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Rancang bangun sistem balon tampondengan sensor tekanan Eko Arianto
JHeS (Journal of Health Studies) Vol 2, No 2: September 2018
Publisher : Universitas 'Aisyiyah Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1490.645 KB) | DOI: 10.31101/jhes.383

Abstract

Postpartum Hemorrhage (PPH) contributes to high number of maternal mortality rate (AKI) in Indonesia. The cause of PPH is varied, but the most common case is atonia uteri. There are some medical procedures to prevent PPH, one of which is using a balloon tamponade.Balloon tamponade is a balloon that is used to help stop PPH.This research was carried out by making new balloon tamponade system. The test results shows that the models which have been developed can be used as a better ballon tamponade system.Condoms can be filled up to 1500 ml volume.
Design a sitting shower therapy with water temperature and pressure controller Eko Arianto
JHeS (Journal of Health Studies) Vol 6, No 1 (2022): Maret
Publisher : Universitas 'Aisyiyah Yogyakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (291.008 KB) | DOI: 10.31101/jhes.2436

Abstract

The pressure and temperature of the water used when bathing using a shower has been presented to provide physiological changes to the body. However, the ideal water pressure and temperature for shower therapy has not been extensively discussed. Therefore, this research was conducted to design a shower therapy that meets the ideal specifications to obtain the most optimal therapeutic effect. Water pressure regulation was performed with a booster pump controlled by a dimmer circuit. Meanwhile, a linear motor was applied to drive the showerhead, which was controlled by Arduino. The results of the prototype test show that a series of shower therapy can be employed in both sitting and standing positions. The water temperature of 40-60 °C was achieved in 30 minutes of the heating process which indicates that the developed tool needs improvement in future research, to attain a shorter heating time and a more accurate shower head movement speed.
Implementasi gerakan omnidirectional pada robot rugby Agus Siswoyo; Eko Arianto
J-Innovation Vol. 11 No. 2 (2022): Jurnal J-Innovation
Publisher : Politeknik Aceh

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55600/jipa.v11i2.143

Abstract

Robots in the KRAI competition (Indonesian ABU Robot Contest) are required to be able to maneuver and move well, efficiently and quickly in order to be able to carry out the task of picking up and kicking rugby balls. In order for the robot to move quickly and precisely, a wheel that can move dynamically is needed. The wheel used is the Omniwheel. This wheel has a small wheel located on the outer side of the main wheel, so that the movement of the rugby robot can run smoother when changing positions. With dynamic and efficient maneuvers and displacement of the rugby robot, the robot can move more agile and can stop in the desired position.
BLUETOOTH CONTROL SYSTEM ON ELECTRIC WHEELCHAIRS USING VOICE RECOGNITION Eko Arianto; Bernardinus Sri Widodo; Antonius Hendro Noviyanto; Nugroho Budi Wicaksono; Agatha Mahardika Anugrayuning Jiwatami
TRAKSI Vol 23, No 1 (2023): TRAKSI
Publisher : Universitas Muhammadiyah Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26714/traksi.23.1.2023.%p

Abstract

Currently technology is highly developed and supports many new innovations. The most innovation is wireless technology and voice recognition. One of the widely used wireless technology is Bluetooth. By utilizing Bluetooth connectivity and voice recognition applications on smart phones, it can be used to control electronic equipment. In this study, voice recognition applications and Bluetooth connections will be used on smart phones to control electric wheelchairs. This research begins with designing an electric wheelchair. For Bluetooth communication using the HC-05 Bluetooth module. The wheelchair was developed by modifying conventional wheelchairs to become electric. The user or patient will control the wheelchair using his smart phone through the voice recognition application. Commands in the form of voice that will be sent by the smart phone and received by the HC-05 Bluetooth module, then become input for the Arduino microcontroller. The microcontroller will then process the input data and will instruct the motor driver to give instructions to the wheelchair driving motor. The electric wheelchair's voice control system with a Bluetooth connection can work quite well. The Bluetooth connection used in this electric wheelchair voice control system works optimally and well at a distance of <10 meters, the connection starts to drop at a distance of 10 to 23 meters, and the connection is lost when the distance is 30 meters. The results of the voice recognition test on voice commands were successful with an accuracy of 85%. The total test is 100 orders with a total error of 15 orders.
Perancangan Sistem Pengendalian Suhu Air Pada Shower Therapy Dengan Fuzzy Logic Eko Arianto
Jurnal Teknologi Vol. 12 No. 2 (2022): Jurnal Teknologi
Publisher : Universitas Putra Indonesia YPTK Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (269.665 KB) | DOI: 10.35134/jitekin.v12i2.71

