The CC0603JRX7R9BB102 is a ceramic capacitor manufactured by Yageo. It is a surface-mount multilayer ceramic capacitor (MLCC) with a capacitance of 1000pF (1nF), a voltage rating of 50V, and an X7R dielectric.
This capacitor is designed for general-purpose applications in electronic circuits. The 0603 case size indicates its compact dimensions (0.06 inch x 0.03 inch), making it suitable for high-density circuit boards. The X7R dielectric offers good capacitance stability with temperature and voltage, making it a popular choice for many applications.
Applications
- Decoupling: Filtering noise from power supplies in digital circuits.
- Bypass: Bypassing high-frequency signals to ground.
- Filtering: Filtering unwanted frequencies from analog signals.
- Timing Circuits: In timing circuits and oscillators.
- General-Purpose Applications: In a wide range of electronic circuits.
Features
- Capacitance of 1000pF (1nF): Provides a capacitance of 1000 picofarads (1 nanofarad).
- Voltage Rating of 50V: Can withstand voltages up to 50 volts.
- X7R Dielectric: Offers good capacitance stability with temperature.
- 0603 Case Size: Compact dimensions for high-density circuit boards.
- Surface Mount Technology (SMT): Designed for surface mount assembly.
Benefits
- Compact Size: Saves space on circuit boards.
- Good Capacitance Stability: Provides a stable capacitance over a range of temperatures.
- Easy to Use: Simple to implement in circuit designs.
- Cost-Effective: Provides a cost-effective solution for general-purpose applications.
- Automated Assembly: Suitable for automated pick-and-place assembly.
The CC0603JRX7R9BB102 capacitor has a capacitance tolerance of ±5%. The X7R dielectric provides a capacitance variation of ±15% over the temperature range of -55°C to +125°C. This makes it suitable for a wide range of applications where temperature stability is important. The capacitor is RoHS compliant, meaning it does not contain hazardous substances. It is often used in applications where decoupling or bypassing is needed, and where a stable capacitance value is required despite temperature variations.