CDRH50D20/T150 Series, Fixed Inductors

Results:
12
Manufacturer
Series
Current - Saturation (Isat)
Current Rating (Amps)
DC Resistance (DCR)
Inductance
Tolerance
Ratings
Operating Temperature
Inductance Frequency - Test
Q @ Freq
Height - Seated (Max)
Shielding
Mounting Type
Size / Dimension
Supplier Device Package
Type
Package / Case
Frequency - Self Resonant
Features
Material - Core
Results remaining12
Applied Filters:
CDRH50D20/T150
Select
ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeSupplier Device PackageFeaturesInductanceShieldingTolerancePackage / CaseQ @ FreqOperating TemperatureFrequency - Self ResonantRatingsHeight - Seated (Max)Material - CoreSize / DimensionTypeCurrent Rating (Amps)Current - Saturation (Isat)DC Resistance (DCR)Inductance Frequency - TestSeries
CDRH50D20T150NP-100MC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
10 µH
Shielded
±20%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
1.51 A
1.41A
144mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-1R8NC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
1.8 µH
Shielded
±30%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
3.12 A
3.4A
36mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-2R2NC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
2.2 µH
Shielded
±30%
Nonstandard
-
-40°C ~ 150°C
-
-
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
2.88 A
3.06A
40mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-330MC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
33 µH
Shielded
±20%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
830 mA
780mA
440mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-1R2NC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
1.2 µH
Shielded
±30%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
3.4 A
4A
30mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-3R3NC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
3.3 µH
Shielded
±30%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
2.52 A
2.51A
50mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-470MC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
47 µH
Shielded
±20%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
610 mA
660mA
690mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-6R8NC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
6.8 µH
Shielded
±30%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
1.75 A
1.73A
110mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-150MC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
15 µH
Shielded
±20%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
1.08 A
1.15A
240mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-220MC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
22 µH
Shielded
±20%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
980 mA
970mA
320mOhm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-101MC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
100 µH
Shielded
±20%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
520 mA
450mA
1.28Ohm Max
100 kHz
CDRH50D20/T150
CDRH50D20T150NP-4R7NC
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
-
4.7 µH
Shielded
±30%
Nonstandard
-
-40°C ~ 150°C
-
AEC-Q200
0.087" (2.20mm)
Ferrite
0.205" L x 0.205" W (5.20mm x 5.20mm)
Drum Core
2.08 A
2.04A
74mOhm Max
100 kHz
CDRH50D20/T150

Fixed Inductors

Inductors, also known as coils, chokes, or reactors, are fundamental passive electrical components with two terminals that store energy in a magnetic field when an electric current flows through them. When the current changes, the magnetic field induces a voltage in the conductor. The induced voltage has a polarity that opposes the change in current that generated it, creating a self-inductance effect. The unit of measurement for inductance is the Henry (H), named after the American physicist Joseph Henry. Inductors are present in various forms and sizes, ranging from microhenries (μH) to millihenries (mH) and even higher. In practical applications, inductors can be used to filter out unwanted high-frequency signals and to store and release energy in DC-DC converters. Inductors can also be used in conjunction with capacitors to create resonant circuits for filtering specific frequencies. Inductors come in different mounting options, including surface mount technology (SMT), through-hole, and chassis mounting. Surface mount inductors are ideal for compact designs, while through-hole inductors provide robustness and ease of assembly. Chassis-mounted inductors offer a more rugged design for industrial and heavy-duty applications. In summary, inductors are essential components in electronic circuits, providing energy storage, signal filtering, and frequency selection capabilities. With a wide range of mounting options and applications, these fundamental passive components play a vital role in modern electronics.