Abstract

Therapy is a form of health service to develop, maintain, and restore body movement and function by using manual handling and equipment. One of the therapies that many people need is for relaxation and reducing fatigue. One alternative is to use water as a medium (hydrotherapy). The pressure and temperature of the water used for shower therapy has been shown to provide physiological changes in humans. Shower therapy with warm water is strongly influenced by room temperature. The difference in outdoor air temperature (room) with the temperature of the water for bathing is very large will cause serious physiological problems. Therefore, to prevent the risk of differences in room temperature and water temperature being too large when bathing and/or shower therapy, a water temperature control system is needed that can maintain the temperature difference at a certain level. With a fuzzy logic controller system, the water temperature will be able to be controlled to adjust the outdoor air temperature (room). By adjusting the value of delta (∆) outside air temperature and water temperature, extreme temperature differences can be handled. The prototype of the water temperature control system in shower therapy with fuzzy logic has been successfully created with minimal functions with a water mixer system using solenoid valves. The water mixer can work at a minimum with the water temperature output which is still unstable and less accurate with a fairly high deviation. Setting the value of ΔT >5 produces a more stable water temperature output with an average deviation of <10%. The effect of pressure and water flow has not been seen and has not been observed.
Sistem Kontrol Wireless Tempat Tidur Pasien Menggunakan Frekuensi Radio 315 MHz Eko Arianto
Lontar Physics Today Vol 1, No 1 (2022): Februari 2022
Publisher : Universitas PGRI Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26877/lpt.v1i1.10740

Abstract

Tulisan ini membahas sistem kontrol wireless untuk motor penggerak pada tempat tidur pasien (bed patient) manual berbasis frekuensi radio. Sistem kontrol ini bisa membantu meningkatkan manfaat pada tempat tidur pasien produksi dalam negeri. Di Indonesia sudah banyak yang mampu membuat tempat tidur pasien manual dengan kualitas yang baik. Harga tempat tidur pasien elektrik sangat mahal dan harus impor. Peningkatan produksi alat kesehatan dalam negeri seperti sistem kontrol wireless tempat tidur pasien ini akan mengurangi ketergantungan terhadap impor alat kesehatan. Penggunaan alat kesehatan produksi dalam negeri harganya lebih terjangkau dan dengan kualitas yang sama memungkinkan menurunkan biaya kesehatan di Indonesia. Hasil penelitian menunjukkan sistem kontrol wireless motor penggerak tempat tidur pasien berbasis frekuensi radio dapat bekerja dengan baik. Sistem kontrol ini mampu mengontrol motor penggerak sampai 5 Ampere. Respon remote kontrolnya juga mencukupi untuk kebutuhan pasien saat akan mengubah posisi bed pasien yang digunakannya.
Validation of SpO₂ and Heart Rate Monitoring in a Smart Patient Bed System for Home Care Eko Arianto; Dion Sulistyo; Syarif Hidayat; Sebastianus Christian Dwiatmojo
Journal of Renewable Energy and Smart Device Vol. 3 No. 2 April 2026
Publisher : PT. Global Research Collaboration

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.66314/joresd.v3i2.581

Abstract

 Continuous monitoring of vital signs is essential in-patient care, especially for home care and hospital-at-home applications requiring long-term, non-diagnostic observation. Oxygen saturation (SpO₂) and heart rate are commonly monitored; however, conventional systems rely on standalone or wearable devices that may reduce patient comfort and compliance. Integrating monitoring into a smart patient bed system enables passive and continuous data acquisition without interfering with patient activity. This study aims to validate the performance of SpO₂ and heart rate monitoring integrated into a smart patient bed system for home care applications. The main contribution is the experimental validation of a smart patient bed system as a non-diagnostic monitoring solution, offering an alternative to wearable systems. Validation was performed by comparing measurements from the proposed system with a commercial pulse oximeter and a bedside patient monitor under resting conditions. Absolute error, mean absolute error, and standard deviation were calculated to evaluate accuracy and stability. Results show good agreement with both reference devices. The mean absolute error was below 1% for SpO₂ and below 1 bpm for heart rate, with low standard deviations indicating stable performance. In conclusion, the system provides a reliable solution for continuous vital sign monitoring in home care environments. This study also demonstrates the feasibility of integrating optical sensing into a smart patient bed system for long-term monitoring
Design and Thermal Performance Evaluation of a Portable Biological Sample Incubator for Temperature-Controlled Transport Eko Arianto; Antonius Hendro Noviyanto; Elang Parikesit; Ahmad Ricardo Syukur Silalahi; Yeremia Sbastyan; Ermelinda Insani Rahesti; Lusia Aprilia Sera Weter
Journal of Renewable Energy and Smart Device Vol. 4 No. 1 August 2026
Publisher : PT. Global Research Collaboration

