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DESIGN OF EXPERIMENT (DOE) LIQUID PHOTOIMAGEABLE SOLDER MASKS PCB PADA TEACHING FACTORY MANUFACTURING OF ELECTRONICS (TFME) POLITEKNIK NEGERI BATAM Nadhrah Wivanius; Nur Sakinah Asaad; Heru Wijanarko; Ira Zamzami
JURNAL INTEGRASI Vol 12 No 1 (2020): Jurnal Integrasi - April 2020
Publisher : Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (788.177 KB) | DOI: 10.30871/ji.v12i1.1987

Abstract

This paper examines several variables to formulated the best parameters in the PCB manufacturing process. This study was implements a PCB with a screen printing process that uses the LPISM (Liquid Photoimageable Solder Mask) application. Where in the process PCB coating is done by connecting the amount of solder liquid mask in one coating using the right parameters using the Design of Experiment (DoE) method. This DoE method improves the quality of the PCB at the lowest possible cost. DoE on LPISM applied at the Teaching Factory Manufaktur Elektronika Politeknik Negeri Batam with the aim of protecting the PCB lines from being connected to one another, providing the right measurements, and using the use of laminated mask solder. Thus, Politeknik Negeri Batam Teaching Factory laboratory assistants can produce PCBs using the LPISM method with quality according to standards. From the analysis, obtained an appropriate angle for screen printing is between 150-200 so that the screen is not damaged. In addition, the oven process can thin the solder mask up to 70-80%. In accordance with the results of comprehensive testing, the 24th data obtained can be recommended because it fulfill the IPC-SM-840C standard, with the 2.5 μm solder mask thickness.
Pengadaan dan Pemasangan Panel Surya sebagai Sumber Energi Listrik Alternatif untuk Alat Otomatis Pencuci Tangan di Pasar Mitra Raya Kota Batam Susanto Susanto; Ahmad Riyad Firdaus; Qoriatul Fitriyah; Hendawan Soebhakti; Arif Febriansyah Juwito; Senanjung Prayoga; Indra Hardian Mulyadi; Eka Mutia Lubis; Fitriyanti Nakul; Widya Rika Puspita; Ika Karlina Laila Nur Suciningtyas; Ridwan Ridwan; Juliansyah Yangu; Rabiah Al Adawiyah Anwar; Andi Hartanto; Ira Zamzami; Ilham Kurnia; Salman Alfarizi; Rogen Samuel Hasibuan
Jurnal Pengabdian kepada Masyarakat Politeknik Negeri Batam Vol 3 No 1 (2021): Jurnal Pengabdian kepada Masyarakat Politeknik Negeri Batam
Publisher : Pusat P2M Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/abdimas polibatam.v3i1.2656

Abstract

Washing hands is something that is always urged to be done lately. This pandemic makes washing hands a habit that must be accomplished before and after doing activities. Automatic hand washing is one way to reduce the spread of the virus because it can be used without having to touch the device directly. The development of automatic tools for washing hands is the crucial need for an alternative power source that is fuel-efficient and uncomplicated in terms of maintenance. The eco-friendly electrical source is needed to be implemented to reduce the electricity bills such as using the solar panel as the alternative power source. As an effort to support handwashing activities, the procurement of solar panels as a source of electrical energy is expected to be able to provide simple solutions to prevent the spread of Covid -19 and to make the environment clean and energy-efficient.
Perbaikan Instalasi Listrik dan Sistem Penerangan Untuk Menunjang Desa Wisata Pulau Mubud Darat Adlian Jefiza; Ahmad Riyad Firdaus; Sumantri Kurniawan Risandriya; Muhammad Arifin; Widya Rika Puspita; Mustanir Mustanir; Riki Ria; Indra Daulay; Ira Zamzami; Ghozalli Mashan; Dwi Imam Mulyono
Jurnal Pengabdian kepada Masyarakat Politeknik Negeri Batam Vol 4 No 1 (2022): Jurnal Pengabdian kepada Masyarakat Politeknik Negeri Batam
Publisher : Pusat P2M Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/abdimas polibatam.v4i1.3575

Abstract

One of the tourist attractions in the city of Batam is the tourist village of Pulau Mubud Darat. Mubud Darat Island is separated from Batam Island. On the island of Mubud Darat has a beautiful beach with white sand on the shoreline. However, on the island of Mubud Darat, there is no PLN electricity. The electricity that flows on Mubud Darat Island is still sourced from generators with diesel fuel. Electrical installations on the island of Mubud Darat are also not safe for visitors. This requires large costs for tourism operations both for operations and installation repairs. In addition, to increase the interest of visitors on Mubud Darat island, a good photo spot icon is needed which will later become an icon for Mubud Darat Island. Therefore, lighting is needed from solar panels, as well as repairs to electrical installations on Mubud Darat island. In addition, to create a tourist icon on Mubud Darat Island, a photo spot for the sky door is given which is added with LED strip lights.
Design of Experiment pada proses Immersion Tin Plating Widya Rika Puspita; Lindawani Siregar; Ika Karlina Laila NS; Ira Zamzami; Budiana Budiana; Fitriyanti Nakul; Nur Sakinah Asaad; Adlian Jefiza
JURNAL INTEGRASI Vol 14 No 2 (2022): Jurnal Integrasi - Oktober 2022
Publisher : Pusat Penelitian dan Pengabdian Masyarakat Politeknik Negeri Batam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30871/ji.v14i2.4035

Abstract

PCB (printed circuit board) is a copper-coated board that is a container for electronic components arranged to form electronic circuits. Copper surfaces that are easy to oxidize (corrosion) need to be soothed with a layer of Sn (tin). Based on the TFME study case, the electroplating technique requires more cost for tin plating. The immersion process of the tin plating model is superior in terms of cost and quality. To determine the right combination parameters so as to obtain a thickness that is in accordance with the IPC-4554 standard, namely a minimum of 1000 nm, the research method used is Design of Experiments (DoE). There are nine experimental combinations of the DoE results. Combination parameter testing is done using a SEM (scanning electron microscope) machine. The combination of four to nine has met IPC standards with a thickness of between 1040-1540 nm. The correct parameter is obtained by the combination of 5 with the parameter temperature of 700 and time of 60 minutes, and the result is an average thickness of 1.2 µm and has an uncertain value of the measurement is 7.