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IbM MGMP GURU TEKNIK MESIN Carsoni Carsoni; Slamet Supriyadi; Yuris Setyoadi; Gostsa Khusnun Naufal; Agus Mukhtar; Nur Aksin
E-Dimas: Jurnal Pengabdian kepada Masyarakat Vol 7, No 2 (2016): E-DIMAS
Publisher : Universitas PGRI Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26877/e-dimas.v7i2.1130

Abstract

Kegiatan Pengabdian Kepada Masyarakat ini dilakukan beberapa tahapan  pendekatan. Tahap paling awal adalah pendekatan terhadap Mitra 1 dimana  kelompok ini adalah sebuah Lembaga Pendidikan yaitu SMK Nurul Barqi di desa Cepoko kecamatan Gunungpati Kota Semarang dengan Program Studi Mekatronika. Mitra 2 adalah CV. RETRO KREASI MACHINERY yang beralamat di Jl. Waru Timur I RT 007/RW 01 Griya Waru Permai No. 11 Kelurahan Pedalangan Kecamatan Banyumanik Kota Semarang. Tahap berikutnya adalah Team Pengabdian Kepada Masyarakat Teknik Mesin Universitas PGRI Semarang meninjau ke lokasi Mitra 1 untuk menggali lebih dalam permasalahan yang ada dan solusi pemecahannya. Akhirnya dicapai kesepakatan bahwa untuk Mitra 1 perlu pelatihan dalam perawatan serta opresional mesin CNC. Karena CV. RETRO KREASI MACHINERY memproduksi mesin CNC, maka dipandang perlu untuk  digandeng sebagai mitra 2. Dari kegiatan dihasilkan bahwa kegiatan pelatihan mesin CNC sangat bermanfaat sekali. Pelatihan dilaksanakan selama 2 hari (persiapan dan pelaksanaan) dengan jumlah total 30 peserta.Secara keseluruhan pelatihan dikatakan sukses dengan indikator bahwa ketrampilan dalam mengoperasikan dan memelihara mesin CNC dari peserta bertambah. Kata kunci: Pelatihan Mesin CNC, Guru teknik mesin  
Rancang Bangun Cooler Box Termoelektrik dengan Air Sterilizer sebagai Tempat Pengiriman Air Susu Ibu (ASI) Gostsa Khusnun Naufal
Jurnal Engine: Energi, Manufaktur, dan Material Vol 3, No 2 (2019)
Publisher : Proklamasi 45 University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30588/jeemm.v3i2.586

Abstract

The growing trend today is the exclusive breast milk given to the baby until the baby has a sufficient age. This is certainly not too problematic for housewives who most of the time are at home, so it can menyusi baby without interference. But this is different from career women who have babies and want to provide exclusive breast milk, a great distance between home and workplace and time constraints become a barrier factor that makes exclusive breast milk becomes very difficult given career woman to her child. Cooler box can keep asi temperature remain in cold condition prevent damage of breast milk content. Inside the cooler box put ice gel to keep the temperature cool. The ice gel can keep the temperature cool for 3-4 hours. Another problem is the hygiene of the cooler box and storage container from the breast milk. Not infrequently the cooler box into a source of bacteria that can spread to the breast milk contained in the cooler box, this can be caused moisture or from the hands that are not sterile. This is because in the process of pumping and transfer into the cooler box is still using the manual by hand. The researcher will design a cooler box build by using thermoelectric as cooling from cooler box and have water sterilizer, which is useful to decrease the amount of bacteria by using uv light. Low levels of bacteria will make the cooler box becomes more hygienic as a storage area when it will be shipped.
Prototype of a Dust Monitoring Device in the Mechanical Engineering Laboratory at PGRI University Semarang Using the GP2Y1010AU0F Sensor Rifki Hermana; Muchamad Malik; Agus Mukhtar; Andrew Joewono; Gostsa Khusnun Naufal
Jurnal Engine: Energi, Manufaktur, dan Material Vol. 8 No. 2 (2024)
Publisher : Proklamasi 45 University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30588/jeemm.v8i2.1999

Abstract

ABSTRACT This study aims to develop an accurate and real-time air quality monitoring system in the Mechanical Engineering Laboratory that provides information on the measured parameter values. The research employs an experimental approach to determine the effectiveness of variables within the experiment. The primary sensor used is the GP2Y1010AU0F Optical Dust Sensor, which operates based on infrared light to measure particulate dust concentration levels. Analysis of sensor testing results was conducted by observing variations in sensor readings, notably after trials involving tissue burnt as a dust source. The dust sensor consistently recorded an average dust concentration of 0.597 Kg/m³. Subsequently, tests were conducted using baby powder with a constant weight of 30 mg per trial. Sensor readings varied between 0.35 Kg/m³ and 0.38 Kg/m³, indicating that within the given weight range, the powder mass does not significantly impact sensor readings. Further, tests on indoor dust density, with an average concentration of 36.01 µg/m³, revealed a relatively low average dust concentration in the room during the measurement period..