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.66314/joresd.v4i1.1220

Abstract

The transportation of biological samples requires a temperature-controlled environment to preserve sample integrity throughout the pre-analytical process. This study presents the design and thermal performance evaluation of a portable biological sample incubator developed to maintain physiological temperatures during transport. The proposed prototype integrates an ESP32 microcontroller, an SHT31 temperature sensor, a pulse-width modulation (PWM)-controlled PTC heater, and a 12.8 V 6 Ah LiFePO₄ battery in a thermally insulated incubation chamber. Experimental evaluations were conducted at temperature setpoints of 36.0, 36.5, 37.0, 37.5, and 38.0 °C to assess thermal response, temperature stability, battery performance, and the low-voltage protection mechanism. The experimental results demonstrate that the incubator consistently achieved the desired temperature range and maintained stable operating conditions after reaching steady state. The battery provided continuous power throughout the operating period, while the low-voltage protection mechanism successfully disconnected the heating system at the predefined cut-off voltage of 10.5 V to prevent battery over-discharge. Overall, the developed prototype demonstrated reliable thermal control and effective power management, indicating its potential as a portable temperature-controlled transport system for biological sample applications.
Penerapan Teknologi Tepat Guna Inkubator Telur Ayam Otomatis untuk Pemberdayaan Karang Taruna Desa Tegalrejo Eko Arianto; Petrus Setyo Prabowo; Beni Utomo
Jurnal Pengabdian kepada Masyarakat Nusantara Vol. 7 No. 2 (2026): Edisi Mei - Agustus
Publisher : Lembaga Dongan Dosen

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55338/jpkmn.v7i2.9505

Abstract

Pemeliharaan ayam skala rumah tangga di Desa Tegalrejo memiliki potensi untuk dikembangkan menjadi kegiatan produktif masyarakat, namun proses penetasan masih banyak mengandalkan pengeraman alami dan belum didukung sarana serta keterampilan teknologi penetasan yang memadai. Kegiatan Pengabdian kepada Masyarakat ini bertujuan menerapkan teknologi tepat guna berupa inkubator telur ayam otomatis sekaligus meningkatkan pengetahuan dan keterampilan Karang Taruna Tanjung Manunggal dalam memanfaatkan teknologi penetasan. Kegiatan dilaksanakan dengan pendekatan partisipatif melalui koordinasi dan analisis kebutuhan, sosialisasi, pelatihan teori, praktik pembuatan, pengujian, dan penerapan teknologi. Sebanyak 21 peserta terlibat dalam pelatihan dan praktik, menghasilkan 10 unit inkubator berkapasitas 32–36 telur per unit yang telah diuji, diserahkan, dan mulai digunakan untuk uji coba penetasan. Observasi dan tanya jawab informal menunjukkan capaian awal pengetahuan dan keterampilan peserta dalam memahami prinsip penetasan serta mengoperasikan inkubator. Tingkat keberhasilan penetasan dan dampak terhadap produktivitas masih memerlukan evaluasi setelah satu siklus penetasan selesai.
Pengenalan Teknologi Kesehatan Bagi Siswa SMK Pangudi Luhur Muntilan Sebagai Upaya Peningkatan Literasi Kesehatan Antonius Hendro Noviyanto Noviyanto; Agatha Mahardika Anugrayuning Jiwatami; Eko Arianto; Agus Siswoyo
Jurnal Pengabdian kepada Masyarakat Nusantara Vol. 7 No. 2 (2026): Edisi Mei - Agustus
Publisher : Lembaga Dongan Dosen

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55338/jpkmn.v7i2.9321

Abstract

Perkembangan teknologi kesehatan digital menuntut masyarakat memiliki literasi kesehatan yang memadai agar mampu memanfaatkan perangkat kesehatan secara tepat, aman, dan bertanggung jawab. Namun demikian, siswa SMK masih memiliki keterbatasan dalam memahami fungsi, cara penggunaan, interpretasi hasil pengukuran, serta prinsip kerja alat kesehatan dasar seperti tensimeter digital dan pulse oximeter. Program pengabdian kepada masyarakat ini bertujuan meningkatkan literasi teknologi kesehatan siswa SMK Pangudi Luhur Muntilan melalui pendekatan edukatif dan praktis yang mengintegrasikan bidang pendidikan kesehatan dan teknologi elektromedis. Kegiatan dilaksanakan menggunakan metode blended learning dengan pendekatan experiential learning yang meliputi tahap persiapan, asesmen kebutuhan, penyusunan modul, workshop interaktif, praktik penggunaan alat kesehatan, perancangan alat kesehatan sederhana berbasis Arduino, pendampingan, serta evaluasi hasil pembelajaran. Sebanyak 48 siswa mengikuti kegiatan dalam kelompok-kelompok kecil untuk mendorong kolaborasi, diskusi, dan pembelajaran berbasis proyek. Hasil kegiatan menunjukkan peningkatan pemahaman siswa tentang teknologi kesehatan dasar, keterampilan dalam mengoperasikan alat kesehatan, dan kemampuan merancang prototipe sederhana. Luaran yang dihasilkan berupa modul pelatihan, publikasi ilmiah, publikasi media sosial dan website, serta Hak Kekayaan Intelektual (HKI). Program ini diharapkan menjadi model penguatan literasi kesehatan digital di lingkungan sekolah kejuruan sekaligus mendukung implementasi pengembangan teknologi tepat guna untuk meningkatkan kualitas hidup masyarakat.