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Gaya Komunikasi Kepemimpinan Situasional dalam Mengembangkan Produk Baru di Perusahaan (Studi Kasus pada PT Module Intracs Yasatama) Oki Priskila; Haikal; Dito Anjasmoro Ningtyas
Jurnal Media Penyiaran Vol. 5 No. 1 (2025): Juni 2025
Publisher : LPPM UBSI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31294/jmp.v5i1.9654

Abstract

Penelitian ini bertujuan untuk menganalisis gaya komunikasi kepemimpinan situasional dalam pengembangan produk baru di PT Module Intracs Yasatama. Dalam konteks persaingan bisnis yang dinamis, kemampuan pemimpin untuk menyesuaikan gaya komunikasinya menjadi faktor penting dalam mendukung efektivitas tim dan keberhasilan inovasi produk. Penelitian ini menggunakan pendekatan kualitatif dengan metode studi kasus, melalui wawancara mendalam dan observasi terhadap Supervisor & Marketing, Manager Operasional, dan Manager Product. Hasil penelitian menunjukkan bahwa kepemimpinan situasional dengan komunikasi yang fleksibel, konsisten, dan terbuka dapat menjadi pendorong utama keberhasilan inovasi produk, terutama dalam organisasi yang berada dalam industri teknologi dan mengalami dinamika perubahan yang cepat. Dalam konteks Indonesia, hal ini menjadi model praktik yang relevan dan dapat direplikasi untuk konteks organisasi serupa
Enhancing Landslide Early Warning: Advances in Fiber Optic Sensor Sensitivity Fatimah Nur Hidayah; Haikal; Budi Nur C. E. B; Zuhdi Ismail
Multidisciplinary Innovations and Research in Applied Engineering Vol. 2 No. 1 (2025)
Publisher : Akademi Inovasi Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70935/yfrzp087

Abstract

Fiber optic sensors offer a high-performance alternative because they provide a low-cost solution, resistance to electromagnetic interference, multiplexing capabilities, and high integration. The performance of fiber optic sensors applies to measuring physical parameters such as pressure, bending, and temperature. This study aims to determine the optimal value of using optical fiber types in landslide early detection sensors. The method used is bending in the form of deflection on the optical fiber. The deflection values used are 0 mm - 15 mm, 0 mm - 20 mm, and 0 mm - 25 mm. The optical fiber is placed horizontally in the middle of the bending tool. This bending affects the deflection of the optical fiber, resulting in the attenuation of light in the optical fiber. The deflection phenomenon results in light attenuation in the optical fiber. The sensitivity level of a single-mode fiber optic sensor is higher than a multimode. It shows the greater linearity value in each deflection treatment. Single-mode optical fiber linearity data on deflection variations of 0 - 15 mm, 0 - 20 mm, and 0 - 25 mm, respectively, are 0.9833, 0.9871, and 0.9847. At the same time, the linearity data of multimode optical fiber is 0.8926, 0.9841, and 0.9687. Single-mode optical fiber is more sensitive than multimode optical fiber. It is caused by the core diameter of single-mode optical fiber, which is much smaller than that of multimode optical fiber. The difference in core diameter results in differences in light propagation in the optical fiber. The small diameter of the core has a low dispersion level so that more light intensity is reflected into the core. Light attenuation occurs in a single-mode optical fiber due to macro bending treatment. Meanwhile, the attenuation of light in Multimode fiber optics is due to the bending and dispersion of light. Therefore, a landslide early detection sensor design is more optimal by using a single-mode optical fiber.