Allicdata Part #: | IHB5BV2R7M-ND |
Manufacturer Part#: |
IHB5BV2R7M |
Price: | $ 10.93 |
Product Category: | Inductors, Coils, Chokes |
Manufacturer: | Vishay Dale |
Short Description: | IHB-5 2.7 20% B40 |
More Detail: | 2.7µH Unshielded Wirewound Inductor 36.2A 2 mOhm M... |
DataSheet: | IHB5BV2R7M Datasheet/PDF |
Quantity: | 1000 |
16 +: | $ 9.83430 |
112 +: | $ 9.34255 |
Q @ Freq: | -- |
Height - Seated (Max): | 1.450" (36.83mm) |
Size / Dimension: | 1.600" Dia (40.64mm) |
Supplier Device Package: | -- |
Package / Case: | Radial |
Mounting Type: | Through Hole |
Features: | -- |
Inductance Frequency - Test: | 1kHz |
Operating Temperature: | -55°C ~ 130°C |
Ratings: | -- |
Frequency - Self Resonant: | -- |
Series: | IHB |
DC Resistance (DCR): | 2 mOhm Max |
Shielding: | Unshielded |
Current - Saturation: | -- |
Current Rating: | 36.2A |
Tolerance: | ±20% |
Inductance: | 2.7µH |
Material - Core: | -- |
Type: | Wirewound |
Part Status: | Active |
Packaging: | -- |
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Fixed inductors are mainly used for filtering circuit, voltage regulation, phase shift network, oscillator and absorber circuit in radio, electronic equipment and other circuits. The IHB5BV2R7M inductor has a wide application field and stable working principle that is beneficial to its usage. By understanding its working principle we can better understand the real-world applications of these inductors.
Working Principle of IHB5BV2R7M
The IHB5BV2R7M consists of two main components: the core and the coil. The core is composed of silicon steel materials that retain their magnetic properties. It is surrounded by a coil of wire made of copper or aluminum. The materials used in the core and the coil perform specific functions in the inductor\'s operation. When an alternating current flows through the coil, it will create a magnetic field within the core. This field induces an electromotive force in the coil. As the current alternating frequency increases, the magnetic field strength increases proportionally.
When the alternating current is removed from the winding, the magnetic field will slowly collapse. This will produce a voltage in the winding in opposite direction called the back-EMF. This induced voltage will oppose the previously applied alternating voltage. This is the basic working principle of the IHB5BV2R7M.
Applications of the IHB5BV2R7M
The IHB5BV2R7M is a major component used in many electronic systems. It can be used for a number of different applications including voltage regulation, filtering, motor control, and radio frequency power conditioning. This type of inductor can also be used in power supplies or transformers.
In power supplies, the IHB5BV2R7M can be used as a filter or as a choke. As a filter, the IHB5BV2R7M will reduce the amount of noise in the input and output railways. As a choke, this type of inductor can also be used to increase the output voltage while maintaining high ripple current capability.
The IHB5BV2R7M can also be used for phase shift networks. As the name suggests, this circuit can shift the phase of the current in the power lines. This makes the IHB5BV2R7M ideal for controlling electric motors or for high-power pulsed applications. The IHB5BV2R7M can also be used in radio frequency power conditioning systems for providing smooth and steady output power.
The IHB5BV2R7M can also be used in oscillator circuits. These circuits require an inductor to keep the current oscillating in a predictable manner. This type of inductor also provides the necessary damping to prevent the circuit from becoming unstable.
Finally, the IHB5BV2R7M can also be used in absorber circuits. These circuits absorb electromagnetic interference from other circuits and ensure that any signals they produce are not disturbed.
Conclusion
The IHB5BV2R7M fixed inductor is a versatile component with a wide range of applications. It can be used in power supplies, phase shift networks, oscillators, absorber circuits, motor control, and even radio frequency power conditioning. By understanding its working principle, we can make the most of the IHB5BV2R7M inductor in our electronic designs.
The specific data is subject to PDF, and the above content is for reference
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IHB5BV180K | Vishay Dale | 11.75 $ | 1000 | IHB-5 18 10% B4018H Unshi... |
IHB5BV220K | Vishay Dale | 11.75 $ | 1000 | IHB-5 22 10% B4022H Unshi... |
IHB5BV270K | Vishay Dale | 11.75 $ | 1000 | IHB-5 27 10% B4027H Unshi... |
IHB5BV330K | Vishay Dale | 11.75 $ | 1000 | IHB-5 33 10% B4033H Unshi... |
IHB5BV390K | Vishay Dale | 11.75 $ | 1000 | IHB-5 39 10% B4039H Unshi... |
IHB5BV820K | Vishay Dale | 11.75 $ | 1000 | IHB-5 82 10% B4082H Unshi... |
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IHB5EB331K | Vishay Dale | 11.9 $ | 1000 | IHB-5 330 10% EB E2330H U... |
IHB5EB471K | Vishay Dale | 11.9 $ | 1000 | IHB-5 470 10% EB E2470H U... |
IHB5EB561K | Vishay Dale | 11.9 $ | 1000 | IHB-5 560 10% EB E2560H U... |
IHB5EB472K | Vishay Dale | 12.15 $ | 1000 | IHB-5 4.7K 10% EB E24.7mH... |
IHB5BV101K | Vishay Dale | 12.25 $ | 1000 | IHB-5 100 10% B40100H Uns... |
IHB5BV121K | Vishay Dale | 12.25 $ | 1000 | IHB-5 120 10% B40120H Uns... |
IHB5BV151K | Vishay Dale | 12.25 $ | 1000 | IHB-5 150 10% B40150H Uns... |
IHB5BV181K | Vishay Dale | 12.25 $ | 1000 | IHB-5 180 10% B40180H Uns... |
IHB5BV221K | Vishay Dale | 12.25 $ | 1000 | IHB-5 220 10% B40220H Uns... |
IHB5BV271K | Vishay Dale | 12.25 $ | 1000 | IHB-5 270 10% B40270H Uns... |
IHB5BV331K | Vishay Dale | 12.25 $ | 1000 | IHB-5 330 10% B40330H Uns... |
IHB5BV471K | Vishay Dale | 12.25 $ | 1000 | IHB-5 470 10% B40470H Uns... |
IHB5BV561K | Vishay Dale | 12.25 $ | 1000 | IHB-5 560 10% B40560H Uns... |
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IHB5BV152K | Vishay Dale | 12.54 $ | 1000 | IHB-5 1.5K 10% B401.5mH U... |
IHB5BV222K | Vishay Dale | 12.54 $ | 1000 | IHB-5 2.2K 10% B402.2mH U... |
IHB5BV272K | Vishay Dale | 12.54 $ | 1000 | IHB-5 2.7K 10% B402.7mH U... |
IHB5BV392K | Vishay Dale | 12.54 $ | 1000 | IHB-5 3.9K 10% B403.9mH U... |
IHB5BV472K | Vishay Dale | 12.54 $ | 1000 | IHB-5 4.7K 10% B404.7mH U... |
IHB5BV562K | Vishay Dale | 12.54 $ | 1000 | IHB-5 5.6K 10% B405.6mH U... |
IHB5BV682K | Vishay Dale | 12.54 $ | 1000 | IHB-5 6.8K 10% B406.8mH U... |
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