The TLZ7V5C-GS08 is a Zener diode manufactured by Vishay. It's designed to provide voltage regulation and transient voltage suppression in a variety of electronic circuits. This diode offers a stable reverse voltage when a sufficient current flows through it, making it suitable for voltage clamping and overvoltage protection applications.
Applications:
- Voltage regulation
- Overvoltage protection
- Transient voltage suppression (TVS)
- Clipping circuits
- Level shifting
Features:
- Zener Diode
- Zener Voltage: 7.5V
- Low Reverse Leakage Current
- High Surge Current Capability
- Glass Passivated Junction
- AEC-Q101 Qualified (for automotive applications)
- Surface Mount Device (SMD)
- SOD-323 Package
Benefits:
- Provides stable voltage regulation in sensitive electronic circuits.
- Protects circuits from overvoltage transients and surges.
- Enhances system reliability by preventing damage from voltage spikes.
- Suitable for automotive applications due to AEC-Q101 qualification.
- Small size and SMD format for easy integration into circuit boards.
Additional Details:
The TLZ7V5C-GS08 Zener diode is characterized by its sharp breakdown voltage and low reverse leakage current. The glass passivated junction provides high reliability and stability. The diode is designed to withstand high surge currents, making it suitable for transient voltage suppression applications. The SOD-323 package offers a small footprint and is compatible with automated assembly processes. The AEC-Q101 qualification ensures that the diode meets the stringent requirements of automotive applications. When using the TLZ7V5C-GS08, it is important to consider the power dissipation rating and ensure that the diode is operated within its specified limits. The Zener voltage is specified at a particular test current, and the voltage will vary slightly with changes in current. Detailed electrical characteristics, such as dynamic impedance, reverse leakage current, and forward voltage, can be found in the Vishay datasheet for the TLZ7V5C-GS08. Proper mounting and soldering techniques should be used to ensure reliable and long-term performance of the diode.