F951E475MPAAQ2 Allicdata Electronics

F951E475MPAAQ2 Capacitors

Allicdata Part #:

478-8508-2-ND

Manufacturer Part#:

F951E475MPAAQ2

Price: $ 0.00
Product Category:

Capacitors

Manufacturer: AVX Corporation
Short Description: CAP TANT 4.7UF 25V 20% 0805
More Detail: 4.7µF Conformal Coated Tantalum Capacitors 25V 080...
DataSheet: F951E475MPAAQ2 datasheetF951E475MPAAQ2 Datasheet/PDF
Quantity: 21000
Moisture Sensitivity Level (MSL): 3 (168 Hours)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Stock 21000Can Ship Immediately
Specifications
Operating Temperature: -55°C ~ 125°C
Failure Rate: --
Features: General Purpose
Manufacturer Size Code: P
Lead Spacing: --
Height - Seated (Max): 0.047" (1.20mm)
Size / Dimension: 0.087" L x 0.049" W (2.20mm x 1.25mm)
Package / Case: 0805 (2012 Metric)
Mounting Type: Surface Mount
Lifetime @ Temp.: --
Series: F95, Frameless™
ESR (Equivalent Series Resistance): 8 Ohm
Type: Conformal Coated
Voltage - Rated: 25V
Tolerance: ±20%
Capacitance: 4.7µF
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Tape & Reel (TR) 
Description

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Tantalum Capacitors

Tantalum capacitors are capacitors that are used in the electronics industry. They are constructed of two different forms of tantalum powder, and the two forms of powder are separated by an electrolytic solution, usually of manganese dioxide. This creates an electrical charge, which forms a capacitor. The capacitors are used in circuit design to provide capacitance and power storage.

The F951E475MPAAQ2 is one such tantalum capacitor. It uses a small amount of material layered together to create a greater capacitance. This type of capacitor is commonly used for decoupling in high-frequency circuit designs. It is also used for noise filtering and signal stabilization, as well as for voltage smoothing. The F951E475MPAAQ2 is also known for its low profile design, which provides a sleek and attractive solution for tight spaces and for improved performance in small products.

The F951E475MPAAQ2 uses a tantalum-polymer dielectric material, meaning it has a higher dielectric breakdown voltage than many standard capacitors, typically between 9 and 10 VDC. This allows it to handle more voltage and current, while still providing optimal performance. It also has higher operational life when compared to other standard capacitors, making it a more reliable part.

The F951E475MPAAQ2’s primary application field is as a decoupling capacitor. Its purpose is to store energy, allowing it to filter out any unwanted signals that come across the power grid, thus ensuring a clean signal to the receiving end. It performs this by storing energy for a short time when the signal appears on the grid, and then releasing it in a controlled manner. This feature is especially important to high-frequency circuit designs, as it helps prevent signal distortion from occurring in the receiving end.

The working principle of the F951E475MPAAQ2 is simple. When the voltage across it increases, so does its capacitance, allowing the circuit to store energy. This in turn allows the capacitor to filter out any unwanted signals that come across the power grid, thus ensuring a clean signal to the receiving end. The capacitance of this particular type of capacitor is relatively stable, meaning it will not change too much during operating conditions, providing a consistent filtering ability. Additionally, the F951E475MPAAQ2 offers higher operational life, ensuring it will provide reliable performance for long periods of time.

In conclusion, the F951E475MPAAQ2 is a tantalum capacitor which is commonly used for decoupling in high-frequency circuit designs, as well as for noise filtering and signal stabilization, voltage smoothing, and other applications. It is constructed with a tantalum–polymer dielectric material, giving it a higher dielectric breakdown voltage and higher operating life than many standard capacitors. When the voltage across it increases, so does its capacitance, allowing it to store energy and filter out any unwanted signals that come across the power grid. This ensures a clean signal to the receiving end, while still allowing high frequencies to provide their full effect.

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

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