Allicdata Part #: | T541X686M025CH8710-ND |
Manufacturer Part#: |
T541X686M025CH8710 |
Price: | $ 8.23 |
Product Category: | Capacitors |
Manufacturer: | KEMET |
Short Description: | CAP TAN POLYMER COTS SMD 68UF 20 |
More Detail: | 68µF Molded Tantalum Polymer Capacitor 25V 2917 (7... |
DataSheet: | T541X686M025CH8710 Datasheet/PDF |
Quantity: | 1000 |
Moisture Sensitivity Level (MSL): | 3 (168 Hours) |
Lead Free Status / RoHS Status: | Contains lead / RoHS non-compliant |
500 +: | $ 7.48420 |
Operating Temperature: | -55°C ~ 125°C |
Features: | High Reliability |
Ratings: | COTS |
Manufacturer Size Code: | X |
Lead Spacing: | -- |
Height - Seated (Max): | 0.169" (4.30mm) |
Size / Dimension: | 0.287" L x 0.169" W (7.30mm x 4.30mm) |
Package / Case: | 2917 (7343 Metric) |
Mounting Type: | Surface Mount |
Lifetime @ Temp.: | 2000 Hrs @ 125°C |
Series: | KO-CAP® T541 |
ESR (Equivalent Series Resistance): | 50 mOhm @ 100kHz |
Type: | Molded |
Voltage - Rated: | 25V |
Tolerance: | ±20% |
Moisture Sensitivity Level (MSL): | -- |
Capacitance: | 68µF |
Lead Free Status / RoHS Status: | -- |
Part Status: | Active |
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Tantalum-Polymer capacitors are increasingly used in high-end consumer electronics and mobile computing products, as well as in military and aerospace applications. The T541X686M025CH8710 capacitor is a tantalum-polymer capacitor designed specifically for high rated voltage and high performance applications. It features a wide range of capacitance values ranging from 0.7µF to 22µF, and is also available with a wide range of capacitance tolerances. This capacitor is designed with a double-sided metallized polymer cathode, which is surrounded by a conductive, non-porous, PTFE-based film insulation layer.
The application fields of the T541X686M025CH8710 capacitor are quite varied. The high-rated voltage and high reliability of the capacitor makes it ideally suited for aerospace, military, and medical applications. Its low profile design, low ESRs, and high energy density make it ideal for consumer electronics and mobile computing applications, such as cell phones, laptop computers, tablet computers, and MP3 players. Additionally, the wide range of capacitance tolerances make the T541X686M025CH8710 suitable for use in many automotive and industrial applications.
The working principle of the T541X686M025CH8710 capacitor is based on the physical principles of capacitance. The capacitor is made up of two conductor plates that are separated by a dielectric material. When an electrical charge is applied to the two plates, an electric field is created, which induces a charge on the opposite plates. This charge is then stored in the capacitor and can be discharged when needed. This process occurs very quickly in the T541X686M025CH8710 capacitor, allowing the capacitor to rapidly charge and discharge the stored energy.
The construction of the T541X686M025CH8710 capacitor consists of a conductive, non-porous PTFE-based film insulation layer which is sandwiched between two metallized polymer cathodes. These cathode plates are then connected to the capacitor’s external contacts, or leads. This construction allows the capacitor to store a large amount of charge in a very small package, which is one of the reasons why the T541X686M025CH8710 is so well suited for use in high-performance applications.
The T541X686M025CH8710 capacitor has a wide range of applications due to its high-rated voltage, high performance, and low profile construction. Its small size and high energy density make it ideal for use in aerospace, military, medical, and consumer electronics applications. Its wide range of capacitance tolerances also make it well suited for automobile and industrial applications. The capacitor’s double-sided metallized polymer cathode, in combination with its non-porous PTFE-based film insulation layer, ensures that the capacitor is able to store high amounts of charge in a very small package. Finally, the capacitor’s working principle is based on the physical principles of capacitance, allowing the capacitor to quickly charge and discharge stored energy.
The specific data is subject to PDF, and the above content is for reference
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