ON Semiconductor BZX84C5V6LT1 Zener Diode
The BZX84C5V6LT1 from ON Semiconductor is a surface mount Zener diode that offers excellent stability and reliability in voltage regulation applications. This Zener diode features a nominal Zener voltage of 5.6 volts, making it suitable for a wide range of electronic circuits that require precise voltage clamping or reference voltage generation.
Constructed with ON Semiconductor's high-quality manufacturing processes, the BZX84C5V6LT1 is designed for optimal performance in a compact SOT-23 package. This small footprint allows for high-density mounting and is ideal for space-constrained applications. The device is also characterized by its low leakage current and tight voltage tolerance, ensuring consistent performance across various conditions.
With its 300mW power dissipation capability, the BZX84C5V6LT1 can withstand moderate power levels, making it a versatile component for power management solutions. It is commonly used in over-voltage and surge protection circuits, voltage regulation modules, and as a voltage reference in analog-to-digital converters and other precision circuits.
The device's robust design ensures that it can operate over a wide temperature range, typically from -55°C to +150°C, which makes it suitable for industrial and automotive applications where temperature extremes are common. Additionally, the BZX84C5V6LT1 is compliant with the RoHS directive, which means it meets the European Union's restrictions on the use of certain hazardous substances in electrical and electronic equipment.
ON Semiconductor's BZX84C5V6LT1 is a reliable choice for design engineers looking for a Zener diode with stable voltage regulation, low leakage, and a small package size. Its performance characteristics and durability make it a valuable component in the design of power supplies, consumer electronics, and communication devices, where consistent and precise voltage control is essential.
Whether it's for prototype development or mass production, the BZX84C5V6LT1 Zener diode is an excellent choice for ensuring the stability and reliability of your electronic designs.