RANCANG BANGUN SISTEM MONITORING DETAK JANTUNG PASIEN DAN SPO₂ BERBASIS IOT PADA KLINIK SPESIALIS BUNDA RANTAUPRAPAT

AMANDA ANASTASYA, NPM 2208100009 (2026) RANCANG BANGUN SISTEM MONITORING DETAK JANTUNG PASIEN DAN SPO₂ BERBASIS IOT PADA KLINIK SPESIALIS BUNDA RANTAUPRAPAT. Skripsi thesis, Universitas Labuhanbatu.

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Abstract

Perkembangan teknologi di bidang kesehatan semakin pesat, terutama lewat penerapan Internet of Things (IoT) yang memfasilitasi pemantauan kondisi pasien secara waktu nyata. Detak jantung dan saturasi oksigen darah (SpO₂) adalah parameter vital krusial untuk menilai status kesehatan seseorang. Namun, proses pemantauan yang masih dilakukan secara manual di fasilitas kesehatan dinilai kurang efisien karena membutuhkan waktu dan kehadiran tenaga medis secara langsung. Penelitian ini bertujuan untuk merancang dan membangun sistem monitoring detak jantung dan SpO₂ berbasis IoT yang mampu menampilkan data secara real-time melalui perangkat smartphone. Sistem yang dikembangkan menggunakan sensor MAX30102 sebagai pendeteksi detak jantung serta saturasi oksigen darah, pengendali mikrokontroler ESP32 sebagai pengolah data sekaligus penghubung ke jaringan internet, serta aplikasi Blynk sebagai media monitoring. Data yang diperoleh dari sensor akan diproses oleh ESP32 dan dikirimkan ke aplikasi Blynk melalui koneksi internet sehingga tenaga medis dapat memantau kondisi pasien secara langsung dan jarak jauh. Hasil penelitian mengindikasikan bahwa sistem yang dibuat berhasil membaca dan menampilkan nilai detak jantung dan SpO₂ secara real-time baik pada perangkat alat maupun aplikasi smartphone. Dengan adanya sistem ini, diharapkan dapat membantu tenaga medis dalam melakukan pemantauan kondisi pasien secara lebih efektif, efisien, dan praktis, khususnya di Klinik Spesialis Bunda Rantauprapat. Kata Kunci: Internet of Things (IoT), Detak Jantung, SpO₂, MAX30102, ESP32, Monitoring Kesehatan ========================================================================== Technological developments in the healthcare sector are increasingly rapid, especially through the implementation of the Internet of Things (IoT) which facilitates real-time monitoring of patient conditions. Heart rate and blood oxygen saturation (SpO₂) are crucial vital parameters for assessing a person's health status. However, the monitoring process that is still carried out manually in healthcare facilities is considered inefficient because it requires time and the direct presence of medical personnel. This research aims to design and build an IoT-based heart rate and SpO₂ monitoring system that is capable of displaying data in real time via a smartphone device. The developed system uses a MAX30102 sensor as a heart rate and blood oxygen saturation detector, an ESP32 microcontroller as a data processor and internet connection, and the Blynk application as a monitoring medium. Data obtained from the sensor will be processed by the ESP32 and sent to the Blynk application via an internet connection so that medical personnel can monitor the patient's condition directly and remotely. The results of the study indicate that the system created successfully reads and displays heart rate and SpO₂ values in real time both on the device and the smartphone application. This system is expected to assist medical personnel in monitoring patient conditions more effectively, efficiently, and practically, particularly at the Bunda Rantauprapat Specialist Clinic. Keywords: Internet of Things (IoT), Heart Rate, SpO₂, MAX30102, ESP32, Health Monitoring

Item Type: Thesis (Skripsi)
Uncontrolled Keywords: Internet of Things (IoT), Detak Jantung, SpO₂, MAX30102, ESP32, Monitoring Kesehatan===============Internet of Things (IoT), Heart Rate, SpO₂, MAX30102, ESP32, Health Monitoring
Subjects: Q Science > QA Mathematics > QA75 Electronic computers. Computer science
R Medicine > R Medicine (General)
Z Bibliography. Library Science. Information Resources > ZA Information resources > ZA4450 Databases
Divisions: Fakultas Sains Dan Teknologi > Teknologi Informasi
Depositing User: Unnamed user with email repository@ulb.ac.id
Date Deposited: 05 May 2026 07:00
Last Modified: 06 May 2026 08:13
URI: http://repository.ulb.ac.id/id/eprint/2215

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