T541X107K030CH6520 Allicdata Electronics
Allicdata Part #:

T541X107K030CH6520-ND

Manufacturer Part#:

T541X107K030CH6520

Price: $ 7.47
Product Category:

Capacitors

Manufacturer: KEMET
Short Description: CAP POLY COTS SMD 100F 30V 10%,
More Detail: Tantalum Polymer Capacitor
DataSheet: T541X107K030CH6520 datasheetT541X107K030CH6520 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Contains lead / RoHS non-compliant
Moisture Sensitivity Level (MSL): 3 (168 Hours)
500 +: $ 6.79250
Stock 1000Can Ship Immediately
$ 7.47
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Ratings: --
Description

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Tantalum capacitors, and specifically ones held in the T541X107K030CH6520 series, are a type of surface-mounted capacitor, which works to store electrical charge. Typically made up of two plates of an electrolytic substance, these capacitors are a more efficient and robust form of capacitor than their aluminium and ceramic-capacitor counterparts. As part of the T541X107K030CH6520 series, these capacitors are specifically designed for applications where capacitance needs to be high during the start-up of an electrical system, but then is required to reduce during its runtime. In order to provide this capability, Tantalum-Polymer capacitors utilise a Polymer-based dielectric. This material is electrically conductive, allowing the stored electrical charge to be released with great speed, resulting in a long-lasting and reliable capacitor with a high capacitance when compared with other similar capacitors.The use of the polymer material also prevents any shock or spike of the electrical charge to the surrounding electrical environment, while also providing improved capacitance stability over time when compared to conventional tantalum capacitors. These qualities make Tantalum-Polymer capacitors an ideal choice for applications where long-term stability and performance are important, such as in the aeronautics, military and automotive industries, amongst others. In terms of the specific structure of a Tantalum-Polymer capacitor from the T541X107K030CH6520 series, the two electrical plates are separated by a dielectric material. This is typically a polymer film that possesses a certain degree of conductiveness. The dielectric material is then itself encapsulated in a metal container, which holds the two electrical plates and the dielectric material together.The working principle of the Tantalum-Polymer capacitors of the T541X107K030CH6520 series is relatively straight forward. When an electric current enters the “anode” of the capacitor, the electric charge is stored in the dielectric material. This charge is then released or discharged when an electrical connection is made between the anode and the “cathode” of the capacitor. The electric charge within a Tantalum-Polymer capacitor is able to fluctuate rapidly due to the Polymer-based dielectric material that is utilised. This allows for strong and accurate control of the electric charge in the capacitor, allowing for its fast discharge when the polarity of the voltage is reversed.For applications where the Tantalum-Polymer capacitor of the T541X107K030CH6520 series is utilised, there are typically two stages of electrical current flow. During the start-up phase of the system, the capacitor is charged and able to provide a larger capacitance than when the system is in its regular operating mode. When the device has finished this start-up phase, the charge is then released and its capacitance is reduced, allowing for decreased energy usage. The T541X107K030CH6520 series of Tantalum-Polymer capacitors is a popular choice for applications requiring strong and rapid capacitance in a wide range of industries, including aerospace, military, communications and automotive. With their advanced qualities and capabilities, these types of capacitors boast improved performance and longevity when compared with their aluminium and ceramic counterparts.

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

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