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Journal : Medika Trada

RANCANG BANGUN ALAT WATER BATH DILENGKAPI INDIKATOR LEVEL AIR BERBASIS ARDUINO MEGA2560 Nuha ABA, Muhammad Ulin; Muslihun; Yulianto Lamahala Tukan, Wilhelmus
MEDIKA TRADA : Jurnal Teknik Elektomedik Polbitrada Vol 3 No 2 (2022): MEDIKA TRADA (JTEMP) Vol 3 No 2 (2022)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v3i1.21

Abstract

Laboratorium merupakan tempat yang dilengkapi dengan berbagai instrumen, peralatan dan bahan kimia (reagen), kegiatan yang dilakukan pada laboratorium meliputi karya eksperimental, kegiatan penelitian dan prosedur pemeriksaan. Water bath merupakan suatu alat yang digunakan pada laboratorium kesehatan untuk melaksanakan kegiatan serologi, aglutinasi, inaktivasi, biomedis, terfarmasi dan prosedur inkubasi industri. Fungsi utama Water bath adalah membuat suhu yang konstan dengan waktu yang sudah ditentukan. Maka, penelitian ini akan merancang alat water bath dilengkapi dengan sensor ketinggian air dengan menggunakan komponen pendukung berupa Arduino Mega 2560, sensor DS18B20, keypad 4x4, driver relay, heater, driver water level dan LCD 20x4. Metode penelitian yang digunakan dalam pengujian ini dengan menguji suhu pada wadah dengan mengukur suhu pada wadah alat. Jika kinerja alat sudah sesuai atau suhu yang diuji dengan menggunakan sensor DS18B20 tidak berbeda jauh dengan alat pembanding, maka alat sudah bekerja dengan baik dan jika hasil yang ditampilkan kurang baik, artinya suhu pada wadah tidak tersebar dengan merata sehingga suhu pada wadah tidak sesuai dengan pengaturan suhu. Kesimpulan dari penelitian ini yaitu Wadah memiliki pemansan yang maksimal disuhu 37°C - 50°C. Nilai Error terendah pada pengujian pembacaan sensor suhu adalah 0,20% pada suhu 50°C dan terbesar 1,11% pada pengujian suhu 45°C. Nilai Error terendah pada pengujian alat adalah 1,77% pada suhu 44°C dan terbesar yaitu 3,66% pada pengujian suhu 47°C.
ALKOHOL TESTER DIGITAL UNTUK MAKANAN DAN MINUMAN MENGGUNAKAN SENSOR TGS 2620 BERBASIS IOT Linggar Pangesti, Diana; Ulin Nuha ABA, Muhammad; Kuspranoto, Abdul Haris
MEDIKA TRADA : Jurnal Teknik Elektomedik Polbitrada Vol 3 No 2 (2022): MEDIKA TRADA (JTEMP) Vol 3 No 2 (2022)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v3i1.18

Abstract

Penggunaan alkohol (Etanol) sebagai komposisi dalam suatu makanan dan minuman sudah cukup dikenal. Pemicu munculnya produk-produk industri rumah tangga yang belum terdaftar pada BPOM berbagai jenis makanan dan minuman yang banyak beredar memiliki kandungan kadar alkohol. Guna membantu kondisi tersebut, maka peneliti membuat alat deteksi alkohol berbasis Android. Dengan beberapa komponen pendukung yaitu sensor TGS 2620, mikrokontroler ESP32 dan LCD I2C. Penelitian ini dilakukan dengan experimen menguji sensor TGS 2620, mikrokontroler ESP32, dan sampel yang berupa asinan, tape ketan, soda (Zoda), dan air mineral. Hasil dari pengujian alat dilakukan menggunakan beberapa sampel berupa asinan dengan kadar akohol 0%, tape ketan 29,6%, air mineral 0%, soda dengan merek Zoda 0%. Alat dapat memeriksa sampel dengan baik dan dapat digunakan.
RANCANG BANGUN ELEKTROSTIMULATOR BERBASIS ARDUINO MEGA 2560 Muslihun, Muslihun; Ulin Nuha ABA, Muhammad; Ringaama Kromen3, Yohanes
MEDIKA TRADA : Jurnal Teknik Elektomedik Polbitrada Vol 4 No 2 (2023): MEDIKA TRADA (JTEMP) Vol 4 No 2 (2023)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v4i2.35

