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PEMBERDAYAAN MASYARAKAT MELALUI PENGOLAHAN SAMPAH ORGANIK DI DESA TEMPURSARI KECAMATAN TEMPURSARI, KABUPATEN LUMAJANG, JAWA TIMUR Elferida Sormin; Marina Silalahi; Bambang Widodo; Susilo Suwarno
JURNAL Comunità Servizio : Jurnal Terkait Kegiatan Pengabdian kepada Masyarakat, terkhusus bidang Teknologi, Kewirausahaan dan Sosial Kemasyarakatan Vol. 1 No. 1 (2019): APRIL
Publisher : Lembaga Penelitian dan Pengabdian kepada Masyarakat (LPPM), Univesitas Kristen Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33541/cs.v1i1.949

Abstract

Kegiatan pengabdian kepada masyarakat ini dilakukan melalui bentuk kegiatan sosialisasi dan pelatihan tentang pengolahan sampah di Desa Tempursari, Kecamatan Tempursari, Kabupaten Lumajang, Jawa Timur pada tanggal 12-17 Juli 2017. Permasalahan sampah menjadi permasalahan yang belakangan sangat banyak dikeluhkan oleh masyarakat secara khusus di desa Tempursari. Kerjasama yang solid antara semua stakeholder diharapkan dalam penanganan dan pemecahan permasalahan sampah ini, seperti yang sudah dilakukan oleh masyarakat Desa Tempursari dengan kehadiran Gereja Kristen Jawa Wetan (GKJW) yang menjadi fasilitator dalam penanganan sampah di desa Tempursari. Dalam rangka mengembangkan program yang sudah disusun dan akan dijalankan, GKJW bekersama dengan Universitas Kristen Indonesia Jakarta dalam beberapa hal terkait pengolahan sampah tersebut, di antaranya mensosialisasikan pemahaman tentang sampah (jenis dan dan dampak yang ditimbulkan), bagaimana mengolah sampah sesuai dengan jenisnya dan membantu mengoperasikan mesin pencacah sampah plastik dan sampah organik lainnya. Hasil dari kegiatan pengabdian kepada masyarakat ini dinilai memberikan dampak positif, di mana mesin pencacah yang tadinya sudah lama tidak berfungsi menjadi beroperasi dengan operator yang yang sudah mahir atau fasih, masyarakat mampu memilah sampah dimulai dari tia-tiap rumah tangga sebelum selanjutnya diserahkan ke tim pengolah yang sudah ditunjuk oleh gereja. Akhirnya setelah kegiatan pengabdian kepada masyarakat bersama dengan GKJW Tempursari, maka program pelayanan masyarakat melalui pengolahan sampah oleh GKJW Tempursari mulai berjalan lancar. Kata Kunci: sampah organik, mesin pencacah Abstract The community service activities were carried out through the form of socialization and training activities on waste management in Tempursari Village, Tempursari District, Lumajang Regency, East Java. The problem of garbage has become a very recent problem that is very much complained by the community specifically in the village of Tempursari. Solid cooperation between all stakeholders is expected in handling and solving these waste problems, as has been done by the people of Desa Tempursari with the presence of the Gereja Kristen Jawa Wetan (GKJW) who became a facilitator in handling waste in the village of Tempursari. In order to develop a program that has been compiled and will be implemented, GKJW cooperates with the Universitas Kristen Indonesia Jakarta in several matters related to waste management, including socializing understanding of waste (types and impacts), how to process waste according to its type and helping operate plastic waste chopping machines and other organic waste. The results of community service activities are considered to have a positive impact, where the enumerating machines that have not been functioning for a long time become operational with operators who are already proficient or fluent, the community is able to sort waste starting from each household before being submitted to the processing team who has been appointed by the church. Finally after the community service activities together with GKJW Tempursari, the community service program through processing waste by GKJW Tempursari began to run smoothly. Keywords: organic waste, chopping machine
Analisa Tingkat Resiko Tata Kelola Teknologi Informasi Perguruan Tinggi Menggunakan Model Framework National Institute of Standards & Technology (NIST) Special Publication 800-30 dan IT General Control Questionnaire (ITGCQ) Susilo Susilo
Journal Industrial Servicess Vol 3, No 1c (2017): Oktober 2017
Publisher : Fakultas Teknik Jurusan Teknik Industri Universitas Sultan Ageng Tirtayasa

