The T520V107M006AE012 is a solid electrolytic capacitor belonging to Kemet's T520 series, renowned for its high-performance characteristics. Utilizing tantalum polymer technology, this capacitor is engineered for applications demanding a combination of high capacitance, low equivalent series resistance (ESR), and consistent operation across diverse temperature and frequency ranges. Its construction prioritizes reliability and efficient space utilization.
Applications
- Power supplies for electronic devices
- DC-DC converters in portable equipment
- Filtering circuits in high-speed digital systems
- Bulk capacitance in embedded controllers
- Applications requiring stable performance under ripple current conditions
Features
- Tantalum polymer cathode
- Low ESR for efficient performance
- Excellent capacitance stability over frequency
- Consistent performance across the operating temperature range
- RoHS compliant, meeting environmental standards
- High volumetric efficiency, maximizing space utilization
Benefits
- Enhanced circuit performance due to the low ESR, leading to efficient power delivery and minimal heat generation.
- Reduced PCB footprint through high volumetric efficiency.
- Increased reliability and extended service life stemming from its stable performance across various operating conditions.
- Compliance with environmental regulations promoting responsible manufacturing.
- Reduced voltage derating needs.
Additional Details
The T520V107M006AE012 offers a capacitance of 100µF (microfarads) with a tolerance of ±20%. It is rated for a voltage of 6.3V DC. The ESR is exceptionally low, typically measured in single-digit milliohms, which significantly enhances its performance in high-frequency applications. It operates reliably within a temperature range of -55°C to +105°C. The capacitor is packaged for surface mounting, facilitating automated assembly. The robust design of this series makes it suitable for demanding environments, including those with high humidity and vibration. This component is an excellent choice where minimal board space and superior performance are paramount.