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BAT62-02LS E6327

Part No BAT62-02LS E6327
Manufacturer Infineon Technologies
Sample
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Reference Date Code 11+
Reference case TSSLP-2
Manufacturer Infineon Technologies
Manufacturer Homepage www.infineon.com
Win Source Part Number 729930-BAT62-02LS E6327
Popularity Low
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian BAT62-02LS E6327 CAD Model

Description

The BAT62-02LS E6327 is a Schottky Diode from Infineon Technologies. It is designed for high-speed switching and low forward voltage drop, making it suitable for various applications, including RF detection, mixing, and clamping. This diode is optimized for performance in high-frequency circuits. It's designed for low power loss and fast recovery time.

Applications:

  • RF Detection
  • RF Mixing
  • Clamping Circuits
  • Voltage Clamping
  • Reverse Polarity Protection

Features:

  • Low Forward Voltage Drop (VF): Reduces power loss and improves efficiency
  • Fast Switching Speed: Enables high-frequency operation
  • Low Capacitance: Minimizes signal distortion
  • Small Package Size: Allows for compact designs
  • RoHS Compliant: Environmentally friendly

Benefits:

  • Improved System Efficiency: Low VF contributes to higher efficiency
  • Reduced Power Dissipation: Minimizes heat generation
  • Enhanced Signal Integrity: Low capacitance reduces signal distortion
  • Smaller Footprint: Enables compact designs
  • High Reliability: Robust design ensures stable performance

Additional Details:

The BAT62-02LS E6327 typically features a very low forward voltage drop at low current levels. It is designed to operate over a wide temperature range, making it suitable for various environments. The small package size allows for easy integration into existing circuits. Consult the datasheet for detailed electrical characteristics and application circuit examples. The specific voltage and current ratings will depend on the operating temperature and frequency. Its low capacitance is particularly important for high-frequency applications where parasitic capacitance can significantly degrade performance.

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