URZ1A101MDD Allicdata Electronics
Allicdata Part #:

URZ1A101MDD-ND

Manufacturer Part#:

URZ1A101MDD

Price: $ 0.05
Product Category:

Capacitors

Manufacturer: Nichicon
Short Description: CAP ALUM 100UF 20% 10V RADIAL
More Detail: 100µF 10V Aluminum Electrolytic Capacitors Radial,...
DataSheet: URZ1A101MDD datasheetURZ1A101MDD Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
2000 +: $ 0.04448
Stock 1000Can Ship Immediately
$ 0.05
Specifications
Polarization: Polar
Package / Case: Radial, Can
Mounting Type: Through Hole
Surface Mount Land Size: --
Height - Seated (Max): 0.413" (10.50mm)
Size / Dimension: 0.197" Dia (5.00mm)
Lead Spacing: 0.079" (2.00mm)
Ripple Current @ High Frequency: 142.5mA @ 10kHz
Ripple Current @ Low Frequency: 95mA @ 120Hz
Applications: General Purpose
Ratings: --
Series: URZ
Operating Temperature: -55°C ~ 105°C
Lifetime @ Temp.: 1000 Hrs @ 105°C
ESR (Equivalent Series Resistance): --
Voltage - Rated: 10V
Tolerance: ±20%
Capacitance: 100µF
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Aluminum Electrolytic Capacitors

Aluminum Electrolytic Capacitors are electronic components that store energy in a component, similar to a battery, but is much more compact in size. These capacitors are typically used in a wide range of applications depending on their specific design, but are most commonly found in DC power supplies, DC-DC converters, audio circuits, and consumer electronics.

The URZ1A101MDD is a popular aluminum electrolytic capacitor that is commonly used in various electrical and electronic applications such as power supplies, DC-DC converters, and audio circuits. This capacitor has a maximum capacitance rating of 100 µF and is rated for a maximum voltage of 25V. It also has a maximum operating temperature of 85 ℃ and a minimum operating temperature of -40℃.

The URZ1A101MDD capacitor is designed to offer high capacitance and low ESR (equivalent series resistance) in a small package. This makes it ideal for use in high frequency circuits where a large amount of energy needs to be stored in a small package. The low ESR of the URZ1A101MDD also allows for a high ripple current rating, which is important for applications such as audio circuits and DC-DC converters where larger current variations are expected.

The working principle of an aluminum electrolytic capacitor is based on the principle of Faraday\'s law of electrolysis. This law states that when an electric current passes through a conducting medium, a portion of this current is stored in the medium while the rest is dissipated as heat. In the case of an aluminum electrolytic capacitor, the electric current passes through two separate layers of aluminum in the form of an electrolyte solution. This electrolyte solution acts as a dielectric and stores the charge as electric potential energy. This stored energy is discharged when the capacitor is connected to a circuit.

The maximum capacitance and voltage rating of the URZ1A101MDD aluminum electrolytic capacitor makes it suitable for a wide range of applications such as DC power supplies, DC-DC converters, audio circuits, and consumer electronics. Its high capacitance and low ESR enable it to store large amounts of energy in a small size, making it ideal for high frequency circuits. The low ESR of this capacitor also ensures that it can withstand large current variations without significant voltage drops.

In conclusion, the URZ1A101MDD aluminum electrolytic capacitor is a popular component utilized in a wide array of applications due to its exceptional performance. With its maximum capacitance rating of 100 µF, maximum voltage rating of 25V, and maximum operating temperature of 85 ℃, this capacitor is capable of providing reliable performance in a variety of electronic applications. Additionally, its working principle based on Faraday\'s law of electrolysis makes it highly efficient for storing and releasing energy in high frequency circuits.

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

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