTYPE RANCANGAN PRINTER 3D DENGAN SMART LCD BERBASIS ARDUINO MEGA 2560 MENGGUNAKAN TEKNOLOGI FUSED FILAMENT FABRICATION Marcell Petrus Saptono; Romdani Paris Fuad
Electro Luceat Vol 6 No 1 (2020): Electro Luceat (JEC) - July 2020
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1192.883 KB) | DOI: 10.32531/jelekn.v6i1.191

Abstract

In the development of industrial system 4.0 one of which sustains the development is 3D Printing technology. The purpose of this research is to design a 3D Printer machine with an Arduino MEGA 2560 Microcontroller, RAMPS 1.4 Shield, NEMA 17 stepper motor, DVR8825 motor driver, PLament Filament, E3D v6 HotEnd, Memory Card, Smart LCD. Construction of the framework of the design of the 3D Printing tool by assembling the frame of the 3D printing machine, the 3D Machine Stepper Motor, the XYZ Limit Endstop, the exstruder mount, the bed holder, the HotEnd assembly for the heater heater. The printing process can be connected to a PC or using memory card support, and operating instructions are displayed on the LCD monitor. This research produces an Arduino-based 3D printer with FFF (Fused Filament Fabrication) technology that will make it easier for users to operate a 3D printer with an LCD screen and Printing does not have to always be connected with a PC because it uses a memory card that can store files and produce better printing. This research uses the Linear Sequential Model (LSM) research method. This model is often called the "Classic Life Cycle" or waterfall model. This method consists of 5 repetitive stages namely the analysis phase of the study of literature, the stage of design / system design, the stage of hardware assembly, the coding phase, and the testing phase (Pressman, R.S, 2012).
LPG GAS LEAKAGE PROTOTYPE BASED ON ATMEGA328 AND LCD MICROCONTROLLER AS INFORMATION MEDIA Marcell Petrus Saptono; Aris Sumbiaganan
Electro Luceat Vol 6 No 1 (2020): Electro Luceat (JEC) - July 2020
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1400.876 KB) | DOI: 10.32531/jelekn.v6i1.200

Abstract

LPG (Liquid Petroleum Gas) dalam rumah tangga sangat penting sebagai bahan bakar pengganti minyak tanah. Penyebab kebocoran yang mengakibatkan kebakaran bisa dikarenakan kebocoran pada selang, tabung atau bisa juga pada regulator yang kurang pas dalam pemasangan. Penelitian ini bertujuan untuk membuat prototype alat pendeteksi kebocoran tabung gas LPG dengan menggunakan sensor MQ-2 berbasis mikrokontroler ATMega328. Perangkat detektor ini menghasilkan data berupa nilai PPM (Part Per Million) yang ditampilkan LCD. Alat detektor ini menggunakan mikrokontroler ATMega 328 sebagai unit pengolah data, sensor MQ-2, buzzer, kipas DC, dan LCD. Proses pengujian alat ini menggunakan tabung LPG. Cara kerja alat ini yaitu ketika sensor MQ-2 mendeteksi kebocoran gas LPG maka sensor akan mengirimkan data ke mikrokontroller pada arduino dengan respon berupa menyalakan kipas, buzzer sebagai alarm, output nilai PPM pada LCD berupa kondisi gas LPG. Kipas yang berfungsi sebagai blower untuk mengurangi konsentrasi LPG, dan buzzer untuk memberi peringatan kepada pengguna. Hasil dari penelitian ini alat detektor LPG yang akan menampilkan nilai PPM dan status keadaan LPG aman atau gas bocor pada LCD. Dengan alat detector ini LPG ini diharapkan dapat mengantisipasi terjadi kebakaran karena saat terjadi keborocaran gas pengguna langsung mendapat informasi kondisi LPG pada LCD dengan cepat dan otomatis.
IoTTECH : TECHNOLOGY INTERNET OF THINGS (IoT) UNTUK PENGATURAN OTOMATIS KELEMBABAN & TEMPERATUR RUANGAN BUDIDAYA JAMUR TIRAM (PLEUROTUS OSTREATUS) Marcell Petrus Saptono; Yusverison Andika
Electro Luceat Vol 6 No 2 (2020): Electro Luceat (JEC) - November 2020
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32531/jelekn.v6i2.284

Abstract

The results of the IoTTech Internet of Things (IoT) tool for Oyster Mushroom cultivation control the temperature and humidity of the Oyster Mushroom cultivation house. This IOTTECH technology has a DHT11 sensor input to be processed to the Arduino mega and ethernet shield while the output of this tool is an android smartphone, actuator, humidity and temperature control using the Blynk application. The initial process with the DHT11 sensor sends data to the microcontroller for the process of displaying the output value of humidity, LDR and temperature, the output is displayed on an android smartphone as a monitoring interface with the Blynk application as remote monitoring. This research produced a prototype for the output humidity, LDR and air temperature in mushroom houses using the Internet of Thing (IoT) using Blynk. The regulation of output humidity, LDR and temperature uses IoT via blynk, more efficient both in terms of time and cost. The actuator will live automatically according to the humidity, LDR and temperature that has been set.
IMPLEMENTASI PERANCANGAN ALAT HAND WASHER DAN LIQUID SOAP BOTTLE OTOMATIS BERBASIS ARDUINO NANO ATMEGA328 Marcelinus Petrus Saptono; Ery Murniyasih
Electro Luceat Vol 8 No 1 (2022): Electro Luceat (JEC) - July 2022
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32531/jelekn.v8i1.452

