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HENNY SYAPITRI
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+6285370854773
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INDONESIA
Jurnal Mutiara Elektromedik
ISSN : ""     EISSN : 26147963     DOI : https://doi.org/10.51544/elektromedik.v6i1
Core Subject : Engineering,
Focus : Jurnal Mutiara Elektromedik yang memuat hasil penelitian tentang kajian keilmuan Teknologi Elektromedik Scope : Teknologi Elektromedik, Teknik Elektro, Teknologi Radiologi Pencitraan, Teknologi Instrumentasi, Fisika medis, Rekam Medis dan Sistem Informasi Kesehatan
Articles 143 Documents
STUDI AKURASI ALAT TERMOMETER NON-CONTACT DENGAN MENGGUNAKAN INFRA RED PADA TERMOMETER DIGITAL Salomo Sijabat; Dyna Grace Romatua Aruan; Dedy Antoni; Barmencius Simarmata
JURNAL MUTIARA ELEKTROMEDIK Vol. 5 No. 2 (2021): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v5i2.4502

Abstract

A thermometer is a tool used to measure body temperature. To make it easier to measure body temperature, a non-contact thermometer using infrared and a digital thermometer is used to get faster results compared to a manual thermometer. Non-contact thermometers using infrared measure body temperature by placing them at the point, axillary, and rectal, while infrared thermometers are used to measure the temperature emitted by the tympanic membrane. digital thermometer. The results of the accuracy test obtained are the total null value of the first test result obtained at 1.34°С compared to the digital thermometer tool. digital. The distance needed by this tool to read the human body temperature is +/- 3cm. The time needed to measure temperature with a digital thermometer is 10-15 seconds. From the results of the most accurate distance measurement for infrared thermometer measurements, it is 2 cm.
ANALISIS KONTROL LAMPU OPERASI MENGGUNAKAN SENSOR JARAK BERBASIS MIKROKONTROLER ARDUINO UNO Khairil Abdillah; Muhammad Riduan
JURNAL MUTIARA ELEKTROMEDIK Vol. 5 No. 2 (2021): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v5i2.4503

Abstract

The operating lamp is one of the madical devices that has a very important role in the world of health, especially at The nimal:pain during surger. The purpose of this study was to determine the analysis of operating lamp control using a proximity sensor based on the Arduino Uno microcontroller, to determine the effect of distance to objects on operaring lamp devices. Adjust the distance between the object to the operating lampu so that the module will automatically assign a distance value according to the object to the operating lamp. The results obtained in this study are at a distance of 50 cm the light value to the object is 8023, at a distance of 100 cm the light value is obtained ot the object 2,827 at a distance of 140 cm, the value of light ot the object 1,298. the conclusion of this study is that the closer the distance to the operating lamp is to the object, the higher the intensity and vice versa because the series of readings of light and distance values automatically reads the distance and ligh values. Yes operating lights against objects.
SISTEM MONITORING SPEED SETTING PADA ROLLER MIXER BERBASIS MIKROKONTROLER ARDUINO UNO Sijabat, Salomo; Andany, Arif
JURNAL MUTIARA ELEKTROMEDIK Vol. 6 No. 1 (2022): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v6i1.4504

Abstract

Roller mixer is a laboratory tool that serves to mix blood samples and reagents.  In this case, the substances that are mixed are blood and anti-clotting agents (coagulants).  In the process of mixing the blood, the timer and the rotational value of the motor are set by the selector switch.  The design of the speed setting of the roller mixer tool is made so that the user can control and monitor how much the value of the motor speed used is displayed on the 16x2 LCD display. This research will be conducted at the Electronics Laboratory of Sari Mutiara University, Helvetia District, Medan City.  This type of research method is experimental research, namely conducting direct experiments.  The components in monitoring this tool are microcontroller, display, timer setting, speed setting and roller. After carrying out the research process on the design of this tool, the measurement results obtained from the Infrared Sensor are displayed on the LCD, with a minimum speed measurement of 36, Medium 38 and a maximum of 44 rpm.  With a comparison from a thacometer with an average value of Minimum 44 Medium 54 and maximum 56.
ANALISIS TIMBANGAN PADA HOTPLATE MANGNETIC STIRRER BERBASIS ARDUINO UNO Abdillah, Khairil; Supandi; Naibaho, Hengky Herdiansyah
JURNAL MUTIARA ELEKTROMEDIK Vol. 6 No. 1 (2022): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v6i1.4505

