Allicdata Part #: | IMS05BH101J-ND |
Manufacturer Part#: |
IMS05BH101J |
Price: | $ 0.00 |
Product Category: | Inductors, Coils, Chokes |
Manufacturer: | Vishay Dale |
Short Description: | IMS-5 100 5% B08 |
More Detail: | 100µH Shielded Molded Inductor 160mA 3.12 Ohm Max ... |
DataSheet: | IMS05BH101J Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Q @ Freq: | 50 @ 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 ~ 105°C |
Ratings: | -- |
Frequency - Self Resonant: | 10MHz |
Series: | IMS-5 |
DC Resistance (DCR): | 3.12 Ohm Max |
Shielding: | Shielded |
Current - Saturation: | 120mA |
Current Rating: | 160mA |
Tolerance: | ±5% |
Inductance: | 100µH |
Material - Core: | Ferrite |
Type: | Molded |
Part Status: | Obsolete |
Packaging: | -- |
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Fixed Inductors
An inductor, also known as a coil, choke, or reactor, is a basic passive two-terminal electrical component which stores energy in a magnetic field. Fixed inductors are specifically designed to provide a constant, or fixed, inductance, and can have quite complex structures. One such example of a fixed inductor is the IMS05BH101J, which will be discussed in greater detail below.
IMS05BH101J Application Field
The IMS05BH101J is an air core multi-layer ceramic chip inductor. As such, it is typically used for a variety of applications in electronic circuits ranging from power supply, LCD monitors, personal computers, cell phones, digital cameras, and more. This inductor is typically used for signal filtering, power line ripples, power and signal lines of digital and analog circuits, as well as damping and resonance circuits. The IMS05BH101J is extremely valuable for these applications because of its high reliability and stability.
IMS05BH101J Working Principle
The IMS05BH101J is a ceramic core multi-layer inductor that works based on Faraday’s law of induction. This inductor works by using a conductor coil that is typically made of copper. Electricity passes through the coil, but instead of passing through it directly, the electricity is instead redirected, or “induced”, into the surrounding ceramic core. The induced electromagnetic field allows for the storage of electrical energy. The amount of energy stored depends on several factors, but the most important factor is the number of turns of the coil.
The inductance of the IMS05BH101J is largely dependent on the number of turns of the copper coil that it is composed of. The more turns the coil has, the higher the inductance. The inductance is also dependent on the value of the core material. The IMS05BH101J is composed of a ceramic core material which has a very high value, so the inductance of this particular model is quite high. The high inductance is further enhanced by its small size and high stability.
The reason why the IMS05BH101J is such a powerful device for many applications is because it has low DC resistance. This is due to the fact that it has low winding losses. Winding losses occur when electricity passes through copper wire, resulting in the release of energy as heat. Since the IMS05BH101J has low winding losses, it is much more efficient than other inductors, allowing it to work better for longer periods of time.
Another advantage of the IMS05BH101J is its high heat resistance. The ceramic material of the core can withstand temperatures up to 125 degrees celsius. This makes it suitable for applications that require high heat resistance, such as power supply lines, power converters, and more. The IMS05BH101J is particularly well suited for power line ripple filters.
Conclusion
The IMS05BH101J is a powerful fixed inductor with a variety of applications. Its low winding losses, high heat resistance, and high inductance make it an extremely useful device for a range of applications, from power supply lines to signal filtering. Its high stability and reliability also make it a reliable and effective component for many electronic circuits.
The specific data is subject to PDF, and the above content is for reference
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