PACK OF 4000 PIECES
The C0603C222K5RACTU is an SMD (Surface-Mount Device) ceramic capacitor designed for versatility and efficiency in a wide range of electronic applications. It comes in a compact 0603 package size, which is one of the smallest standard footprints for SMD components. The capacitor offers a capacitance of 2200 picofarads (pF), equivalent to 2.2 nanoFarads (nF), and has a voltage rating of 50 volts.
Key Features and Benefits:
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Capacitance (2200pF/2.2nF): The 2200 picofarad capacitance is ideal for various applications, including filtering, timing circuits, and frequency control. It is particularly useful in applications where a specific capacitance value is crucial for circuit functionality.
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Voltage Rating (50 Volts): The 50-volt rating allows this capacitor to be used in circuits that operate at medium voltages, broadening its utility in more demanding electronic environments.
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Package (0603 SMD): The 0603 package is one of the smallest standard sizes for SMD components, making it ideal for high-density PCB designs. This compact size is crucial for space-constrained applications in modern electronic devices.
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Model (C0603C222K5RACTU): The model number C0603C222K5RACTU accurately specifies the capacitor's characteristics, ensuring correct selection and compatibility in electronic designs.
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Applications: Commonly used in consumer electronics, telecommunications devices, automotive systems, and other fields where efficient use of space and reliable capacitor performance are essential.
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Features: Known for its reliability and stability, the C0603C222K5RACTU ceramic capacitor is designed to provide consistent performance across various applications. Its SMD design is well-suited for automated manufacturing processes, enhancing production efficiency and consistency.
In summary, the C0603C222K5RACTU ceramic capacitor, with its 2200pF capacitance and 50V voltage rating, is an excellent choice for a wide range of applications requiring a compact, efficient, and reliable capacitive component. Its small 0603 package size makes it particularly suitable for modern electronic designs where space efficiency and high component density are key considerations.