Abstract

Hotplate magnetic stirrer is a tool used to homogenize and heat a solution, this tool is used in microbiology, chemistry and pharmaceutical laboratories to homogenize and heat a solution. The main component of the hotplate magnetic stirrer is the stepper motor which functions to rotate the sample and heat it using a heater at a predetermined speed and time. The hotplate magnetic stirrer that the author made uses an Arduino uno At mega 328p microcontroller, a motor driver, a 20x4 LCD, a buzzer and a keypad. the motor driver is used to adjust the motor speed according to the user's wishes, the LCD functions to display the motor speed and timer, the buzzer will sound when the magnetic stirrer hotplate is turned on and when the keypad is pressed, the loadcall functions as a sensor used to detect the pressure that is placed on the plate , the HX711 module functions to convert measured changes in resistance changes and convert them into voltage quantities through existing circuits, keypads as speed and timer inputs. When the speed has been reached, the motor driver will work to control the motor to keep it according to the desired speed.
ANALISIS TIMER DAN SENSOR SUHU TUBUH BAYI PADA PERALATAN PHOTOTHERAPY BERBASIS ARDUINO UNO Aruan, Dyna Grace Romatua; Siallagan, Wilson; Avisienna
JURNAL MUTIARA ELEKTROMEDIK Vol. 6 No. 2 (2022): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v6i2.4506

Abstract

Jaundice (Neonatal Jaundice) or better known as Jaundice in newborns is a normal thing and usually occurs 1-2 weeks after the birth of the baby. Based on statistics, 60% of the number of newborns look yellow less than 24 hours after the birth of the baby which indicates that the level of bilirubin in the blood is high. This condition is called hyperbiliruinemia. Hyperbilirubinemia is the term used for neonatal jaundice after laboratory results show an increase in bilirubin levels. Bilirubin is the result of the breakdown of hemoglobin due to damaged red blood cells and requires immediate medical attention. If left untreated, excess bilirubin in the blood can enter the brain and damage the brain. Yellow color in babies is usually seen on the forehead and the whites of the eyes, then down to the body, arms and legs. One of the most common medical treatments to cure jaundice is using Phototherapy. Basically babies who suffer from jaundice will be irradiated with blue light which has a long range of 400-510 nm for a certain period of time until their Bilirubin level drops to a level that is safe for the baby.
SISTEM KONTROL LAMPU OPERASI TERHADAP BRIGHTNESS (LOW, MEDIUM, HIGH) BERBASIS ARDUINO UNO Manurung, Kesaktian; Yanti, Nelly; Alrasyad, Muhammad Iqbal
JURNAL MUTIARA ELEKTROMEDIK Vol. 6 No. 2 (2022): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v6i2.4507

Abstract

The operating lamp is one of the medical devices that has a very important role in the world of health, especially in hospitals when performing surgery. The purpose of this study was to determine the design of operating lamps for Arduino Uno-based Brightnees. To find out the low, medium, high light settings when in operation. Type of Research This research uses an experimental research type. By measuring, testing and collecting data directly at a distance of 70 meters & 100 meters using a Bh1750 sensor and compared with Lux Meter measurements on the design of operating lamps on Arduino Uno-based brightnees. The results obtained From the measurements that have been carried out using the Bh1750 sensor 5 times at a distance of 70 & 100 meters, the authors get an average, low distance of 70 M: 201.2, low distance of 100M: 43.4. Medium distance 70M: 824.2 medium distance 100M: 242.4. And high distance 70 M: 1,311.8 high distance 100 M: 700. The conclusion obtained from this study is that the farther the distance of light from the object, the less amount of light appears, and conversely, the closer the intensity of light to the object, the greater the amount of light. emerging.
ANALISIS PEMELIHARAAN SUCTION PUMP DI RSUP HAJI ADAM MALIK MEDAN Primasyukra, Mhd. Aldi; Sinulaki, Yogi Alfares
JURNAL MUTIARA ELEKTROMEDIK Vol. 6 No. 2 (2022): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v6i2.4508

Abstract

Checking the accuracy of the required medical equipment on the suction pump calibrator with measurements that have been made using a standardized pressure gauge. The purpose of this study was to determine the maintenance of the suction pump at Haji Adam Malik Hospital Medan in 2022. The method used in this study was descriptive qualitative. The tool used is a suction pump and a questionnaire as a measuring tool used. The results showed that the motor rotation function, cable resistance, and hose were not in accordance with the suction pump maintenance standard, and encountered problems, namely the tool could not work as usual, so that maintenance repairs were carried out on the tool, namely readjusting the value according to the standard on the suction pump tool, so that the tool was able to work well.
PEMANTAUAN DAN KONTROL REAL TIME INKUBATOR NEONATAL Sijabat, Salomo; Rajagukguk, Desy Lustiyani; Dabukke, Hotromasari; Adiansyah
JURNAL MUTIARA ELEKTROMEDIK Vol. 7 No. 2 (2023): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v7i2.4944

