The C3216X5R0J476M160AC is a multilayer ceramic capacitor (MLCC) manufactured by TDK Corporation. These capacitors are designed for general-purpose applications, offering stable performance over a wide range of temperatures and voltages. MLCCs are known for their compact size, high capacitance values, and reliability, making them suitable for various electronic circuits.
Applications:
- Bypass Capacitors: Used to reduce noise on power supply lines in electronic circuits.
- Decoupling Capacitors: Employed to stabilize voltage levels in digital and analog circuits.
- Filtering: Incorporated in filter circuits to remove unwanted frequency components.
- Smoothing: Used to smooth out voltage ripples in power supplies.
- General Circuit Stabilization: Provide stability and reliability in various electronic devices.
Features:
- High Capacitance: Offers a relatively high capacitance value in a compact size.
- X5R Dielectric: Provides stable performance across a wide temperature range (-55°C to +85°C).
- Multilayer Construction: Ensures high reliability and durability.
- Compact Size: Suitable for space-constrained applications.
- RoHS Compliant: Complies with environmental regulations regarding hazardous substances.
Benefits:
- Stable Performance: The X5R dielectric ensures consistent performance over temperature variations.
- Reduced Noise: Effectively reduces noise and ripple in electronic circuits.
- Increased Reliability: Multilayer construction provides high reliability and long lifespan.
- Space Saving: Compact size allows for use in miniaturized devices.
- Cost-Effective: Offers a balance of performance and cost.
Specifications:
- Capacitance: 47µF
- Voltage Rating: 6.3V DC
- Dielectric Material: X5R
- Temperature Range: -55°C to +85°C
- Case Size: 1206 (3216 Metric)
- Tolerance: ±20%
- Termination: Surface Mount (SMD/SMT)
In summary, the C3216X5R0J476M160AC from TDK is a reliable and versatile ceramic capacitor suitable for a broad range of applications where stable performance, high capacitance, and compact size are essential.