| Allicdata Part #: | IRF03EB561K-ND |
| Manufacturer Part#: |
IRF03EB561K |
| Price: | $ 0.00 |
| Product Category: | Inductors, Coils, Chokes |
| Manufacturer: | Vishay Dale |
| Short Description: | IRF-3 560 10% EB E2 |
| More Detail: | 560µH Unshielded Inductor 120mA 8.5 Ohm Max Axial |
| DataSheet: | IRF03EB561K Datasheet/PDF |
| Quantity: | 1000 |
| 1 +: | 0.00000 |
| Q @ Freq: | 65 @ 790kHz |
| Height - Seated (Max): | -- |
| Size / Dimension: | 0.170" Dia x 0.385" L (4.32mm x 9.78mm) |
| Supplier Device Package: | Axial |
| Package / Case: | Axial |
| Mounting Type: | Through Hole |
| Features: | -- |
| Inductance Frequency - Test: | 790kHz |
| Operating Temperature: | -55°C ~ 105°C |
| Ratings: | -- |
| Frequency - Self Resonant: | 2.1MHz |
| Series: | IRF |
| DC Resistance (DCR): | 8.5 Ohm Max |
| Shielding: | Unshielded |
| Current - Saturation: | -- |
| Current Rating: | 120mA |
| Tolerance: | ±10% |
| Inductance: | 560µH |
| Material - Core: | Ferrite |
| Type: | -- |
| Part Status: | Obsolete |
| Packaging: | -- |
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Inductors are electronic components that can store energy in the form of magnetic field, and can be divided into two types - fixed inductors and adjustable inductors. There is a wide variety of inductors available to both consumer and commercial application. Among them, the IRF03EB561K is a fixed inductor, dedicated to a specific purpose and designed to work in a precise fashion. This article will discuss the application field and working principle of this inductor.
The IRF03EB561K inductor is designed primarily for power supply applications. It is a low-pass filter inductor, frequently used to suppress noise and reduce high frequency interference in power conversion systems. It has a very low profile in order to fit into tight space constraints, and it is engineered to withstand power conversion cycles of up to 10Mhz. It is also designed to be able to work within a wide temperature range, and is able to maintain its performance from -40 to +105°C.
The IRF03EB561K inductor consists of a core material, usually made of metal, and two sets of windings - a primary winding and a secondary winding. The primary winding is connected to the input of the power source, while the secondary winding is connected to the output. The current flowing through the primary winding generates a magnetic field, which is then transferred through the core material to the secondary winding, where it is converted into an electrical signal. This process is known as the magnetic induction principle, and it is what makes the inductor work.
The unique design of the IRF03EB561K inductor allows for a high efficiency performance, as well as high power density. Its construction ensures that the power conversion cycle is well-protected against transient voltage, as well as from short circuits and RF noises. It also has many other features, such as high current saturation and low EMI interference. All these features make it an ideal choice for power conversion applications.
The IRF03EB561K inductor is also widely used in many other applications, such as home theater systems, high-end audio equipment, automotive electronics, DC-DC converters, medical equipment, telecommunications systems, and energy management systems. It is available in various sizes, and it can be easily customized to meet the requirements of different applications.
In conclusion, the IRF03EB561K is a fixed inductor designed for power supply applications. It is an ideal choice for power conversion applications due to its high efficiency performance, high power density, and various protection features. It is also widely used in many other applications, such as home theater systems, high-end audio equipment, automotive electronics, DC-DC converters, medical equipment, telecommunications systems, and energy management systems.
