Description
COST PER PIECE
The ALS31A473KE040 is an electrolytic capacitor with an exceptionally high capacitance of 47000 microfarads (µF), a voltage rating of 40 volts, and a tolerance of 20%. It features a screw terminal design and measures 51mm in size. This capacitor is designed for applications that require a very large capacitance with a moderate voltage tolerance, making it suitable for high-energy storage applications in power electronics.
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Capacitance (47000µF): The enormous capacitance of 47000µF allows for significant energy storage, making it ideal for applications that require a large reservoir of electrical charge, such as in power supply filtering and energy storage systems.
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Voltage Rating (40V): With a voltage rating of 40 volts, this capacitor is suitable for a range of medium voltage applications, ensuring safe and stable operation.
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Tolerance (20%): The 20% tolerance indicates the range within which the actual capacitance value may vary, providing flexibility in its performance.
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Physical Size (51mm): The size of 51mm, combined with the screw terminal design, allows for sturdy mounting and easy integration into large-scale electronic systems where space considerations are less critical.
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Model (ALS31A473KE040): The model number ALS31A473KE040 precisely identifies the capacitor's specifications, ensuring proper application and safety in its use.
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Applications: Commonly used in industrial power supplies, energy storage systems, and large-scale electronic applications where high capacitance and moderate voltage handling are required.
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Features: Known for its very high capacitance, moderate voltage rating, and screw terminal design, the ALS31A473KE040 is designed to offer reliable performance in applications requiring large-scale energy storage and filtering capabilities.
In summary, the ALS31A473KE040 electrolytic capacitor, with its 47000µF capacitance, 40V voltage rating, and 20% tolerance, is a key component for electronic designs that demand extremely high energy storage capabilities in medium-voltage environments.