The TEESVC1A107M12R is a tantalum electrolytic capacitor manufactured by NEC (now Renesas Electronics). This surface-mount device (SMD) is designed to provide stable and reliable capacitance in various electronic applications. Its compact size and robust characteristics make it suitable for environments where space is a constraint and consistent performance is crucial.
Applications:
- Power supply filtering: Smoothing the DC output to ensure clean and stable power.
- Bypass applications: Reducing unwanted noise and voltage variations in electronic circuits.
- Decoupling for ICs: Providing a local energy source for integrated circuits to maintain stable operation.
- Timing circuits: Used in applications that require precise and stable timing.
- DC-DC converters: Smoothing both input and output voltages in converter circuits.
Features:
- Surface Mount Technology (SMT): Designed for automated assembly, saving time and reducing errors.
- Tantalum Electrolytic: Offers a high capacitance-to-volume ratio.
- Stable Capacitance: Provides consistent performance under varying conditions.
- Low Equivalent Series Resistance (ESR): Enhances ripple current handling and minimizes power loss.
- RoHS Compliance: Meets regulations regarding the use of hazardous materials.
Benefits:
- Dependable Performance: Ensures consistent operation of electronic devices.
- Miniaturization: Enables smaller and more compact electronic designs.
- Extended Lifespan: Offers durability and long-term reliability.
- Efficient Noise Reduction: Effectively filters noise and voltage fluctuations.
- Simplified Assembly: Streamlines the manufacturing process.
Additional Details:
The '107' in the part number generally refers to the capacitance (10 x 10^6 pF or 100uF), while the '1A' indicates the voltage rating. Specifics like tolerance and operating temperature should be verified using the official datasheet from Renesas. The low ESR of tantalum capacitors like the TEESVC1A107M12R makes them suitable for applications with high ripple currents. This capacitor's stable performance over temperature makes it appropriate for use in a wide variety of environments.