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T495D107M010ATE50

Part No T495D107M010ATE50
Manufacturer Kemet
Catalog Tantalum Capacitors
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Manufacturer Kemet
Category Capacitors
Family Tantalum Capacitors
Win Source Part Number 195577-T495D107M010ATE50
Popularity Medium
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian T495D107M010ATE50 CAD Model

Description

The T495D107M010ATE50 is a solid tantalum surface mount capacitor manufactured by KEMET. It is part of the T495 series, designed for applications where high reliability and stable performance are crucial. This capacitor is suitable for filtering, bypassing, and decoupling in various electronic circuits.

Applications

  • Power supply filtering
  • Bypass capacitors in digital circuits
  • Decoupling capacitors in analog circuits
  • General purpose applications in industrial equipment
  • Consumer electronics

Features

  • Surface mount design for automated assembly
  • Solid tantalum capacitor for stable performance
  • High volumetric efficiency
  • Epoxy molded case
  • Operating temperature range of -55°C to +125°C
  • Capacitance of 100µF
  • Voltage rating of 10V
  • Tolerance of ±20%
  • ESR of 50 mOhms

Benefits

  • Reliable performance over a wide temperature range ensures consistent circuit operation.
  • Small size and surface mount design allows for high-density circuit board layouts.
  • Stable capacitance value minimizes signal distortion and noise.
  • Long operational life reduces maintenance requirements.
  • High volumetric efficiency allows for miniaturization of electronic devices.
  • Low ESR reduces power dissipation and improves efficiency.

Additional Details

The T495D107M010ATE50 capacitor utilizes a tantalum pentoxide dielectric, which provides excellent stability and a low dissipation factor. The epoxy molded case offers robust protection against environmental factors. This capacitor is designed to meet the stringent requirements of modern electronic circuits, offering a reliable and long-lasting solution. The low ESR value makes it well-suited for power-sensitive applications.

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