Allicdata Part #: | P13458-ND |
Manufacturer Part#: |
EEU-EB1E470S |
Price: | $ 0.14 |
Product Category: | Capacitors |
Manufacturer: | Panasonic Electronic Components |
Short Description: | CAP ALUM 47UF 20% 25V RADIAL47µF 25V Aluminum Elec... |
More Detail: | N/A |
DataSheet: | EEU-EB1E470S Datasheet/PDF |
Quantity: | 18951 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | $ 0.12600 |
10 +: | $ 0.08685 |
100 +: | $ 0.04914 |
500 +: | $ 0.03470 |
1000 +: | $ 0.03036 |
2500 +: | $ 0.02892 |
5000 +: | $ 0.02675 |
Series: | EB |
Packaging: | Bulk |
Lead Free Status / RoHS Status: | -- |
RoHS Status: | -- |
Part Status: | Active |
Moisture Sensitivity Level (MSL): | -- |
Capacitance: | 47µF |
Tolerance: | ±20% |
Voltage - Rated: | 25V |
ESR (Equivalent Series Resistance): | -- |
Lifetime @ Temp.: | 5000 Hrs @ 105°C |
Operating Temperature: | -40°C ~ 105°C |
Polarization: | Polar |
Ratings: | -- |
Applications: | General Purpose |
Ripple Current @ Low Frequency: | 55mA @ 120Hz |
Ripple Current @ High Frequency: | 71.5mA @ 100kHz |
Lead Spacing: | 0.079" (2.00mm) |
Impedance: | -- |
Size / Dimension: | 0.197" Dia (5.00mm) |
Height - Seated (Max): | 0.433" (11.00mm) |
Surface Mount Land Size: | -- |
Mounting Type: | Through Hole |
Package / Case: | Radial, Can |
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Aluminum Electrolytic Capacitors
Aluminum electrolytic capacitors are a type of energy storage device that are capable of storing electrical charge, and are commonly used in electronic circuits. They are constructed of two conductive plates, separated by an electrolyte substance. In addition, they are made of an aluminum foil and an electrolyte that consists of an organic solvent, with an anode and cathode present. When an electrical charge is applied to the capacitor, it causes the electrolyte to be polarized, creating an electric field. This electric field generates a potential difference between the two plates, resulting in the accumulation of charge. The EEU-EB1E470S is an example of an aluminum electrolytic capacitor.
EEU-EB1E470S Application Field and Working Principle
The EEU-EB1E470S is an automotive grade aluminum electrolytic capacitor. It is capable of withstanding temperatures up to 125°C, and has a rated voltage of 16V. Due to its automotive grade construction, it is highly resistant to vibration, shock and other mechanical stress, as well as being resistant to electrolyte leakage. Furthermore, as with many electrolytic capacitors, it is capable of a low ESR and boasts a low series resistance.
The EEU-EB1E470S has a number of potential applications. It is commonly used in the automotive industry in DC to DC converters, inverters, and power supplies. In addition, it is used in motor drive circuits and motor control applications. It is also suitable for use in LED lighting systems, as well as general power supply needs.
The working principle behind the EEU-EB1E470S is the same as that of other aluminum electrolytic capacitors. It consists of two conducting plates, which are immersed in an electrolyte fluid. The plates are insulated from each other, and an electrical charge is applied to them. This causes the electrolyte to become polarized and generate an electric field.
When the charge is applied, the electric field created attracts electrons from both plates, resulting in a potential difference between them. As the plates become more charged, there is an accumulation of charge, and this stored energy is known as capacitance. The capacitance of this capacitor can be calculated using the equation: C = εA/d, where C denotes capacitance, ε denotes permittivity, A denotes area, and d denotes distance.
In summary, the EEU-EB1E470S is a type of aluminum electrolytic capacitor which is well-suited to use in automotive applications. It is capable of withstanding high temperatures and boasts low ESR and series resistance. The working principle behind this capacitor is the same as that behind other aluminum electrolytic capacitors; it consists of two plates which are charged when an electrical charge is applied, and this generates potential difference and capacitance.
The specific data is subject to PDF, and the above content is for reference
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