B43699B5106Q7 Allicdata Electronics
Allicdata Part #:

B43699B5106Q7-ND

Manufacturer Part#:

B43699B5106Q7

Price: $ 0.00
Product Category:

Capacitors

Manufacturer: EPCOS (TDK)
Short Description: CAP ALUM 10UF 450V AXIAL
More Detail: 10µF 450V Aluminum Electrolytic Capacitors Axial, ...
DataSheet: B43699B5106Q7 datasheetB43699B5106Q7 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Polarization: Polar
Package / Case: Axial, Can
Mounting Type: Through Hole
Surface Mount Land Size: --
Height - Seated (Max): --
Size / Dimension: 0.472" Dia x 1.181" L (12.00mm x 30.00mm)
Lead Spacing: --
Impedance: 4.6 Ohms
Ripple Current @ High Frequency: 490mA @ 10kHz
Applications: General Purpose
Ratings: --
Series: B43699
Operating Temperature: -40°C ~ 105°C
Lifetime @ Temp.: 6000 Hrs @ 105°C
ESR (Equivalent Series Resistance): 10.1 Ohm @ 100Hz
Voltage - Rated: 450V
Tolerance: -10%, +30%
Capacitance: 10µF
Moisture Sensitivity Level (MSL): --
Part Status: Obsolete
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Aluminum electrolytic capacitors, also known as “aluminum caps”, are a type of capacitor that uses the difference in electrical potential between two layers of aluminum foil to create a charge-storing layer of non-conductive material, usually an insulator like paper, between them. The most common type of aluminum electrolytic capacitor is a cylindrical arrangement of two or more cup-shaped “caps”, with one being the anode and the other the cathode, separated by non-conductive insulating material that contains an electrolyte. They are commonly used as filtering to suppress high frequency noise in various electrical and electronic circuits.

B43699B5106Q7 is an aluminum electrolytic capacitor with a long service life, low losses, ripple current capability and high ESR. It is mainly used in AC motors, UPS, solar cell, electric current drive systems, power plants and denso diodes. It is engineered with ultra-low impedance and high ripple current ratings for optimal performance and durability under harsh conditions. The B43699B5106Q7 features an advanced construction that uses a unique electrolyte that ensures a larger capacitance density than traditional aluminum electrolytic capacitors. Consequently, it can operate stably for long periods of time at higher temperatures.

The B43699B5106Q7 aluminum electrolytic capacitor works on the principle of coupling two pieces of metal with a non-conductive insulation between them. The metal pieces are the anode and cathode, separated by an insulating film and filled with an electrolyte that has ions that can get attracted to one of the metal layers. The electrostatic field developed due to the polarized ions easily penetrates through the insulating film and creates a capacitive circuit with the metal layers. The current flow in this electrostatic field is proportional to the applied voltage, which makes it a much better choice for efficient energy storage.

The design of the B43699B5106Q7 makes it highly reliable under harsh conditions. Its ultra-low impedance and high ripple current ratings ensure that the capacitor can store and release more energy than traditional aluminum electrolytic capacitors. Moreover, its advanced construction resists heat and contamination, which increases its longevity and ensures optimal performance. This makes it an ideal choice for mission-critical applications such as AC motors, UPS, solar cell, electric current drive systems, power plants and Denso diodes.

In conclusion, the B43699B5106Q7 is an aluminum electrolytic capacitor that offers superior performance, reliability and long lifespan even under harsh conditions. It is engineered with an advanced construction that uses a unique electrolyte to increase its capacitance density. It has ultra-low impedance and high ripple current ratings to ensure efficient energy storage, and its heat and contamination resistance also increase its durability and longevity in mission-critical applications.

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

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