Measuring the performance of business processes is already a main concern for both faculty and enterprise players, since organizations are motivated to reach the productivity stage. Employing a performance achievement framework for the relationship between business incubator success factors will guarantee connection with commercial schemes, which support a high level of performance indicators in successful business incubator models. This research employs a quantitative approach, with the data analyzed using the IBM SPSS version 23 and Smart PLS version 3 statistical software packages. Employing a sample of 95 incubator managers from 19 universities which geographically located in Indonesia, it is shown that the image of business incubator factors has a positive effect on incubator performance. The study investigates the relationship between incubator performance and business incubator success factors in Indonesia. It was found that IT, as part of the business incubators' facets/abilities, partially supports their performance; that the entry criteria directly support the performance of the incubators; that mentoring networks also support the performance, with good infrastructure systems as a moderating factor; that funding supports the performance of business incubators, also with good infrastructure systems as a moderating factor; and that university regulations and government support and protection enhance the performance of business incubators, with credits and rewards as a moderating factor. In addition,
Laboratorium Mekatronika dan laboratorium Robotics di Universitas Tarumanagara merupakan laboratorium untuk mempelajari ilmu mekanika, elektronika, dan informatika. Dalam proses produksinya, Laboratorium Mekatronika dan Robotics sangat memperhatikan proses pembuatan robot yang dianalisis mulai dari proses pembuatan rangka dan komponen robot hingga proses pemasangan rangkaian elektronik dan penerapan program pada robot. Reverse engineering merupakan proses analisis produk yang sudah ada sebagai acuan untuk merancang produk yang sejenis dengan memperkecil dan meningkatkan keunggulan produk. Kegiatan Reverse Engineering (RE) dilakukan dengan cara Diassembly 3D printer lama, Assembly 3D printer lama, Benchmarking, Design 3D printer baru, dan terakhir adalah protyping. Reverse engineering dilakukan pada produk 3D printer Grabber i3. Untuk 3D printer baru ini dilakukan inovasi pada material produk, yaitu akrilik, power supply 12V 30A, motor driver A4988, extruder bowden MK8, dan menambah fitur baru yaitu heatbed
In Indonesia, some industries do manual work using human labor. Among other things is the process of raw materials handling. Likewise, this happened to PT XYZ, which has not used a tool in the material handling process. The material are steel plates and wood plates. This study aims to determine the physical complaints felt by workers, determine the workload classification, and analyze the work posture of workers. In accordance with the results of the Nordic Body Map questionnaire, there are complaints from workers, especially pain in the upper neck, pain in the left and right shoulder, pain in the left upper and right upper arm, backpain, low back pain, left and right forearm pain, left-right wrist pain, and right and left hand pain. Based on Rapid Entire Body Assessment (REBA) and Workplace Ergonomic Risk Assessment (WERA) analysis, all activities of carrying steel plates and wood plates are categorized as medium. Based on Ovako Working Posture Analysis System (OWAS), the elements of work that require immediate action are Taking Plate (Wood) and Carrying the Plate (Wood). The results of the calculation of energy consumption obtained by 5.94 kcal / minute and categorized as work heavy / heavy work (5.0 - 7.5 kcal / minute). Workers carr plates with a weight of 30 to 42 kg, while according to NIOSH Equation and Snook Table analysis the maximum load is 14.06 kg, so this is far beyond and dangerous.
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