The C3216JF1C106ZT is a multilayer ceramic capacitor (MLCC) manufactured by TDK Corporation. It is designed for general-purpose applications, particularly in electronic circuits where stable and reliable capacitance is required.
Applications
- Bypass Capacitors: Used to filter out noise and provide a stable voltage supply in various electronic circuits.
- Decoupling Capacitors: Used to decouple power supply lines, reducing voltage spikes and noise.
- Smoothing Capacitors: Applied to smooth out voltage fluctuations in power supplies.
- General Circuit Stabilization: Utilized for ensuring stable operation in electronic devices.
Features
- High Capacitance Value: Offers a capacitance of 10µF, suitable for many common applications.
- Compact Size: The 3216 (1206) case size allows for high-density mounting on PCBs.
- X5R Dielectric: Provides good capacitance stability over temperature variations.
- RoHS Compliant: Ensures the component meets environmental regulations, containing no hazardous substances.
- High Reliability: Manufactured to stringent quality standards, ensuring long-term reliability.
Benefits
- Improved Circuit Stability: Provides stable capacitance, leading to improved performance and reliability.
- Noise Reduction: Filters out unwanted noise and voltage spikes, ensuring clean power delivery.
- Compact Design: The small size allows for space-saving on PCBs, enabling miniaturization of electronic devices.
- Environmental Compliance: RoHS compliance makes it suitable for environmentally conscious designs.
- Long-Term Reliability: Ensures consistent performance over the lifespan of the electronic device.
Additional Details
The C3216JF1C106ZT has a voltage rating of 16V. The operating temperature range is typically between -55°C to +85°C. The X5R dielectric ensures a capacitance variation of ±15% over the specified temperature range. It is available in tape and reel packaging for automated assembly processes. It is commonly used in various consumer electronics, industrial equipment, and automotive applications where reliable decoupling and bypass functionality are needed.