| Allicdata Part #: | IM10RFCLEB2R2K12-ND |
| Manufacturer Part#: |
IM10RFCLEB2R2K12 |
| Price: | $ 6.42 |
| Product Category: | Inductors, Coils, Chokes |
| Manufacturer: | Vishay Dale |
| Short Description: | IM-10RFCL-12 2.2 10% EB E2 |
| More Detail: | 2.2µH Shielded Molded Inductor 3.5A 40 mOhm Max Ax... |
| DataSheet: | IM10RFCLEB2R2K12 Datasheet/PDF |
| Quantity: | 1000 |
| 50 +: | $ 5.77395 |
| 100 +: | $ 5.58148 |
| 500 +: | $ 5.11957 |
| Q @ Freq: | 130 @ 10MHz |
| Height - Seated (Max): | -- |
| Size / Dimension: | 0.310" Dia x 0.900" L (7.87mm x 22.86mm) |
| Supplier Device Package: | Axial |
| Package / Case: | Axial |
| Mounting Type: | Through Hole |
| Features: | -- |
| Inductance Frequency - Test: | 10MHz |
| Operating Temperature: | -55°C ~ 125°C |
| Ratings: | -- |
| Frequency - Self Resonant: | 92MHz |
| Series: | IM-10RFCL-12 |
| DC Resistance (DCR): | 40 mOhm Max |
| Shielding: | Shielded |
| Current - Saturation: | -- |
| Current Rating: | 3.5A |
| Tolerance: | ±10% |
| Inductance: | 2.2µH |
| Material - Core: | Iron |
| Type: | Molded |
| Part Status: | Active |
| Packaging: | -- |
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The IM10RFCLEB2R2K12 is a type of fixed inductor. This device is simply a coil of wire, which when a current is passed through creates a magnetic field. It can be used to filter, reduce, and block signals, or provide a coil for transmitting signals. This is an important component used for various applications where electrical or electronic circuits need to be completed.
Introduction
The IM10RFCLEB2R2K12 fixed inductor is a device that is used to manipulate various types of signals in an electrical system. It does this by producing a magnetic field when a current passes through it. The magnetic field created by the inductor can be used for a number of different applications, such as filtering, reducing, and blocking signals, or providing a coil for transmitting signals.
Application Field
The IM10RFCLEB2R2K12 is used in a wide variety of applications within the electrical and electronics industry. One application area is in power supplies, where inductors are used to control and regulate the amount of power supplied to a device. This is known as a buck regulator, and is used to limit the amount of current being supplied. As inductors are able to store energy, they are also used to store energy in capacitors. Furthermore, inductors are used in amplifiers to provide a path for energy transfer from one part of the circuit to another.
Inductors are also used in filters, and are used to block or pass certain frequencies, depending on the type of inductor used. They are also used to control the frequency of signals and can be used to reduce certain frequencies or change the phase of the signal. Inductors are also used in antennas, as they are able to transmit or receive signals.
Additionally, inductors are used in areas such as automotive electronics, telecommunications, test and measurement, medical electronics, and LED lighting.
Working Principle
The basic working principle of a fixed inductor is the attraction and repulsion of magnetic fields. When current is passed through the inductor, the current produces a magnetic field around the inductor. This field interacts with the fields from other sources, either repelling or attracting them. This is the basis of inductors, which is why they are used for various applications.
The magnitude of the voltage induced by an inductor depends on the rate of change of current through the inductor. This means that when the current increases, the inductor resistance will increase as well. The rate of change of current is determined by the time constant, which is a measure of the time it takes for the current to reach a certain level.
The voltages induced from the inductor can also be used to reduce or block certain frequencies. This is done by using an inductor in conjunction with a capacitor or other components. The combination is known as a filter. The inductor affects the higher frequencies, whereas the capacitor affects the lower frequencies.
Conclusion
The IM10RFCLEB2R2K12 fixed inductor is an important component in electronic systems, mainly used for controlling, filtering, and storing energy. It works by producing a magnetic field when a current passes through it. This magnetic field can be used to block or pass certain frequencies. Additionally, this device can be used to store energy in capacitors, increase current, and reduce amplitudes.
