Allicdata Part #: | NLW40-25-ND |
Manufacturer Part#: |
NLW40-25 |
Price: | $ 2.18 |
Product Category: | Capacitors |
Manufacturer: | Cornell Dubilier Electronics (CDE) |
Short Description: | CAP ALUM 40UF 25V AXIAL |
More Detail: | 40µF 25V Aluminum Electrolytic Capacitors Axial, C... |
DataSheet: | NLW40-25 Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
550 +: | $ 1.97505 |
Ripple Current @ Low Frequency: | 98mA @ 120Hz |
Ripple Current @ High Frequency: | 112.7mA @ 10kHz |
Lead Spacing: | -- |
Size / Dimension: | 0.340" Dia x 0.760" L (8.64mm x 19.30mm) |
Height - Seated (Max): | -- |
Surface Mount Land Size: | -- |
Mounting Type: | Through Hole |
Package / Case: | Axial, Can |
Series: | NLW |
Packaging: | Bulk |
Lead Free Status / RoHS Status: | -- |
Part Status: | Active |
Moisture Sensitivity Level (MSL): | -- |
Capacitance: | 40µF |
Tolerance: | -10%, +75% |
Voltage - Rated: | 25V |
ESR (Equivalent Series Resistance): | 6.7 Ohm @ 120Hz |
Lifetime @ Temp.: | 1000 Hrs @ 105°C |
Operating Temperature: | -40°C ~ 105°C |
Polarization: | Polar |
Ratings: | -- |
Applications: | General Purpose |
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Aluminum electrolytic capacitors are passive components that store electrical energy as static charge. The NLW40-25 aluminum electrolytic capacitors are designed for use in a wide range of applications where it is necessary to filter high frequencies or to provide RF shielding. Depending on the application, they can also be used as power supplies or to reduce noise, RF interference, or vibrations. In order to understand the working principle of the NLW40-25 aluminum electrolytic capacitors, it is important to know the key elements involved in their construction.
The heart of the capacitor is the dielectric material that separates two conductive metal elements. The two conductive plates are usually made of aluminum or a combination of aluminum and other metals. The dielectric material can be any of a variety of materials such as ceramic, mica, Mylar, or even air. The dielectric material is chosen to provide the maximum capacitance for the given application. The metal plates are then connected to the positive and negative leads of the capacitor.
When a voltage is applied, the dielectric material is formed into an insulating layer that separates the two metal plates of the capacitor. The voltage causes a buildup of electrons on one plate and a corresponding depletion of electrons on the other plate. This charge imbalance creates an electric field between the two plates, allowing the capacitor to store energy. The amount of capacitance is determined by the area of the metal plates, the type of dielectric material, and the distance between the plates. The greater the capacitance, the greater the charge that can be stored.
The NLW40-25 aluminum electrolytic capacitor is designed to be used in applications where high frequencies, vibrations, or RF interference must be filtered or attenuated. They offer excellent stability, low ESR (Equivalent Series Resistance), and high ripple current capacity. This makes them perfect for power supplies, audio, and filtering applications. The main advantage of aluminum electrolytic capacitors is their high capacitance in a small footprint. They are also temperature-resistant, making them ideal for high-temperature applications.
In summary, the NLW40-25 aluminum electrolytic capacitor is a type of passive component designed for numerous filtering applications. It has a dielectric material between two metal plates that is formed into an insulating layer when given a voltage. The capacitance is determined by the area of the metal plates, type of dielectric material, and spacing between the plates. The NLW40-25 aluminum electrolytic capacitors offer excellent stability, low ESR, and high ripple current capacity. In addition, they offer a high capacitance in a small footprint and are temperature-resistant, making them suitable for many high-temperature applications.
The specific data is subject to PDF, and the above content is for reference
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