Allicdata Part #: | T541X476M035BH8510-ND |
Manufacturer Part#: |
T541X476M035BH8510 |
Price: | $ 6.46 |
Product Category: | Capacitors |
Manufacturer: | KEMET |
Short Description: | CAP TAN POLYMER COTS SMD 47UF 20 |
More Detail: | 47µF Molded Tantalum Polymer Capacitor 35V 2917 (7... |
DataSheet: | T541X476M035BH8510 Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Contains lead / RoHS non-compliant |
Moisture Sensitivity Level (MSL): | 3 (168 Hours) |
500 +: | $ 5.87250 |
Series: | KO-CAP® T541 |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Capacitance: | 47µF |
Moisture Sensitivity Level (MSL): | -- |
Tolerance: | ±20% |
Voltage - Rated: | 35V |
Type: | Molded |
ESR (Equivalent Series Resistance): | 60 mOhm @ 100kHz |
Operating Temperature: | -55°C ~ 125°C |
Lifetime @ Temp.: | 2000 Hrs @ 125°C |
Mounting Type: | Surface Mount |
Package / Case: | 2917 (7343 Metric) |
Size / Dimension: | 0.287" L x 0.169" W (7.30mm x 4.30mm) |
Height - Seated (Max): | 0.169" (4.30mm) |
Lead Spacing: | -- |
Manufacturer Size Code: | X |
Ratings: | COTS |
Features: | High Reliability |
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Tantalum-Polymer Capacitors are commonly used for high voltage and large current applications, as well as interfacing between high-speed signal domains. They are a hybrid of two different capacitor technologies, utilizing an anode made of a tantalum foil, and an electrolyte composed of a polymer film. The model T541X476M035BH8510 is one such capacitor. It offers a significantly lower effective series resistance (ESR) than other tantalum capacitors, and provides greater capacitance than other polymer capacitor implementations. This makes it suitable for a wide range of applications, particularly those requiring higher current and higher frequency operation.
The T541X476M035BH8510 capacitor utilizes a tantalum foil anode and a polymer-based electrolyte. The tantalum foil makes it an ideal choice for high voltage applications such as switching power supplies. Its ability to withstand higher temperatures makes it suitable for pulse applications such as those found in motors, engines and alternators. Its lower ESR also makes it suitable for use in high frequency operations, such as communication and test systems.
The capacitor also features a low self-inductance which means it can react quickly to changing applied voltage across its plates. This makes it highly suitable for applications such as high-frequency bypass, power switching, and even as an ideal choice for decoupling signals from one domain to another. Its low ESR also provides excellent capacitance for applications such as filtering or stabilizing power supplies.
The T541X476M035BH8510 capacitor is designed for voltage applications up to 85 volts, with a maximum of 500 µF in capacitance. It also features a range of stable operating temperatures ranging from -55°C to 125°C. The working principle of the capacitor is based on the principles of electrostatics and capacitance. Essentially, an electric charge is stored between two conductive plates, separated by an insulating material, an electrolyte. The amount of charge stored is determined by the capacitance of the capacitor and is determined by the materials used to construct it.
The amount of electrical energy stored in the capacitor, the charge stored and the discharge rate, depends on a complex combination of its construction and the applied current. When DC current is applied, the charge accumulates very quickly on the plates, producing a voltage difference, or “potential” between them. The power dissipated by the capacitor is determined by the amount of charge stored, the size of the plates, and the resistance. As the current charges and discharges through the capacitor, this power is dissipated as heat and can be controlled by the size and shape of the capacitor.
The T541X476M035BH8510 capacitor is designed for a large variety of electrical applications, from switching power supplies to high-frequency applications. Its design features provide significant benefits over other capacitors, making it an ideal choice for a variety of applications where minimum size and maximum performance are desired. Its range of stable operating temperatures makes it suitable for a wide range of applications where higher temperatures may be encountered. It is highly suitable for high voltage and large current applications, as well as minimizing ESR for high frequency operations.
The specific data is subject to PDF, and the above content is for reference
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