Allicdata Part #: | 2-2176086-3-ND |
Manufacturer Part#: |
2-2176086-3 |
Price: | $ 0.13 |
Product Category: | Inductors, Coils, Chokes |
Manufacturer: | TE Connectivity Passive Product |
Short Description: | FIXED IND 13NH 870MA 140 MOHM |
More Detail: | 13nH Unshielded Wirewound Inductor 870mA 140 mOhm ... |
DataSheet: | 2-2176086-3 Datasheet/PDF |
Quantity: | 1000 |
2000 +: | $ 0.11747 |
DC Resistance (DCR): | 140 mOhm Max |
Height - Seated (Max): | 0.024" (0.60mm) |
Size / Dimension: | 0.045" L x 0.028" W (1.15mm x 0.70mm) |
Supplier Device Package: | -- |
Package / Case: | Nonstandard |
Mounting Type: | Surface Mount |
Inductance Frequency - Test: | 250MHz |
Operating Temperature: | -40°C ~ 125°C |
Ratings: | -- |
Frequency - Self Resonant: | 4.2GHz |
Q @ Freq: | -- |
Series: | 3654 |
Shielding: | Unshielded |
Current - Saturation: | -- |
Current Rating: | 870mA |
Tolerance: | ±5% |
Inductance: | 13nH |
Material - Core: | -- |
Type: | Wirewound |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
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Fixed Inductors
Fixed inductors, represented by part number 2-2176086-3, are typically used in amplifier circuits, motor drives, and regulated power supplies. Utilizing an inductive property known as inductance, inductors serve to store energy within a current-carrying circuit and are available in a variety of shapes, sizes, and core materials. This article will provide information on the construction and working principle of 2-2176086-3 fixed inductors, and discuss their application field and working principles.
Construction
The 2-2176086-3 fixed inductor is a two-terminal component constructed in a non-magnetic encapsulation. It is composed of a single layer or multiple alternating layers of copper wire wound on a ferrite or ferromagnetic core. This core material allows the inductor to store and release energy as electrical current between the copper wires is passed through the component. The copper wire layers are insulated with a thin layer of plastics to prevent short circuits.
Working Principle
The working principle of 2-2176086-3 fixed inductors relies on the concept of inductance. Inductance is the ability of an inductor to store energy through a magnetic field created by electrical current. When an electrical current is passed through the component, the magnetic field created by the current induces an opposite current in the copper wire layers. This opposing current is known as an induced current and is the basis of the inductor’s working principle.
The opposing current generated by the inductor counteracts the current flowing through the component. This counter-current, or current flowing in the opposite direction, increases the voltage of the current supply and reduces the current delivered to the component. This decrease in current reduces the amount of energy used by the component, as well as the amount of heat generated, resulting in a more efficient electrical circuit.
Application Field
2-2176086-3 fixed inductors are typically used in amplifier circuits, motor drives, and regulated power supplies. They can be used to regulate the flow of current in the circuit by creating an opposing current that counteracts the current flowing through the component. This allows the component to operate more efficiently and consume less energy. Additionally, these inductors can also be used to filter electromagnetic interference caused by multiple components operating simultaneously in the circuit.
Conclusion
The 2-2176086-3 fixed inductors are versatile components used in various electrical applications. They are constructed in a non-magnetic encapsulation and made of copper wire wound on a ferromagnetic core. Utilizing the principle of inductance, these inductors store energy through a magnetic field and produce an opposing current that counteracts the current supplied to the component. As such, they are ideal for amplifier circuits, motor drives, and regulated power supplies, in addition to providing effective electromagnetic interference filtering.
The specific data is subject to PDF, and the above content is for reference
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