Pengembangan Surveymeter Radiasi Berbasis Arduino Internet of Things (IoT) Sebagai Penunjang Keselamatan Radiasi
Teknik Radiodiagnostik dan Radioterapi, Stikes An Nasher Cirebon, Cirebon, Indonesia, Alvin Fachrully Septiano, Diah Rahayu Ningias, Teknik Elektro Medis, Stikes Semarang, Semarang, Indonesia, Susilo Susilo, Teknk Biomedis, Universitas Dian Nuswantoro, Semarang, Indonesia, Imam Maulana, Klinik Hewan Griya Satwa Lestari, Semarang, Indonesia, Chintya Anggraeny, Jurusan Fisika, Universitas Negeri Semarang, Semarang, Indonesia · Jurnal Pengawasan Tenaga Nuklir · 2023
Radiation is widely used in various fields, including industry and health. In the health sector, radiation plays a vital role in supporting the justification of a patient's health condition, thus requiring radiation equipment to always be in prime condition—quality control by checking production results to see whether the quality is as desired and meets standards. Quality control must be highlighted routinely with the need for the use of radiation equipment so that the acceptance value is comprehensive. Quality control of radiation output must be performed periodically to ensure the exact amount of radiation exposure. Radiation measuring equipment to calculate the amount of radiation dose is very commonly used in quality control of radiation-producing equipment. An initial surveymeter design has been developed that combines the ESP 32 working system, Geiger Muller Counter Detector, and Internet of Things (IoT) devices. The results of surveymeter data collection can be displayed via smartphone via WiFi with the Firebase web server. Measurements were carried out at each voltage (kV) and time current (mAs) measurement setting for the X-ray tube by comparing the survey meter design (module and circuit) with a comparison tool, namely the Fluke Ray Safe X2. The test results provide information that the gas fill detector in the IoT-based survey provides linear dose reading results regarding the increase in the mAs value on the mobile X-ray. Keywords: radiation, quality control, surveymeter, geiger muller, internet of things