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PENGUKUR TINGGI BADAN MENGGUNAKAN SENSOR ULTRASONIK BERBASIS MIKROKONTROLER ATMEGA328 DENGAN OUTPUT SUARA Ignatius Agus Supriyono; Ferry Sudarto; Muhammad Khiabani Fakhri
CCIT Journal Vol 9 No 2 (2016): CCIT JOURNAL
Publisher : Universitas Raharja

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (238.822 KB) | DOI: 10.33050/ccit.v9i2.494

Abstract

Measurement is important in the world of science. On these readings on the scale height measuring instrument manual that humans do have a level of accuracy and precision are less so frequent occurrence of human error. Then the required height gauges that can work automatically, perform the measurement process, read the measurement results, as well as notify the measurement results with the ATmega328 microcontroller-based voice output. Digital Height Measuring Circuit uses ultrasonic sensors are used to detect objects around sensor.Jika ultrasonic waves bounce back to the receiver, means there is an object in the vicinity of the sensor. The microcontroller will calculate the time it takes to receive ultrasonic waves and determine the distance between the sensor with the floor. Digital height gauge be important in minimizing human error that often occurs at the time of measurement manually. So as to improve efficiency in measuring height
Design Of Smart Hydroponics Based On Raspberry Pi 3 Diah Aryani; Ignatius Agus Supriyono; Hani Dewi Ariessanti; Shine Pintor Siolemba Patiro; Ichyan Holilan
PETIR Vol 14 No 2 (2021): PETIR (Jurnal Pengkajian Dan Penerapan Teknik Informatika)
Publisher : Sekolah Tinggi Teknik - PLN

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33322/petir.v14i2.1198

Abstract

The development of hydroponic suitable methods is currently quite good, the utilization of the narrow land availability and the people's attractiveness to hydroponics are the reasons for the developing hydroponic suitable method. However, in its development, there is less land with soil growing media, there is a pattern of farming using water media, namely hydroponics (Hydroponics). Hydroponic cultivation must pay attention to the elements that plants need, such as providing special nutrition to plants. The provision of nutrition that is done manually often results in irregular nutrition in hydroponics which results in disruption of hydroponic plant growth and harvest is not optimal. Research on the Smart Hydroponics System based on the Raspberry Pi 3 using the tidal hydroponic system can make it easier for every human being who wants to grow crops especially who are busy with work activities. With the research methodology using flowchart design methods and system block diagrams, where the Raspberry Pi 3 Mini Computer is used to control pumps in the circulation of hydroponic plant nutrients. Set the nutrient pump On / Off, display a Video Stream from the Cyberlink C170 webcam to check the progress of fruit or vegetable crops ready for harvest. Everything is done remotely via the Web Interface at the Manapu location so that with this research, monitoring can be carried out and it is easier to provide the elements needed by plants
Sistem Penunjang Keputusan Untuk Mengetahui Kerusakan Bangunan Sekolah Menggunakan Metode Fuzzy Logic Ageng Setiani Rafika; Ignatius Agus Supriyono; Abdu Roqy
Journal Cerita: Creative Education of Research in Information Technology and Artificial Informatics Vol 7 No 1 (2021): Journal CERITA : Creative Education of Research in Information Technology and Art
Publisher : UNIVERSITAS RAHARJA

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (564.189 KB) | DOI: 10.33050/cerita.v7i1.1474

