Rancang Bangun Alat Lux Meter BH1750 Dengan Sensor Jarak HC-SR04 Untuk Uji Kesesuaian Kolimator

Authors

  • Fitri Anindyahadi ITSPKU Muhammadiyah Surakarta
  • Eko Nugroho ITSPKU Muhammadiyah Surakarta
  • Setyo Adi Nugroho ITSPKU Muhammadiyah Surakarta

DOI:

https://doi.org/10.59581/jkts-widyakarya.v1i1.3150

Keywords:

Lux meter, X-ray, Collimator

Abstract

This research is based on the Regulation of the Nuclear Energy Supervisory Agency of the Republic of Indonesia Number 2 of 2018 concerning Conformity Tests for Diagnostic and Interventional Radiology One component that must be tested with a minimum passing standard of ≥ 100 lux at a distance of 100 cm. Data collection is obtained at the Calibration Agency to obtain accurate results. The purpose of this tool, the Lux Meter is equipped with a distance sensor to measure the light intensity of a collimator lamp with an intensity that must be ≥ 100 within a distance of 100 cm from the light source. So, making a tool that can be used to measure the amount of collimator illumination is accompanied by measuring the distance, so that it can ensure the results are in accordance with the limits that have been determined with a Lux Meter equipped with a distance sensor using the BH1750 module and the HC-SR04 module. For testing the tool made, it was compared with a Standard Lux Meter with the HIOKI brand, an average error value of 0.021 at a distance of 50cm, an error of 00.020 at a distance of 100cm, and an error of 0.022 was obtained, while for testing the distance sensor it was compared with a Standard Meter with the FLUKE brand. The average percentage error value is 0.002 at a distance of 50cm, an error of 0.011 at a distance of 100cm, and an error of 0.008 at a distance of 130cm.

References

Aldy Razor. (2021). Sensor Ultrasonik Arduino HC-SR04 : Cara Kerja dan Program. Diakses 28 Februari 2023 pukul 23.45 dari laman https://www.aldyrazor.com/2020/05/sensor-ultrasonik-arduino.html

Badan Pengawas Tenaga Nuklir. (2018). Uji Kesesuaian Pesawat Sinar-X Radiologi Diagnostik dan Intervensional, Jakarta

Dwi Rochmayanti, Tiara Pratiwi Putri, Sugeng Hariadi. (2017). Analisis Pengujian Sistem Kolimasi Pesawat Mobile Unit Sinar-X Merk Toshiba DRX-1603B Di Instalasi Radiologi Rumah Sakit Umum R.A Kartini Jepara. Jurnal Radiografi Dan Imejing

Elisia Maya Sari. (2019). Analisis Pengujian Kolimasi Pesawat Sinar- X Mobile Tipe Siemens CES OX-110-1 Di Instalasi Radiologi RSUD Sleman Yogyakarta. Poltekkes Kemenkes, Semarang

ELPROCUS. BH1750 - Specifications and Applications. Diakses 28 Februari 2023 pukul 22.10 dari laman https://www.elprocus.com/bh1750- specifications-and-applications/

I Made Satriya Wibawa, I Ketut Putra. (2018). Perancangan Dan Pembuatan Lux Meter Digital Berbasis Sensor Cahaya EL7900. Jurnal Ilmiah Ilmu Komputer Universitas Udayana, Bali

Nur Hudha Wijaya, Sutrimo. (2021). Lux Meter Sebagai Alat Ukur Intensitas Cahaya Lampu Operasi Berbasis Arduino Uno R3. Universitas Muhammadiyah, Yogyakarta

Robert Fosbinder, Denise Orth. (2011). Essentials of Radiologic Science. Lippincott Williams & Wilkins, Philadelphia

Royditya Astrawinanta, Syaifudin, Triana Rahmawati. (2019). Rancang Bangun Luxmeter Dilengkapi Sensor Jarak Berbasis Arduino. Poltekkes Kemenkes, Surabaya

Sjahrian Rasad. (2018). Radiologi Diagnostik. Fakultas Kedokteran Universitas Indonesia, Jakarta

Downloads

Published

2023-01-30

How to Cite

Fitri Anindyahadi, Eko Nugroho, & Setyo Adi Nugroho. (2023). Rancang Bangun Alat Lux Meter BH1750 Dengan Sensor Jarak HC-SR04 Untuk Uji Kesesuaian Kolimator. Jurnal Kendali Teknik Dan Sains, 1(1), 01–10. https://doi.org/10.59581/jkts-widyakarya.v1i1.3150