Home > Catalogue > Magnetic Components > SMD Inductors> VACUUMSCHMELZE

SMD Inductors

Results:
SMD Inductors Results:
Filter Results: -1/5
Comprehensive
Price Priority
Stock Priority
Image
Part Number
Manufacturer
Description
Availability
Unit Price
Quantity
Operation
T60403-D4215-X014
VACUUMSCHMELZE
1.3mH SMD mount 20mm(length)*14.5mm(height)
Quantity: 2342
Ship Date: 6-13 working days
1+ $13.248
10+ $10.3248
25+ $9.9036
50+ $9.5904
100+ $9.288
240+ $8.652
480+ $8.379
- +
x $13.248
Ext. Price: $13.24
MOQ: 1
Mult: 1
SPQ: 1
T60403-K5024-X079
VACUUMSCHMELZE
1.4mH SMD mount 11.46mm(length)*7.6mm(height)
Quantity: 9853
Ship Date: 6-13 working days
1+ $3.0475
10+ $2.3
25+ $2.101
50+ $1.9332
100+ $1.836
250+ $1.7604
450+ $1.7064
900+ $1.6065
- +
x $3.0475
Ext. Price: $3.04
MOQ: 1
Mult: 1
SPQ: 1
T60403-K5032-X111
VACUUMSCHMELZE
1.2mH SMD mount 14mm(length)*10mm(height)
Quantity: 0
Ship Date: 6-13 working days
200+ $2.322
10000+ $2.2575
- +
x $2.322
Ext. Price: $464.40
MOQ: 200
Mult: 1
SPQ: 1
T60403-K5024-X100
VACUUMSCHMELZE
30mA 1.56mH SMD mount 11mm(length)*7.6mm(height)
Quantity: 0
Ship Date: 6-13 working days
450+ $1.836
10350+ $1.785
- +
x $1.836
Ext. Price: $826.20
MOQ: 450
Mult: 1
SPQ: 1
T60403-K5032-X104
VACUUMSCHMELZE
3A 500μH SMD mount 16.6mm(length)*10mm(height)
Quantity: 0
Ship Date: 6-13 working days
200+ $2.322
10000+ $2.2575
- +
x $2.322
Ext. Price: $464.40
MOQ: 200
Mult: 1
SPQ: 1

SMD Inductors

A chip inductor, also known as a surface-mount inductor (SMT inductor), is a passive electronic component that stores energy in its magnetic field when current flows through it. It is a type of inductor that is designed for surface-mount technology (SMT), which allows for automated assembly on printed circuit boards (PCBs).

Definition:
A chip inductor is a compact, high-frequency inductor that is typically made from a ferrite or ceramic core, with a coil of wire wrapped around it. The coil is then encapsulated in a small, often rectangular, package made of plastic or ceramic material. These inductors are valued for their small size, high inductance, and low self-resonant frequency, which makes them suitable for high-frequency applications.

Function:
The primary function of a chip inductor is to introduce inductance into an electrical circuit. Inductance is the property of a component that opposes changes in the current flowing through it, which is useful for filtering, tuning, and energy storage in various electronic circuits. Chip inductors are particularly important in applications where space is at a premium and high-frequency performance is required.

Applications:
Chip inductors are widely used in a variety of electronic devices and systems, including:
1. Mobile Phones and Tablets: For power management, signal filtering, and RF applications.
2. Computers and Servers: In power supplies and signal processing circuits.
3. Automotive Electronics: For engine control units, infotainment systems, and power management.
4. Medical Devices: In power supplies and signal conditioning circuits.
5. Telecommunications: In base stations and networking equipment for signal filtering and impedance matching.
6. Consumer Electronics: In power supplies and signal processing circuits of various devices.

Selection Criteria:
When choosing a chip inductor, several factors should be considered:
1. Inductance Value: The amount of inductance required for the specific application.
2. Current Rating: The maximum current the inductor can handle without overheating.
3. Self-Resonant Frequency (SRF): The frequency at which the inductor's inductive reactance equals its capacitive reactance, beyond which the inductor's performance may degrade.
4. Quality Factor (Q): A measure of the inductor's efficiency, with higher Q indicating less energy loss.
5. Size and Package: The physical dimensions and packaging type that fit the PCB layout and assembly process.
6. Temperature Range: The operating temperature range of the device.
7. Cost: The budgetary constraints of the project.

In summary, chip inductors are essential components in modern electronics, providing inductance in a compact form factor suitable for high-frequency applications. Their selection involves a balance of electrical performance, physical constraints, and cost considerations.
Please refer to the product rule book for details.