Implementasi Load Cell sebagai komponen Alat Rehabilitasi Disfungsi Sendi Lutut

Agus Sukoco Heru Sumarno, Eka Mandayatma, Doni Radianto, Imam Saukani
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Abstract

Knee joint fractures caused after surgery or other activities that cause knee dysfunction require a rehabilitation process. Knee dysfunction means the knee joint cannot be bent/moved at the desired angle. Because the function of the knee is so important in relation to human activities, it is necessary to immediately carry out rehabilitation measures for a perfect return. Rehabilitation in this case can be done with weight training. In this research, loading for rehabilitation will be designed using load cell-based electronic engineering for the desired load, because the equipment used so far works manually.The research began with inventorying component requirements, designing the circuit, compiling a process algorithm, functional testing, calibration and data collection. The research data is a function of weight on movement, in this case motorbikes. The output of the research is a control circuit prototype to regulate load-based motor movement.The equipment specifications are produced with a loading capacity limit of 5 kg with a change step of 250 grams.
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将称重传感器作为膝关节功能障碍康复工具的一个组成部分
手术后造成的膝关节骨折或其他活动导致的膝关节功能障碍需要一个康复过程。膝关节功能障碍是指膝关节不能以理想的角度弯曲/移动。由于膝关节的功能对人体活动非常重要,因此有必要立即采取康复措施,使膝关节功能得到完美恢复。在这种情况下,可以通过负重训练进行康复。在这项研究中,将使用基于称重传感器的电子工程设计康复所需的负载,因为迄今为止使用的设备都是手动工作的。研究从清点组件需求、设计电路、编制过程算法、功能测试、校准和数据收集开始。研究数据是重量对运动的函数,这里指的是摩托车。研究的成果是一个控制电路原型,用于调节基于负载的电机运动。设备规格的生产,负载能力限制为 5 公斤,变化步长为 250 克。
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