The C3216Y5V1H225ZT000N is a multilayer ceramic capacitor (MLCC) manufactured by TDK Corporation. This capacitor is designed for general-purpose applications where a high capacitance value is required in a small form factor. Its Y5V dielectric provides a high capacitance per volume ratio, making it suitable for space-constrained applications.
Applications
- Bypass Capacitors: Filters out unwanted AC signals and noise in electronic circuits.
- Decoupling Capacitors: Stabilizes voltage supply by suppressing voltage fluctuations in power rails.
- Smoothing Capacitors: Reduces ripple voltage in power supplies.
- Filtering Circuits: Integrated into filters to selectively pass or block certain frequencies.
- General-Purpose Applications: Suitable for various applications in consumer electronics and industrial equipment where a high capacitance value is needed.
Features
- High Capacitance: 2.2µF capacitance value, providing significant charge storage capability.
- Y5V Dielectric: Offers a high capacitance per volume ratio, ideal for space-constrained designs.
- Compact Size: 1206 (3216 metric) case size, allowing for high-density circuit board layouts.
- Voltage Rating: 50V voltage rating, accommodating a range of voltage levels.
- Multilayer Ceramic Capacitor (MLCC): Provides low ESR (Equivalent Series Resistance) and ESL (Equivalent Series Inductance).
Benefits
- High Capacitance in Small Package: Delivers a large capacitance value in a compact form factor.
- Effective Noise Filtering: Helps filter out noise and ripple in power supplies and signal lines.
- Space Efficiency: The 1206 size enables high-density mounting on PCBs.
- Cost-Effective Solution: MLCCs offer a cost-effective option for capacitance needs.
- Versatile Use: Suitable for a variety of applications due to its stable performance and capacitance value.
Specifications
- Capacitance: 2.2µF
- Voltage Rating: 50V
- Dielectric: Y5V
- Case Size: 1206 (3216 metric)
- Temperature Coefficient: +22% / -82%
- Operating Temperature Range: -30°C to +85°C
- Tolerance: ±20%