Abstract

Telah dilakukan penelitian dengan membuat alat inkubator bayi yang dapat berfungsi secara otomatis pemantauan dan kontrol real-time inkubator neonatal. Kontrol suhu dan kelembaban sistem monitoring sangat dibutuhkan dalam sebuah inkubator karena saat ini masih banyak suhu pemantauan dilakukan secara manual. Demikian pemantauan dan pengendaliannya sistem suhu dan kelembaban inkubator telah dirancang yang dapat dipantau secara otomatis dari jarak yang cukup jauh berdasarkan Internet Of Things (IoT). Metode penelitian ini terdiri dari 2 bagian sistem yaitu perangkat utama dan perangkat pemantauan. Sensor yang digunakan adalah DHT11 untuk temperatur dan kelembaban, serta sensor DS18B20 untuk suhu ruangan. Pemantauan dapat dilakukan secara real-time dan pengontrolan manual dapat dilakukan dan ditampilkan pada LCD. Jika suhu dan kelembaban tidak cocok, pemanas atau kipas DC akan menyala. Penelitian ini adalah membuat alat inkubator yang dapat berfungsi secara otomatis pemantauan dan kontrol real-time inkubator neonatal. Hasil penelitian nilai kesalahan setiap kondisi suhu sedang diuji dapat diketahui dengan pasti besaran kesalahan (eror) yang terjadi pada setiap perlakuan hal ini akan memberikan gambaran tentang keakuratan alat yang digunakan dari data tersebut diperoleh nilai kesalahan rata-rata dari ke 13 kali percobaan adalah sebesar 0,09% demikian juga halnya perbandingan dengan pembanding termometer digital dan termometer air raksa. Jadi, tingkat akurasi peralatan sensor yang digunakan dengan pendeteksi suhu DS18B20 adalah mencapai 99,91% .
ANALISA PEMELIHARAAN PREVENTIF ELECTROSURGICAL UNIT DI RUMAH SAKIT KOTA SUBULUSSALAM Assauqi, Marzali Achmad; Primasyukra, Mhd. Aldi; Ulina, Sri; Pardosi, Putra Jaya
JURNAL MUTIARA ELEKTROMEDIK Vol. 8 No. 1 (2024): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v8i1.5143

Abstract

Electrosurgical Unit is a medical surgical device that utilizes high-frequency electric currents to cut, thicken and dry tissue during the operation process so that patients do not experience a lot of blood loss. 36 of 2009 concerning health states that the availability of medical devices must be safe, of good quality, and the public can be protected from harm caused by the use of medical devices that do not meet quality requirements. In Law No. 44 of 2009 concerning Hospitals, maintenance of equipment must be documented and evaluated periodically and continuously, so to carry out the mandate of the law, preventive maintenance must be carried out. The type of research used is descriptive qualitative research, which aims to analyze the maintenance of the Electrosurgical Unit by observing secondary maintenance data consisting of maintenance cards, SOPs, work tools etc. while observing primary data in the form of questionnaires so that the condition of preventive maintenance of ESU tools can be identified. already running. Based on the observations and analyzes that have been carried out, it is known that the preventive maintenance activities for the Electrosurgery Unit have been going well, such as technicians who have received training, maintenance funds are available, there are operating SOPs and calibration has also been carried out, but there are a number of things that must be improved, such as completing maintenance cards , Maintenance SOPs, performance tests, checking foot switches etc. periodically so that the condition of the ESU equipment can be monitored and documented on an ongoing basis.
ANALISIS PEMELIHARAAN KOREKTIF PADA ALAT HFNC (High Flow Nasal Cannula) Mukhlis, Alfi; Dabukke, Hotromasari; Ulina, Sri; Sijabat, Salomo
JURNAL MUTIARA ELEKTROMEDIK Vol. 8 No. 1 (2024): Jurnal Mutiara Elektromedik
Publisher : Prodi Teknik Elektromedik Universitas Sari Mutiara Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51544/elektromedik.v8i1.5144

Abstract

Ventilator is a mechanical assistive device that functions to provide artificial respiration to patients by providing negative or positive air pressure to the lungs through the airways. who can maintain ventilation and administration of oxygen for long periods of time (Brunner and Suddarth, 2001). While the HFNC (High Flow Nasal Cannula) Ventilator is a Ventilator specifically used for the treatment of patients suffering from acute hypoxemia. It is necessary to carry out maintenance so that the tools with this type of research are of high quality The measurement result is the oxygen gas flow rate, according to the size of the flowrate selection, namely 30 lpm, 45 lpm and 60 lpm.