Pengembangan Aplikasi Media Pembelajaran Elektronika Berbasis Augmented Reality (AMPERE) sebagai Media Interaktif Pembelajaran Elektronika

Authors

  • Anak Agung Gde Ekayana Institut Bisnis dan Teknologi Indonesia
  • Ni Kadek Puspita Dewi Institut Bisnis dan Teknologi Indonesia

DOI:

https://doi.org/10.55606/jurripen.v5i1.8049

Keywords:

Augmented Reality, Electronics, Higher Education, Interactive, Learning Media

Abstract

Electronics learning in higher education continues to face various challenges, particularly in the provision of interactive learning media capable of concretely and engagingly visualizing the form, characteristics, and working principles of electronic components. The limitations of conventional learning media often result in abstract learning processes, which in turn lead to a low level of student understanding of basic electronics concepts. This study aims to develop the AMPERE as an innovative and technologically relevant interactive learning medium. The research employed R&D approach using the Borg & Gall model, which includes the stages of needs analysis, design, product development, validity testing, and limited implementation. The AMPERE application was developed using marker based AR technology, in which a smartphone camera detects markers to display and interact with 3D electronic component objects in real time. The results indicate that the AMPERE application achieved a high level of validity, with a score of 0.88 from subject-matter experts and 0.84 from media experts, and was therefore deemed suitable for use as a learning medium. The small-group trial results showed a practicality level of 82.07%, while the practicality test during the implementation stage reached 85.67%. These findings demonstrate that AMPERE is effective in enhancing learning interactivity and assisting students in understanding the form, function, and working principles of electronic components through smartphone-based digital visualization. Theoretically, these results are consistent with constructivist learning theory, which emphasizes active knowledge construction through direct experience and interaction with learning objects.

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References

Andriani, A. A., Sultan, A. D., Rufaida, S., & Nurfadilah, N. (2021). Development of physics learning media based mobile learning using Adobe Flash CS6 at Muhammadiyah University of Makassar. Jurnal Pendidikan Fisika, 9(1), 91–97. https://doi.org/10.26618/jpf.v9i1.4651

Anwar, M., Hendriyani, Y., Zulwisli, Hidayat, H., & Sabrina, E. (2024). Analyzing the impact of augmented reality on trait thinking for electronics science learning in engineering education. International Journal of Information and Education Technology, 14(11), 1624–1637. https://doi.org/10.18178/ijiet.2024.14.11.2193

Ariantini, M. S., Rajasyah, A. Y., Ariasih, N. K., Indradewi, I. G. A. A. D., & Parwita, W. G. S. (2024). Augmented reality introduction to Cirebon mask at Setia Darma Mask House Gianyar. Jurnal Info Sains: Informatika dan Sains, 14(2), 140–150. https://doi.org/10.54209/infosains.v14i02.4493

Ayu, F., Suryani, D., Muhammad, & Maria, S. (2022). Pemanfaatan augmented reality sebagai media pembelajaran di masa pandemi pada mata kuliah desain grafis. Journal of Information Technology and Computer Science (INTECOMS), 5(1), 123–131. https://doi.org/10.31539/intecoms.v5i1.3865

Azzahra, A., Mawarsari, V. D., & Suprayitno, J. S. (2025). AISITARU: Pengembangan media pembelajaran interaktif dengan pendekatan realistic mathematics education (RME) materi luas bangun datar untuk siswa tunarungu. Issues in Mathematics Education, 9(1), 1–13. https://doi.org/10.35580/imed.v9i1.6626

Baharuddin, D. (2012). Teori belajar dan pembelajaran. Ar-Ruzz Media.

Borg, W. R., & Gall, M. D. (2002). Educational research: An introduction (7th ed.). Pearson Education.

Budyastuti, Y., & Fauziati, E. (2021). Penerapan teori konstruktivisme pada pembelajaran daring interaktif. Jurnal Papeda: Jurnal Publikasi Pendidikan Dasar, 3(2), 112–119. https://doi.org/10.36232/jurnalpendidikandasar.v3i2.1126

Cao, J., Lam, K. Y., Lee, L. H., Liu, X., Hui, P., & Su, X. (2023). Mobile augmented reality: User interfaces, frameworks, and intelligence. ACM Computing Surveys, 55(9). https://doi.org/10.1145/3557999

Ekayana, A. A. G., Putra, P. S. U., & Destiansyah, B. T. (2022). Android-based learning media in supporting the recovery of science learning class VII. JINOTEP (Jurnal Inovasi dan Teknologi Pembelajaran), 9(2), 197–204. https://doi.org/10.17977/um031v9i22022p197

Holford, R., Wales, M., Kelly, L. J., Bednarski, S., Bullock, A., Harrap, R., Macdonald, Z., & Graham, T. C. N. (2025). ScriptAR: No-code development of augmented reality educational games. Proceedings of the ACM on Human-Computer Interaction, 9(4). https://doi.org/10.1145/3734188

Jailungka, P., Charoenseang, S., & Thammatinno, C. (2020). Augmented reality and microbit for project-based learning. In C. J. Y. C. & F. G. (Eds.), Lecture Notes in Computer Science (Vol. 12191, pp. 219–235). Springer. https://doi.org/10.1007/978-3-030-49698-2_15

Jeki, I. K., Putra, L., Ardana, I. M., & Suweken, G. (2023). Pengembangan media pembelajaran adaptif dengan teknik detour untuk meningkatkan pemahaman konsep matematika peserta didik. JIPM (Jurnal Ilmiah Pendidikan Matematika), 11(2), 332–349. https://doi.org/10.25273/jipm.v11i2.15352

Kostov, G., & Wolfartsberger, J. (2022). Designing a framework for collaborative mixed reality training. In L. F., A. M., & P. A. (Eds.), Procedia Computer Science (Vol. 200, pp. 896–903). Elsevier. https://doi.org/10.1016/j.procs.2022.01.287

Kusumasari, V., Chandra, T. D., Muksar, M., & Rahardi, R. (2022). Pengembangan e-modul berbasis problem based learning untuk mendukung pembelajaran daring dengan flipped classroom. Prisma, 5, 195–201.

