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Specialty Inductors

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SMV60
Roxburgh EMC
120μH 40mΩ 6A 32mm*17mm*30mm
Quantity: 1330
Ship Date: 3-12 working days
1+ $5.1351
10+ $4.6012
50+ $4.5189
100+ $4.5189
- +
x $5.1351
Ext. Price: $10.27
MOQ: 2
Mult: 1
SMV80
Roxburgh EMC
90μH 25mΩ 8A 32mm*17mm*30mm
Quantity: 129
Ship Date: 3-12 working days
1+ $5.9466
3+ $5.2234
5+ $5.0225
10+ $5.0225
- +
x $5.9466
Ext. Price: $11.89
MOQ: 2
Mult: 1
SF1120
Roxburgh EMC
4mH 1.8Ω ±20% 9.5mm(height)
Quantity: 121
Ship Date: 7-13 working days
1+ $3.9758
100+ $2.9318
250+ $2.6332
500+ $2.5749
- +
x $3.9758
Ext. Price: $27.83
MOQ: 7
Mult: 1
SMV40
Roxburgh EMC
210μH 100mΩ 4A 32mm*17mm*30mm
Quantity: 116
Ship Date: 3-12 working days
1+ $5.0908
10+ $4.5613
50+ $4.4799
100+ $4.4799
- +
x $5.0908
Ext. Price: $10.18
MOQ: 2
Mult: 1
CMV20
Roxburgh EMC
7.5mH 440Hz 160mΩ 2A 37.5mm*12mm*31mm
Quantity: 65
Ship Date: 3-12 working days
1+ $5.2018
10+ $4.6608
50+ $4.5775
100+ $4.5775
- +
x $5.2018
Ext. Price: $10.40
MOQ: 2
Mult: 1
CMV80
Roxburgh EMC
740μH 440Hz 9.6mΩ 8A 37.5mm*12mm*31mm
Quantity: 2983
Ship Date: 3-12 working days
1+ $5.8537
5+ $5.6285
10+ $5.6285
- +
x $5.8537
Ext. Price: $11.70
MOQ: 2
Mult: 1
CMV10
Roxburgh EMC
18mH 640mΩ 1A 37.5mm*12mm*31mm
Quantity: 25
Ship Date: 7-13 working days
1+ $5.1004
10+ $4.9983
100+ $3.4911
250+ $3.3859
- +
x $5.1004
Ext. Price: $25.50
MOQ: 5
Mult: 1
SF1122
Roxburgh EMC
2.9mH 500mΩ ±20% 13mm(height)
Quantity: 275
Ship Date: 3-12 working days
1+ $4.4777
5+ $4.3055
10+ $4.1333
20+ $4.1333
- +
x $4.4777
Ext. Price: $13.43
MOQ: 3
Mult: 1
SF1123
Roxburgh EMC
2.4mH 400mΩ ±20% 13.5mm(height)
Quantity: 67
Ship Date: 3-12 working days
1+ $4.4085
5+ $4.2389
10+ $4.0694
20+ $4.0694
- +
x $4.4085
Ext. Price: $13.22
MOQ: 3
Mult: 1
SMV30
Roxburgh EMC
260μH 140mΩ 3A 32mm*17mm*30mm
Quantity: 276
Ship Date: 3-12 working days
1+ $4.7988
10+ $4.2997
50+ $4.223
100+ $4.223
- +
x $4.7988
Ext. Price: $9.59
MOQ: 2
Mult: 1
C210
Roxburgh EMC
Roxburgh EMC 2 mHCoil inductance, C200series, 10AMaximum DC, wire
Quantity: 22
Ship Date: 3-12 working days
1+ $33.7883
- +
x $33.7883
Ext. Price: $33.78
MOQ: 1
Mult: 1
SF1121
Roxburgh EMC
4mH 1.9Ω ±20% wire mounting 10mm(height)
Quantity: 18
Ship Date: 3-12 working days
1+ $4.1153
5+ $3.4758
10+ $3.4758
20+ $3.4758
- +
x $4.1153
Ext. Price: $12.34
MOQ: 3
Mult: 1
C215
Roxburgh EMC
Roxburgh EMC 1 mHCoil inductance, C200series, 15AMaximum DC, wire
Quantity: 12
Ship Date: 3-12 working days
1+ $28.9228
- +
x $28.9228
Ext. Price: $28.92
MOQ: 1
Mult: 1
CMV30
Roxburgh EMC
3.2mH 71mΩ 3A 37.5mm*12mm*31mm
Quantity: 72
Ship Date: 7-13 working days
1+ $6.7249
20+ $5.0187
50+ $4.9187
100+ $4.4731
- +
x $6.7249
Ext. Price: $26.89
MOQ: 4
Mult: 1

Specialty Inductors

Inductors are passive electronic components that store energy in a magnetic field when an electric current flows through them. The term "Other Inductors" typically refers to a variety of inductor types that do not fit into the standard categories such as air-core inductors, ferrite-core inductors, or toroidal inductors. Here's a brief overview:

Definition:
An inductor is an electrical component that resists changes in current flow through it, creating a voltage proportional to the rate of change of current. It is often symbolized by a coil or a spiral in circuit diagrams.

Function:
1. Energy Storage: Inductors store energy in the magnetic field created by the current flowing through them.
2. Filtering: They are used in filters to block high-frequency signals while allowing low-frequency signals to pass.
3. Impedance Matching: Inductors can be used to match the impedance of different parts of a circuit.
4. Tuning: In radio frequency (RF) circuits, inductors are used to tune circuits to specific frequencies.

Applications:
1. Power Supplies: Inductors are used in transformers and power converters.
2. Signal Processing: They are essential in filters and equalizers.
3. RF Circuits: Inductors are used in resonant circuits, antennas, and other RF applications.
4. Motors and Transformers: They are used in the construction of electric motors and transformers for energy conversion.

Selection Criteria:
1. Inductance Value: The inductance (measured in henries) must match the circuit requirements.
2. Current Rating: The inductor must be able to handle the current it will be subjected to without overheating or saturating.
3. Frequency Range: The inductor should operate effectively within the frequency range of the application.
4. Physical Size: The size of the inductor should be suitable for the space constraints of the application.
5. Temperature Coefficient: The change in inductance with temperature should be considered, especially for precision applications.
6. Quality Factor (Q): A higher Q factor indicates a lower energy loss in the inductor, which is desirable in many applications.
7. Cost: The cost of the inductor should be considered in relation to the performance required.

When selecting an inductor, it's important to consider the specific requirements of the application, including the type of core material (if any), the operating temperature range, and any environmental factors that may affect performance.
Please refer to the product rule book for details.