RFC20 Series, Fixed Inductors

Results:
16
Manufacturer
Series
DC Resistance (DCR)
Inductance
Current Rating (Amps)
Q @ Freq
Inductance Frequency - Test
Operating Temperature
Current - Saturation (Isat)
Height - Seated (Max)
Tolerance
Shielding
Mounting Type
Size / Dimension
Supplier Device Package
Ratings
Type
Package / Case
Frequency - Self Resonant
Features
Material - Core
Results remaining16
Applied Filters:
RFC20
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ImageProduct DetailPriceAvailabilityECAD ModelFeaturesMounting TypeCurrent Rating (Amps)ShieldingTolerancePackage / CaseHeight - Seated (Max)RatingsSupplier Device PackageOperating TemperatureCurrent - Saturation (Isat)Frequency - Self ResonantMaterial - CoreSize / DimensionTypeInductanceDC Resistance (DCR)Q @ FreqInductance Frequency - TestSeries
RFC20-271K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
450 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
270 µH
2.7Ohm Max
50 @ 790kHz
790 kHz
RFC20
RFC20-3R3K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
3.7 A
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
3.3 µH
36mOhm Max
35 @ 7.9MHz
7.9 MHz
RFC20
RFC20-331K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
410 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
330 µH
3.335Ohm Max
50 @ 790kHz
790 kHz
RFC20
RFC20-330K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
1.2 A
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
33 µH
346mOhm Max
45 @ 2.5MHz
2.5 MHz
RFC20
RFC20-221K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
490 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
220 µH
2.105Ohm Max
50 @ 790kHz
790 kHz
RFC20
RFC20-251K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
490 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
250 µH
2.5Ohm Max
40 @ 790kHz
790 kHz
RFC20
RFC20-151K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
600 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
150 µH
1.855Ohm Max
70 @ 790kHz
790 kHz
RFC20
RFC20-121K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
650 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
120 µH
1.725Ohm Max
70 @ 790kHz
790 kHz
RFC20
RFC20-220K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
1.4 A
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
22 µH
230mOhm Max
40 @ 2.5MHz
2.5 MHz
RFC20
RFC20-560K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
950 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
56 µH
687mOhm Max
40 @ 2.5MHz
2.5 MHz
RFC20
RFC20-4R7K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
3.2 A
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
4.7 µH
53mOhm Max
37 @ 7.9MHz
7.9 MHz
RFC20
RFC20-681K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
290 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
680 µH
5.93Ohm Max
45 @ 790kHz
790 kHz
RFC20
RFC20-5R6K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
2.8 A
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
5.6 µH
92mOhm Max
38 @ 7.9MHz
7.9 MHz
RFC20
RFC20-471K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
350 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
470 µH
5.29Ohm Max
40 @ 790kHz
790 kHz
RFC20
RFC20-470K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
1.03 A
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
47 µH
502mOhm Max
45 @ 2.5MHz
2.5 MHz
RFC20
RFC20-101K-RC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Through Hole
700 mA
Unshielded
±10%
Radial
0.400" (10.16mm)
-
Radial
-20°C ~ 100°C
-
-
-
0.400" L x 0.150" W (10.16mm x 3.81mm)
Wirewound
100 µH
1.16Ohm Max
80 @ 2.5MHz
2.5 MHz
RFC20

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.