Allicdata Part #: | CM6296-104-ND |
Manufacturer Part#: |
CM6296-104 |
Price: | $ 5.19 |
Product Category: | Filters |
Manufacturer: | API Delevan Inc. |
Short Description: | CMC 100UH 9.5A 2LN SMD |
More Detail: | 100µH @ 1kHz 2 Line Common Mode Choke Surface Moun... |
DataSheet: | CM6296-104 Datasheet/PDF |
Quantity: | 1000 |
400 +: | $ 4.71640 |
Voltage Rating - AC: | -- |
Package / Case: | Horizontal, 4 PC Pad |
Height (Max): | 0.423" (10.74mm) |
Size / Dimension: | 1.058" L x 1.058" W (26.87mm x 26.87mm) |
Mounting Type: | Surface Mount |
Features: | -- |
Approvals: | -- |
Ratings: | -- |
Operating Temperature: | -55°C ~ 125°C |
Series: | CM6296 |
Voltage Rating - DC: | -- |
DC Resistance (DCR) (Max): | 16 mOhm |
Current Rating (Max): | 9.5A |
Inductance @ Frequency: | 100µH @ 1kHz |
Number of Lines: | 2 |
Filter Type: | -- |
Part Status: | Active |
Packaging: | Bulk |
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Common Mode Chokes
Common mode chokes, also known as filter chokes, are components used to reduce common mode and differential mode currents. The common mode choke mostly comprises two or more windings around a magnetic core. The device can reduce the common-mode current to a desirable level thanks to the application of an electric field to the core. The device can be designed to filter out harmonics, sub-harmonics, and other interfering frequencies from the noise. Generally, common mode chokes are limited to low currents and low voltages.
CM6296-104 Application Field and Working Principle
The CM6296-104 is a ferrite bead common mode choke designed to reduce common-mode and differential-mode noise in the frequency range of 10 kHz to 1GHz. It is suitable for low-frequency communications and signal lines where common-mode noise should be reduced. The CM6296-104 has an inductance of 4.7mH and a DC resistance of 400Ω. It is constructed using two ferrite beads, each having an approximate diameter of 3.3mm and a height of 4.5mm.
The CM6296-104 has two main windings, a primary winding, and a secondary winding. The primary winding is on the core and is composed of two independent wires, each carrying DC or signalling current. The secondary winding is on the outside of the core and is composed of four independent wires. The two primary windings are connected and the four secondary windings are connected in a series.
When DC or signal current flows through the primary winding, a magnetic field is generated and an opposing voltage is induced in the secondary winding. This voltage opposes the flow of the primary current, thus reducing the common-mode noise. This is further used to reduce differential-mode noise as well as undesirable frequencies from the noise. As the primary and secondary windings are connected differently, the choke can reduce both common-mode and differential-mode noise.
The device has a rated temperature of 70°C and can be used in low-current applications. It is also capable of handling high AC signals with a frequency of 1GHz, making it ideal for high-frequency applications. The small size of the device is suitable for applications where space is limited.
The CM6296-104 is suitable for use in a variety of applications including personal computers, telecommunications, consumer electronics, and industrial electronics. It can be used to reduce common-mode and differential-mode interference in the millisecond range. It is also capable of reducing a variety of noise frequencies, including harmonics and sub-harmonics. The device is also suitable for applications where the noise is in the form of dipole radiation.
In summary, the CM6296-104 is a ferrite bead common mode choke designed to reduce common-mode and differential-mode noise in the frequency range of 10 kHz to 1GHz. The device has an inductance of 4.7mH and a DC resistance of 400Ω. It has two main windings, a primary winding, and a secondary winding. The device is suitable for a variety of applications, including personal computers, telecommunications, consumer electronics, and industrial electronics, and can reduce common-mode and differential-mode noise.
The specific data is subject to PDF, and the above content is for reference
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