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36055/jiss.v3i1c.2092

Abstract

Information and Communication Technology (ICT) Governance is strongly associated with the successful of an organization's management especially about how to control physical assets, data and information were applied. In organizations, universities (Higher Education) Data and information is extremely important given the orientation of utilization is in the form of shared knowledge, through teaching and learning, research and community service (Tri Dharma). With a potential source of threats posed by humans (Human Threats), natural disasters (Natural Threats), and disruption of the environment (Environmental Threats) can interfere with the management of ICT colleges. NIST Framework Model is implemented by integrating the concept of Information Technology (IT) Risk Management through assessment risk mitigation strategies and recommendations to measure the probability of the threat and the level of impact on the institution. Then, through indepth interviews with ICT department/unit using IT General Control Questionnaire (ITGCQ) and also review operational documents to found risk analysis issues. Risk analysis results are summarized in the form of safeguard implementation plan to reduce the level of IT risk governance PTS. XYZ. More and more ICT management activities that do not have control, the higher the level of risk management of ICT. 
Pengaruh Jumlah Bilah dan Sudut Pasang terhadap Daya Turbin Angin Poros Vertikal Tipe H-Darrieus Termodifikasi sebagai Energi Alternatif Pembangkit Tenaga Listrik Skala Rumah Tangga Susilo Susilo; Bambang Widodo; Eva Magdalena Silalahi; Atmadi Priyono
Jurnal Energi Dan Manufaktur Vol 12 No 2 (2019)
Publisher : Department of Mechanical Engineering, University of Udayana

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (441.556 KB) | DOI: 10.24843/JEM.2019.v12.i02.p08

Abstract

Bentuk sudu taper linier merupakan bentuk sudu yang paling optimal untuk kecepatan angin yang rendah. Jumlah sudu yang baik untuk kecepatan angin rendah berkisar antara 3-7 buah sudu, namun desain sudu dengan menggunakan airfoil dan profil pada sudut pasang sudu yang bagaimana memberikan daya keluaran dan tegangan keluaran yang optimal. Turbin angin didesain dengan 2 bilah dan 4 bilah dengan sudut pasang yang bisa diatur untuk mendapatkan perbedaan daya optimal masing-masing desain. Pengujian dilakukan di 3 area berbeda untuk mendapatkan gambaran geografis kondisi angin yang berbeda khususnya masalah kecepatan angin di ksiaran 2 m/s - 7 m/s. Pengujian dilakukan dengan luas penampang turbin angin (A) sebesar 3m2 Hasil penelitian menunjukkan bahwa nilai terbaik diperoleh pada kecepatan angin maksimal 4 m/s dan jumlah blade 4 sedangkan untuk nilai terkecil diperoleh pada kecepatan angin 3 m/s dan jumlah blade 2 yaitu. Untuk nilai TSR maksimal pada kecepatan maksimal 4 m/s terjadi pada jumlah blade 4, sedangkan untuk nilai terendah pada kecepatan angin 3 m/s dihasilkan pada jumlah blade 2. Melalui pengukuran berbasis teknologi smart monitoring system, dari penelitian diperoleh semakin tinggi kecepatan angin maka tegangan keluaran semakin tinggi. Semakin tinggi tegangan keluaran, semakin tinggi daya keluaran pada generator. Sudut pasang ? dan jumlah sudu mempengaruhi kecepatan putaran rotor turbin angin. Kecepatan putaran rotor turbin angin berelasi dengan tegangan keluaran generator. pada sudut pasang ? dan jumlah sudu 4, diperoleh daya keluaran yang sebesar 150 watt namun pada kecepatan angin 7 m/s daya turbin yang dihasilkan mencapai 600 watt. Dengan kondisi ini cukup memenuhi untuk alternatif cadangan listrik skala rumah tangga khusunya di pedesaan dan daerah terpencil (rural area). The linear taper blade shape is the most optimal blade shape for low wind speeds. The number of blades that are good for low wind speeds ranges from 3-7 blades, but the blade design uses an airfoil and profile on the blade mounting angle which is how to provide optimal output power and output voltage. Wind turbines are designed with 2 blades and 4 blades with adjustable tide angles to get the difference in the optimal power of each design. Tests were carried out in 3 different areas to obtain a geographical description of different wind conditions, especially the problem of wind speed in the range of 2 m / s - 7 m / s. Tests carried out with a cross section area of wind turbines (A) of 3m2 The results showed that the best value was obtained at a maximum wind speed of 4 m / s and number 4 blade while the smallest value was obtained at wind speeds of 3 m / s and number 2 blades namely. For the maximum TSR value at a maximum speed of 4 m / s occurs in the number of 4 blades, while for the lowest value at 3 m / s wind speed is produced on the number of blades 2. From the research, the higher the wind speed, the higher the output voltage. The higher the output voltage, the higher the output power at the generator. The ? tide angle and number of blades affect the speed of the wind turbine rotor rotation. The rotational speed of the wind turbine rotor is related to the generator output voltage. at the tide angle ? and number of blades 4, the output power of 150 watts is obtained but with wind speed 7 m/s turbine power 600 watt achieved. With this condition, it is sufficient for alternative household electricity reserves, especially in rural and remote areas (rural areas).
RANCANG BANGUN SISTEM PENGUKURAN SUHU TUBUH MANUSIA OTOMATIS TANPA KONTAK FISIK DENGAN SENSOR SUHU MLX90614 BERBASIS ARDUINO UNO PADA BILIK DISINFEKTAN Rizki Pardamean Sinaga; Susilo Susilo; Bambang Widodo
Lektrokom : Jurnal Ilmiah Teknik Elektro Vol. 3 No. 1 (2020): Jurnal Lektrokom Volume 3, Oktober 2020
Publisher : Prodi Teknik Elektro FT UKI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33541/lektrokom.v3i1.3317