Abstract

The use of medical equipment in the world of health is very much needed, one of which is an electrostimulator which can be used to help recovery in post-stroke patients. Electrostimulators can be made with several conditions, namely: controller, stimulator, and electrodes. Apart from that, there are 4 parameters needed for the electrostimulator, namely 1) Pulse Amplitude, 2) Pulse Width, 3) Pulse Shape, 4) Pulse Frequency. In this electrostimulator, it is highly recommended to use a surface electrode, apart from being a non-invasive electrode, this electrode also provides comfort and is easy to use. Judging from this, an innovation was carried out, namely making an electrostimulator with the choice of 2 modes, namely continuous and intermittent. The research procedure was carried out in several stages starting from preparing tools and materials, measurements and functional tests. The results of the research are a design for an electrostimulator therapy device with a power supply connected to a microcontroller and displayed on an LCD. The test results showed that the error percentage at the power supply input was 5.9%, the power supply output was 3%, and the buzzer output was 0%. The results of testing and analysis of the tool on the oscilloscope showed that the error percentage at frequency values of 2 Hz, 4 Hz, 5 Hz, 7 Hz and 8 Hz was 0.05%, 0%, 2%, 4% and 8% respectively. Based on the results of this research, it can be concluded that the tool is as desired and good to use.
PENGEMBANGAN TELEMONITORING PADA PULSE OXIMETER MENGGUNAKAN SPO2 NELLCOR BERBASIS INTERNET OF THINGS Kuspranoto, Abdul Haris; Nuha ABA, Muhammad Ulin
MEDIKA TRADA : Jurnal Teknik Elektomedik Polbitrada Vol 4 No 2 (2023): MEDIKA TRADA (JTEMP) Vol 4 No 2 (2023)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v4i2.36

Abstract

Telemonitoring is a method of long-distance health services using information technology to provide data to health services. Telemonitoring can save time, costs and effectiveness of health services. The biggest challenge in using Telemonitoring is that the adoption rate is still low and there has not been much development in medical equipment. Pulse Oximeter Using Nellcor SpO2 Based on the Internet of Things, functions to measure oxygen saturation (SpO2) and measure heart rate remotely. Then the results can be monitored via an Android smartphone application by utilizing an internet connection. To make this happen, hardware and software planning was made. This module uses a Nellcor SpO2 sensor which will regulate SpO2 and Heart Rate values ​​in the range of 60-100%. This microcontroller module uses ESP32 which will act as the brain of the device controller and connect the device to an Android smartphone. The measurement results of this tool are tampilaned on a 3.5 inch Nextion LCD and the Inventor application on an Android smartphone. The difference between oxygen saturation and heart rate readings on the Prosim 8 device has the largest error percentage of 5.4% for heart rate and the smallest at 0% for SpO2. This application can record SPO2 data and falling heart rate on patients periodically, so that their condition and condition can be monitored. for diagnostic data on patients remotely.
RANCANG BANGUN ALAT PENGUKUR KONSENTRASI OKSIGEN (O2) BERBASIS IoT MIKROKONTROLLER ESP32 PADA VENTILATOR PURITAN BENNETT 840 Satria, Medikatrada; Haris Kuspranoto, Abdul Haris; Ulin Nuha ABA, Muhammad
MEDIKA TRADA : Jurnal Teknik Elektomedik Polbitrada Vol 5 No 2 (2024): MEDIKA TRADA (JTEMP) Vol 5 No 2 (2024)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v5i2.86

Abstract

IoT systems allow users to monitor and control devices remotely using a smartphone or other device connected to the internet. IoT systems can help improve efficiency, effectiveness, and security in a variety of applications. One of the uses of IoT systems in the field of Health is to combine IoT devices with medical sensors. This research integrates Internet of Things (IoT) technology with oom202 sensor to detect and regulate oxygen (O2) concentration in Puritan Bennett 840 ventilator, especially for baby head box in Perinatology room. The Sensor reads O2 levels, sends data to the ESP32 microcontroller, and displays the results in real-time on the LCD as well as the Android device. The system provides notification if O2 levels are beyond safe limits, with an average tool accuracy of less than 1% and a measurement error of only 0.18%, ensuring effective and precise O2 monitoring.
PENERAPAN DIGITAL MOVING AVERAGE FILTER PADA SKIN SENSOR INFANT WARMER UNTUK MENGUKUR SUHU Kuspranoto, Abdul Haris; Ulin Nuha ABA, Muhammad
MEDIKA TRADA : Jurnal Teknik Elektomedik Polbitrada Vol 5 No 2 (2024): MEDIKA TRADA (JTEMP) Vol 5 No 2 (2024)
Publisher : LPPM POLBITRADA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59485/jtemp.v5i2.93

Abstract

Accurate and stable measurement of a baby's body temperature is a critical element in neonatal care, especially for premature babies or babies with medical conditions that require intensive attention. Currently, skin sensors integrated with infant warmers are a common solution for continuously monitoring baby's body temperature. However, temperature fluctuations and environmental noise can interfere with measurement accuracy. This research aims to increase the accuracy of temperature measurements using the Digital Moving Average Filter (DMAF) on the skin sensor in the infant warmer. DMAF is applied to reduce noise and fluctuations, thereby producing more stable and accurate temperature data. This method was tested using a dataset of temperature measurements from newborn babies. The results show a significant improvement in temperature measurement accuracy of up to 97.94%, with a substantial reduction in fluctuations and noise. In addition, temperature fluctuations do not exceed 1 degree Celsius after using the DMAF method. Thus, the application of DMAF to skin sensor infant warmers provides clear benefits in improving the quality of neonatal care by providing more precise and responsive temperature control, as well as reducing the risk of dangerous medical conditions due to temperature instability. These findings provide a strong foundation for further development in sensor technology and temperature regulation in infant warmers, with great potential to improve the safety and well-being of newborns.