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Aplikasi Monitoring Volume Cairan Infus pada Pasien Hasanah, Afifah Nur; Cahyadi, Irsan; Irwan, Irwan; Saputra, Zanu
Jurnal Inovasi Teknologi Terapan Vol. 3 No. 2 (2025): Jurnal Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33504/jitt.v3i2.259

Abstract

Infusion or intravenous fluids are given through a vein to replace fluids or nutrients lost from the body. Manual monitoring of infusions by nurses often carries a risk of error. To overcome this, a tool was developed that uses a loadcell sensor to measure liquid weight, an infrared sensor to detect droplets, and an ESP32 module to send data in real time to a database and display it on a monitor screen or website. This system provides a warning when the infusion fluid is less than 100 ml. Even so, there is an error in the loadcell sensor of 0.1% -0.2%, and the drip sensor readings are sometimes not detected due to certain factors. Apart from monitoring infusion fluids, the system also allows input of patient data via the website. Overall, the tool functions as intended, although there are still some aspects that need improvement.
TONGKAT UNTUK PEMANDU ARAH KIBLAT BAGI PENYANDANG TUNANETRA Miranda, Ayu; Haritsah Amrullah, Muhammad; Sulistyo, Eko; Saputra, Zanu
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 4 (2024): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Qibla direction guide stick specially designed for blind people. This stick is equipped with HC SR04 Ultrasonic Sensor to detect surrounding objects, HMC5883L Compass Sensor to determine the Qibla direction, and a control system that uses Arduino Uno as the programming brain. The development method involves the design and integration stages of these sensors, as well as the development to process sensor data to produce qibla direction information. The results show that this qibla direction guide stick can be used effectively, providing timely and accurate feedback to the user. Thus, the development of this technology has great potential to improve the independence and quality of life of blind people in their religious practices. This study makes an important contribution in the field of technology expanding the possibilities for blind people to participate fully in religious activities.
Alat Pendeteksi Asap Rokok Dengan Peringatan Suara Di Kawasan Bebas Asap Rokok Di Lingkungan Polman Babel Haniza, Haniza; Pamungkas, Berlian; Saputra, Zanu; Novitasari, Novitasari
Manutech : Jurnal Teknologi Manufaktur Vol. 17 No. 02 (2025): Manutech: Jurnal Teknologi Manufaktur
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33504/manutech.v17i02.521

Abstract

Polman Babel, which is one of the places for the nation's next generation to carry out the teaching and learning process in Bangka Regency, responds positively to regulations related to the No Smoking Area (KTR). This is realized by the presence of warning boards regarding the prohibition of smoking at several locations. The smoke-free area policy has been enforced, but there are still some violators and lack of awareness to comply with the regulation. To overcome this problem, a smoke detector is needed that can be used in the campus environment. A cigarette smoke detector using an MQ-135 sensor and an MQ-2 sensor that can emit a sound to encourage smokers to put out their cigarettes and leave the area was made. Detection tests were carried out with the distance of the sensor from the measured source of 1 meter to 3 meters and the calculation of the time from the appearance of smoke to the warning sound from the loudspeaker. The farther the sensor is from the smoke source, the smaller the detection value will be, depending on the position of the sensor and the smoke source. The sensor position that is accurate in detection is the sensor with the position facing down because it directly hits the smoke source. Like the nature of smoke that spreads from low places spreads towards the top.
SISTEM PEMBERSIH SOLAR PANEL BERBASIS MICROCONTROLLER DAN IMAGE PROCESSING Aulia, Syair; Solih, Muhammad Ihsan; Saputra, Zanu; Lesta, Lesta
Technologia : Jurnal Ilmiah Vol 17, No 1 (2026): Technologia (Januari)
Publisher : Universitas Islam Kalimantan Muhammad Arsyad Al Banjari

