Allicdata Part #: | IMS5SWDRU101K65-ND |
Manufacturer Part#: |
IMS5SWDRU101K65 |
Price: | $ 1.67 |
Product Category: | Inductors, Coils, Chokes |
Manufacturer: | Vishay Dale |
Short Description: | IMS-5SWD-65 100 10% R36 |
More Detail: | 100µH Shielded Molded Inductor 325mA 3.12 Ohm Max ... |
DataSheet: | IMS5SWDRU101K65 Datasheet/PDF |
Quantity: | 1000 |
2500 +: | $ 1.51641 |
Q @ Freq: | 52 @ 2.5MHz |
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: | 2.5MHz |
Operating Temperature: | -55°C ~ 125°C |
Ratings: | -- |
Frequency - Self Resonant: | 10MHz |
Series: | IMS-5SWD-65 |
DC Resistance (DCR): | 3.12 Ohm Max |
Shielding: | Shielded |
Current - Saturation: | 120mA |
Current Rating: | 325mA |
Tolerance: | ±10% |
Inductance: | 100µH |
Material - Core: | Ferrite |
Type: | Molded |
Part Status: | Active |
Packaging: | -- |
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Fixed inductors refer to components with a static inductance value. The fixed inductors IMS5SWDRU101K65 is an example item which is specially designed for Power line EMI filters, input and output filters, DC filters, and decoupling filters, etc. The working principle of IMS5SWDRU101K65 is cyclic mechanism.
The physical structure of IMS5SWDRU101K65 includes a toroid core, two or more windings, and either taps or switches, depending on the application and type. The purpose of the core is to provide an air gap, which creates a very high inductive reactance. This inductive reactance is used to control the amount of electric current passing through the inductor.
The windings on the core are fed with an alternating voltage. As the voltage passes through the winding, it induces a magnetic field on the cores bobbin. This magnetic field will form the output current, which, in turn, will generate an additional electromagnetic field around the core. This field will interact with the magnetic field generated by the core, creating a feedback loop. The feedback loop will then affect the output current flowing through the inductor, thus controlling the amount of current passing through it.
The IMS5SWDRU101K65 is able to withstand up to 300mA of AC current, and is available in various operating voltages ranging from 0.2 to 10V. The device is extremely stable in terms of temperature and features low DC resistance. This makes it suitable for use in a wide range of applications such as power line EMI filtering, low pass filtering, high pass filtering and signal conditioning. It provides the user with a high quality, reliable and affordable option for filtering applications such as decoupling, bypassing, and EMC related applications.
The IMS5SWDRU101K65 fixed inductor is a highly efficient and reliable component. It is especially useful in applications where low DC resistance and high efficiency are important. The IMS5SWDRU101K65 is designed to handle a range of AC currents, and is able to withstand a minimum of 300mA AC current. This makes it a great choice for use in power line EMI filters, input and output filters, DC filters, and decoupling filters.
