SMD multilayer ceramic capacitors, 6.8pF, 50V
Manufacturer: avx
The 04025A6R8 Series is a premium line of multilayer ceramic capacitors (MLCCs) designed for high-performance applications in various electronic devices. These capacitors are distinguished by their small footprint and exceptional reliability, making them ideal for modern circuit designs that prioritize both performance and space efficiency. With a capacitance value of 6.8 µF and a voltage rating that caters to a wide range of operational needs, the 04025A6R8 Series is well-suited for decoupling, filtering, and energy storage applications in high-density circuits.
One of the standout features of the 04025A6R8 Series is its utilization of advanced dielectric materials, which ensure stable capacitance across a broad temperature range. This stability is crucial for applications that operate under varying environmental conditions, as it minimizes the risk of performance degradation. The capacitors in this series exhibit a tolerance of ±10%, providing engineers with the confidence that their designs will maintain integrity throughout the operational lifecycle.
Designed with a compact 0402 package size (1.0 mm x 0.5 mm), the 04025A6R8 capacitors are particularly advantageous for space-constrained applications. Their small size does not compromise their performance; instead, they deliver reliable operation in demanding environments often found in consumer electronics, automotive systems, and industrial automation equipment. The capacitors excel in noise suppression and power management, making them essential components in power supply circuits, RF applications, and any system requiring effective signal integrity.
In summary, the 04025A6R8 Series represents a perfect blend of miniaturization, performance, and reliability, tailored for modern electronic applications. Whether in smartphones, tablets, or advanced automotive electronics, these capacitors provide engineers with the performance they need to push the boundaries of technology while ensuring the longevity and efficiency of their designs.
Image Preview
Image Preview
Image Preview