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31602/tji.v17i1.21248

Abstract

Energi terbarukan merupakan solusi utama dalam mengatasi perubahan iklim dan bertambahnya permintaan energi global. Salah satu sumber energi terbarukan yang paling menjanjikan adalah energi matahari (energi surya), salah satunya adalah pemanfaatan solar panel. Pada penelitian ini bertujuan untuk membuat suatu sistem pembersih solar panel berbasis microcontroller dan image processing serta membuat sistem control berdasarkan tingkat kekotoran solar panel. Pada sistem yang dirancang menggunakan mikrokontroler berupa ESP32 yang berfungsi menjadi pusat kontrol pembersihan, RTC sebagai sensor waktu nyata untuk penjadwalan pembersihan serta Raspberry Pi sebagai kontrol pada image processing untuk pendeteksian tingkat kekotoran melalui sensor kamera. Hasil penelitian ini berupa prototype pembersihan solar panel secara terjadwal dan berdasarkan tingkat kekotoran solar panel. Kesimpulan dari penelitian ini menunjukkan bahwa pembersihan solar panel sangat diperlukan demi menjaga efektivitas kinerja solar panel dalam menangkap energi dari sinar matahari. Teknologi ini masih memiliki potensi untuk dikembangkan secara luas agar dapat meminimalisir tenaga dan waktu dalam pembersihan solar panel terutama jika adanya dukungan penelitian lebih lanjut yang dapat lebih kompleks. Keywords: ESP32; Raspberry Pi; Tingkat Kekotoran; Webcam; Yolo V5.
Pengaruh Posisi Alat Pendeteksi Asap Rokok terhadap Pendeteksian Sensor Haniza; Berian Pamungkas; Zanu Saputra; Novita Sari
EPIC Journal of Electrical Power Instrumentation and Control Vol 8 No 2 (2025): EPIC
Publisher : Universitas Pamulang, Prodi teknik Elektro

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32493/epic.v8i2.45369

Abstract

Kawasan Tanpa Rokok (KTR) yang diatur di dalam Peraturan Daerah Kabupaten Bangka nomor 11 tahun 2014 menyebutkan bahwa salah satu dari tempat yang ditetapkan sebagai KTR adalah tempat belajar mengajar. Jika Perda ini dilanggar maka akan dikenakan sanksi untuk para perokok. Namun, masih banyak saja pelanggaran yang terjadi dikarenakan tidak adanya pengawasan dari pihak berwajib. Polman Babel adalah tempat terjadinya proses belajar mengajar pun masih adanya oknum yang tidak mematuhi tentang larangan merokok di lingkungan kampus. Himbauan yang tertera di lingkungan kampus hanya berupa papan peringatan dengan tulisan “Kawasan dilarang merokok” sehingga banyak sekali oknum yang masih saja merokok di lingkungan kampus. Untuk mengurangi pelanggaran yang terjadi, sebuah alat pendeteksi asap rokok digunakan sebagai detektor dan himbauan langsung ketika terdeketsi adanya asap rokok. Penelitian ini bertujuan untuk melihat pengaruh alat pendeteksi asap rokok dilihat dari posisi peletakan sensor. Pengujian dilakukan sebanyak tiga kali dengan variasi berbagai posisi. Hasil yang di dapat adalah semakin jauh sensor dengan sumber asap maka akan semakin kecil pula nilai pendeteksian yang dilakukan dan semakin lambat pula waktu pendeteksian terhadap asap rokok, tergantung pada posisi sensor dan sumber asap. Posisi sensor yang akurat dalam pendeteksian adalah sensor dengan posisi menghadap kebawah dikarenakan langsung mengenai sumber asap.
Manajemen Queue Layanan Kesehatan: Pemanggilan Pasien Otomatis Berbasis IoT–Fasilitas Perawatan Primer Abi Ari Sandy; Septriandi; Zanu Saputra; Yus Dwi Santi
ELECTRON Jurnal Ilmiah Teknik Elektro Vol 6 No 2: Jurnal Electron, November 2025
Publisher : Jurusan Teknik Elektro Fakultas Teknik Universitas Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33019/electron.v6i2.425

Abstract

Community Health Centres (Puskesmas) as primary health care facilities face problems in queue management that affect service satisfaction and efficiency. Manual queuing systems, which are still commonly used, cause patient backlogs, irregular queuing, and psychological stress, especially for vulnerable groups such as the elderly and children. This study aims to design and implement an Internet of Things (IoT)-based automatic queue calling system to improve service effectiveness at Puskesmas. The methods used include case studies, field observations, and comprehensive system testing. This system integrates an ESP32 microcontroller as the control centre with various supporting components, including a thermal printer for printing queue tickets, a DFPlayer Mini module with a speaker for audio notifications, a P10 LED panel for visual display, and a 20x4 LCD with RTC for real-time monitoring. The system is also connected to a web platform via Firebase for recording and monitoring queue data. Test results show that the system operates optimally in all aspects, with clear audio output up to a distance of 15 metres, a printer that can print tickets consistently, and a clear visual display on the P10 panel. This system has proven effective in reducing patient waiting times, improving service comfort, and assisting staff in managing queues efficiently. The implementation of IoT technology in the queue calling system has made a significant contribution to improving the quality of public health services in the digital era
Sistem Monitoring dan Kontrol Motor Satu Fasa Industri Berbasis NRF24L01 Febrika Juniar Syabilla; Wahyu; Zanu Saputra; Mahmudin
ELECTRON Jurnal Ilmiah Teknik Elektro Vol 7 No 1 (2026): Jurnal Electron, Mei 2026
Publisher : Jurusan Teknik Elektro Fakultas Teknik Universitas Bangka Belitung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33019/electron.v7i1.433

