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Application of IoT using nodeMCU ESP8266 on the Syringe Pump Device to Increase Patient Safety Anjani, Annisa Gallela; Sunarto, Presillia Grisviani; Royan , Royan; Wibowo, Kusnanto Mukti; Romadhona, Gema; Sapundani, Rum; Mulyanto, Arif; Setiawan, Iwan; Jumrianto, Jumrianto; N. Prasath5, N. Prasath
Indonesian Journal of Electronics, Electromedical Engineering, and Medical Informatics Vol. 4 No. 1 (2022): February
Publisher : Jurusan Teknik Elektromedik, Politeknik Kesehatan Kemenkes Surabaya, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35882/ijeeemi.v4i1.137

Abstract

Nowadays, health care has turned out to be more technology-oriented. Today's technology is demanded to be practical and easy to use. Based on data, the number of uses of mobile devices based on the Android operating system has increased significantly. The open-source nature of android helps in programming applications easily according to user requirements. A syringe pump is a medical device that functions to enter the medicinal fluid into the patient's body at a certain dose and time automatically in mL/hour. The syringe pump is generally equipped with an alarm. Alarms have a vital function to provide information to nurses or doctors who are on duty. Medical officers cannot hear alarms if they are outside the patient monitoring room. This paper aims to design a syringe pump that is equipped with a NodeMCU8266 WiFi module to provide notifications via a smartphone so that nurses or doctors can know the alarm even though they are outside the patient monitoring room. So, this is expected can improve patient safety. In addition, this paper also aims to verify the size of the syringe against the drug flow rate. Based on the test results, the syringe pump can control the drug flow rate with a sensor accuracy of 0.0217 and an error rate of 0.6% at a target volume of 5mL. The syringe pump can also send alarm notifications to smartphones in real-time.
Penguatan Kompetensi Para Guru SLB dengan Pembuatan Video Pembelajaran Prasetyani, Henny; Agustiningrum, Maria Denok Bekti; Purnamasari, Dewi; Jumrianto, Jumrianto; Aprivian, Muhammad Ichsan Dedi; Kurniawati, Kurniawati
Manggali Vol 3 No 2 (2023): Manggali
Publisher : Lembaga Penelitian dan Pengabdian Masyarakat, Universitas Ivet

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31331/manggali.v3i2.2550

Abstract

Penggunaan video dalam proses belajar mengajar merupakan salah satu media yang efektif, karena dapat meningkatkan pemahaman siswa. Implementasi pembuatan video pembelajaran sulit dilakukan oleh para guru karena dirasa sangat susah. Namun pembuatan video pembelajatan ini perlu untuk dilakukan untuk peningkatan kompentensi guru, sehingga tim pengabdian melakukan pelatihan untuk mengatasi permasalahan tersebut. Kegiatan pelatihan berupa pembuatan video pembelajaran dengan menggunakan media smartphone bagi para guru di SLB Insan Tiara Bangsa Kendal dengan pemberian materi, kemudian dilanjutkan dengan praktek secara langsung. Di akhir berupa evaluasi ntuk mengetahui keberhasilan dengan wawancara langsung. Hasilnya yaitu guru telah berhasil mengalami penguatan kompetensi yang ditandai dengan dapat membuat video pembelajaran.
Shipboard Guardian: Sistem IoT untuk Pemantauan Suhu dan Kelembaban Ruangan Kelistrikan Kapal Jumrianto, Jumrianto; Hariningrum, Rita; Purnamasari, Dewi; Rosyihin, Ashof
JURNAL BARTEK Vol 2 No 1 (2026): Jurnal Bahari dan Teknologi [BARTEK]
Publisher : Politeknik Bumi Akpelni Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.6425/h4v0kd14

Abstract

The electrical system on a ship is a critical area vulnerable to system failure and fire risks due to excessive temperature or humidity. This research aims to design and implement a remote temperature and humidity monitoring system called "Shipboard Guardian," based on Internet of Things (IoT) technology. This system design method utilizes a NodeMCU ESP8266 as the main microcontroller, processing data from the DHT11 sensor (to detect temperature and humidity) and controlling actuator components such as LEDs and buzzers. Data collected by the sensor is then sent in real time to the cloud via the Internet of Things.Cloud platform. Internet of Things serves as a visual interface (dashboard) that allows ship crew or shore operators to monitor the condition of the ship's electrical system through a smartphone or web application. Key features of this system include: (1) real-time monitoring of temperature and humidity of electrical rooms, (2) providing visual (LED) and audio (Buzzer) early warnings (alarms) when critical thresholds are exceeded, and (3) easy data access via the Internet of Things IoT platform. The implementation results show that "Shipboard Guardian" is able to detect and report temperature changes in the range of 0 oC to 50 oC and humidity of 20% to 90% with an accuracy level of 91.47. This system is expected to improve ship operational safety, minimize fire risks, and facilitate predictive maintenance on ship electrical systems.