Allicdata Part #: | IMS05SH2R2K-ND |
Manufacturer Part#: |
IMS05SH2R2K |
Price: | $ 0.00 |
Product Category: | Inductors, Coils, Chokes |
Manufacturer: | Vishay Dale |
Short Description: | IMS-5 2.2 10% RJ1 |
More Detail: | 2.2µH Shielded Molded Inductor 650mA 190 mOhm Max ... |
DataSheet: | IMS05SH2R2K Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Q @ Freq: | 44 @ 7.9MHz |
Height - Seated (Max): | -- |
Size / Dimension: | 0.162" Dia x 0.410" L (4.11mm x 10.41mm) |
Supplier Device Package: | Axial |
Package / Case: | Axial |
Mounting Type: | Through Hole |
Features: | -- |
Inductance Frequency - Test: | 7.9MHz |
Operating Temperature: | -55°C ~ 105°C |
Ratings: | -- |
Frequency - Self Resonant: | 100MHz |
Series: | IMS-5 |
DC Resistance (DCR): | 190 mOhm Max |
Shielding: | Shielded |
Current - Saturation: | -- |
Current Rating: | 650mA |
Tolerance: | ±10% |
Inductance: | 2.2µH |
Material - Core: | Iron Powder |
Type: | Molded |
Part Status: | Obsolete |
Packaging: | -- |
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Fixed inductors are a type of inductor designed to provide a predetermined amount of inductance for a circuit. They are commonly used in motor controllers, power supplies, and other applications that require a stable and consistent level of inductance. The IMS05SH2R2K is a type of fixed inductor that is used widely in these applications. In this article, we will discuss the application fields and working principles of the IMS05SH2R2K.
The IMS05SH2R2K is a type of surface-mount inductor, commonly referred to as an SMD or SMT inductor. An SMD inductor is an electro-mechanical device that stores energy in the form of a magnetic field. It uses this stored energy to supply inductance to the circuit when current flows through it. This type of inductor is primarily used in power electronics, due to its high efficiency and low cost compared to other types of inductors.
The IMS05SH2R2K is a fixed inductor, meaning it is designed to provide a set amount of inductance, and cannot be adjusted. This makes it ideal for applications that require a consistent and reliable level of inductance. It has a rated inductance of 2.2 mH and a rated current of 1.5 A, making it suitable for many power electronics applications. The inductor also has a low profile design, which makes it well suited for use in high-density circuits.
The IMS05SH2R2K is typically used in applications that require a stable and consistent level of inductance, such as motor controllers, power supplies, and other high-frequency circuits. The inductor has a high inductance to size ratio, which makes it well suited for use in circuits where a large amount of inductance is needed in a small package. The inductor also features a high-temperature rating, allowing it to be used in applications that require high operating temperatures.
The working principle of the IMS05SH2R2K is based on the same principles of all inductors. When current passes through the inductor, it stores energy in the form of a magnetic field. This magnetic field then induces an opposing voltage in the circuit, which is proportional to the rate of change of current. This opposing voltage is what creates the inductance in a circuit.
The IMS05SH2R2K has a high inductance to size ratio, which makes it well suited for use in high-density circuits. It has a low profile design, which makes it well suited for use in small spaces. The inductor’s high-temperature rating also makes it suitable for use in circuits that require a high level of temperature tolerance. All of these features make it a popular choice for many applications that require a reliable and consistent level of inductance.
In conclusion, the IMS05SH2R2K is a type of fixed inductor, which is designed to provide a predetermined amount of inductance for a circuit. It is commonly used in motor controllers, power supplies, and other high-frequency circuits. The inductor features a high inductance to size ratio, low profile design, and high-temperature rating to make it suitable for use in many high-density and high-temperature applications. The working principle of the IMS05SH2R2K follows the same principles of all inductors, where a changing current induces a magnetic field, which then induces an opposing voltage for creating the inductance.
The specific data is subject to PDF, and the above content is for reference
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