The specific data is subject to PDF, and the above content is for reference
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IMS5SWDBHR10K65 | Vishay Dale | 2.8 $ | 1000 | IMS-5SWD-65 .1 10% B08100... |
IMS5SWDBHR33K65 | Vishay Dale | 2.8 $ | 1000 | IMS-5SWD-65 .33 10% B0833... |
IMS5SWDBHR82K65 | Vishay Dale | 2.8 $ | 1000 | IMS-5SWD-65 .82 10% B0882... |
IMS5SWDBH100J65 | Vishay Dale | 3.53 $ | 1000 | IMS-5SWD-65 10 5% B0810H ... |
IMS5SWDBH1R5J65 | Vishay Dale | 3.53 $ | 1000 | IMS-5SWD-65 1.5 5% B081.5... |
IMS5SWDBH2R2J65 | Vishay Dale | 3.53 $ | 1000 | IMS-5SWD-65 2.2 5% B082.2... |
IMS5SWDBH3R3J65 | Vishay Dale | 3.53 $ | 1000 | IMS-5SWD-65 3.3 5% B083.3... |
IMS5SWDBH3R9J65 | Vishay Dale | 3.53 $ | 1000 | IMS-5SWD-65 3.9 5% B083.9... |
IMS5SWDBH5R6J65 | Vishay Dale | 3.53 $ | 1000 | IMS-5SWD-65 5.6 5% B085.6... |
IMS5SWDBH6R8J65 | Vishay Dale | 3.53 $ | 1000 | IMS-5SWD-65 6.8 5% B086.8... |
IMS5SWDEB220J65 | Vishay Dale | 3.55 $ | 1000 | IMS-5SWD-65 22 5% EB E222... |
IMS5SWDBHR15J65 | Vishay Dale | 3.93 $ | 1000 | IMS-5SWD-65 .15 5% B08150... |
IMS5SWDBHR18J65 | Vishay Dale | 3.93 $ | 1000 | IMS-5SWD-65 .18 5% B08180... |
IMS5SWDBHR33J65 | Vishay Dale | 3.93 $ | 1000 | IMS-5SWD-65 .33 5% B08330... |
IMS5SWDBHR39J65 | Vishay Dale | 3.93 $ | 1000 | IMS-5SWD-65 .39 5% B08390... |
IMS5SWDBHR47J65 | Vishay Dale | 3.93 $ | 1000 | IMS-5SWD-65 .47 5% B08470... |
IMS5SWDBHR56J65 | Vishay Dale | 3.93 $ | 1000 | IMS-5SWD-65 .56 5% B08560... |
IMS5SWDBHR68J65 | Vishay Dale | 3.93 $ | 1000 | IMS-5SWD-65 .68 5% B08680... |
IMS5SWDBHR82J65 | Vishay Dale | 3.93 $ | 1000 | IMS-5SWD-65 .82 5% B08820... |
IMS5SWDM9R68J65 | Vishay Dale | 4.91 $ | 1000 | IMS-5SWD-65 .68 5% M29680... |
IMS5SWDBH2R7G65 | Vishay Dale | 11.71 $ | 1000 | IMS-5SWD-65 2.7 2% B082.7... |
IMS5SWDBHR10G65 | Vishay Dale | 13.1 $ | 1000 | IMS-5SWD-65 .1 2% B08100n... |
IMS5SWDBHR33G65 | Vishay Dale | 13.1 $ | 1000 | IMS-5SWD-65 .33 2% B08330... |
IMS5SWDBHR36G65 | Vishay Dale | 14.42 $ | 1000 | IMS-5SWD-65 .36 2% B08360... |
IMS5SWDER101K65 | Vishay Dale | 1.63 $ | 1000 | IMS-5SWD-65 100 10% ER E2... |
IMS5SWDER181K65 | Vishay Dale | 1.63 $ | 1000 | IMS-5SWD-65 180 10% ER E2... |
IMS5SWDER220K65 | Vishay Dale | 1.63 $ | 1000 | IMS-5SWD-65 22 10% ER E22... |
IMS5SWDER390K65 | Vishay Dale | 1.63 $ | 1000 | IMS-5SWD-65 39 10% ER E23... |
IMS5SWDER681K65 | Vishay Dale | 1.63 $ | 1000 | IMS-5SWD-65 680 10% ER E2... |
IMS5SWDRU101K65 | Vishay Dale | 1.67 $ | 1000 | IMS-5SWD-65 100 10% R3610... |
IMS5SWDRU151K65 | Vishay Dale | 1.67 $ | 1000 | IMS-5SWD-65 150 10% R3615... |
IMS5SWDRU180K65 | Vishay Dale | 1.67 $ | 1000 | IMS-5SWD-65 18 10% R3618H... |
IMS5SWDRU331K65 | Vishay Dale | 1.67 $ | 1000 | IMS-5SWD-65 330 10% R3633... |
IMS5SWDRU390K65 | Vishay Dale | 1.67 $ | 1000 | IMS-5SWD-65 39 10% R3639H... |
IMS5SWDER1R8K65 | Vishay Dale | 1.69 $ | 1000 | IMS-5SWD-65 1.8 10% ER E2... |
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