Main Article Content

Abstract

Tool and test and measurement of shooting sensor-basedThis research was carried out on athletes from Darul Ulum Fc and Bangsal FC in May 2022. This type of research is a development research with a Research and Development (R&D) from Sugiyono. This research was conducted with this research carried out with 9 stages (1) Research and information collecting, (2) Planning, (3) Develop preliminary form of product, (4) Preliminary field testing, (5) Main product revision, (6) Main field testing, (7) Operational product revision, (8) Operational field testing and (9) Final product. The population in this study used athletes from Darul Ulum FA and Bangsal FC. The sampling technique used purposive sampling with the first phase of the trial, which consisted of 15 athletes from Darul Ulum FC and the second phase of the trial, which consisted of 17 Bangsal FC athletes. Furthermore, from the first stage of the trial, which amounted to 15 people, the figure was 93.16% with the Very Eligible criteria, then from the second stage of the trial which amounted to 17 athletes, the figure was 93.52% in the Very Eligible category. Based on the data obtained, the development of a shooting speed measurement tool is declared feasible to be developed as a sensor-based test and shooting.

Keywords

Shooting Kick Speed Sensor Based Test Equipment

Article Details

How to Cite
Zega, Y., Supriadi, A., & Novita, N. (2022). Speed Test and Measurement Tools Shooting Sensor Based. Kinestetik : Jurnal Ilmiah Pendidikan Jasmani, 6(2), 335–340. https://doi.org/10.33369/jk.v6i2.22232

References

  1. Akhmad, I.,(2013). Dasar-dasar Melatih Fisik Olahragawan. Medan: Unimed Press.
  2. Akhmad, I., Suharjo. (2016). Bleep Test Countermeasures Test Using
  3. Infrared and Microcontroller Based Computer System. International Journal of Science and Research (IJSR). ISSN: 2319-7064 Index Copernicus Value:79.57
  4. Akhmad, I. (2017). Shuttle Tools: Designing The Bleep Test Tools As A Digital Aerobic Endurance System. International Conference On Innovation In Educations, Science And Culture. Lembaga Penelitian Universitas Negeri Medan.
  5. Arikunto (2009). Prosedur Penelitian Suatu Pendekatan Praktik. Jakarta: Rineka Cipta.
  6. Hiskia. (2007). Perkembangan teknologi sensor dan aplikasinya untuk deteksi radiasi nuklir. Prosiding PPI - PDIPTN 2007 Pustek Akselerator Dan Proses Bahan - BATAN, 12.
  7. Jaya, Asmar (2008). Futsal: Gaya hidup, peraturan dan Tips-Tips Permainan. Yogyakarta : Pustaka Timur.
  8. John D. Tenang (2008). Mahir Bermain Futsal. Bandung : Mizan
  9. Marwan, I., Rohyana, A.& Listyasari, E.,(2016). “Model alat ukur kecepatan dan ketepatan tendangan penalti permainan sepak bola berbasis pengolahan citra digital”. Jurnal SPORT, vol.1 no.1, 108-124. https://journal.unsil.ac.id/index.php/sport/article
  10. Maulana, I.R., Abdurrohman, M.S., Nurzaman, A.I. & Sujadi, H. (2019). “Prototipe Alat Pengukur Kecepatan dan Ketepatan Bola pada Tendangan Penalti Menggunakan Arduino”. Jurnal Prosiding Industrial Research Workshop and National Seminar, Vol 10 No 1. https://doi.org/10.35313/irwns.v10i1.1393
  11. Miarso, (2007). Menyemai benih teknologi pendidikan. Jakarta. Pustekkom Dinas
  12. Sudjana. (2002). Metode Statistika. bandung: Tarsito Bandung.
  13. Sugiyono. (2010). Metode Penelitian Kuantitatif, Kualitatif dan R&D. Bandung: Alfabeta.
  14. Suryono. (2018). Teknologi Sensor. Sensor Tekanan%0A Teknologi Sensor
  15. Purwandaru, Dhia Arry. (2020). “Pengembangan alat ukur kecepatan laju bola cabang olahraga sepakbola”. Skripsi Universitas Negeri yogyakarta. http://eprints.uny.ac.id/id/eprint/68805
  16. Widiastuti (2017). Tes Dan Pengukuran Olahraga. Jakarta : Rajawali: Pers
  17. Yogaswara D. , Dewi R. , Supriadi A. (2019). Android Based Speed Light Implementation of SAQ (Speed, Agility and Quickness) Improvements on Futsal Athlete U-16 League AAFI Regional Medan .Advances in Social Science, Education and Humanities Research,. Volume 384