Toroidal Fixed Inductors 157

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Part RoHS Manufacturer Inductor Type Inductor Application No. of Terminals Package Style (Meter) Shielded Surface Mount Lead Diameter Minimum Quality Factor (at L-nom) Lead Spacing Minimum Operating Temperature Terminal Finish Self Resonance Frequency Terminal Placement DC Resistance No. of Functions Lead Length Core Material Test Frequency Package Height Case or Size Code Manufacturer Series Special Feature Construction Tolerance Packing Method Package Length JESD-609 Code Shape or Size Description Series Terminal Shape Nominal Inductance (L) Package Diameter Reference Standard Package Width Maximum Operating Temperature Maximum Rated Current

2200LL-561-H-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.034 in (0.8636 mm)

1.01 in (25.654 mm)

-55 °C (-67 °F)

Radial

101 mΩ

1

0.5 in (12.7 mm)

1 kHz

Horizontal Mounting

15 %

0.55 in (13.97 mm)

Cylindrical Package

Wire

560 μH

1.1 in (27.94 mm)

125 °C (257 °F)

3.5 A

2202-V-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.053 in (1.3462 mm)

0.46 in (11.684 mm)

-55 °C (-67 °F)

Axial

8 mΩ

1

1 kHz

Vertical Mount

15 %

0.55 in (13.97 mm)

Cylindrical Package

Wire

12 μH

0.95 in (24.13 mm)

105 °C (221 °F)

12 A

2220-V-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.027 in (0.6858 mm)

0.46 in (11.684 mm)

-55 °C (-67 °F)

Axial

190 mΩ

1

1 kHz

Vertical Mount

15 %

0.55 in (13.97 mm)

Cylindrical Package

Wire

470 μH

0.95 in (24.13 mm)

105 °C (221 °F)

2.3 A

2300HT-221-H-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.042 in (1.0668 mm)

1.17 in (29.718 mm)

-55 °C (-67 °F)

Radial

61 mΩ

1

1 kHz

Horizontal Mounting

15 %

0.65 in (16.51 mm)

Cylindrical Package

Wire

220 μH

1.28 in (32.512 mm)

200 °C (392 °F)

6.8 A

2300HT-331-H-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.037 in (0.9398 mm)

1.16 in (29.464 mm)

-55 °C (-67 °F)

Radial

100 mΩ

1

1 kHz

Horizontal Mounting

15 %

0.65 in (16.51 mm)

Cylindrical Package

Wire

330 μH

1.28 in (32.512 mm)

200 °C (392 °F)

4.9 A

2300HT-680-V-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.042 in (1.0668 mm)

0.52 in (13.208 mm)

-55 °C (-67 °F)

Radial

34 mΩ

1

1 kHz

Vertical Mount

15 %

0.65 in (16.51 mm)

Cylindrical Package

Wire

68 μH

1.28 in (32.512 mm)

200 °C (392 °F)

9.2 A

2307-V-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.053 in (1.3462 mm)

0.53 in (13.462 mm)

-55 °C (-67 °F)

Radial

13 mΩ

1

1 kHz

Vertical Mount

15 %

0.65 in (16.51 mm)

Cylindrical Package

Wire

33 μH

1.28 in (32.512 mm)

105 °C (221 °F)

11.7 A

2313-H-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.042 in (1.0668 mm)

1.13 in (28.702 mm)

-55 °C (-67 °F)

Radial

40 mΩ

1

1 kHz

Horizontal Mounting

15 %

0.65 in (16.51 mm)

Cylindrical Package

Wire

120 μH

1.28 in (32.512 mm)

105 °C (221 °F)

6.7 A

2322-H-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.034 in (0.8636 mm)

1.16 in (29.464 mm)

-55 °C (-67 °F)

Radial

150 mΩ

1

1 kHz

Horizontal Mounting

15 %

0.65 in (16.51 mm)

Cylindrical Package

Wire

680 μH

1.28 in (32.512 mm)

105 °C (221 °F)

3.4 A

2323-V-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.027 in (0.6858 mm)

0.53 in (13.462 mm)

-55 °C (-67 °F)

Radial

270 mΩ

1

1 kHz

Vertical Mount

15 %

0.65 in (16.51 mm)

Cylindrical Package

Wire

820 μH

1.28 in (32.512 mm)

105 °C (221 °F)

2.6 A

5720-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.012 in (0.3048 mm)

0.65 in (16.51 mm)

-55 °C (-67 °F)

Radial

2.64 Ω

1

0.5 in (12.7 mm)

1 kHz

Vertical Mount

15 %

1.812 in (46.0248 mm)

Cylindrical Package

Wire

4.5 mH

0.75 in (19.05 mm)

105 °C (221 °F)

1.25 A

5721-RC

Bourns

General Purpose Inductor

High Current Inductor

2

Toroidal

Yes

No

0.062 in (1.5748 mm)

0.79 in (20.066 mm)

-55 °C (-67 °F)

Radial

41 mΩ

1

0.5 in (12.7 mm)

1 kHz

Vertical Mount

15 %

2.125 in (53.975 mm)

Cylindrical Package

Wire

250 μH

0.937 in (23.7998 mm)

105 °C (221 °F)

8 A

7009

Bourns

General Purpose Inductor

RF Inductor

2

Toroidal

No

No

0.05 in (1.27 mm)

0.8 in (20.32 mm)

-55 °C (-67 °F)

Radial

320 mΩ

1

0.2 in (5.08 mm)

Iron

1 kHz

1.25 in (31.75 mm)

7000

Dual Winding

15 %

1.125 in (28.575 mm)

Rectangular Package

7000

Wire

200 μH

0.6 in (15.24 mm)

105 °C (221 °F)

1.75 A

Fixed Inductors

Fixed inductors, also known as passive inductors, are electronic components that are designed to store energy in a magnetic field. These components are used in a wide range of electronic applications, including power supplies, filters, oscillators, and RF circuits.

Fixed inductors can be classified into several types based on their specific characteristics and applications. Some of the most common types of fixed inductors include:

1. Wire-wound inductors - These inductors consist of a wire coil wound around a core, typically made of a magnetic material such as iron or ferrite. Wire-wound inductors are commonly used in power supplies and filters.

2. Multilayer ceramic inductors - These inductors are made by stacking thin layers of ceramic material with metal electrodes. Multilayer ceramic inductors are commonly used in high-frequency applications due to their high Q factor and small size.

3. Ferrite bead inductors - These inductors consist of a cylindrical or toroidal ferrite bead that is threaded onto a wire or placed over a PCB trace. Ferrite bead inductors are commonly used in EMI suppression and RF filtering applications.

Fixed inductors are available in a wide range of inductance values, sizes, and power ratings. They are typically characterized by their inductance value, tolerance, and frequency response. Inductance is measured in henries (H) or millihenries (mH), and tolerance refers to the allowed deviation from the specified inductance value.