Piezoelectric Flexible Sensors Ideal for Machinery Condition Monitoring in the Manufacturing Industry
Thin, flexible, and highly sensitive! No power required for sensor operation, making installation easy. Real-time monitoring of machine conditions.
In manufacturing environments, it is important to detect machine anomalies early and perform appropriate maintenance. However, conventional sensors are difficult to install and have high maintenance costs. This product is thin and flexible, making it easy to install on various machines without requiring specific installation locations. Additionally, it does not require sensor driving power, which helps reduce maintenance costs. 【Usage Scenarios】 - Machine Condition Monitoring: By detecting abnormal vibrations and impacts, it helps identify issues early, preventing unexpected failures and contributing to improved operational rates. - Robot Finger Sensors: By installing it on the fingertips of robots, it enables delicate tasks and object recognition. - Wearable Biometric Sensors: It measures pulse waveforms, pulse intervals, and heart rates, aiding in monitoring employees' health conditions. 【Benefits of Implementation】 - It allows for the prediction of machine failures in advance, reducing maintenance costs. - It leads to improved operational rates and contributes to increased productivity. - It helps enhance safety.
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【Features】 - It is a sensor with a thickness of less than 50μm, made by laminating organic materials on a substrate surface, making it thin and flexible. - It is also possible to manufacture piezoelectric element arrays. - It can be used in wet environments. - It supports high signal-to-noise ratio specifications with an electromagnetic wave shielding layer (optional). - It can be utilized for vital sensing, vibration, shock, and water leak detection. - It is also compatible with haptic devices utilizing the reverse piezoelectric effect (in development). Our Strengths Leveraging the technology and experience cultivated over more than a century, we support advanced industries by continuously providing new technologies and products that meet the demands of the times. In particular, we have high technical capabilities and a wealth of achievements in fields such as functional textiles, textile and apparel, and plastic molding. The "Piezoelectric Flexible Sensor" is also a product developed by consolidating the technologies and know-how we have cultivated over many years. By providing product development and technical support tailored to our customers' needs, we contribute to the growth of our customers' businesses.
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The Fujibo Group is composed of its holding company, Fujibo Holdings Co., Ltd., and its business subsidiaries. It operates in various sectors, including the abrasive materials business, which deals with ultra-precision processing abrasives; the chemical products business, which conducts contract manufacturing of fine chemical intermediates; the textile business, focusing on spinning, textiles, and apparel; and other ventures such as technology development for plastic molding. In our Near-Future Products Division, we engage in market development and technology development centered on functional fibers, textiles and apparel, and plastic molding, as well as promotional support activities through BtoB sites, leveraging the offerings of our business subsidiaries. ■ Functional Fibers We develop functional fibers tailored to customer needs, primarily based on melt spinning technology for blended fibers. In addition to contract development, we also offer a variety of our own products. ■ Textiles and Apparel We provide functional materials developed using our long-cultivated spinning and processing technologies to a wide range of customers, from fashion apparel applications to industrial material applications. ■ Plastic Molding We have a strong track record in precision parts molding with different materials (two-color molding). We also handle molds for small to large molded products and have earned high trust across a wide range of applications, from medical to automotive.