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Contact Name
Made Andik Setiawan
Contact Email
made.andik.s@gmail.com
Phone
+6281394202380
Journal Mail Official
polman@polman-babel.ac.id
Editorial Address
d/a Politeknik Manufaktur Negeri Bangka Belitung Jln. Timah Raya, Kompleks Industri Air Kantung, Sungailiat, Bangka 33211
Location
Kab. bangka,
Kepulauan bangka belitung
INDONESIA
Prosiding Seminar Nasional Inovasi Teknologi Terapan
ISSN : -     EISSN : 30249538     DOI : -
Seminar Nasional Inovasi Teknologi Terapan (SNITT) dikelola oleh Politeknik Manufaktur Negeri Bangka Belitung sebagai wadah rutin bagi sivitas akademika dalam berbagi pengetahuan, temuan, dan pengalaman dalam hal inovasi teknologi terapan yang berkelanjutan. SNITT ini merupakan ajang seminar ilmiah mengundang para sivitas akademika untuk ikut serta sebagai pemakalah dalam mendiseminasikan hasil Proyek Akhir/Penelitian/Project Based Learning/dll yang telah dilakukan. Topik SNITT (tidak terbatas pada): Elektronika, Kontrol, Otomasi, Robotika, Mekanik, Mesin, Manufaktur, Material, rare and smart material, Information Technology, Programming, Energi Terbarukan, Kecerdasan Buatan, Computer Network, Desain dan Rekayasa Mekanik/Manufaktur.
Articles 280 Documents
RANCANG BANGUN ALAT PENGIRIS PEMPEK MENJADI KEMPLANG Sabina Sabina; Suwito Suwito; Yang Fitri Arriyani; Subkhan Subkhan
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

This final project makes pempek which is the basic material for making kemplang as the object of research. Based on the results of a survey conducted in Kampung Pasir until now pempek slicing is still done manually using a kitchen knife which requires slicing time of about 1 hour for slices weighing ±4.3 kg or 1 minute for slices of 71.7 grams. The purpose of this final project is to design a pempek slicer as many as 4 butts measuring 25 cm long with a diameter of 4 cm and a thickness of 2-3 mm that can be sliced in one slicing process. The design of the pempek slicer into kemplang refers to the VDI 2222 design method. From the experiment, it was found that the pempek slices were uniform in thickness and the tool could slice the pempek within 10 kg/hour.
STASIUN PENGISIAN MOBIL LISTRIK BERBASIS PANEL SURYA Panji Waskita; Dinda Amalia Azahra; I Made A Setiawan; Surojo Surojo
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

