Claim Missing Document
Check
Articles

Found 3 Documents
Search

Pemanfaatan energi terbarukan dalam upaya swasembada listrik di kawasan wisata edukasi pedesaan Lanny Agustine; Albert Gunadhi; Diana L. Antonia; Widya A. Weliamto; Peter R. Angka; Rasional Sitepu; Hartono Pranjoto; Andrew Joewono; Yuliati Yuliati; Andrew F. Miyata
Jurnal Inovasi Hasil Pengabdian Masyarakat (JIPEMAS) Vol 4, No 3 (2021): Jurnal Inovasi Hasil Pengabdian Masyarakat (JIPEMAS)
Publisher : University of Islam Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33474/jipemas.v4i3.11298

Abstract

Cottok Innovation Park (CIP) is a tourist area that develops technology-based educational tourism. CIP is located on a broad hill. This area was in a barren state when the first service activities were carried out at the beginning of development in 2017. The PLN electricity network is also not yet available because it is far from residential areas. Solar-based technology has been applied and developed sustainably at CIP as an effort to be self-sufficient in electrical energy to provide water and lighting. Water is obtained by a solar pump from a groundwater source at a depth of 40 m. Currently, CIP has grown rapidly and provides night tours. The latest community service activities results are off-grid PLTS-based road signs and the CIP icon lamp to support night tourism. A further effect of this sustainable community service activity is the motivation and confidence of village youth to be involved in village development programs as tourist areas and children's education. It has also impacted the decline in the number of poor people in the village of Curah Cottok.
Perancangan Tensimeter Digital dan Pengiriman Data Ke Monitoring Pusat Austin Yulius Darmawan; Diana Lestariningsih Antonia; Peter R. Angka; Lanny Agustine; Yuliati Yuliati
Widya Teknik Vol. 21 No. 2 (2022): November
Publisher : Fakultas Teknik, Universitas Katolik Widya Mandala Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33508/wt.v21i2.4477

Abstract

Penggunaan tensimeter di Rumah Sakit minimal 2 kali sehari. Data hasil pengukuran dicatat secara manual oleh perawat secara manual dan harus direkap di kantor pusat perawatan. Hal ini terkadang terjadi kesalahan dalam pengerjaannya dikarenakan faktor manusia.  Untuk membantu perawat dalam pengukuran dan mengurangi kesalahan pencatatan maka dirancang tensimeter digital yang mudah dalam penggunaannya dan hasil pengukuran dikirim secara wireless di kantor pusat perawatan.Perancangan hardware terdiri dari 2 bagian yaitu tensimeter digital dan monitoring pusat. Tensimeter digital diletakkan dipergelangan tangan pasien. Rancangan tensimeter digital  terdiri dari sensor MPX5050DP, motor DC, solenoid valve, Arduino Nano, LCD dan module NRF24L01. Rancangan monitoring pusat terdiri dari module NRF24L01, Arduino Mega 2560 dan LCD. Data hasil pengukuran terdiri dari besar tekanan darah dan detak jantung pasien. Selanjutnya data dikirimkan secara wireless ke kantor pusat perawatan. Monitoring pusat akan menampilkan besar tekanan darah, detak jantung dan nomer urut pasien.Hasil pengukuran dari rancangan tensimeter digital dibandingkan dengan tensimeter digital merk GOSH. Keakuratan tensimeter digital hasil perancangan adalah 92,77% tekanan systole, 91,18% tekanan diastole, dan 96,93% untuk heart rate. Pengiriman data hasil pengukuran secara wireless ke monitoring pusat dapat dilakukan sampai dengan 15 meter pada lantai yang sama dan ˂ 5 meter pada lantai yang berbeda.
Simulasi Interaktif VIRTUAL PLANT Sistem Pengisian Botol Menggunakan Siemens TIA Portal Yuliati Yuliati; Teofilus Christiawan Loen; Albert Gunadhi; Andrew Joewono; Peter R. Angka; Diana Lestariningsih; Rasional Sitepu
CYCLOTRON Vol 9 No 02 (2026): CYCLOTRON
Publisher : Universitas Muhammadiyah Surabaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30651/ct.v9i02.31490

Abstract

Technological developments in the industrial revolution 4.0 era have encouraged the implementation of automation in the industrial sector. This research was conducted using a simulation approach in utilizing Siemens HMI to display a conveyor simulation for a bottle filling machine. This simulation was designed using TIA Portal V17 software and a Siemens S7-1500 PLC as the main controller. The simulated process consists of liquid filling, bottle closing, bottle counting, and interactive visualization of conveyor status. This research aims to develop a Human Machine Interface (HMI) display that can display a production process simulation visually and support virtual monitoring and control of the system through software. The test results show that the simulation successfully displays the filling, bottle closing, and counting processes with an average time of 8.58 seconds for filling, 8.13 seconds for closing. This research is expected to contribute to the development of industrial automation solutions, especially in the implementation of HMI for conveyor systems through simulation. The results of this simulation can be a reference in the design and development of similar automation systems in the future.