Allicdata Part #: | B41042A2567M-ND |
Manufacturer Part#: |
B41042A2567M |
Price: | $ 0.00 |
Product Category: | Capacitors |
Manufacturer: | EPCOS (TDK) |
Short Description: | CAP ALUM 560UF 20% 6.3V RADIAL |
More Detail: | 560µF 6.3V Aluminum Electrolytic Capacitors Radial... |
DataSheet: | B41042A2567M Datasheet/PDF |
Quantity: | 1000 |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
1 +: | 0.00000 |
Polarization: | Polar |
Package / Case: | Radial, Can |
Mounting Type: | Through Hole |
Surface Mount Land Size: | -- |
Height - Seated (Max): | 0.551" (14.00mm) |
Size / Dimension: | 0.394" Dia (10.00mm) |
Lead Spacing: | 0.197" (5.00mm) |
Impedance: | 350 mOhms |
Ripple Current @ Low Frequency: | 477.6mA @ 120Hz |
Applications: | General Purpose |
Ratings: | -- |
Series: | B41042 |
Operating Temperature: | -55°C ~ 105°C |
Lifetime @ Temp.: | 5000 Hrs @ 105°C |
ESR (Equivalent Series Resistance): | -- |
Voltage - Rated: | 6.3V |
Tolerance: | ±20% |
Capacitance: | 560µF |
Moisture Sensitivity Level (MSL): | -- |
Part Status: | Obsolete |
Lead Free Status / RoHS Status: | -- |
Packaging: | Bulk |
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Aluminum electrolytic capacitors offer a wide variety of advantages due to their high capacitance, low equivalent series resistance (ESR), and high temperature range. These characteristics make them ideal for a range of applications such as power supply filtering, low frequency decoupling, and noise reduction in higher frequency applications. The B41042A2567M is a specific type of aluminum electrolytic capacitor developed by EPCOS, which is designed for operation in variable temperature ranges.
The B41042A2567M features an operating temperature range of -55°C to +150°C, a capacitance value of 680µF at 25V, and a rated voltage of 25V. It is capable of withstanding high inverter operating frequencies due to its low ESR value, and its long life and low leakage give it a competitive advantage over other types of capacitors. Its small size also makes it suitable for applications where space is limited, such as on high-power circuits.
The B41042A2567M capacitor makes use of an electrolyte separator between the two electrodes to increase the surface area, and this improves its capacitance value. Its electrode construction consists of a printed aluminum film layer, a spun fiberglass separator, and a second printed aluminum film layer with an attached electrolyte. All of these layers act to keep the electrodes separate from each other. The electrodes are connected to the capacitor’s terminals via welded nickel straps.
The working principle of the B41042A2567M capacitor is relatively simple. An electric potential difference between the two electrodes causes electric charge to be stored in the capacitor, thus creating an electric field. This electric field is maintained by the negatively charged ions in the capacitor. When a current is applied to the electrodes, the electric field causes the electrons to move from one electrode to the other, thus generating a voltage drop across the capacitor.
The B41042A2567M has a wide range of applications, including as a high frequency filtering capacitor in switching power supplies, automatic voltage regulators, frequency converters, and inverters. It can also be used for low frequency decoupling, as well as pulse-by-pulse filtering in AC and DC signal conditioning circuits. Its low ESR and high temperature range make it suitable for use in high temperature environments.
The B41042A2567M capacitor offers a range of advantages for use in a wide variety of applications due to its characteristics of high capacitance, low ESR, and high temperature range. Its small size and long life make it a reliable choice for a variety of applications, and its low leakage current ensures the capacitor’s performance remains consistent over time. Its wide operating temperature range enables it to be used in variable temperature conditions, making it suitable for a range of applications.
The specific data is subject to PDF, and the above content is for reference
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