The C0402C104K4RALTU is a ceramic capacitor manufactured by Kemet. It is a surface-mount multilayer ceramic capacitor (MLCC) designed for a wide range of applications requiring stable and reliable capacitive performance.
Applications:
- Bypass Capacitors: Used to filter noise and provide a stable voltage supply in electronic circuits.
- Decoupling Capacitors: Placed close to integrated circuits to reduce voltage fluctuations and improve performance.
- Filtering Circuits: Employed in filters to block unwanted frequencies in signal processing applications.
- Timing Circuits: Utilized in oscillator and timing circuits to control frequency and timing parameters.
- General Purpose Applications: Suitable for various applications requiring stable and reliable capacitance.
Features:
- Small Size (0402): Compact size allows for high-density board designs.
- High Capacitance Value (100nF): Provides a significant amount of capacitance in a small package.
- X5R Dielectric: Offers stable performance over a wide temperature range (-55°C to +85°C).
- Surface Mount Technology (SMT): Facilitates automated assembly and reduces manufacturing costs.
- RoHS Compliant: Meets environmental standards for hazardous substance restriction.
Benefits:
- Space Saving: Small 0402 package allows for compact and efficient circuit designs.
- Stable Performance: X5R dielectric ensures consistent capacitance over temperature variations.
- Reliable Operation: High-quality construction and materials provide long-term reliability.
- Cost-Effective: Surface mount technology reduces assembly costs and improves manufacturing efficiency.
Additional Details:
The C0402C104K4RALTU is a 0402-sized (0.04 inch x 0.02 inch) surface-mount ceramic capacitor. Key specifications include a capacitance of 0.1µF (100nF), a voltage rating of 16V, and an X5R dielectric. It is commonly used in consumer electronics, industrial equipment, and automotive applications where stable and reliable capacitive performance is required in a small form factor. This capacitor provides excellent decoupling and filtering characteristics, making it an ideal choice for various electronic circuit designs.