The specific data is subject to PDF, and the above content is for reference
| Part Number | Manufacturer | Price | Quantity | Description |
|---|
| IM10RFCMEZ4R7K13 | Vishay Dale | 2.51 $ | 1000 | IM-10RFCM-13 4.7 10% EZ E... |
| IM10BH502J | Vishay Dale | 0.0 $ | 1000 | IM-10 5K 5% B085mH Unshie... |
| IM10RFCMBH222J13 | Vishay Dale | 4.5 $ | 1000 | IM-10RFCM-13 2.2K 5% B082... |
| IM10RFCLRA101K12 | Vishay Dale | 3.21 $ | 1000 | IM-10RFCL-12 100 10% RB51... |
| IM10RFCMBH5R6K13 | Vishay Dale | 4.5 $ | 1000 | IM-10RFCM-13 5.6 10% B085... |
| IM10RFCMEB4R7K13 | Vishay Dale | 5.5 $ | 1000 | IM-10RFCM-13 4.7 10% EB E... |
| IM10RFCLBH180J12 | Vishay Dale | 8.75 $ | 1000 | IM-10RFCL-12 18 5% B0818H... |
| IM10RFCLSK220K12 | Vishay Dale | 3.21 $ | 1000 | IM-10RFCL-12 22 10% RJ322... |
| IM10RFCLEB1R8K12 | Vishay Dale | 6.42 $ | 1000 | IM-10RFCL-12 1.8 10% EB E... |
| IM10RFCLEB2R2K12 | Vishay Dale | 6.42 $ | 1000 | IM-10RFCL-12 2.2 10% EB E... |
| IM10RFCLBH1R5K12 | Vishay Dale | 6.59 $ | 1000 | IM-10RFCL-12 1.5 10% B081... |
| IM10RFCMRA4R7K13 | Vishay Dale | 2.57 $ | 1000 | IM-10RFCM-13 4.7 10% RB54... |
| IM10EB472J | Vishay Dale | 0.0 $ | 1000 | IM-10 4.7K 5% EB E24.7mH ... |
| IM10RFCMBH111J13 | Vishay Dale | 4.95 $ | 1000 | IM-10RFCM-13 110 5% B0811... |
| IM10RFCLEZ103J12 | Vishay Dale | 2.89 $ | 1000 | IM-10RFCL-12 10K 5% EZ E2... |
| IM10RFCMBH1R8K13 | Vishay Dale | 5.47 $ | 1000 | IM-10RFCM-13 1.8 10% B081... |
| IM10RFCLBH1R0J12 | Vishay Dale | 8.75 $ | 1000 | IM-10RFCL-12 1 5% B081H S... |
| IM10RFCMBH561J13 | Vishay Dale | 4.5 $ | 1000 | IM-10RFCM-13 560 5% B0856... |
| IM10RFCLBH222J12 | Vishay Dale | 6.29 $ | 1000 | IM-10RFCL-12 2.2K 5% B082... |
| IM10RFCLBH331J12 | Vishay Dale | 6.59 $ | 1000 | IM-10RFCL-12 330 5% B0833... |
| IM10RFCLBH820J12 | Vishay Dale | 6.59 $ | 1000 | IM-10RFCL-12 82 5% B0882H... |
| IM10RFCMEZ2R7K13 | Vishay Dale | 2.51 $ | 1000 | IM-10RFCM-13 2.7 10% EZ E... |
| IM10RFCLSK4R7K12 | Vishay Dale | 3.21 $ | 1000 | IM-10RFCL-12 4.7 10% RJ34... |
| IM10EZ912J | Vishay Dale | 0.0 $ | 1000 | IM-10 9.1K 5% EZ E29.1mH ... |
| IM10RFCMRA3R9K13 | Vishay Dale | 2.57 $ | 1000 | IM-10RFCM-13 3.9 10% RB53... |
| IM10RFCMBH270J13 | Vishay Dale | 4.5 $ | 1000 | IM-10RFCM-13 27 5% B0827H... |
| IM10RFCLBH221J12 | Vishay Dale | 6.59 $ | 1000 | IM-10RFCL-12 220 5% B0822... |
| IM10RFCLBH6R8K12 | Vishay Dale | 6.59 $ | 1000 | IM-10RFCL-12 6.8 10% B086... |
| IM10RA392J | Vishay Dale | 0.0 $ | 1000 | IM-10 3.9K 5% RB53.9mH Un... |
| IM10RFCMSJ100K13 | Vishay Dale | 2.17 $ | 1000 | IM-10RFCM-13 10 10% RJ210... |
| IM10RFCLBH390J12 | Vishay Dale | 6.59 $ | 1000 | IM-10RFCL-12 39 5% B0839H... |
| IM10BH103J | Vishay Dale | 0.0 $ | 1000 | IM-10 10K 5% B0810mH Unsh... |
| IM10RFCMRR100K13 | Vishay Dale | 1.98 $ | 1000 | IM-10RFCM-13 10 10% R1610... |
| IM10RFCMBH390K13 | Vishay Dale | 4.5 $ | 1000 | IM-10RFCM-13 39 10% B0839... |
| IM10RFCMBH2R2K13 | Vishay Dale | 5.47 $ | 1000 | IM-10RFCM-13 2.2 10% B082... |
| IM10RFCMBH471J13 | Vishay Dale | 4.5 $ | 1000 | IM-10RFCM-13 470 5% B0847... |
| IM10RFCLRA6R8K12 | Vishay Dale | 3.21 $ | 1000 | IM-10RFCL-12 6.8 10% RB56... |
| IM10RFCMBH151J13 | Vishay Dale | 4.5 $ | 1000 | IM-10RFCM-13 150 5% B0815... |
| IM10BH472J | Vishay Dale | 0.0 $ | 1000 | IM-10 4.7K 5% B084.7mH Un... |
| IM10RFCLEB6R8K12 | Vishay Dale | 6.42 $ | 1000 | IM-10RFCL-12 6.8 10% EB E... |
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...
IM10RFCLEB2R2K12 Datasheet/PDF