Description
6.8V Zener Diode 500mW SOD-80 ( Pack of 10 )
The 6.8V Zener Diode 500mW SOD-80 is a high-performance electronic component designed for voltage regulation and protection applications. This Zener diode is commonly used in power supplies, voltage clamping circuits, and over-voltage protection systems, providing reliable voltage regulation at 6.8 volts. Encased in a compact SOD-80 package, it ensures durability, enhanced heat dissipation, and long-term performance in a wide range of electronics.
Features:
- Voltage Regulation: The 6.8V Zener Diode provides stable voltage regulation, ensuring that voltage does not exceed 6.8V, preventing damage to sensitive components.
- High Power Dissipation: With a maximum power dissipation of 500mW, the diode ensures stable operation even under higher load conditions.
- Fast Response Time: This Zener diode features a quick response to changes in voltage, making it ideal for use in sensitive and high-speed circuits.
- Wide Application Range: Perfect for power supply regulation, transient voltage suppression, surge protection, and voltage clamping circuits.
- Durable Construction: The diode’s robust construction ensures long-lasting reliability in various environmental conditions.
Specifications:
- Zener Voltage (Vz): 6.8V ±5% (at 25°C)
- Power Dissipation (Pd): 500mW
- Package Type: SOD-80 (Surface Mount)
- Operating Temperature Range: -55°C to +150°C
- Maximum Reverse Leakage Current (Ir): 0.25mA (at Vz)
- Max Zener Impedance (Zz): 10Ω (at Vz)
- Peak Pulse Power (PPP): 500W (for 1ms pulse)
- Junction Capacitance (Cj): 6pF (at V = 0V, f = 1MHz)
- Mounting Type: Surface Mount (SMT)
- RoHS Compliant: Yes
Applications:
- Voltage regulation and stabilization circuits
- Over-voltage protection in electronic devices
- Power supplies and battery-powered devices
- Surge suppression and transient voltage suppression (TVS)
- Signal clamping for high-speed circuits
This 6.8V Zener Diode is an ideal choice for applications requiring efficient voltage regulation and over-voltage protection in compact, high-performance devices. Its reliable performance, compact size, and high power dissipation make it a perfect solution for modern electronic designs.
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