ISC1210BN10NM Allicdata Electronics
Allicdata Part #:

ISC1210BN10NM-ND

Manufacturer Part#:

ISC1210BN10NM

Price: $ 0.42
Product Category:

Inductors, Coils, Chokes

Manufacturer: Vishay Dale
Short Description: FIXED IND 10NH 810MA 100 MOHM
More Detail: 10nH Shielded Wirewound Inductor 810mA 100 mOhm Ma...
DataSheet: ISC1210BN10NM datasheetISC1210BN10NM Datasheet/PDF
Quantity: 1000
500 +: $ 0.38556
1000 +: $ 0.34272
2500 +: $ 0.33201
Stock 1000Can Ship Immediately
$ 0.42
Specifications
Series: ISC-1210
Packaging: Bulk 
Part Status: Active
Type: Wirewound
Material - Core: Non-Magnetic
Inductance: 10nH
Tolerance: ±20%
Current Rating: 810mA
Current - Saturation: --
Shielding: Shielded
DC Resistance (DCR): 100 mOhm Max
Q @ Freq: 50 @ 50MHz
Frequency - Self Resonant: 1GHz
Ratings: --
Operating Temperature: -55°C ~ 125°C
Inductance Frequency - Test: 50MHz
Mounting Type: Surface Mount
Package / Case: 1210 (3225 Metric)
Supplier Device Package: 1210
Size / Dimension: 0.126" L x 0.098" W (3.20mm x 2.49mm)
Height - Seated (Max): 0.095" (2.41mm)
Description

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Fixed Inductors are used in all sorts of places, and the ISC1210BN10NM is no exception. This Fixed Inductor is a compact, high performance device that can be used in a variety of applications. The inductor is based on a standard miniature surface mount format, and has an excellent temperature range, from -40°C to +125°C. The part also has an excellent inductance range, from 10nH to 1000nH.

The ISC1210BN10NM Fixed Inductor is used for power applications in electronic circuits. It can be used in different types of DC-DC converters, or as a noise-canceling filter in an AC-DC converter. The device can also be used in voltage-regulating circuits, where the inductor helps to regulate the output voltage. These applications require highly reliable components, which is why the ISC1210BN10NM Inductor is generally used.

The working principle of the ISC1210BN10NM Inductor is based on Faraday\'s law of induction. This law states that a voltage will be induced in a closed loop conductor when there is a changing magnetic flux. An inductor is basically a coil of wire which forms the loop conductor in this case.

When a voltage is applied across the inductor\'s terminals, a current begins to flow in the winding, and this current will create a magnetic field around the coil. This magnetic field is directly proportional to the current, and this is the key to understanding the working principle of the ISC1210BN10NM Inductor.

As the current in the coil increases, the magnetic field becomes stronger, which will induce a voltage in the coil. This voltage is in opposition to the original voltage applied to the coil, and it is this voltage that is known as the inductive reactance. The inductive reactance is the voltage that is produced by the ISC1210BN10NM Inductor.

This inductive reactance can be used to reduce the level of power that is dissipated in an electronic circuit. This is because the inductive reactance will limit the amount of current that can flow in the circuit. This can be particularly useful in switching power supplies, where it can help to reduce the amount of power wasted when the power supply is switched off.

The ISC1210BN10NM Fixed Inductor can also be used in switching voltage regulators to help regulate the output voltage. When a voltage regulator is turned off, the inductor will help to reduce the amount of power dissipated in the circuit. This can be particularly beneficial when the regulator is turning off frequently.

The ISC1210BN10NM is a versatile, high-performance fixed inductor that can be used in a variety of applications. It is ideal for use in DC-DC converters, AC-DC converters, and voltage-regulating circuits. Its working principle is based on Faraday\'s law of induction, which states that voltage will be induced in a closed loop conductor when there is a changing magnetic flux. The device can help to reduce the amount of power dissipated in a circuit, making it a great choice for power applications.

The specific data is subject to PDF, and the above content is for reference

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