Abstract

Single-phase motors are vital components in industrial infrastructure that require continuous monitoring and control systems to ensure operational availability and prevent fatal damage due to overheating or unstable mechanical loads. This research aims to design and implement a monitoring system based on wireless communication technology using the NRF24L01 module operating at a frequency of 2.4 GHz. The system is designed to monitor motor operational parameters in real-time, which include engine temperature, vibration levels, rotational speed (RPM), as well as essential electrical parameters such as voltage, current, and electricity frequency. The system architecture utilizes an ESP32 microcontroller as the main processing unit for data acquisition from various integrated sensors, which is then transmitted wirelessly via the NRF24L01 transceiver to ensure fast data delivery in industrial environments. Data integration is carried out through an efficient digital ecosystem, including the ThingSpeak platform for graphical data visualization, Google Spreadsheets for automated data archiving for long-term analysis, and the Blynk application as a remote control interface for the Variable Frequency Drive (VFD) to regulate motor speed precisely. The testing methodology was conducted in an open area environment (line of sight) to test transmission reliability and sensor accuracy. The test results show that communication using NRF24L01 can reach an effective distance of up to 220 meters. Furthermore, the system's accuracy demonstrates a very stable performance with an average error rate below 2.1%, where this error value applies consistently across all sensor parameters integrated into the system.
Analysis of Mechanical and Electrical Load Variations on Energy Output Performance of a Piezoelectric Floor Prototype Tirta, Bram; Gerhana; Zanu Saputra; Peprizal
Jurnal EECCIS (Electrics, Electronics, Communications, Controls, Informatics, Systems) Vol. 20 No. 2 (2026)
Publisher : Faculty of Engineering, Universitas Brawijaya

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Abstract

This study aimed to investigate the influence of mechanical and electrical load variations on the output characteristics of a piezoelectric floor prototype designed for small-scale energy harvesting applications. The prototype consisted of 128 lead zirconate titanate (PZT)-based piezoelectric elements connected in a parallel configuration to enhance the total current output. Experimental tests were conducted using two user mass variations, 69 kg and 98 kg, to represent differences in the applied mechanical pressure on the floor surface. Two types of electrical loads were examined: a simple 1 ? resistive load and a charging circuit comprising a bridge rectifier, a boost converter, and a TP4056 module for charging a 3.7 V nominal Li-ion battery. The results indicated that an increase in mechanical load led to a higher output current, with average values of 3.67 mA and 11.67 mA for 69 kg and 98 kg tests under resistive load conditions, respectively. In contrast, the average current decreased to 1.06 mA and 4.12 mA when the charging circuit was applied, due to conversion and regulation losses. Overall, the system demonstrated functional capability in generating electrical energy and charging low-power storage devices, highlighting its potential as an alternative piezoelectric-based renewable energy source.
SISTEM PEMBERSIH SOLAR PANEL BERBASIS MICROCONTROLLER DAN IMAGE PROCESSING Syair Aulia; Muhammad Ihsan Solih; Zanu Saputra; Lesta Lesta
Technologia : Jurnal Ilmiah Vol 17 No 1 (2026): Technologia (Januari)
Publisher : Universitas Islam Kalimantan Muhammad Arsyad Al Banjari

