4.3V Zener diodes with various power ratings
Manufacturer: ['central-semiconductor', 'microsemi']
The 1N4623 series comprises a range of high-performance silicon rectifier diodes, specifically engineered for demanding applications requiring robust performance and reliability. Known for their efficiency in converting alternating current (AC) to direct current (DC), these diodes excel in power management and signal processing tasks, making them integral components in various electronic designs.
One of the standout features of the 1N4623 series is its impressive reverse voltage rating, capable of handling up to 40 volts, which allows for versatile use across a wide range of applications. The diodes exhibit a forward current rating of up to 3 amperes, ensuring they can manage significant loads without compromising performance. Additionally, the series incorporates a low forward voltage drop characteristic, which enhances energy efficiency and minimizes heat generation during operation. This feature is particularly crucial in power supply circuits where efficiency is paramount.
The design of the 1N4623 series reflects a commitment to compactness and thermal management. Housed in a DO-41 package, these diodes are designed for easy integration into both through-hole and surface-mount designs. The package is optimized for heat dissipation, contributing to the overall longevity and reliability of the device in high-temperature environments.
The 1N4623 series is ideally suited for a variety of applications across consumer electronics, automotive systems, and industrial equipment. Common use cases include rectification in power supply circuits, protection circuits for sensitive components, and as part of bridge rectifier configurations in AC to DC conversion. They are also employed in battery charging systems and DC motor control, where precision and reliability are critical.
Overall, the 1N4623 series diodes deliver a perfect blend of durability, efficiency, and versatility, making them an excellent choice for engineers and designers looking to enhance the performance of their electronic systems.
1N4623-1E3TR
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