Abstract

In the end of 2019, the world have been experiencing a pandemic event until today, the wide spread of coronavirus which is scientifically known as covid-19. One of the symptoms that emerges due to the spread of this virus is the human body is not in a normal temperature, which is more than 37.5°C. Therefore, the measurement of human body temperature is now a mandatory protocol in order to preventing the spread of the Covid-19 virus. This paper discusses about a tool that could measure the human body temperature without any physical contact is needed using The MLX90614 temperature sensor series based on Arduino Uno in the disinfectant booth. The type of sensor that is used in the manufacture of this tool is the MLX90614 temperature sensor, this sensor is known as a non-contact temperature sensor used in measuring the temperature of the human body without direct contact with the object. The purpose of making this tool is to make the measurement of human body temperature can be used in a faster way and to minimize a face-to-face contact with other human. This tool has an alarm that will work if the temperature is on ≥37.50C and then the alarm will be active for 10 seconds and if the temperature is <37.50C the alarm will be active for 1 second so that it’s able to detect people who are allowed or not allowed to enter the building, with a measurement distance of between 0.1 - 10 cm with accuracy level of 99.91%.
SISTEM PENGENDALIAN SUHU DAN KELEMBABAN PADA BILIK DISINFEKTAN BERBASIS BLYNK DENGAN MENGGUNAKAN NODEMCU ESP8266 Daniel Bawer Simanjuntak; Bambang Widodo; Susilo Susilo; Stepanus stepanus; Judo Ignatius Nempung
Lektrokom : Jurnal Ilmiah Teknik Elektro Vol. 4 No. 1 (2021): Jurnal Lektrokom Volume 4, September 2021
Publisher : Prodi Teknik Elektro FT UKI

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33541/lektrokom.v4i1.3388

Abstract

Coronavirus Disease 2019 (COVID-19) has been declared by WHO as a global pandemic and in Indonesia it is stated as a type of disease that causes public health emergencies and non-natural disasters, so it is necessary to make prevention efforts including prevention and control (Kemenkes RI, 2020) regarding prevention guidelines. and control of coronavirus disease 2019 (COVID-19). One way to prevent the spread of covid-19 is to spray disinfectants on objects suspected of having a virus. Especially for the human body, disinfectant spraying is carried out in a specially designed room or room. These booths are placed in markets, malls, schools, places of worship and so on. This research was conducted from September 2020 to December 2020 at the Faculty of Engineering, Christian University of Indonesia, Jakarta. Based on the test, it was found that the temperature and humidity can be displayed on the LCD and mobile phones via the Blynk application. Temperature regulation is done by activating or deactivating the exhaust fan and fan. At a temperature of> 280C the exhaust fan and fan will be active, then not active if the temperature is ≤280C. This tool has a measurement accuracy level for a temperature of 99.99% and 99.98% humidity with a thermohygrometer as a measurement reference tool.