Abstract

The development of technology and information in the era of globalization is growing very rapidly, in addition to being a medium of communication and information, the existence of technology and information also helps humans in completing all work. The world of education in schools is very important in supporting science, therefore the condition of buildings in schools is very important, so this system was created as a solution to be able to solve problems in educational facilities in Indonesia, especially in school buildings with a system of presenting data on the condition of school buildings, after The purpose of the data is to be able to provide information effectively and more efficiently about the condition of the school building so that decisions or actions can be taken on the condition of the school building. The purpose of this system is in addition to being able to provide information on the condition of damage to building components in schools, it is also hoped that it can assist the school in making decisions about buildings in its schools that must be addressed immediately. Because with this system can help provide information to the school to immediately deal with damage to the school building.
PERANCANGAN ALAT AUDIOBOOK PLAYER UNTUK MANULA DAN TUNANETRA DENGAN RASPBERRY PI Ignatius Agus Supriyono; Ngemas Fizar Bintang Ramadhan; Muhammad Sri Bintang Prasetyo
ICIT Journal Vol 3 No 1 (2017): ICIT JOURNAL
Publisher : UNIVERSITAS RAHARJA

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (138.012 KB) | DOI: 10.33050/icit.v3i1.41

Abstract

Di era globalisasi ini, informasi sangat lah penting, baik secara online atau pun fisik, seperti media koran atau buku. Semakin majunya perkembangan teknologi, jenis buku tidak hanya berbentuk fisik saja, tapi sudah berkembang menjadi audiobook. Namun hal itu tidak bisa di nikmati para manula dan tunanetra, karena mereka memiliki keterbasan, yaitu pengelihatan. Penelitian ini bertujuan untuk membantu para manula dan tunanetra agar bisa mengetahui isi dari sebuah buku tanpa harus membacanya, dengan cara mengubah sebuah buku menjadi audio. Metode yang penulis pakai adalah dengan mengobservasi, meneliti serta mewawancarai para manula dan tunanetra. Dalam perancangan alat ini dibutuhkan Raspberry sebagai media pemutar audiobook serta sebagai media penyimpanan file audiobook, dilengkapi dengan RFID reader RDM6300 sebagai media pemilihan buku yang sederhana dan menggunakan headphone atau headset sebagai media pengeluaran suaranya, dengan menggabungkan semua alat tersebut maka jadilah Alat Audiobook player untuk manula dan tunanetra yang dapat digunakan dengan mudah. Semoga dengan alat ini para manula dan tunanetra dapat memperoleh informasi lebih dari audiobook dan akan meningkatkan minat belajar mereka Kata Kunci: Manula, Tunanetra, Raspberry, Audiobook, RDM6300.
Perancangan Sistem Pencegahan Pencurian Kendaraan Bermotor Berbasis ESP32 pada PT. Suwarna Dwipa Maju Dendy Jonas; Ignatius Agus Supriyono; Hendri Junianto
Technomedia Journal Vol 7 No 2 October (2022): TMJ (Technomedia Journal)
Publisher : Pandawan Incorporation, Alphabet Incubator Universitas Raharja

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (630.29 KB) | DOI: 10.33050/tmj.v7i2.1748

Abstract

The rise of acts of thievery among users of two-wheeled vehicles has become a problem for motorists. According to the Indonesian Central Statistics Agency (BPS) in the 2020 Criminal Statistics report, the crime of motor vehicle theft without the use of violence in 2019 was 80,450 incidents and the crime of motor vehicle theft with the use of violence was 7,321 incidents. Apart from the loss of a vehicle, sometimes burglary can result in motorists being injured and not a few losing their lives. Currently, two-wheeled vehicles are generally not equipped with a smart key that can function as a circuit breaker and a tool for monitoring the vehicle's position. This is because the implementation of the system costs money and only applies to luxury two-wheeled vehicles. For this reason, an additional safety device is needed to increase the safety of the motorized vehicle. The design of this ESP32-based motor vehicle security system implements a smart key using the BLE (Bluetooth Low Energy) connection owned by ESP32 with the BLE device (Smartband, iTAG), GPS (Global Positioning System) Ublox Neo 6M to monitor the vehicle's position , 800L SIM for internet connection to database, 5V DC Relay for connecting/disconnecting motor vehicle ignition lines, Tactile Switch for sending emergency SMS and LM 2596 stepdown as a voltage reducer from 12V to 3.7V battery for power supply from the ESP32 itself.