DKIP-1 Series, Common Mode Chokes

Results:
9
Manufacturer
Series
DC Resistance (DCR) (Max)
Current Rating (Max)
Size / Dimension
Mounting Type
Operating Temperature
Impedance @ Frequency
Approval Agency
Height (Max)
Ratings
Voltage Rating - DC
Package / Case
Number of Lines
Voltage Rating - AC
Filter Type
Features
Inductance @ Frequency
Results remaining9
Applied Filters:
DKIP-1
Select
ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeHeight (Max)FeaturesPackage / CaseRatingsFilter TypeOperating TemperatureDC Resistance (DCR) (Max)Approval AgencyInductance @ FrequencyNumber of LinesSeriesCurrent Rating (Max)Voltage Rating - DCVoltage Rating - ACSize / DimensionImpedance @ Frequency
DKIP-0229-1502
CMC 15A 2LN CHAS MNT
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
Nonstandard
-
-
-25°C ~ 100°C
8mOhm
UR
-
2
DKIP-1
15A
760V
540V
1.890" L x 1.890" W (48.00mm x 48.00mm)
-
DKIP-0231-2003
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
-
-
Nonstandard
-
-
-25°C ~ 100°C
10mOhm
UR
-
2
DKIP-1
20A
760V
540V
3.150" L x 3.150" W (80.00mm x 80.00mm)
-
DKIP-0229-2001
CMC 20A 2LN CHAS MNT
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
Nonstandard
-
-
-25°C ~ 100°C
6mOhm
UR
-
2
DKIP-1
20A
760V
540V
1.890" L x 1.890" W (48.00mm x 48.00mm)
-
DKIP-0231-1012
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
-
-
Nonstandard
-
-
-25°C ~ 100°C
40mOhm
UR
-
2
DKIP-1
10A
760V
540V
3.150" L x 3.150" W (80.00mm x 80.00mm)
-
DKIP-0231-1505
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
-
-
Nonstandard
-
-
-25°C ~ 100°C
17mOhm
UR
-
2
DKIP-1
15A
760V
540V
3.150" L x 3.150" W (80.00mm x 80.00mm)
-
DKIP-0233-3005
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
-
-
Nonstandard
-
-
-25°C ~ 100°C
12.5mOhm
UR
-
2
DKIP-1
30A
760V
540V
4.724" L x 4.724" W (120.00mm x 120.00mm)
-
DKIP-0233-4003
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
-
-
Nonstandard
-
-
-25°C ~ 100°C
6mOhm
UR
-
2
DKIP-1
40A
760V
540V
4.724" L x 4.724" W (120.00mm x 120.00mm)
-
DKIP-0233-5002
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Quantity
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PCB Symbol, Footprint & 3D Model
Through Hole
-
-
Nonstandard
-
-
-25°C ~ 100°C
5mOhm
UR
-
2
DKIP-1
50A
760V
540V
4.724" L x 4.724" W (120.00mm x 120.00mm)
-
DKIP-0229-1005
CMC 10A 2LN CHAS MNT
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Quantity
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PCB Symbol, Footprint & 3D Model
Chassis Mount
-
-
Nonstandard
-
-
-25°C ~ 100°C
18mOhm
UR
-
2
DKIP-1
10A
760V
540V
1.890" L x 1.890" W (48.00mm x 48.00mm)
-

About  Common Mode Chokes

A common mode choke is an essential electrical filter that effectively blocks high-frequency noise, which is commonly present on two or more data or power lines. It selectively allows the desired DC or low-frequency signal to pass through while attenuating the unwanted common mode (CM) noise current. CM noise current often originates from various sources, such as unwanted radio signals, unshielded electronics, inverters, and motors. These sources can generate electromagnetic radiation that couples with the data or power lines, resulting in interference problems within electronic and electrical circuits. If left unfiltered, this noise can disrupt or degrade the performance of sensitive electronic devices. The common mode choke works by utilizing a magnetic core, typically made of ferrite material, and winding the affected lines around it. The windings are designed in such a way that they create opposing magnetic fields when the CM noise current flows through them. This opposing magnetic field effectively cancels out the CM noise, preventing it from propagating further along the lines. By blocking the CM noise, the common mode choke helps maintain signal integrity and reduces the potential for interference in electronic circuits. It is particularly effective in applications where noise rejection is critical, such as in communication systems, power supplies, data transmission lines, and audio/video equipment. In summary, a common mode choke serves as an electrical filter that selectively blocks high-frequency common mode noise while allowing the desired signals to pass through. By mitigating interference problems caused by CM noise, these chokes play a crucial role in ensuring reliable and high-performance operation of electronic and electrical circuits.