PA0135 Series, Arrays, Signal Transformers

Results:
4
Manufacturer
Series
Current Saturation - Series
Inductance - Connected In Series
Inductance - Connected In Parallel
Current Saturation - Parallel
Current Rating - Parallel
Current Rating - Series
DC Resistance (DCR) - Parallel
Operating Temperature
Tolerance
Shielding
Mounting Type
Size / Dimension
Number of Coils
DC Resistance (DCR) - Series
Ratings
Package / Case
Height
Results remaining4
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PA0135
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeShieldingPackage / CaseToleranceOperating TemperatureRatingsSeriesNumber of CoilsInductance - Connected In ParallelInductance - Connected In SeriesCurrent Rating - ParallelCurrent Rating - SeriesCurrent Saturation - ParallelCurrent Saturation - SeriesDC Resistance (DCR) - ParallelDC Resistance (DCR) - SeriesSize / DimensionHeight
PA0135.331NLT
INDUCT ARRAY 2 COIL 82.5NH SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
Unshielded
-
±20%
-40°C ~ 130°C
-
PA0135
2
82.5 nH
330 nH
40 A
20 A
40 A
32 A
0.225mOhm Max
0.9mOhm Max
0.510" L x 0.510" W (12.95mm x 12.95mm)
0.280" (7.11mm)
PA0135.681NLT
INDUCT ARRAY 2 COIL 170NH SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
Unshielded
-
±20%
-40°C ~ 130°C
-
PA0135
2
170 nH
680 nH
34 A
19 A
34 A
19 A
0.225mOhm Max
0.9mOhm Max
0.510" L x 0.510" W (12.95mm x 12.95mm)
0.280" (7.11mm)
PA0135.102NLT
INDUCT ARRAY 2 COIL 250NH SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
Unshielded
-
±20%
-40°C ~ 130°C
-
PA0135
2
250 nH
1 µH
24 A
14 A
24 A
14 A
0.225mOhm Max
0.9mOhm Max
0.510" L x 0.510" W (12.95mm x 12.95mm)
0.280" (7.11mm)
PA0135.471NLT
INDUCT ARRAY 2 COIL 118NH SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
Unshielded
-
±20%
-40°C ~ 130°C
-
PA0135
2
118 nH
470 nH
40 A
20 A
40 A
26 A
0.225mOhm Max
0.9mOhm Max
0.510" L x 0.510" W (12.95mm x 12.95mm)
0.280" (7.11mm)

About  Arrays, Signal Transformers

Transformer-type inductor arrays consist of inductors with two or more windings that are magnetically coupled within the device, without internal electrical connections between the windings. These components are also referred to as coupled inductors due to the magnetic coupling between the individual windings. The absence of internal electrical connections enables the independent use of each winding for specific purposes. This flexibility allows transformer-type inductor arrays to be employed for various applications, including common mode filtering, differential mode filtering, and voltage transformation. Common mode filtering involves suppressing unwanted electromagnetic interference or noise that appears in common mode across multiple signal lines. Transformer-type inductor arrays can effectively reduce this interference by utilizing the magnetic coupling between windings to filter out common mode signals. Differential mode filtering, on the other hand, targets interference that appears differentially between pairs of signal lines. By leveraging the separate windings within the inductor array, these components can mitigate unwanted differential mode noise, contributing to improved signal integrity and reduced distortion. In addition to filtering applications, transformer-type inductor arrays are capable of voltage transformation. The independent external connections allow for the application of different input and output voltages across the windings, enabling voltage conversion or adaptation to suit specific circuit requirements. The versatility of transformer-type inductor arrays makes them valuable components in electronic circuits, offering engineers the flexibility to address various signal integrity and power management challenges. Whether it's for filtering electromagnetic interference or adapting voltage levels, these inductor arrays provide a practical and efficient solution for diverse circuit design needs.