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PERANCANGAN DAN PENGUKURAN JARAK TEMPUH MOTOR INJEKSI MENGGUNAKAN MIKROKONTROLER Dennis Manorek; Julie Rante; Alexander Patras
Jurnal Ilmiah Realtech Vol. 14 No. 2 (2018)
Publisher : Fakultas Teknik Universitas Katolik De La Salle Manado

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.52159/realtech.v14i2.19

Abstract

Perkembangan teknologi otomotif saat ini semakin pesat, hal ini didasari atas pemikiran dan kebutuhan manusia yang juga berkembang pesat. Atas dasar itulah penerapan teknologi pada dunia otomotif terus berevolusi hingga tercipta teknologi yang kian canggih sesuai dengan perkembangan zaman. Namun banyak yang meremehkan tentang penggunaan bahan bakar. Dimana setiap orang lebih mengutamakan feeling mereka dari pada jarum penunjuk kapasitas bahan bakar yang saat ini sudah digital. Dan pada akhirnya banyak yang kita temui di jalan sedang mendorong motor mereka karena kehabisan bahan bakar. Oleh karena itu, penulis merancang dan membuat pengukuran jarak tempuh motor injeksi berbasis mikrokontroler. Perancangan dan pengukuran jarak tempuh motor injeksi berbasis mikrokontroler ini menggunakan Hardware yaitu mikrokontroler NodeMCU ESP8266, Regulator, Modul GPS. Sedangkan bahasa pemrograman yang digunakan adalah bahasa C dan PHP. Dengan menggunakan komponen-komponen di atas maka perancangan dan pengukuran jarak tempuh motor injeksi menggunakan Mikrokontroler yang dapat berkerja dengan baik.Dimana untuk jarak tempuh 20,7 km menggunakan 1 liter bensin sedangkan jarak tempuh 124,4 km menggunakan 6 liter.
An Assistive Technology for A Deaf Student: Many-to-One System Using Button Board Speech-to-Image Based On Microcontroller ESP8266 Kristian Dame; Lianly Rompis; Julie Rante; Ryan Singgeta
Journal of Information Technology and Its Utilization Vol 7 No 2 (2024): December 2024
Publisher : Sekolah Tinggi Multi Media

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56873/jitu.7.2.5865

Abstract

Education is the right of every nation and society including disable students which have physical, emotional, mental, intellectual and social disorders. In an effort to facilitate proper education for students with special needs, especially deaf students, our research team consisting of permanent lecturers from Electrical Engineering Study Program Universitas Katolik De La Salle Manado were called to care and commit to conduct research on assistive technology for deaf students. Our team designed and created a Button Board Speech-to-Image tool based on the ESP8266 microcontroller which is intended for Deaf Students to make it easier for them to communicate and interact with teachers while in class, especially during exams or learning process activities. The research method used for this research was system design and data mining. The assistive technology development method used is Research and Development (R&D). The inputs on the Button Board were processed into sound (speech) which was sent to the recipient wirelessly so that what the Deaf Student wants to convey in class can be understood by the Teacher through the speaker. The assistive technology development method used is Research and Development (R&D). The technology operates well with WiFi network and well accepted for learning process and communication.