The TAJA226M006RNJ is a surface mount tantalum capacitor manufactured by AVX Corporation. It is part of the TAJ series, which is known for its small size, reliability, and excellent performance characteristics. These capacitors are designed for a variety of applications, primarily focusing on filtering, decoupling, and bypass functions in electronic circuits.
Applications
- Decoupling in digital circuits
- Filtering in power supplies
- Bypass capacitors in signal processing circuits
- DC blocking
- General-purpose applications in electronic devices
Features
- Surface Mount Device (SMD): Facilitates automated assembly for high-volume production.
- Small Size: Enables high-density board designs and miniaturization of electronic devices.
- Stable Capacitance: Maintains capacitance within specified tolerances over a wide range of temperatures.
- Low Equivalent Series Resistance (ESR): Reduces power loss and improves ripple current handling capabilities.
- High Reliability: Tantalum construction provides long-term performance and stability.
Benefits
- Reduced Board Space: Allows for smaller and more compact electronic designs.
- Improved Circuit Performance: Low ESR enhances filtering and decoupling effectiveness, leading to better signal integrity.
- Long-Term Stability: Tantalum material ensures a stable capacitance value over extended periods.
- Automated Assembly: Surface-mount design simplifies manufacturing processes and reduces assembly costs.
- Reduced Noise: Effective decoupling minimizes noise and interference in sensitive electronic circuits.
Additional Details
The TAJA226M006RNJ has a capacitance of 22µF and a voltage rating of 6.3V. It features a capacitance tolerance of ±20%. Its operating temperature range typically spans from -55°C to +125°C. This capacitor's low ESR makes it well-suited for applications where efficient filtering and decoupling are critical. Consult the AVX datasheet for detailed specifications, including ESR values at various frequencies, ripple current ratings, precise physical dimensions, and recommended soldering conditions.