Abstract

Microcontroller technology with Arduino nano as Atmega328 as a control system allows it to be implemented in an automatic faucet water system and pump soap automatically. With a dc pump motor as a soap dispenser pump. The IR obstacle sensor will get a trigger by detecting an object in front of the sensor, the input from this sensor will move the water pump sinleader motor to drain the water, using a mini water pump motor to run liquid soap under the control of the Arduino nano Atmega328. The purpose of this research is to make a tool that can help people wash their hands and place soap and water without touching them using an Arduino nano Atmega328 icrocontroller and an IR obstacle as a sensor. The results of this study are the implementation of the hand washer system and the automatic liquid soap bottle system based on the Arduino nano Atmega328 microcontroller on the sink to function properly. The IR obstacle sensor can detect objects within the sensor range, automatically responding to faucet water or soap in bottles that can come out.
PENGEMBANGAN APLIKASI BANK SAMPAH DENGAN METODE EXTREME PROGRAMMING Luluk Suryani; Ery Murniyasih; Marcelinus Petrus Saptono; Raditya Faisal Waliulu; Imam Trianggoro Saputro; Sonny Rumalutur
Electro Luceat Vol 8 No 2 (2022): Electro Luceat (JEC) - November 2022
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32531/jelekn.v8i2.571

Abstract

In the era of technology 5.0, many people have been able to create new value through technological developments that occur from time to time. This change can help minimize the gap in people and economic problems in the future. One of the fastest growing technologies every year is an application on a smartphone. There are so many variations of applications, this is because smartphone users are increasing from time to time. Existing developments are an opportunity for the Garbage Bank to support the zero waste program and improve Garbage Bank services to the community. This study aims to develop a Garbage Bank application as a means of ordering waste transportation services and viewing educational information, as well as activities from the Sorong Raya Garbage Bank (BSSR). Application development will use the Extreme Programming method, with the stages of Planning, Design, Coding, and Testing. This method was chosen because it can increase user satisfaction due to continuous communication in application development and is suitable for use by small teams. The application can be used on the Android operating system. The application was developed using Android Studio and Flutter tools. To ensure the system is running properly, it will be tested with alpha testing. The results of the alpha testing of all functional systems can run as expected so it can be concluded that the application is feasible to use.
RANCANG BANGUN SISTEM INFORMASI MANAJEMEN BANK SAMPAH DENGAN METODE EXTREME PROGRAMMING Luluk Suryani; Raditya Faisal Waliulu; Ery Murniyasih; Imam Trianggoro Saputro; Sonny Rumalutur; Marcelinus Petrus Saptono
Electro Luceat Vol 8 No 2 (2022): Electro Luceat (JEC) - November 2022
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32531/jelekn.v8i2.572

Abstract

The implementation of the Garbage Bank program is strived to be able to provide benefits and economic value from waste management, its existence is expected to have a direct impact on the people's economy so that it can be implemented easily. The Sorong Raya Garbage Bank (BSSR) has 108 Unit Waste Banks, 3,131 Customers, so it is only appropriate for BSSR to have an integrated management information system to support its business processes and operations. So far, BSSR management has not run optimally, because data loss often occurs, each division and level has data that is out of sync, difficulty finding data due to inconsistent writing and flow, the resulting reports are not optimal so that it has an impact on decision making. The research will be conducted using the extreme programming method. The output of this research is a waste bank management information system that can help BSSR integrate the management of each division and level so that business and operational processes can run effectively and efficiently. The system will be designed using the Unified Modeling Language (UML). System testing will use the Black Box method. The results of the black box test state that the input and output of the Sorong Raya Garbage Bank Management Information System are appropriate.
PERANCANGAN SISTEM INFORMASI JURUSAN TEKNOLOGI REKAYASA KOMPUTER JARINGAN (TRKJ) PADA POLITEKNIK SAINT PAUL SORONG BERBASIS WEBSITE Delta Sari Lobo; Marcelinus Petrus Saptono; Raditya Faisal Waliulu; Ery Murniyasih
Electro Luceat Vol 9 No 1 (2023): Electro Luceat (JEC) - Juli 2023
Publisher : LPPM Poltek ST Paul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32531/jelekn.v9i1.657

Abstract

Saint Paul Sorong Polytechnic is one of the universities in Sorong City, which consists of several departments and also does not have a website as a means to provide official information from each department, one of which is the Department of Computer Network Engineering Technology. So the purpose of this research is that the department's information system can be displayed through the official website and make it easier for students to register for KKN-PPM & Job Training. The purpose of this research is to facilitate data processing for the TRKJ department, to facilitate students who will register for KKN-PPM & Job Training, to produce a website that can function as a medium of information and communication that is more effective and efficient. This research method uses the System Development Life Cycle (SDLC) or the system development life cycle is the process used by systems analysts to develop information systems, starting from planning, determining requirements, and designing. The results of the black box testing are a web-based Computer Network Engineering Technology Information System in accordance with what is expected in this study, it can be seen from the system according to what is produced from the system being tested, such as inputting, deleting, and editing data in the system, performing KKN-PPM registration and practical work as expected, namely being able to print proof of registration and upload reports.