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Through-Hole Inductors

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SLP0810R-102MTT
Sunltech
500mA 500mA 1mH 1.8Ω ±20% Plugins Through hole mounting
Quantity: 400
In Stock
2526+
5+ $0.0685
50+ $0.056
150+ $0.0498
- +
x $0.0685
Ext. Price: $0.34
MOQ: 5
Mult: 5
SPQ: 500
SLT050125T220MUB
Sunltech
5A 22μH 15mΩ ±20% Plugins Through hole mounting
Quantity: 1000
Ship Date: 3-4 weeks
250+ $0.1329
500+ $0.1287
750+ $0.1244
- +
x $0.1329
Ext. Price: $66.45
MOQ: 500
Mult: 250
SPQ: 250
SLT065125T101KTB
Sunltech
100μH 80mΩ ±10% Plugins
Quantity: 1000
Ship Date: 3-4 weeks
200+ $0.3273
400+ $0.3168
600+ $0.3064
- +
x $0.3273
Ext. Price: $65.45
MOQ: 200
Mult: 200
SPQ: 200
SLT050125T470MUB
Sunltech
3.5A 47μH 38mΩ ±20% Plugins Through hole mounting
Quantity: 1000
Ship Date: 3-4 weeks
250+ $0.1329
500+ $0.1287
750+ $0.1244
- +
x $0.1329
Ext. Price: $66.45
MOQ: 500
Mult: 250
SPQ: 250
SLT050125T150MUB
Sunltech
6A 15μH 12mΩ ±20% Plugins Through hole mounting
Quantity: 1000
Ship Date: 3-4 weeks
250+ $0.1329
500+ $0.1287
750+ $0.1244
- +
x $0.1329
Ext. Price: $66.45
MOQ: 500
Mult: 250
SPQ: 250
SLT038125T100MUB
Sunltech
4.2A 10μH 22mΩ ±20% Plugins,D6.5XL12.5MM Through hole mounting
Quantity: 1000
Ship Date: 3-4 weeks
500+ $0.1074
1000+ $0.104
1500+ $0.1005
- +
x $0.1074
Ext. Price: $107.40
MOQ: 1000
Mult: 500
SPQ: 500
SLT050125T330MUB
Sunltech
4A 33μH 32mΩ ±20% Plugins Through hole mounting
Quantity: 1000
Ship Date: 3-4 weeks
250+ $0.1347
500+ $0.1304
750+ $0.126
- +
x $0.1347
Ext. Price: $67.34
MOQ: 500
Mult: 250
SPQ: 250
SLT040125T470MUB
Sunltech
2A 47μH 42mΩ ±20% Plugins Through hole mounting
Quantity: 1000
Ship Date: 3-4 weeks
500+ $0.1074
1000+ $0.104
1500+ $0.1005
- +
x $0.1074
Ext. Price: $107.40
MOQ: 1000
Mult: 500
SPQ: 500
SLT038125T220MUB
Sunltech
1KHz 3A 22μH 32mΩ ±20% Plugins Through hole mounting 12.5mm(length)
Quantity: 1000
Ship Date: 3-4 weeks
500+ $0.1023
1000+ $0.099
1500+ $0.0958
- +
x $0.1023
Ext. Price: $102.30
MOQ: 1000
Mult: 500
SPQ: 500
SLP0810R-561KTT
Sunltech
500mA 560μH 1.13Ω ±10% Plugins Through hole mounting
Quantity: 1000
Ship Date: 3-4 weeks
500+ $0.0429
1000+ $0.0416
1500+ $0.0402
- +
x $0.0429
Ext. Price: $85.80
MOQ: 2000
Mult: 500
SPQ: 500
SLP0608R-102KTT
Sunltech
150mA 1mH 3.2Ω ±10% Plugins Through hole mounting
Quantity: 1000
Ship Date: 3-4 weeks
1000+ $0.0265
2000+ $0.0256
3000+ $0.0247
- +
x $0.0265
Ext. Price: $79.50
MOQ: 3000
Mult: 1000
SPQ: 1000
SLT038125T470MUB
Sunltech
2A 47μH 46mΩ ±20% Plugins
Quantity: 0
In Stock
- +
x $
Ext. Price:
MOQ: 1
Mult: 1
SPQ: 500

Through-Hole Inductors

Through Hole Inductors: Definition, Function, Applications, and Selection Criteria

Definition:
Through Hole Inductors (THI) are passive electronic components designed to store energy in a magnetic field when an electric current flows through them. They are characterized by having leads that pass through holes in a printed circuit board (PCB) for mounting and electrical connection.

Function:
The primary function of a through hole inductor is to provide inductance, which is the property of a component that opposes changes in current flow. This opposition is due to the magnetic field created by the current. Inductors are used to filter signals, block high-frequency noise, and provide energy storage in various electronic circuits.

Applications:
1. Signal Filtering: Inductors are used in filters to block or pass specific frequency ranges, helping to clean up signals in communication systems.
2. Power Supplies: They are integral in smoothing the output of power supplies, reducing noise and voltage.
3. RF Applications: In radio frequency (RF) circuits, inductors are used for impedance matching, tuning circuits, and signal coupling.
4. EMI/RFI Suppression: They help to suppress electromagnetic interference (EMI) and radio frequency interference (RFI) in sensitive electronic devices.
5. Energy Storage: In energy storage applications, inductors can temporarily store energy in the form of a magnetic field.

Selection Criteria:
1. Inductance Value: The inductance value (measured in henries) is critical and must be chosen based on the specific requirements of the circuit.
2. Current Rating: The inductor must be able to handle the current levels expected in the application without overheating or saturating.
3. Frequency Range: The operating frequency of the circuit will influence the choice of inductor, as different inductors have different performance characteristics at various frequencies.
4. Physical Size: The size of the inductor should be compatible with the available space on the PCB.
5. Temperature Stability: For applications with varying temperatures, inductors with stable inductance over a wide temperature range are preferred.
6. Quality Factor (Q): A higher Q factor indicates better energy storage efficiency and less energy loss in the form of heat.
7. Cost: The cost of the inductor should be considered in relation to the performance and reliability required for the application.

Through hole inductors are a versatile component in the design of electronic circuits, and their selection should be based on a careful consideration of the above criteria to ensure optimal performance.
Please refer to the product rule book for details.