Analysis of the Use of a Zener Diode as a Voltage Regulator in a Zener Follower Circuit
DOI:
https://doi.org/10.24252/al-khazini.v6i1.64968Kata Kunci:
Zener Follower, Regulator tegangan, Dioda Zener, Transistor NPNAbstrak
This study aims to analyze the performance of the Zener Follower circuit as a linear voltage regulator under varying input voltage (Vin) conditions, using a configuration where the load resistor (RL) is greater than the series resistor (RS). The experiment was conducted at the Electronics Laboratory of Universitas Islam Negeri Alauddin Makassar using basic components such as a Zener diode, an NPN transistor, and two resistors. The observed variables included Vin, Zener voltage (Vz), output voltage (Vout), and source current (Is). Measurement results showed that Vout remained relatively stable, with only a slight drop due to the base-emitter voltage (VBE) of the transistor. The deviation between the actual Vout and the theoretical value (Vz – VBE) ranged from 1% to 7%, indicating that the system maintained acceptable stability within laboratory experiment tolerances. The source current increased proportionally with the Vin, confirming that the system operates according to basic electrical principles. These findings suggest that the Zener Follower configuration is effective as a simple voltage regulator in educational applications and laboratory practice. The addition of features such as output filter capacitors or a Darlington configuration is recommended for improved accuracy and system stability in future studies
Unduhan
Referensi
Bambang, B. H., Sit, S., & Sari, R. S. (2025). Elektronika semikonduktor: Dioda dan transistor. Smart Global Nusantara.
Basit, W. A., El-Ghanam, S. M., El-Masry, A. M. A., & Soliman, F. A. S. (2017). Performance of shunt voltage regulators based on Zener diodes at cryogenic temperatures. Microelectronics Reliability, 76–77, 526–531.
Darmana, L. R. T. (2018). Perancangan rangkaian penguat daya dengan transistor. Sutet, 7(2), 88–92. https://doi.org/10.33322/sutet.v7i2.81
Djukarna, D. (2025). Buku elektronika dasar. Unpar Press. https://fliphtml5.com/emvct/xhgy/buku_elektronika_dasar/
Firmansyah, M. I., Suprianto, B., Kartini, U. T., & Joko, J. (2022). Kombinasi CD-ROM dan dioda Zener sebagai suplai energi listrik untuk LED 1,5 Volt. Jurnal Teknik Elektro, 11(1), 146–154. https://doi.org/10.26740/jte.v11n1.p146-154
Floyd, T. L. (2016). Electronic devices (10th ed.). Pearson Education.
Hambley, A. R. (2019). Electronics: Principles and applications (8th ed.). McGraw-Hill Education.
Kurniawan, H., Izzuddin, A., & Wicaksono, I. (2020). Perbandingan tegangan keluaran sel surya berbahan dioda Zener dengan sel surya tipe monokristal berukuran 118 × 63 mm. Energy: Jurnal Ilmiah Ilmu-Ilmu Teknik, 10(2). https://doi.org/10.51747/energy.v10i2.1216
Liao, X., Guo, K., Xu, C., Liu, Y., Meng, F., Zhou, J., Ding, R., Li, J., Huang, K., & Yang, Y. (2025). Analysis and optimization of vertical NPN BJT for strong magnetic fields. Micromachines, 16(6), 671. https://doi.org/10.3390/mi16060671
Mane, S. (2023). Zener diode: Theory, applications, and advancements. International Journal of All Research Education and Scientific Methods (IJARESM), 11(9).
Miclaus, A., & Mercer, D. (2019). Zener diode regulator. Analog Dialogue, 53(4).
Muda, I. (2013). Elektronika dasar. Gunung Samudera.
Perkasa, D. B., Andromeda, T., & Riyadi, M. A. (2019). Perancangan perangkat keras alat uji Bipolar Junction Transistor berbasis mikrokontroler. Transmisi, 21(1), 19–24. https://doi.org/10.14710/transmisi.21.1.19-24
Prasetyo, B., & Wibowo, S. (2018). Perancangan regulator tegangan menggunakan dioda Zener pada rangkaian catu daya. Jurnal Elektro Terapan, 2(1), 19–24.
Putra, A. (2022). Analisis penggunaan dioda Zener dalam rangkaian regulator tegangan. Jurnal Elektronika dan Instrumentasi, 8(2), 45–53.
Rahman, A., Sari, N., & Hidayat, D. (2018). Comparative analysis of voltage regulators using Zener diode and IC-based methods. IEEE Transactions on Circuits and Systems, 65(4), 1245–1253. https://doi.org/10.1109/TCAS.2018.2824367
Setiyo, M. (2017). Listrik dan elektronika dasar otomotif. Unimma Press.
