.001 ohm Data Line Filters 9

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Part RoHS Manufacturer Filter Type Construction Maximum DC Resistance Maximum Frequency Material Rated Current Minimum Insulation Resistance Approvals (V) Power Supply (V) No. of Functions Technology Screening Level Output Impedance (ohm) High Pot Packing Method Mounting Type Rated Voltage No. of Terminals Sub-Category Dimensions Case Code Maximum Operating Temperature Attenuation At Maximum Frequency Minimum Attenuation Frequency Package Material Minimum Operating Temperature Attenuation At Minimum Frequency Terminal Finish Inductance Maximum Attenuation Frequency Manufacturer Series Height Width (mm) Diameter (mm) Maximum Insertion Loss Additional Features JESD-609 Code Minimum Frequency Operating Frequency (Hz) Series Length Capacitance

CM3440Z171R-10

Laird Technologies

DATA LINE FILTER

.001 ohm

20 A

2

170 OHM

TR, 13 INCH

SURFACE MOUNT

4

L10.03XB8.51XH9.32 (mm)/L0.395XB0.335XH0.367 (inch)

Tin (Sn) - with Nickel (Ni) barrier

9.32 mm

8.51

e3

10.03 mm

28F0181-1SR-10

Laird Technologies

DATA LINE FILTER

Chip Bead

.001 ohm

900 MHz

Ferrite

10 A

1

115 OHM

TR, 13 INCH

SURFACE MOUNT

Other Filters

L8.51XB4.57XH3.05 (mm)/L0.335XB0.18XH0.12 (inch)

3318

125 Cel

-45 Cel

Tin (Sn) - with Nickel (Ni) barrier

3.05 mm

4.57

e3

25 MHz

8.51 mm

CM4440Z121R-10

Laird Technologies

DATA LINE FILTER

.001 ohm

20 A

3

120 OHM

TR, EMBOSSED, PLASTIC, 13 INCH

SURFACE MOUNT

100 V

6

125 Cel

-40 Cel

9.32 mm

10.03

11.05 mm

CM3440Z171B-10

Laird Technologies

DATA LINE FILTER

.001 ohm

20 A

2

170 OHM

THROUGH HOLE MOUNT

4

L10.03XB8.51XH9.32 (mm)/L0.395XB0.335XH0.367 (inch)

125 Cel

-40 Cel

Matte Tin (Sn) - with Nickel (Ni) barrier

9.32 mm

8.51

e3

10.03 mm

35F0121-1SR-10

Laird Technologies

DATA LINE FILTER

Chip Bead

.001 ohm

17 MHz

Ferrite

10 A

1

90 OHM

TAPE AND REEL

SURFACE MOUNT

2

Other Filters

L3.05XB2.54XH8.51 (mm)/L0.12XB0.1XH0.335 (inch)

3312

125 Cel

-45 Cel

Tin (Sn)

8.51 mm

2.54

IMPEDANCE AT 10 MHZ

e3

1 MHz

3.05 mm

28F0121-1SR-10

Laird Technologies

FERRITE BEAD

Chip Bead

.001 ohm

833 MHz

Ferrite

10 A

1

120 OHM

TR, 13 INCH

SURFACE MOUNT

2

Other Filters

L8.51XB3.05XH2.54 (mm)/L0.335XB0.12XH0.1 (inch)

3312

125 Cel

-45 Cel

Matte Tin (Sn) - with Nickel (Ni) barrier

2.54 mm

3.05

e3

25 MHz

8.51 mm

BDS3/3/8.9-3S1

Ferroxcube International Holding B V

FERRITE BEAD

.001 ohm

8.5 A

1

80 OHM

TAPE AND REEL

SURFACE MOUNT

60 V

2

L8.9XB3.05XH3 (mm)

3 mm

3.05

IMPEDANCE AT 10 MHZ

8.9 mm

BDS3/3/8.9-3S1-CZ

Ferroxcube International Holding B V

FERRITE BEAD

.001 ohm

IEC

1

55 OHM

TR, BLISTER, 13 INCH

SURFACE MOUNT

2

L8.5XB3.05XH3.0 (mm)/L0.335XB0.12XH0.118 (inch)

TIN

3 mm

3.05

e3

8.5 mm

BDS3/3/8.9-4S2-Z

Ferroxcube International Holding B V

FERRITE BEAD

.001 ohm

10 A

IEC

1

100 OHM

TAPE AND REEL

SURFACE MOUNT

60 V

2

L8.9XB3.05XH3.0 (mm)/L0.35XB0.12XH0.118 (inch)

3 mm

3.05

RATED CURRENT 8.5 A ALSO AVAILABLE

8.9 mm

Data Line Filters

Data line filters are electronic filters that are used to filter out noise and interference from data communication lines. They are designed to provide a high level of attenuation of unwanted frequencies while allowing the desired data signal to pass through with minimal distortion.

Data line filters use a combination of passive and active components, including resistors, capacitors, inductors, and op-amps, to filter out noise and interference from data communication lines. They can be designed for a wide range of communication standards, including Ethernet, USB, HDMI, and other data communication protocols.

Data line filters can be designed as low-pass filters, which allow low-frequency signals to pass through while attenuating high-frequency signals, or as band-stop filters, which block a specific range of frequencies while allowing other frequencies to pass through. They can also be designed with multiple stages of filtering to provide increased attenuation of unwanted frequencies.

Data line filters are commonly used in a variety of electronic systems, including computers, telecommunication equipment, medical equipment, and industrial control systems. They are also used in data centers and other applications where high-speed data communication is critical.