SMD 0402 1uF 6.3V X5R ceramic capacitors
Manufacturer: avx
The 04026D105 Series is a premium line of surface-mount multilayer ceramic capacitors (MLCCs) specifically engineered for high-performance applications that demand reliability and miniaturization. This series is characterized by its robust construction and advanced dielectric materials, ensuring exceptional capacitance stability over a wide range of operating conditions. The capacitors in this series utilize class 2 X7R dielectric, which maintains capacitance within ±15% across a temperature range of -55°C to +125°C, making them suitable for environments that experience both thermal fluctuations and electrical stress.
A key feature of the 04026D105 Series is its compact size, with a footprint of 0402 (1.0 mm x 0.5 mm), which allows for high-density designs without compromising performance. This miniaturization is essential for modern electronic applications, where space constraints are ever-increasing. The series offers various capacitance values and voltage ratings, catering to a broad spectrum of design requirements. Its versatility makes it ideal for use in decoupling, filtering, and timing applications, essential for maintaining signal integrity in high-speed circuits.
The design characteristics of the 04026D105 Series highlight its suitability for a wide array of industries. These capacitors are extensively used in consumer electronics, such as smartphones, tablets, and laptops, where their small size and reliability contribute to overall device performance. Additionally, they find applications in automotive electronics, including advanced driver-assistance systems (ADAS) and infotainment systems, where operational stability is crucial. Industrial applications also benefit from the robustness of the 04026D105 Series, as they are employed in power supplies, automation controls, and other critical systems that require dependable performance under varying environmental conditions.
In summary, the 04026D105 Series stands out in the market for its combination of compact size, reliable performance, and broad applicability, making it an excellent choice for engineers and designers aiming to enhance their electronic systems while adhering to modern design constraints.
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