How the EPCOS B43586-S3468-Q3 4600UF 385V Capacitor Enhances Power Supply Stability

Date:2025-4-20 分享到:

If you’re working on a project that requires reliable power supply stability, the EPCOS B43586-S3468-Q3 capacitor might just be your go-to component. This aluminum electrolytic capacitor with a capacitance of 4600 microfarads (μF) and a voltage rating of 385V is specifically designed for high-performance applications. It’s commonly used in industrial equipment like motor controllers, uninterruptible power supplies (UPS), and renewable energy inverters where consistent performance under heavy load is crucial.”One key feature of this capacitor is its low Equivalent Series Resistance (ESR). According to TDK-EPCOS data sheets, the ESR value can be as low as 10 milliohms at 120 Hz. This makes it ideal for smoothing out voltage fluctuations in switch-mode power supplies (SMPS) or filtering ripple currents in DC-DC converters. For instance, an application case involving a UPS manufacturer reported a 15% reduction in output voltage ripple after integrating these capacitors into their design.”The B43586-S3468-Q3 also boasts impressive longevity. Operating within its rated parameters, it can last over 3000 hours at temperatures up to 85°C. This reliability ensures minimal downtime in critical systems such as solar inverters which operate continuously under varying environmental conditions.”In terms of physical attributes, the compact size of this capacitor allows for easy integration into densely populated PCB layouts without compromising functionality. Its dimensions are approximately 34mm diameter by 68mm height, making it suitable even for space-constrained designs.”Choosing the right capacitor for your application can significantly impact system efficiency and lifespan. The EPCOS B43586-S3468-Q3 stands out not only due to its robust specifications but also because of its proven track record in demanding environments. Whether you’re designing a new product or upgrading an existing one, consider how this capacitor could enhance overall performance while maintaining cost-effectiveness.

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