The C3225C0G2A333J200AA is a multilayer ceramic capacitor (MLCC) manufactured by TDK Corporation. It is designed for general-purpose applications requiring a stable capacitance over a wide range of operating conditions. The C0G dielectric ensures high stability and low loss, making it suitable for critical timing and filtering applications.
Applications
- Timing circuits
- Filtering circuits
- Resonant circuits
- High-frequency circuits
- General-purpose decoupling and bypass applications
Features
- High capacitance value: 0.033µF (33nF), suitable for various filtering and timing applications.
- Case size: 3225 (1210), providing a balance between size and capacitance.
- C0G (NP0) dielectric: Offers exceptional capacitance stability with minimal change over temperature and voltage.
- Voltage rating: 100V DC, allowing use in higher voltage circuits.
- Multilayer ceramic construction: Ensures high reliability and long life.
- RoHS compliant: Meets environmental standards for hazardous substance restrictions.
Benefits
- Stable capacitance: C0G dielectric provides minimal capacitance drift, ensuring consistent circuit performance.
- Low loss: Suitable for high-frequency applications due to its low dissipation factor.
- High reliability: Ceramic construction provides excellent durability and long-term stability.
- Versatile application: Suitable for a wide range of general-purpose and precision applications.
- Wide operating voltage: 100V rating allows for use in various voltage environments.
Additional Details
The C3225C0G2A333J200AA capacitor has a case size of 3.2mm x 2.5mm (1210). It features a capacitance tolerance of ±5%. The C0G dielectric provides a temperature coefficient of capacitance (TCC) close to 0 ppm/°C, making it extremely stable over temperature. This makes it highly suitable for applications where capacitance stability is critical, such as precision timing circuits, high-frequency circuits, and sensitive analog circuits. The capacitor is also non-polarized, which simplifies circuit design and installation.