LNR1H473MSE Allicdata Electronics
Allicdata Part #:

493-7324-ND

Manufacturer Part#:

LNR1H473MSE

Price: $ 14.45
Product Category:

Capacitors

Manufacturer: Nichicon
Short Description: CAP ALUM 47000UF 20% 50V SCREW
More Detail: 47000µF 50V Aluminum Electrolytic Capacitors Radia...
DataSheet: LNR1H473MSE datasheetLNR1H473MSE Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 13.13100
10 +: $ 12.44160
100 +: $ 10.02230
500 +: $ 8.98550
Stock 1000Can Ship Immediately
$ 14.45
Specifications
Polarization: Polar
Package / Case: Radial, Can - Screw Terminals
Mounting Type: Chassis Mount
Surface Mount Land Size: --
Height - Seated (Max): 3.661" (93.00mm)
Size / Dimension: 2.008" Dia (51.00mm)
Lead Spacing: 0.500" (12.70mm)
Ripple Current @ High Frequency: 9.89A @ 10kHz
Ripple Current @ Low Frequency: 8.6A @ 120Hz
Applications: General Purpose
Ratings: --
Series: LNR
Operating Temperature: -40°C ~ 85°C
Lifetime @ Temp.: 5000 Hrs @ 85°C
ESR (Equivalent Series Resistance): --
Voltage - Rated: 50V
Tolerance: ±20%
Capacitance: 47000µF
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Introduction

Aluminum electrolytic capacitors are a type of electrical component that stores and releases electrical energy, commonly used for filtering, decoupling, or buffet-load regulation in electronic circuits. Typically, they consist of an aluminum foil with an etched strip of a metalized oxide dielectric, rolled up and sealed in an aluminum or other metal can with an electrolytic liquid or paste as the dielectric liquid. LNR1H473MSE aluminum electrolytic capacitor is one such type, and this article will address its application field and working principle.

Applications

LNR1H473MSE aluminum electrolytic capacitors are used in a wide variety of electronic and electrical applications, but the most common use is in power systems such as those used in industrial, automotive, and renewable energy industries. Other applications include data acquisition, signal conditioning, electronic flow control, and other industrial applications. In these applications, capacitors are used to reduce voltage fluctuations and provide a stable power supply. The aluminum electrolytic capacitor can also be valuable in filtering and regulation of DC/AC power and in the prevention of surges and electromagnetic interference.

Working Principle

The working principle of LNR1H473MSE aluminum electrolytic capacitor is based on the principle of electrostatic energy storage. This component comprises of two electrodes that carry a charge, separated by a thin dielectric layer. The two electrodes are typically made of aluminum and contain a chemical liquid, called electrolyte, which serves as the dielectric layer between them. When a potential is applied to the electrodes, the electrolyte becomes polarized and creates a capacitance, which can store a specific amount of electrical charge between the two electrodes.When current flows through the electrolytic capacitor, an electric field is created across the plates, increasing the charge stored between them. This charge builds up until the field is strong enough to cause an ionic displacement within the dielectric layer. The charge then flows through the electrodes and into the load, thus discharging the capacitor. Once the current ceases, the electric field dissipates and the charge in the capacitor is reduced back to zero, completing the cycle of charge-discharge.

Conclusion

LNR1H473MSE aluminum electrolytic capacitors are widely used in various electronic and electrical applications. They are capable of providing stable power supplies, reducing voltage fluctuations, filtering and regulating DC/AC power, preventing surges and electromagnetic interference. Their working principle is based on the principle of electrostatic energy storage, in which two electrodes act as charge carriers separated by a dielectric layer. When a potential is applied to the plates, electrolyte polarization occurs and the capacitor is charged with electrical charge. When current flows through the capacitor, the charge is discharged into the load.

The specific data is subject to PDF, and the above content is for reference

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