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Journal : JURNAL INTEGRASI

Desain dan Implementasi Kotak Pintar (Kopin.COD) Penerima Paket COD dan Paket Non COD Berbasis IoT Diputra, Muhammad Naufal Airlangga; Saputra, Rizky; Al Gufran, Hasbi Faturrahman; Sulaiman, Habib
JURNAL INTEGRASI Vol. 17 No. 1 (2025): Jurnal Integrasi - April 2025
Publisher : Pusat Penelitian dan Pengabdian Masyarakat Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/ji.v17i1.9336

Abstract

This study employs the black-box method and qualitative user analysis. Data collection is conducted through surveys targeting users of the developed tool, aiming to identify common issues in online shopping with the Cash on Delivery (COD) payment method. These issues include customers not being at home when the courier delivers the package, resulting in repeated delivery attempts and delays in receiving packages. Based on this identification, the team determined a solution: creating a smart COD package receiver box integrated with a mobile application, equipped with barcode verification and a surveillance camera. The results show that 98% of users are satisfied with the convenience provided by the Kopin.COD system and feel significantly assisted by this technology. Additionally, survey results from customers or package recipients indicate that 100% of respondents are satisfied with the ease and convenience of use.
Akuisisi Data dan Kalibrasi pada Sistem Can Satellite (Cansat) Wicaksono, Muhammad Jaka Wimbang; Lubis, Eka Mutia; Oktani, Dessy; Kamarudin, Kamarudin; Darmoyono, Aditya Gautama; Mahdaliza, Rahmi; Gusnam, Mu’thiana; Syafi’i, Ahmad; Diputra, Muhammad Naufal Airlangga; Nugraha, Danu Satia; Abrajano, Muhamad Shafiq; Syahputra, Rezza Eka
JURNAL INTEGRASI Vol. 17 No. 1 (2025): Jurnal Integrasi - April 2025
Publisher : Pusat Penelitian dan Pengabdian Masyarakat Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/ji.v17i1.9348

Abstract

This study aims to develop and test a data acquisition and calibration system for CanSat, a small nanosatellite designed as a cost-effective solution for collecting geographical and spatial data. CanSat collects data using BME-280, MPU-9250, and NEO-6M sensors, then transmits it via XBee to a GUI for controlling the release of the Heat Shield, parachute, and legs. The data is analyzed using statistical methods and transmitted via XBee S2C. The results show that the BME-280 has a standard error of 0.35 and a deviation of 0.77 for temperature, and a standard error of 0.06 with a deviation of 0.13 for air pressure. The altitude measurement has a standard error of 0.02 and a deviation of 0.05. Meanwhile, MPU-9250 has an average standard error of 0.34 and a deviation of 0.77 for angle orientation measurement. The design and testing of the leg control system conclude that it functions at 80% efficiency.