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RD13UJ-T1 /N2

Part No RD13UJ-T1 /N2
Manufacturer NEC
Catalog HOT - SALES and EOL Components (Q - R)
Sample
Rohs State Need to verify
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Manufacturer NEC
Win Source Part Number 291667-RD13UJ-T1 /N2
Popularity Low
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian RD13UJ-T1 /N2 CAD Model

Description

The RD13UJ-T1 /N2 is a Zener diode manufactured by NEC. This diode is designed to provide a stable reference voltage, making it suitable for voltage regulation and overvoltage protection applications. Its compact size and reliable performance make it a popular choice for various electronic circuits.

Applications

  • Voltage regulation circuits
  • Overvoltage protection
  • Clipping circuits
  • Level shifting
  • Reference voltage generation

Features

  • Stable Zener voltage: Provides a precise and consistent voltage reference.
  • Low reverse leakage current: Minimizes power dissipation and improves efficiency.
  • Compact size: Allows for high-density circuit designs.
  • High surge current capability: Protects against transient voltage spikes.
  • RoHS compliant: Environmentally friendly.

Benefits

  • Precise voltage regulation: Ensures stable operation of electronic circuits.
  • Reliable overvoltage protection: Prevents damage to sensitive components.
  • Improved circuit efficiency: Reduces power consumption and heat generation.
  • Simplified circuit design: Enables easy integration into existing circuits.
  • Long-term stability: Maintains consistent performance over time.

Additional Details

The RD13UJ-T1 /N2 Zener diode typically has a Zener voltage around 13V. The exact voltage and other electrical characteristics can be found in the manufacturer's datasheet. It is commonly available in a small surface-mount package. Always refer to the official datasheet for detailed specifications, including voltage tolerance, temperature coefficient, and maximum power dissipation.

Proper handling and soldering techniques should be used when working with this component to ensure reliable performance. Avoid exceeding the maximum ratings to prevent damage to the diode.

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