T550B256M100BH0100 Allicdata Electronics
Allicdata Part #:

T550B256M100BH0100-ND

Manufacturer Part#:

T550B256M100BH0100

Price: $ 16.52
Product Category:

Capacitors

Manufacturer: KEMET
Short Description: CAP TANT POLY 25UF 100V AXIAL
More Detail: 25µF Hermetically Sealed Tantalum Polymer Capacito...
DataSheet: T550B256M100BH0100 datasheetT550B256M100BH0100 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Contains lead / RoHS non-compliant
40 +: $ 15.01280
Stock 1000Can Ship Immediately
$ 16.52
Specifications
Operating Temperature: -55°C ~ 105°C
Features: General Purpose
Ratings: --
Manufacturer Size Code: B
Lead Spacing: --
Height - Seated (Max): --
Size / Dimension: 0.279" Dia x 0.650" L (7.09mm x 16.51mm)
Package / Case: Axial
Mounting Type: Through Hole
Lifetime @ Temp.: 2000 Hrs @ 105°C
Series: T550
ESR (Equivalent Series Resistance): 190 mOhm
Type: Hermetically Sealed
Voltage - Rated: 100V
Tolerance: ±20%
Capacitance: 25µF
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Tray 
Description

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Tantalum - Polymer Capacitors are widely used in electronic applications. The T550B256M100BH0100 is one of these. It is a solid-state electrolytic capacitor designed for use in industrial, medical, and communication equipment. It is also widely used in automotive and a range of other applications.

This capacitor provides high reliability and operating temperature range of -40°C to +85°C. It includes a permalloy-steel layered element and tantalum oxide solid electrolyte. Its unique structure, wiring system and multi-layer construction prevent any electric current to be connected when the power supplies fail. The T550B256M100BH0100 is a Class 2 rated capacitor with a maximum operating voltage of 16V.

Electronic components such as the T550B256M100BH0100 are used in many devices. They can be used in dc-dc converters, timing circuits, sample-and-hold circuits, power amplifiers, and more. In particular, they are used to store energy and perform filtering in industrial power supplies.

The working principle of the T550B256M100BH0100 capacitor is based on the well-known electrical principles of capacitance, resistance and inductance. When AC current passes through a capacitor, the electric field strength increases due to the dielectric material in the capacitor. This electric field strength is dependent on the capacitance, which is determined by the amount of charge stored in the capacitor. When the capacitor reaches the maximum capacitance, the electric field strength is at a maximum. At this point, it is said to be in an ‘open state’, allowing electric current to pass through it.

The resistance of the capacitor is determined by the type of material used to construct it. In the case of the T550B256M100BH0100 capacitor, it is made from a combination of impregnated sleeve and permalloy-steel layered element, making it a very robust device. The resistance of the device is also determined by its size and construction, as a larger capacitor will generally have lower resistance than a smaller one.

Finally, an inductance level is also relevant when considering the working principle of the T550B256M100BH0100 capacitor. An inductor is an electric component that stores energy in the form of a magnetic field. The inductance of a capacitor is the measure of how much energy is stored in the magnetic field, which will affect the performance of the device. As with the resistance, an inductor’s capacitance is also determined by its size and construction.

In summary, the T550B256M100BH0100 is a solid-state electrolytic capacitor designed for high-reliability operation within a wide range of temperature ranges. It features a permalloy-steel layered element, along with a tantalum oxide solid electrolyte. It is used in a wide range of electronic applications, such as dc-dc converters, timing circuits, sample-and-hold circuits, and power amplifiers. The working principle of the device is based on electrical principles of capacitance, resistance, and inductance.

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

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