This study designs an electric car battery charging system using solar panels and calculates the cost or tariff charged from the charging. The method used in making this research is data collection, testing and data analysis. Solar panels as a source of supply absorb sunlight and convert it into electrical energy. Then the buck-boost converter regulates the voltage that will enter the battery to match the required charging voltage. The test was carried out using a 12 Volt 7 Ah battery, so the required voltage was at least 13 Volts to be able to carry out the charging process. The length of charging time depends on the current generated, the greater the current flowing, the faster the charging process will be. The current sensor and voltage sensor INA219 are used to read the current and voltage that enter during the battery charging process and are controlled by Arduino Mega 2560. When the battery is full the current will be cut off automatically using a relay. This tool is also equipped with inputs in the form of start, stop and reset buttons so that the charging process can be more efficient. The calculation of the cost or tariff for charging an electric car follows the regulation of the Minister of Energy and Mineral Resources (ESDM), which is Rp. 1,650 per kWh. The cost calculation in the electric car charging process is displayed on the display using an 20x4 LCD.
RANCANG BANGUN MESIN PENGUPAS BUAH PINANG Firkian Rinanda; Mgarifina N Ngarifin; Muhammad Yunus; Erwanto Erwanto
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Areca nut peeler machine is a machine that serves to separate the betel nut seeds from the coir. This machine is used by the community to process their agricultural products, and helps small entrepreneurs to produce large production, saving time and labor. Basically, the working principle of the areca nut peeler machine is the separation process between areca nut and areca nut seeds that occurs due to the rotation of the driving motor which is forwarded to the pulley and belt so that it moves the carrier shaft (screw) and the stripping cutting blade. The stripping is done by inserting the betel nut into the storage container. This research focuses on how to design and make a betel nut peeler machine using the basic product/machine design, so that the machine is able to peel betel nut according to the specified target.
RANCANG BANGUN MESIN PENGIRIS KACANG TANAH UNTUK TOPPING PEYEK Angga Triatmaja; Muhammad Darmawan; Talsa Fani; Idiar Idiar; Erwansyah Erwansyah
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Peyek is one of the typical Javanese snacks made from rice flour dough made from peanuts and other ingredients. The results of a survey that was carried out at Mr. Cahyo's residence were slicing 3 kg of peanuts per three days which was carried out with two slicing processes to obtain small slices. The obstacle faced by Mr. Cahyo is the slicing of peanuts which still uses manual tools from wood, where on the big day Mr. Cahyo requires 100 kg of peanuts to be sliced, so it takes a lot of time to finish. The purpose of the design of this peanut slicing machine is to produce thick slices with a size of 3-5 mm in one slicing process. The stages of implementing this final project consist of stages of data collection, planning, calculation analysis, manufacturing process, assembly process, and conducting trials. The result of the design of this machine is that the dimensions of the machine are 300×300×405 mm, and from the trial of this peanut slicing machine, the results are 3-5 mm thick slices, and the data obtained for slicing 500 grams of peanuts takes about 1 minute.
SISTEM PENGONTROLAN KEMUDI DAN FESS PADA MOBIL PENGGUNA KURSI RODA Cinta aulia; mifta hunaya; Aan Febriansyah; Indra Dwisaputra
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Persons with disabilities are a handful of people with special needs who have the same roles and rights as society in general. However, they will usually find it difficult to carry out daily activities, for example in using a vehicle. Therefore we designed a Car Control System for Wheelchair Users to help people with disabilities, especially for those who experience physical limitations in one of the bodies, namely the legs. The Steering Control System and FESS that we designed use a Brushless DC Motor as the main driver of the steering system using a microcontroller in the form of Arduino and the Brushless DC Motor Controller itself. As well as the existence of a Tilt sensor or tilt sensor which is useful as a signal to Arduino to activate the Flywheel with the aim of having a charging system from the remaining rotation of the Flywheel as energy savings. The method we use is retrieval of RPM data from 1.2V – 3.3V so that we get a stable RPM value.
MESIN PENGGILING KEDELAI PEMISAH SARI PATI DARI AMPASNYA UNTUK PEMBUATAN TAHU Arya Adjie; I Mahyudi; A Adjie; Zaldy Kurniawan; Muhammad Yunus
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

The soybean milling process has problems faced by producers, namely meeting the target market, the results of the soybean milling owned by the producer are still mixed between the dregs and the starch, and must carry out the process of filtering the dregs. The purpose of this final project is to design and build a soybean grinding machine and soy starch separator from the dregs, and the resulting machine design can separate soybean starch from the dregs. The research method used is the VDI 2222 method starting with analysis, conceptualizing, designing, and completion. Based on the design results, the soybean grinding machine uses a 1 pk electric motor, the cutting eye system uses stainless material, and the filter system uses a screen. In the trail results, this machine is able to grind soybeans as much as 3kg/5min or 36kg/hour with the condition that the starch is not mixed with the dregs and the dregs are moist.
RANCANG BANGUN MESIN PENCETAK BRIKET Fatjri Novianti; Krisna Raden; Dino Arisandi; Muhammad H Amrullah; Pristiansyah Pristiansyah
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

