Claim Missing Document
Check
Articles

Found 3 Documents
Search

Perancangan Arduino Uno pada Design Mesin Pick and Place Sorting Colour Automation untuk Meningkatkan Produktivitas sutita, yuwono izzah; Irwan, Heri
Journal of Manufacturing in Industrial Engineering & Technology Vol 3 No 2 (2024): Journal of Manufacturing in Industrial Engineering & Technology
Publisher : Universitas Muhammadiyah Surabaya Publishing

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30651/mine-tech.v3i2.23987

Abstract

Arduino Uno is an open-source microcontroller based on the Atmel AVR microcontroller. Arduino Uno allows users to design and develop various electronic projects easily. Arduino Uno uses an Integrated Circuit (IC), namely the ATMega328P microcontroller. Arduino Uno is designed to be easy to use even for beginners. There are many tutorials and communities ready to help. Arduino Uno is used to control the rotation of the Sg90 servo motor, and to read the color on the TCS3200 sensor, and. The purpose of this journal is to find out what components are used to control input/output and also how to write a program from the Arduino Uno. From the results of this journal, we can find out what components are used in the pick and place sorting color automation robot machine and for making machine designs. From this design, it is expected to be able to control the pick and place sorting color automation robot machine simultaneously
Perancangan Arduino Uno pada Design Mesin Pick and Place Sorting Colour Automation untuk Meningkatkan Produktivitas sutita, yuwono izzah; Irwan, Heri
Journal of Manufacturing in Industrial Engineering & Technology Vol 3 No 2 (2024): Journal of Manufacturing in Industrial Engineering & Technology
Publisher : Universitas Muhammadiyah Surabaya Publishing

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30651/mine-tech.v3i2.23987

Abstract

Arduino Uno is an open-source microcontroller based on the Atmel AVR microcontroller. Arduino Uno allows users to design and develop various electronic projects easily. Arduino Uno uses an Integrated Circuit (IC), namely the ATMega328P microcontroller. Arduino Uno is designed to be easy to use even for beginners. There are many tutorials and communities ready to help. Arduino Uno is used to control the rotation of the Sg90 servo motor, and to read the color on the TCS3200 sensor, and. The purpose of this journal is to find out what components are used to control input/output and also how to write a program from the Arduino Uno. From the results of this journal, we can find out what components are used in the pick and place sorting color automation robot machine and for making machine designs. From this design, it is expected to be able to control the pick and place sorting color automation robot machine simultaneously
ANALISIS RISIKO PADA PROSES PRODUKSI FAST SEAL DENGAN METODE FAILURE MODE AND EFFECT ANALYSIS (FMEA)AN PENDEKATAN KAIZEN (STUDI KASUS : PT FUJITECH BATAM) Prasetio, Dzaky; Irwan, Heri
JURNAL LOGISTICA Vol. 4 No. 1 (2025): VOL.4.NO.1. DESEMBER 2025
Publisher : LPPM-ITEBA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62375/logistics.v4i1.672

Abstract

Dalam industri manufaktur, efektivitas dan keandalan mesin produksi sangat menentukankelancaran proses dan kualitas output. PT Fujitech Batam, sebagai perusahaan yang bergerak di bidang produksi komponen plastik, menggunakan mesin injection molding merek Haitian sebagai mesin utama dalam proses produksinya. Namun, tingginya frekuensi kerusakan dan downtime mesin menunjukkan perlunya sistem pemeliharaan yang lebih terstruktur dan berbasis analisis risiko. Penelitian ini bertujuan untuk merancang perencanaan preventive maintenance menggunakan pendekatan Reliability Centered Maintenance (RCM) pada mesin Haitian. Metodologi RCM digunakan untuk mengidentifikasi fungsi utama mesin, mode kegagalan, penyebab, dan dampak dari setiap potensi kerusakan. Analisis dilakukan melalui Failure Mode and Effect Analysis (FMEA) untuk menentukan komponen kritis dan prioritas tindakanperawatan. Hasil dari penelitian ini menghasilkan jadwal preventive maintenance yang lebihefektif, serta strategi pemeliharaan berbasis kondisi untuk komponen-komponen utama. Dengan penerapan RCM, perusahaan diharapkan dapat menurunkan downtime,memperpanjang umur mesin, serta meningkatkan efisiensi produksi secara keseluruhan.