The specific data is subject to PDF, and the above content is for reference
| Part Number | Manufacturer | Price | Quantity | Description |
|---|
| IRF03BH331K | Vishay Dale | 0.0 $ | 1000 | IRF-3 330 10% B08330H Uns... |
| IRF03SH560K | Vishay Dale | 0.0 $ | 1000 | IRF-3 56 10% RJ156H Unshi... |
| IRF01EB100K | Vishay Dale | 0.0 $ | 1000 | IRF-1 10 10% EB E210H Uns... |
| IRF01ER220K | Vishay Dale | 0.0 $ | 1000 | IRF-1 22 10% ER E222H Uns... |
| IRF01ST180K | Vishay Dale | 0.0 $ | 1000 | IRF-1 18 10% RJ418H Unshi... |
| IRF03ER2R2K | Vishay Dale | 0.0 $ | 1000 | IRF-3 2.2 10% ER E22.2H U... |
| IRF03ST560K | Vishay Dale | 0.0 $ | 1000 | IRF-3 56 10% RJ456H Unshi... |
| IRF01BH1R2K | Vishay Dale | 0.0 $ | 1000 | IRF-1 1.2 10% B081.2H Uns... |
| IRF01ERR47M | Vishay Dale | 0.0 $ | 1000 | IRF-1 .47 20% ER E2470nH ... |
| IRF01RU100J | Vishay Dale | 0.0 $ | 1000 | IRF-1 10 5% R3610H Unshie... |
| IRF01SH680K | Vishay Dale | 0.0 $ | 1000 | IRF-1 68 10% RJ168H Unshi... |
| IRF03BH1R0J | Vishay Dale | 0.0 $ | 1000 | IRF-3 1 5% B081H Unshield... |
| IRF03BH101J | Vishay Dale | 0.0 $ | 1000 | IRF-3 100 5% B08100H Unsh... |
| IRF03SH6R8K | Vishay Dale | 0.0 $ | 1000 | IRF-3 6.8 10% RJ16.8H Uns... |
| IRF01BH102J | Vishay Dale | 0.0 $ | 1000 | IRF-1 1K 5% B081mH Unshie... |
| IRF01BH120K | Vishay Dale | 0.0 $ | 1000 | IRF-1 12 10% B0812H Unshi... |
| IRF01ST8R2K | Vishay Dale | 0.0 $ | 1000 | IRF-1 8.2 10% RJ48.2H Uns... |
| IRF03ERR47M | Vishay Dale | 0.0 $ | 1000 | IRF-3 .47 20% ER E2470nH ... |
| IRF03STR22M | Vishay Dale | 0.0 $ | 1000 | IRF-3 .22 20% RJ4220nH Un... |
| IRF01BH151J | Vishay Dale | 0.0 $ | 1000 | IRF-1 150 5% B08150H Unsh... |
| IRF03RU1R2K | Vishay Dale | 0.0 $ | 1000 | IRF-3 1.2 10% R361.2H Uns... |
| IRF03ST101K | Vishay Dale | 0.0 $ | 1000 | IRF-3 100 10% RJ4100H Uns... |
| IRF03ST561K | Vishay Dale | 0.0 $ | 1000 | IRF-3 560 10% RJ4560H Uns... |
| IRF01EB102K | Vishay Dale | 0.0 $ | 1000 | IRF-1 1K 10% EB E21mH Uns... |
| IRF01RU3R3K | Vishay Dale | 0.0 $ | 1000 | IRF-1 3.3 10% R363.3H Uns... |
| IRF01SH4R7K | Vishay Dale | 0.0 $ | 1000 | IRF-1 4.7 10% RJ14.7H Uns... |
| IRF03ER102K | Vishay Dale | 0.0 $ | 1000 | IRF-3 1K 10% ER E21mH Uns... |
| IRF03RU102K | Vishay Dale | 0.0 $ | 1000 | IRF-3 1K 10% R361mH Unshi... |
| IRF03SH1R0K | Vishay Dale | 0.0 $ | 1000 | IRF-3 1 10% RJ11H Unshiel... |
| IRF01RU101J | Vishay Dale | 0.0 $ | 1000 | IRF-1 100 5% R36100H Unsh... |
| IRF03BH680K | Vishay Dale | 0.0 $ | 1000 | IRF-3 68 10% B0868H Unshi... |
| IRF03ER151K | Vishay Dale | 0.0 $ | 1000 | IRF-3 150 10% ER E2150H U... |
| IRF03ST6R8K | Vishay Dale | 0.0 $ | 1000 | IRF-3 6.8 10% RJ46.8H Uns... |
| IRF01SH680J | Vishay Dale | 0.0 $ | 1000 | IRF-1 68 5% RJ168H Unshie... |
| IRF01ST3R9K | Vishay Dale | 0.0 $ | 1000 | IRF-1 3.9 10% RJ43.9H Uns... |
| IRF03RU471K | Vishay Dale | 0.0 $ | 1000 | IRF-3 470 10% R36470H Uns... |
| IRF03ST100K | Vishay Dale | 0.0 $ | 1000 | IRF-3 10 10% RJ410H Unshi... |
| IRF01BH3R3K | Vishay Dale | 0.0 $ | 1000 | IRF-1 3.3 10% B083.3H Uns... |
| IRF01SH471K | Vishay Dale | 0.0 $ | 1000 | IRF-1 470 10% RJ1470H Uns... |
| IRF01BH181J | Vishay Dale | 0.0 $ | 1000 | IRF-1 180 5% B08180H Unsh... |
FIXED IND 10UH 590MA 350 MOHM10H Unshiel...
FIXED IND 22NH 1.4A 70 MOHM SMD22nH Unsh...
FIXED IND 13NH 600MA SMD13nH Unshielded ...
FIXED IND 680UH 210MA 4.6 OHM680H Unshie...
FIXED IND 470UH 1.3A 280 MOHM TH470H Uns...
FIXED IND 8.2UH 165MA 2.2 OHM TH8.2H Uns...
IRF03EB561K Datasheet/PDF