Perancangan alat pencampur minuman multi-bahan otomatis berbasis esp32 menggunakan blynk. Rancang alat pencampur minuman otomatis multi-bahan berbasis ESP32 & Blynk. Kendali jarak jauh, campur 5 bahan cair dengan dominasi rasa. Efisien, konsisten, ideal untuk kuliner.
− Perkembangan teknologi Internet of Things (IoT) telah memungkinkan otomatisasi berbagai aktivitas, termasuk dalam industri penyajian makanan dan minuman. Penelitian ini bertujuan untuk merancang dan membangun alat pencampur minuman multi-bahan otomatis yang dapat dikendalikan secara jarak jauh menggunakan mikrokontroler ESP32 dan aplikasi Blynk. Alat ini dirancang untuk mencampurkan lima jenis bahan cair, yaitu kopi, teh, susu, air gula, dan air jeruk, dengan tingkat dominasi rasa (light, medium, strong) yang dapat dipilih pengguna melalui antarmuka aplikasi. Sistem bekerja menggunakan kombinasi ESP32, relay 8 channel, pompa peristaltik, dan rangkaian power adapter, yang dikendalikan melalui koneksi Wi-Fi dan antarmuka Blynk di smartphone. Hasil implementasi menunjukkan bahwa alat dapat bekerja dengan responsif dan efektif, serta mampu mencampur bahan sesuai takaran berdasarkan input pengguna. Alat ini menawarkan efisiensi waktu, konsistensi rasa, dan kemudahan dalam pengoperasian, sehingga berpotensi diterapkan pada skala rumah tangga hingga usaha kecil-besar di bidang kuliner. Penelitian ini juga menjadi solusi inovatif untuk mengotomatisasi proses pembuatan minuman sesuai selera secara praktis dan modern.
The paper, "Perancangan Alat Pencampur Minuman Multi-Bahan Otomatis Berbasis Esp32 Menggunakan Blynk," presents a compelling design for an automated multi-ingredient beverage mixer leveraging the Internet of Things (IoT). The core of this research is the development of a system capable of precisely mixing five different liquid ingredients—coffee, tea, milk, sugar water, and orange juice—with user-selectable taste dominance (light, medium, strong). The integration of an ESP32 microcontroller with the Blynk application for remote control is a commendable feature, offering both convenience and flexibility. The abstract highlights the system's responsiveness and effectiveness, promising increased efficiency, consistent taste, and ease of operation, making it a potentially valuable tool for various culinary settings from households to commercial enterprises. While the abstract paints a positive picture of the system's functionality, it would benefit from more detailed quantitative evidence to substantiate its claims. Specific metrics on dispensing accuracy, the time saved compared to manual preparation, and the consistency of flavor profiles for the "light, medium, strong" settings would significantly strengthen the argument for its effectiveness. Furthermore, a deeper exploration into the calibration process for achieving these taste dominance levels and the measures taken to ensure food safety and prevent cross-contamination would add substantial value. Expanding on the experimental setup, detailing the software logic, and discussing any encountered challenges and their solutions would also enhance the paper's scientific rigor and practical utility. In conclusion, this research provides a strong proof-of-concept for an IoT-enabled automated beverage mixer with clear practical applications and potential for widespread adoption. The innovative use of ESP32 and Blynk to offer customizable drink preparation addresses a genuine need for efficiency and consistency in the food and beverage sector. With the inclusion of more rigorous quantitative evaluation and a deeper dive into the methodological details, this paper has the potential to be a significant contribution to the field. It is therefore recommended for publication, contingent upon addressing these points to further solidify its scientific and practical merits.
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