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RPM Sensor-Based Revitalization of Multipurpose Chopping Machine in Margourip: Revitalisasi Mesin Pencacah Serbaguna Berbasis Sensor RPM di Margourip Mulyadi, Akhmad; Syahrorini, Syamsudduha; Anggraeni, Putri Ayunda; Farhan, Muhammad; Ananda, Mohammad Azrul
Proceedings of The ICECRS Vol. 13 No. 1 (2025): Proceedings of Community Service Desa Mandiri dan Berdaya Melalui Kolaborasi P
Publisher : International Consortium of Education and Culture Research Studies

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.21070/icecrs.v13i1.2068

Abstract

General Background: Technological innovation in agricultural machinery plays a critical role in enhancing waste processing efficiency and supporting sustainable farming practices. Specific Background: In Margourip Village, a multipurpose chopping machine used to process pineapple stump waste into animal feed was underperforming due to blunt blades, a suboptimal drive system, and the lack of a speed measurement mechanism. Knowledge Gap: There is limited application of precision-enhancing technology, such as RPM sensors, in revitalizing existing agricultural equipment at the village level. Aims: This community service project aims to revitalize the chopping machine by improving its mechanical components and integrating RPM sensor technology to increase the accuracy and consistency of its operation. Results: Using a Research and Development (R&D) approach, the program involved field surveys, 3D Blender-based design simulations, machine repair, and testing. Key improvements included blade sharpening, optimization of the drive system, and RPM sensor installation. These interventions resulted in increased shredding efficiency, more uniform output, and extended machine durability. Novelty: The integration of 3D modeling and RPM sensor technology in a community-level agricultural machine represents a novel approach to minimizing implementation errors and improving operational precision. Implications: The revitalized machine enhances local agricultural waste processing, supports the sustainability of small-scale farming, and can serve as a replicable model for technological upgrades in rural settings. The program's outcomes also open pathways for future development, including the use of advanced materials and automation to further improve performance. Keywords: Chopping Machine, RPM Sensor, Agricultural Waste, 3D Modeling, Margourip Village Highlights: Machine revitalization includes blade sharpening and system redesign. RPM sensor integration improves speed accuracy and output uniformity. 3D Blender modeling minimizes technical errors before implementation.
Pengaruh Literasi Digital, Motivasi Kerja, dan Kesempatan Bimbingan Karir terhadap Kesiapan Kerja Generasi Z Fuada, Dyah Tuhrotul; Anggraeni, Putri Ayunda; Puspita, Adhelia Cahya; Firdaus, Vera
Innovative: Journal Of Social Science Research Vol. 5 No. 1 (2025): Innovative: Journal Of Social Science Research
Publisher : Universitas Pahlawan Tuanku Tambusai

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31004/innovative.v5i1.17469

Abstract

This study aims to analyze the influence of digital literacy, work motivation, and career guidance opportunities on Generation Z's work readiness. Generation Z, born between 1997 and 2012, has unique characteristics because they grew up in the digital era, but data shows that they face challenges in work readiness. The research method used was quantitative with data collection through questionnaires distributed to 110 respondents from various backgrounds. Data analysis was conducted using validity and reliability tests, classical assumption tests, and multiple linear regression with the help of SPSS. The results showed that digital literacy and work motivation had a significant influence on work readiness, while career guidance also contributed, although in a smaller proportion. This study provides recommendations to improve digital literacy and work motivation as strategic steps in preparing Generation Z for the increasingly competitive world of work.