Madyani, I., Yamtinah, S., Utomo, S. B., Saputro, S., & Mahardiani, L. (2020). Profile of students’ creative thinking skills in science learning. Proceedings of the 3rd International Conference on Learning Innovation and Quality Education, 397, 957–964. https://doi.org/10.2991/assehr.k.200129.119

Muskhir, M., Luthfi, A., Effendi, H., Jalinus, N., Samala, A. D., & Slavov, V. (2025). Can mobile-based augmented reality improve learning in electrical circuit education? International Journal of Information and Education Technology, 15(3), 595–604. https://doi.org/10.18178/ijiet.2025.15.3.2268

Nita, S., & Pratiwi, A. O. C. (2022). Implementasi augmented reality sebagai media pembelajaran interaktif algoritma pemrograman. JBKom (Jurnal Bina Komputer), 4(1), 1–8. https://doi.org/10.33557/jbkom.v4i1.1723

Nugraha, B. S. D., Wibowo, D. W., & Ravandhika, A. (2022). Penerapan teknologi leap motion dengan augmented reality sebagai media pembelajaran bakteri. Jurnal Sistem dan Informatika, 16(2), 68–76. https://doi.org/10.30864/jsi.v16i2.405

Pradnyana, I. K. A., Agustini, K., & Santyasa, I. W. (2021). Pengembangan e-modul interaktif kolaboratif pada mata pelajaran komputer dan jaringan dasar. Jurnal Jendela Pendidikan, 1(4), 218–225. https://doi.org/10.57008/jjp.v1i04.24

Purwati, D., Mardhiah, A., Nurhasanah, E., & Ramli, R. (2022). The six characteristics of andragogy and future research directions in EFL: A literature review. Elsya: Journal of English Language Studies, 4(1), 86–95. https://doi.org/10.31849/elsya.v4i1.7473

Puslitjaknov. (2008). Learning innovation development research methods. Pusat Penelitian Kebijakan dan Inovasi Pendidikan.

Santyasa, I. W., Rapi, N. K., & Sara, I. W. W. (2020). Project-based learning and academic procrastination of students in learning physics. International Journal of Instruction, 13(1), 489–508. https://doi.org/10.29333/iji.2020.13132a

Sari, M. R. P., & Dantes, N. (2024). Increasing fifth grade students’ learning motivation through learning modules containing augmented reality. Jurnal Edutech Undiksha, 11(2), 307–316. https://doi.org/10.23887/jeu.v11i2.59826

Sativa, F. O., & Syaban, M. B. A. (2022). Pengembangan evaluasi berbasis media permainan ular tangga pada materi berbagai pekerjaan kelas IV sekolah dasar. Jurnal Basicedu, 6(4), 6981–6989. https://doi.org/10.31004/basicedu.v6i4.3442

Sukardjo, M., Situmorang, R., Kandriasari, A., Marsofiyati, Rahmat, S. T., & Mahadewi, L. P. P. (2024). Examining the effectiveness of augmented reality-based practical models in electropneumatic education in vocational high schools. Jurnal Edutech Undiksha, 12(2), 224–231. https://doi.org/10.23887/jeu.v12i2.75021

Suparno, P. (1997). Filsafat konstruktivisme dalam pendidikan. Kanisius.

Susilawati, Doyan, A., Rokhmat, J., Muliyadi, L., Rizaldi, D. R., Fatimah, Z., Ikhsan, M., & Ardianti, N. R. (2025). Integration of smartphone-based learning media and project-based learning to enhance creativity and scientific literacy in physics. International Journal of Information and Education Technology, 15(7), 1449–1459. https://doi.org/10.18178/ijiet.2025.15.7.2346

Tuli, N., Singh, G., Mantri, A., & Sharma, S. (2022). Augmented reality learning environment to aid engineering students in performing practical laboratory experiments in electronics engineering. Smart Learning Environments, 9(1). https://doi.org/10.1186/s40561-022-00207-9

Wiweka, I. K. A. Y., Widiana, I. W., & Bayu, G. W. (2024). Transforming science learning with augmented reality: The impact of Assemblr Edu on cognitive dissonance and thinking skills. Jurnal Edutech Undiksha, 12(2), 399–408. https://doi.org/10.23887/jeu.v12i2.91225

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Published

2026-01-20

How to Cite

Anak Agung Gde Ekayana, & Ni Kadek Puspita Dewi. (2026). Pengembangan Aplikasi Media Pembelajaran Elektronika Berbasis Augmented Reality (AMPERE) sebagai Media Interaktif Pembelajaran Elektronika . JURNAL RISET RUMPUN ILMU PENDIDIKAN, 5(1), 576–592. https://doi.org/10.55606/jurripen.v5i1.8049

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