The KEMET T510X337M010ZTE080Z111 is a tantalum surface mount capacitor, part of the T510 series, designed for demanding applications requiring high reliability and stable performance. This capacitor excels in environments with wide temperature variations and fluctuating frequencies.
Applications
- Power supply bypass and decoupling
- Filtering in sensitive electronic circuits
- Energy storage in DC-DC converters
- Timing circuits requiring high precision
- High-reliability applications in aerospace and defense
Features
- Surface mount design for efficient PCB assembly
- Tantalum capacitor with solid electrolyte for long-term stability
- High capacitance of 330µF
- Low Equivalent Series Resistance (ESR)
- Operating temperature range of -55°C to +125°C
- RoHS compliant
Benefits
- Effective noise filtering and voltage stabilization in critical circuits
- Enhanced circuit performance and reliability under harsh conditions
- Reduced overall system size and weight
- Extended operational lifespan
- Simplified integration into automated manufacturing processes
- Stable performance across a wide range of operating conditions
Additional Details
The T510X337M010ZTE080Z111 features a capacitance of 330µF (microfarads) with a tolerance of ±20%. It has a voltage rating of 10V (volts). The key characteristic of this part is its very low ESR (Equivalent Series Resistance) - 80 milliohms - contributing to its high ripple current capability and voltage stability. The solid tantalum construction provides excellent long-term stability and prevents electrolyte leakage, crucial for reliable operation in harsh environments. The part is compliant with RoHS directives, ensuring it is free from hazardous substances. This series of capacitors is suitable for demanding applications such as in automotive, aerospace, and telecommunications where reliable performance is a top priority. The T510 series are designed to meet the stringent requirements of high-performance electronic systems. Refer to the manufacturer's datasheet for more detailed electrical parameters.