ON Semiconductor SB130 - Schottky Barrier Rectifier Diode
The SB130 from ON Semiconductor is a high-performance Schottky Barrier Rectifier Diode designed to meet the needs of a wide range of electronic applications. This diode is known for its low forward voltage drop and high surge current capability, making it an ideal choice for power supply and reverse battery protection applications.
The SB130 is capable of conducting up to 1 Ampere of average rectified current with a peak repetitive reverse voltage of 30 Volts. It boasts a low forward voltage drop, typically only 0.385 Volts at 1A, which enhances system efficiency by reducing power loss in the circuit. This feature is particularly beneficial in applications where power conservation is critical.
The device is housed in a DO-41 plastic package, which offers a compact footprint for the design of space-constrained circuits while providing adequate thermal performance. Its robust design ensures reliable operation over a wide temperature range, from -65°C to 125°C, making it suitable for various challenging environments.
ON Semiconductor's SB130 is also characterized by its fast switching capability, which is essential for applications requiring high-frequency operation. Moreover, the diode's low reverse leakage current contributes to its effectiveness in low-power applications and extends battery life in portable devices.
This rectifier diode is commonly used in DC-DC converters, free-wheeling diodes, reverse battery protection circuits, and polarity protection applications. Its high reliability and efficiency make it an excellent choice for designers looking to optimize their power management solutions.
To ensure ease of integration into various designs, the SB130 is available in bulk and tape and reel packaging options. It is also RoHS compliant, adhering to environmental standards and reducing the use of hazardous substances in electronic components.
In summary, the ON Semiconductor SB130 Schottky Barrier Rectifier Diode is a versatile component that combines low forward voltage, high surge capacity, and fast switching speeds, making it a top choice for engineers and designers in the electronics industry.