RNE1C561MDNASQKX Allicdata Electronics

RNE1C561MDNASQKX Capacitors

Allicdata Part #:

493-16409-2-ND

Manufacturer Part#:

RNE1C561MDNASQKX

Price: $ 0.19
Product Category:

Capacitors

Manufacturer: Nichicon
Short Description: CAP ALUM POLY 560UF 20% 16V T/H
More Detail: 560µF 16V Aluminum Polymer Capacitor Radial, Can 1...
DataSheet: RNE1C561MDNASQKX datasheetRNE1C561MDNASQKX Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1000 +: $ 0.16596
2000 +: $ 0.15525
5000 +: $ 0.14722
10000 +: $ 0.14187
25000 +: $ 0.13868
Stock 1000Can Ship Immediately
$ 0.19
Specifications
Series: FPCAP, RNE
Packaging: Tape & Reel (TR) 
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Type: Polymer
Capacitance: 560µF
Tolerance: ±20%
Voltage - Rated: 16V
ESR (Equivalent Series Resistance): 14 mOhm
Lifetime @ Temp.: 5000 Hrs @ 105°C
Operating Temperature: -55°C ~ 105°C
Ratings: --
Applications: General Purpose
Ripple Current @ Low Frequency: 500mA @ 120Hz
Ripple Current @ High Frequency: 5A @ 100kHz
Lead Spacing: 0.138" (3.50mm)
Size / Dimension: 0.315" Dia (8.00mm)
Height - Seated (Max): 0.512" (13.00mm)
Surface Mount Land Size: --
Mounting Type: Through Hole
Package / Case: Radial, Can
Description

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Aluminum-polymer capacitors, also known as APC, are a type of capacitors consisting of a positive aluminum layer and a negative polymer layer. The layers are separated by a dielectric, usually a special material, such as a ceramic, that provides the appropriate insulation. The capacitance, which is the ability to store and release electrical energy, is due to the aluminum\'s layer coating. The aluminum layer is then layered with a conductive or semi-conductive polymer layer.The aluminum layer, which is sometimes referred to as the dielectric, forms a charge separation barrier, allowing for the storage of energy. The layer is usually prepared by deposition or etching of aluminum metal, and the layers can consist of various alloys. The thickness of the layer can range from 1 to 10 microns. The electrical resistance of the metal layer helps to regulate the current and the charge of the capacitor.The polymer layer serves as a negative charged plate and collects all of the negative ions on its surface, creating an electrical field. This charge separation can create a voltage across the capacitor, which is then stored in the capacitor. The thickness of the polymer layer can vary from 0.1 to 5 microns.RNE1C561MDNASQKX is an aluminum-polymer capacitor. It is rated at 3V and has a capacitance of 560 uF/V. It has a high energy density and is designed to handle power-supply loads. The capacitor is designed for a wide range of high-temperature applications, such as power supplies, audio amplifiers, and power switching.The RNE1C561MDNASQKX aluminum-polymer capacitors are designed to be used in applications where temperature extremes may occur, such as in an automotive environment. The capacitor can withstand temperatures up to 105 degrees Celsius (221 degrees Fahrenheit) before it starts to experience any performance degradation. This makes it suitable for use in high-reliability applications.The capacitor is also designed to stay within its rated capacitance over the lifetime of the device. The rated capacitance is the amount of charge stored in the capacitor at a given voltage and temperature. The aluminum-polymer capacitors can also withstand high ripple currents, which are used in many applications.The working principle of RNE1C561MDNASQKX aluminum-polymer capacitors is similar to that of any other capacitor. There is an electric field created between the two layers of materials which allows the storage of energy in the form of electrical energy. The charge collected on the layers of the aluminum-polymer capacitor is used to counteract the electric field, thus storing the energy. The capacitor is able to release the stored energy when necessary. The RNE1C561MDNASQKX aluminum-polymer capacitor is suitable for applications where temperature extremes occur. It is highly reliable and can withstand high ripple currents. It can also store and release electrical energy, which makes it suitable for use in power-supply loads.

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