T543B107K010ATS150 Allicdata Electronics
Allicdata Part #:

T543B107K010ATS150-ND

Manufacturer Part#:

T543B107K010ATS150

Price: $ 1.99
Product Category:

Capacitors

Manufacturer: KEMET
Short Description: CAP TANT POLY 100UF 10V 3528
More Detail: 100µF Molded Tantalum Polymer Capacitor 10V 1411 (...
DataSheet: T543B107K010ATS150 datasheetT543B107K010ATS150 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 3 (168 Hours)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
2000 +: $ 1.80423
Stock 1000Can Ship Immediately
$ 1.99
Specifications
Operating Temperature: -55°C ~ 105°C
Features: High Reliability
Ratings: COTS
Manufacturer Size Code: B
Lead Spacing: --
Height - Seated (Max): 0.079" (2.00mm)
Size / Dimension: 0.138" L x 0.110" W (3.50mm x 2.80mm)
Package / Case: 1411 (3528 Metric)
Mounting Type: Surface Mount
Lifetime @ Temp.: 2000 Hrs @ 105°C
Series: KO-CAP® T543
ESR (Equivalent Series Resistance): 150 mOhm @ 100kHz
Type: Molded
Voltage - Rated: 10V
Tolerance: ±10%
Capacitance: 100µF
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Tape & Reel (TR) 
Description

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Tantalum-polymer capacitors are a type of electro-chemical capacitor that combine the unique characteristics of both a tantalum anode and an electrolytic core into one small package. These capacitors are becoming increasingly popular due to their small size, low ESR, and high capacitance per unit volume. The T543B107K010ATS150 is a tantalum-polymer capacitor that has a maximum operating temperature of 150° C and provides excellent reliability.

The primary benefit of tantalum-polymer capacitors is their higher capacitance per unit volume than their tantalum counterparts. This makes them more suitable for use in applications where space is at a premium. Additionally, they have significantly lower ESR than traditional tantalum capacitors, which makes them ideal for applications that require high frequency operation and low power dissipation. The T543B107K010ATS150 is one such tantalum-polymer capacitor with a maximum operating temperature of 150° C.

In general, polymer capacitors have an anode made of tantalum and an electrolytic core made of a dielectric material. This combination of anodes and dielectric materials allows the capacitor to store more energy than with traditional capacitors. The T543B107K010ATS150 has a maximum operating temperature of 150° C, making it suitable for use in a variety of applications. The capacitor has a very low ESR and can deliver high frequency operation with low power dissipation.

Tantalum-polymer capacitors are used in a wide range of different applications, such as power management, supply regulation, motor control, and medical electronics. The T543B107K010ATS150, in particular, is ideal for use in high-temperature applications, such as those in automotive, aviation, and military applications. This capacitor has a high thermal stability, meaning that it can be used in volatile environments without compromising its performance.

The working principle of the T543B107K010ATS150 is similar to that of other capacitors. A current applied to the capacitor\'s terminals causes electrical charges to accumulate on the capacitor\'s plates and the electrolytic core material. These charges create an electric field between the plates, allowing the capacitor to store energy. The stored energy is released when the charge on the capacitor plates is reversed and the capacitor discharges.

In conclusion, the T543B107K010ATS150 is a tantalum-polymer capacitor that has a maximum operating temperature of 150° C and provides excellent reliability. This capacitor is ideal for use in high-temperature applications, such as those in automotive, aviation, and military applications. Its low ESR also makes it suitable for applications requiring high frequency operation and low power dissipation. The capacitor has a working principle similar to other capacitors, where currents applied to the terminals cause electrical charges to accumulate on the plates and the electrolytic core material, allowing the capacitor to store energy.

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

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