T55V227M6R3C0050 Allicdata Electronics
Allicdata Part #:

T55V227M6R3C0050-ND

Manufacturer Part#:

T55V227M6R3C0050

Price: $ 0.56
Product Category:

Capacitors

Manufacturer: Vishay Sprague
Short Description: T55 POLYMER MOLDED
More Detail: Tantalum Polymer Capacitor
DataSheet: T55V227M6R3C0050 datasheetT55V227M6R3C0050 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
800 +: $ 0.50463
Stock 1000Can Ship Immediately
$ 0.56
Specifications
Series: *
Part Status: Active
Lead Free Status / RoHS Status: --
Description

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Tantalum - Polymer Capacitors

Tantalum-polymer capacitors are a type of electrolytic capacitor that has been developed within the last decade. They are often used as high-end capacitors in many applications including high-power, high-speed and high-reliability applications.The T55V227M6R3C0050 capacitor is a capacitor of the tantalum-polymer type, with a standard voltage rating of 6.3V, and a standard temperature of 85°C. It is a lead-free, surface mount, radial device. It supports solder reflow temperatures of up to 260°C, and is available in various package sizes and lead pitches.Tantalum-polymer capacitors are a type of electrolytic capacitor that has been developed within the last decade. They combine tantalum (Ta) powder and a dielectric polymer, enhancing the device\'s energy density and power density compared to traditional electrolytic capacitors. The dielectric polymer helps to reduce the chances of thermal runaway, a phenomenon which is common with electrolytic capacitors. The presence of a conductive polymer in the dielectric ensures that the electrical performance of the device stays relatively consistent, even when exposed to extreme temperatures.Common applications of T55V227M6R3C0050 capacitors include automotive, medical, aerospace, and industrial power electronics. These capacitors are well-suited for applications that require high power, high frequency and high reliability. This type of capacitor can also be used in portable electronics, such as laptop and tablet computers, due to its low-profile design and reduced weight.The working principle of the T55V227M6R3C0050 capacitor is based on the phenomenon of capacitance. This type of capacitor is made up of two conducting plates which are separated by a dielectric material. As a voltage source is connected to the capacitor, electrons are attracted to one of the plates due to their opposite charges. The electric field generated by the opposite charges causes the electrons to move to the other plate, resulting in the flow of current. This is the principle of capacitance, which is present in all types of capacitors.The capacitance of the T55V227M6R3C0050 capacitor is determined by several factors, such as the distance between the two plates, the dielectric material and the area of each plate. The dielectric material determines the amount of resistance that is present between the two plates, while the area of each plate determines the amount of charge that can be stored. The larger the distance between the two plates, the higher the capacitance. In addition, different dielectric materials can be used to vary the capacitance of the device.In terms of its physical characteristics, T55V227M6R3C0050 capacitors have anoised finish and have a maximum height of 3.7mm. They are available in a range of sizes and lead pitches, with typical size options ranging between 1206 and 2220. They also feature long life cycle capabilities, offering an estimated 2000 hours at 120°C. This makes them ideal for long-term operation in high-temperature environments.Tantalum-polymer capacitors provide a number of advantages over other types of capacitors. They boast high capacitance values in a small package, allowing for more efficient designs. They also feature low ESR and low ESL, offering high levels of stability and reliability. Additionally, they are highly resistant to thermal shock and offer excellent long-term performance.All in all, the T55V227M6R3C0050 capacitor is a versatile device that is suitable for a range of applications, making it an ideal choice for high-power, high-frequency and high-reliability applications. Its small footprint, low ESR and low ESL, and excellent long-term performance make it an ideal choice for many applications.

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