Sungkono, Kamajaya, L., Fitri, Hidayat, A. R., & Bryantono, A. A. (2023). Studi desain dan implementasi transistor curve tracer untuk analisis karakteristik transistor. Jurnal Elektronika dan Otomasi Industri, 10(2), 200–208. https://doi.org/10.33795/elkolind.v10i2.3014
Sutanto, R. (2016). Simulasi regulator tegangan berbasis dioda Zener dengan proteksi arus lebih. Jurnal Teknik Elektro dan Komputer, 5(1), 33–38.
Suwarto, D. (2015). Pengaruh variasi beban terhadap kestabilan tegangan output pada regulator berbasis dioda Zener. Jurnal Energi Listrik, 4(3), 21–26.
Syahrul, H. (2020). Pemanfaatan dioda Zener sebagai stabilisator tegangan dalam perangkat elektronika rumah tangga. Jurnal Ilmiah Teknologi Elektronika, 6(1), 60–65.
Tandioga, R., Yunus, M. Y., & Abadi, S. (2024). Elektronika dasar: Dioda–transistor–tiristor. Penerbit Adab.
Van Niekerk, D., & Venter, J. (2024). Experimental approach for reliability analysis of medium-power Zener diodes under DC switching surge degradation. Electronics, 13(10), 1976. https://doi.org/10.3390/electronics13101976
Wahyudi, M. (2021). Implementasi dioda Zener sebagai proteksi kelebihan tegangan pada power supply. Jurnal Teknologi dan Sistem Komputer, 9(2), 100–105.
Widodo, E., & Gunawan, R. (2017). Desain sistem catu daya DC dengan regulator dioda Zener untuk mikrokontroler. Jurnal Rancang Bangun dan Teknologi, 4(3), 71–77.
Winarko, H. (2020). Efisiensi regulator linier berbasis dioda Zener dibanding IC regulator 7805. Jurnal Teknologi Elektronika, 3(2), 84–89.
Wirawan, D. A. (2019). Studi eksperimen penggunaan dioda Zener pada alat pengisi daya portable. Jurnal Energi dan Sistem Elektronika, 7(1), 55–61.
Wulandari, S. (2021). Analisa simulasi Zener follower menggunakan Proteus dan LTSpice. Jurnal Inovasi Teknologi, 10(2), 122–128.
Yan, X., Li, W., Islam, S. M., Pourang, K., Xing, H., Fay, P., & Jena, D. (2015). Polarization-induced Zener tunnel diodes in GaN/InGaN/GaN heterojunctions. arXiv. https://doi.org/10.48550/arXiv.1508.05536
Yusuf, A. (2020). Analisis tegangan output Zener follower terhadap variasi beban. Jurnal Teknik Elektro dan Energi, 8(2), 97–103.
Zainuddin, F. (2022). Kajian teoritis dioda Zener dalam pengaturan tegangan output. Jurnal Sistem Elektronik, 6(1), 29–35.
Zulfikar, M. (2019). Desain power supply dengan kombinasi Zener dan kapasitor filter. Jurnal Teknologi dan Rekayasa, 5(2), 40–46.
Unduhan
Diterbitkan
Cara Mengutip
Terbitan
Bagian
Lisensi
Hak Cipta (c) 2026 Mukti Ali, Andi Ulfah Khuzaimah, Muh. Syihab Ikbal

Artikel ini berlisensi Creative Commons Attribution-NonCommercial 4.0 International License.
The Authors submitting a manuscript do so on the understanding that if accepted Al-Khazini:Jurnal Pendidikan Fisika for publication, copyright publishing of the article shall be assigned/transferred to Physics Education Department, UIN Alauddin Makassar as Publisher of the journal. Upon acceptance of an article, authors will be asked to complete a 'Copyright Transfer Agreement'. An e-mail will be sent to the corresponding author confirming receipt of the manuscript together with a 'Copyright Transfer Agreement' form by the online version of this agreement.
Al-Khazini:Jurnal Pendidikan Fisika and Physics Education Department, UIN Alauddin Makassar, , and Physics Society of Indonesia as the Editors and the Advisory International Editorial Board make every effort to ensure that no wrong or misleading data, opinions or statements be published in the journal. In any way, the contents of the articles and advertisements published in the Al-Khazini:Jurnal Pendidikan Fisika are the sole and exclusive responsibility of their respective authors and advertisers.
The copyright form should be signed electronically and send to the Editorial Office in the form of the original e-mail: [email protected]