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31602/tji.v17i1.21248

Abstract

Energi terbarukan merupakan solusi utama dalam mengatasi perubahan iklim dan bertambahnya permintaan energi global. Salah satu sumber energi terbarukan yang paling menjanjikan adalah energi matahari (energi surya), salah satunya adalah pemanfaatan solar panel. Pada penelitian ini bertujuan untuk membuat suatu sistem pembersih solar panel berbasis microcontroller dan image processing serta membuat sistem control berdasarkan tingkat kekotoran solar panel. Pada sistem yang dirancang menggunakan mikrokontroler berupa ESP32 yang berfungsi menjadi pusat kontrol pembersihan, RTC sebagai sensor waktu nyata untuk penjadwalan pembersihan serta Raspberry Pi sebagai kontrol pada image processing untuk pendeteksian tingkat kekotoran melalui sensor kamera. Hasil penelitian ini berupa prototype pembersihan solar panel secara terjadwal dan berdasarkan tingkat kekotoran solar panel. Kesimpulan dari penelitian ini menunjukkan bahwa pembersihan solar panel sangat diperlukan demi menjaga efektivitas kinerja solar panel dalam menangkap energi dari sinar matahari. Teknologi ini masih memiliki potensi untuk dikembangkan secara luas agar dapat meminimalisir tenaga dan waktu dalam pembersihan solar panel terutama jika adanya dukungan penelitian lebih lanjut yang dapat lebih kompleks. Keywords: ESP32; Raspberry Pi; Tingkat Kekotoran; Webcam; Yolo V5.
UJI PERFORMA GENERATOR MIKROHIDRO DC ELEKTRIK DALAM PEMANFAATAN EFISIENSI ENERGI PADA HIDROPONIK SISTEM NUTRIENT FILM TECHNIQUE Arrois Syaifullah; Andhika Dwi Putra; Zanu Saputra; Ocsirendi Ocsirendi
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 01 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Technological advances in the hydroponic agricultural sector have the potential to be developed. One of them is an electrical energy efficiency system. For this reason, it is necessary to test an appropriate energy source. In this study, the test aims to determine the characteristics of the DC generator, the output of the DC generator will function as a battery charging source which is then used for energy efficiency systems in hydroponics. The test is carried out by comparing the pump height to the DC generator, the incoming water discharge and the DC generator rotation. With a pump height of a DC generator as far as 120 cm and a resistance load of 100 , the flowrate is 1L/minute, the DC generator rotation is 162 rpm and the lowest output power is 0.224 milliWatt. With the pump height to the DC generator as far as 30 cm, the flow rate is 25L/minute, the DC generator rotation is 956 rpm and the highest output power is 0.1 Watt. In other words, the greater the flow/discharge of water that enters the generator, the greater the output produced by the DC micro hydro generator.
Co-Authors ., Yudhi Abi Ari Sandy Adi Putra, Haris Amini, Aisyah Aminuddin Debataraja Ananda Sapitri, Anjelalica Andhika Dwi Putra Andini, Dilah Arrois Syaifullah Athalah Pasha Hafidly Attirmidzi, Hazipah Aulia, Syair Bastomi, Aldi Berian Pamungkas Cahyadi, Irsan catur arief wijaksono Darmawan, Riski Dherry Riski Andhika Dieaz Zandrian Dwi Nugroho, Bimo Egi Riansyah Egi Tri Saputra Eko Sulistyo Eriska, Septia Fahreza, Raya Fahriza, Tavana Ayu Febrika Juniar Syabilla Feriadi, Indra Fildzah Raazzaq Gema Azfajri Gerhana Gumilang Saputra, Ary Eka Hairullah Hairullah Haniza Haniza Hasanah, Afifah Nur Hasdiansah, Hasdiansah Ilham Ary Wahyudie Imamar Fabiddunya, Puteri Iqbal Nugraha, Muhammad Irwan Irwan Irwan Irwan Jibran Septembi Kuswara, Edi Lesta Lesta Lesta, Lesta Lilik Ade Putri M. A. Akbareziansyah Made Andik Setiawan Madiza Arradea, Muhammad Rezi Mahmudin Mahmudin Marsyandha Widyanurrahmah Medeline Citra Vanessa Miftah Syahfiqri, Muhammad Miranda, Ayu monica Muhammad Hafiz Muhammad Haritsah Amrullah Muhammad Haz Fatahillah Alfaridsi Muhammad Ihsan Solih Muhammad Iqbal Nugraha Muhammad Naufal Almahmudy Muhammad Zaki Nabawi Imron Nofriyani Nofriyani Nofriyani Nofriyani Novita Sari Novitasari Novitasari Nur Khasanah Nurhazizah Nurhazizah Nursabila, Dhava Ocsirendi Pamungkas, Berlian Parulian Silalahi Peprizal Pratama, Vargas Pratomo, Diah Ambarwati Priyandi, Priyandi Puteri Islamega Taufani Rafli Pratama Ramadona Ratika Ayu Reynaldi Pratama Reza Ramadhan Riki Afriansyah Riski Meliya Ningsih Robeth Viktoria Manurung Sahrul Ramadhan Saputro, Ego Wisnu Septriandi Silpita Marastika Solih, Muhammad ihsan Sunita Handayani Surojo Surojo, Surojo Syair Aulia Tien-Fu Lu Tirta, Bram Tri Saputra, Egi Trimedya Oktama, Sudewa Vargas Pratama Verentinus, Steven Vharisha, Dhea Wahyu Windarti, Ayu Wulan Safitri, Wulan Yudhi Yulhan Putra Sasuna Yuliana, Putri Yus Dwi Santi Yus Dwi Yanti Zaldy Kurniawan