Penerapan Media CADe SIMU untuk Meningkatkan Analisis Diagram Instalasi Motor Listrik Siswa

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Rahmatul Makruf
Sukardi Sukardi

Abstract

This study aims to analyze the effectiveness of applying CADe SIMU media in improving students’ diagram analysis ability in the Motor Installation Elements subject at Vocational High Schools (SMK). The fundamental problem addressed is the students' low analytical capability resulting from the lack of digital simulation-based media integration in active learning. This research employed a quantitative approach with a one-group Pre-test and Post-test experimental design involving Grade XI Electrical Power Installation Engineering students. Data were collected through expert-validated objective tests and analyzed using descriptive and inferential statistics. The results revealed a significant improvement in students’ diagram analysis ability following the implementation of CADe SIMU media. Statistical analysis confirmed that the post-intervention performance increased substantially compared to the initial state. Furthermore, the students' final achievement consistently exceeded the determined minimum competency standards. This study concludes that CADe SIMU is an effective interactive simulation-based medium for vocational education. It not only strengthens analytical thinking and problem-solving skills but also enhances technological literacy, aligning with 21st-century vocational education goals.

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References

[1] P. Lewis, “Innovation, Technician Skills, and Vocational Education and Training: Connecting Innovation Systems and Vocational Education and Training,” Journal of Vocational Education & Training, vol. 75, no. 3, pp. 355–375, 2023, doi: 10.1080/13636820.2023.2215749.
[2] D. T. P. Yanto, M. Kabatiah, H. Zaswita, G. Giatman, and H. Effendi, “Development of Virtual Learning using Problem-Based Learning Models for Vocational Education Students,” ELINVO (Electronics, Informatics, and Vocational Education), vol. 7, no. 2, pp. 163–172, 2022, doi: 10.21831/elinvo.v7i2.52473.
[3] S. Sukardi, D. Puyada, R. E. Wulansari, and D. T. P. Yanto, “The Validity of interactive Instructional Media on Electrical Circuits at Vocational High School and Technology,” the 2nd INCOTEPD, vol. 2017, pp. 21–22, 2017.
[4] W. Yang, W. Junjie, and L. Weihua, “Design of Electrical Vocational Education Instructional Based on Problem Orientation,” International Journal of Vocational Education and Training Research, vol. 9, no. 1, pp. 1–10, 2023, doi: 10.11648/j.ijvetr.20230901.11.
[5] Prismar, “Kontribusi Gambar Teknik terhadap Hasil Belajar Instalasi Motor Listrik Peserta Didik Kelas XI,” JURNAL PENDIDIKAN VOKASI RAFLESIA, vol. 2, no. 2776–3897, p. 1, 2022.
[6] D. T. P. Yanto, Sukardi, M. Kabatiah, H. Zaswita, and O. Candra, “Analysis of Factors Affecting Vocational Students’ Intentions to Use a Virtual Laboratory Based on the Technology Acceptance Model,” International Journal of Interactive Mobile Technologies, vol. 17, no. 12, pp. 94–111, Jun. 2023, doi: 10.3991/ijim.v17i12.38627.
[7] D. W. Lestari, P. Rusimamto, R. Harimurti, and A. I. Agung, “Penerapan Media Pembelajaran Berbantuan Assemblr Edu Untuk Meningkatkan Hasil Belajar Siswa,” Journal of Vocational and Technical Education (JVTE), 2023, doi: 10.26740/jvte.v5n2.p225-232.
[8] S. Nurhidayah, D. Aribowo, and D. Desmira, “Penerapan aplikasi simulasi Electronic Workbench dan Proteus pada materi penerapan rangkaian elektronika bagi siswa kelas XI teknik elektronika industri,” Jurnal Edukasi Elektro, vol. 4, no. 2, 2020, doi: 10.21831/jee.v4i2.35331.
[9] . J. Antipolo and M. L. Lopez, “Simulation app: Improving the procedural knowledge of electronics technology students in electric circuits,” Am. J. Educ. Res., vol. 9, no. 8, pp. 467–471, 2021, doi: 10.12691/education-9-8-4.
[10] [D. T. P. Yanto, S. Sukardi, and D. Puyada, “Effectiveness of Interactive Instructional Media on Electrical Circuits Course : The Effects on Students Cognitive Abilities,” Proceedings of 4rd International Conference On Technical And Vocational Education And Training, vol. 2017, pp. 75–80, 2017.
[11] D. Rosmala, B. Sahono, E. Risdianto, and M. Mukhlisin, “Development of Learning Media Based on Electrical Control Techniques Simulator to Improve Learning Achievement (Studies on Electrical Power Installation Engineering Subjects for Class XI Students at Rejang Lebong Vocational School),” Indonesian Journal of Elearning and Multimedia, vol. 3, no. 2, pp. 65–74, 2024, doi: 10.58723/ijoem.v3i2.265.
[12] J. P. Curichumbi-Cuji, C. V. Ramírez-Gutiérrez, and O. Martínez-Pérez, “CADE SIMU as a pedagogical strategy for teaching-learning in the subject of automation and electrical panels,” MQRInvestigar, vol. 9, no. 1, pp. 1–21, Jan. 2025, doi: 10.56048/mqr20225.9.1.2025.e11.
[13] C. M. Yusti Aragón, “Uso pedagógico y didáctico del simulador CADE-SIMU en la enseñanza del área de electricidad,” 2022.
[14] Mayer and Richard E, Multimedia Learning, 2nd ed. Cambridge: Cambridge University Press, 2009.
[15] D. T. P. Yanto et al., “The Affecting Factors of Students’ Attitudes Toward the Use of a Virtual Laboratory: A Study in Industrial Electrical Engineering,” International Journal of Online and Biomedical Engineering (iJOE), vol. 19, no. 13, pp. 4–16, Sep. 2023, doi: 10.3991/ijoe.v19i13.41219.
[16] F. Eliza et al., “Effective virtual laboratory to build constructivist thinking in electrical measurement practicum,” Indonesian Journal of Electrical Engineering and Computer Science, vol. 34, no. 2, pp. 814–824, May 2024, doi: 10.11591/ijeecs.v34.i2.pp814-824.
[17] L. Surya, L. Marlina, and K. Wiyono, “Analysis of PhET simulation-based laboratory virtual practicum guide to improve critical thinking skills of South Sumatra vocational school students,” Jurnal Ilmu Fisika dan Pembelajarannya (JIFP), vol. 7, no. 1, pp. 1–7, 2023, [Online]. Available: https://jurnal.radenfatah.ac.id/index.php/jifp/index
[18] I. Rahman and M. Johari, “Students’ understanding and skills on voltage and current measurements using hands-on laboratory and simulation software,” Int. J. Sci. Math. Educ., vol. 20, no. 5, pp. 949–970, 2022, doi: 10.1007/s10763-022-10247-w.
[19] D. T. P. Yanto et al., “Exploring Student Acceptance of Virtual Laboratory in Learning: The Role of Perceived Relevance and Information Technology Experience,” International Journal of Information and Education Technology, vol. 15, no. 3, pp. 478–487, 2025, doi: 10.18178/ijiet.2025.15.3.2259.