 The development of technology in the production sector is very rapid, one of which is in the production of Charcoal Briquettes. Charcoal briquettes are solid materials that contain carbon, have a high calorific value, and can burn for a long time. Charcoal briquettes made from coconut shell charcoal currently contribute to reducing dependence on oil and gas fuels and are able to meet export needs to various countries. SMEs in the area of Jelitik Village, Sungailiat District, Bangka Regency need a charcoal briquette printing machine to process coconut shells. Therefore, the authors design and manufacture a charcoal briquette printing machine with the aim of accelerating the production process and improving the quality of charcoal briquettes with mixed ingredients (starch flour, water, and coconut shell charcoal). The method of design and manufacture of Charcoal Briquette machine refers to VDI 2222. From the steps of the method carried out, the design of the Charcoal Briquette machine is obtained with 3 systems, namely stirring, printing and cutting.The results of the tests carried out were observing  the machine operating well or not, if it was good then the briquette printing test  with the output of the briquettes had good quality and was not easily broken with a production time of 10/hour.
PENJADWALAN PERAWATAN PREVENTIVE PADA DRYER MACHINE DI DUEL LAUNDRY PANGKALPINANG Arzela Tanjung Ampera; pristiansyah, S.ST.M.Eng; Tuparjono, S.ST.,M.T
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Machine dryers often have problems causing the temperature to not be hot, whether it's due to engine part damage or other things. As a result of these constraints the work was delayed. What happens is that the work is not optimal and results in losses. The goal is to reduce excess costs, simplify the work process for operators and also help business owners minimize sudden damage that results in sub-optimal performance. Preventive Maintenance is a maintenance and maintenance activity carried out to prevent the occurrence of unexpected damage symptoms and find conditions or circumstances that can cause production facilities to experience damage during the production process. In the ISMO method, there are several terms and stages that must be carried out to produce a scheduling system and determine cost estimates for the next few years. the results obtained are a manual checklist, soup for each machine and also a maintenance schedule for six and a half years and from the first six months of experimentation there has been a reduction in costs. Implementation of Preventive Maintenance scheduling on Duel laundry has been successful. From the comparison of time for six months. For development, research can be done by determining how many pieces of clothing will be processed to make it easier for workers to measure the capacity of the machine during operation.
PENINGKATAN KINERJA MESIN PENCACAH BRONDOLAN SAWIT Adam Arfandi; Ahmad Arjuna; Maulana M Ibrahim; Angga Sateria
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Oil palm is an important industrial oil-producing plant that can reach 24 meters in height. The area of ​​​​oil palm plantations continues to increase in several areas in Indonesia. One of them is in the Bangka Belitung area which continues to increase rapidly every year. The area of ​​​​oil palm plantations in the province of Bangka Belitung continues to increase every year, recorded in 2021 reaching 238.60 thousand hectares, so one of the five oil palm plantations is palm kernels. Oil palm kernels are one of the wastes from oil palm plantations that can be used to make animal feed and have a lot of concentrate. Therefore, in this final project, the Performance Improvement of the Palm Oil Palm Oil Chopping Machine is designed with improvements that occur in the spacer which is easy to disassemble and the thickness of the machine. spacer, hopper formation and thickness cutting edge. This palm loose fruit chopper is capable of chopping up to 90 kg/hour of palm loose fruit with a length of 0.8-3 cm of coir.
SISTEM KONTROL DAN MONITORING LAMPU TAMAN POLMANBABEL MENGGUNAKAN PANEL SURYA BERBASIS IoT monica; Muhammad Haz Fatahillah Alfaridsi; Zanu Saputra; Surojo Surojo
Prosiding Seminar Nasional Inovasi Teknologi Terapan Vol. 2 No. 02 (2022): Prosiding Seminar Nasional Inovasi Teknologi Terapan
Publisher : Politeknik Manufaktur Negeri Bangka Belitung

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Abstract

Light control in garden lighting facilities generally uses electricity and switches, making it difficult for operators to turn on garden lights. This is the basis for controlling solar lighting using solar input in the form of solar panels and Arduino Uno as a data processing center obtained from current sensors, voltage sensors, and LDR sensors which are used as readers of the state around the lamp. Garden lights use Arduino uno as the main controller, NodeMCU which functions as a communication medium between Android and solar panel-based garden lights by utilizing the Wi-Fi network and applying IoT technology. and monitoring is carried out through an Android application made using Kodular software called Simpuman. From the tests carried out, it can be concluded that the lights can turn on when the hardware is connected to a portable hotspot, the maximum brightness of the lamp is 498.2 mWatt.