Murata, DSS6, Signal Filter, 100 V dc, 6A, Solder, 8 x 2.54 x 7mm

RS Stock No.: 209-027Brand: MurataManufacturers Part No.: DSS6NZ82A103Q55B
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Technical Document

Specifications

Brand

Murata

Series

DSS6

Maximum Current Rating

6A

Maximum Voltage Rating

100 V dc

Termination Style

Solder

Dimensions

8 x 2.54 x 7mm

Depth

2.54mm

Height

7mm

Length

8mm

Maximum Operating Temperature

+85°C

Minimum Operating Temperature

-25°C

Product details

Three Terminal Capacitors DSS6/DSS9 Series

Unlike conventional two terminal capacitors which have high residual inductance within the lead wires, thereby impeding the path of high frequency noise to ground, a three terminal capacitor forms a T-filter providing high inductance in series with the line, via two integral ferrite beads, and low inductance to ground via the bypass capacitor. Thus they provide increased attenuation with frequency over conventional decoupling capacitors

Note: See 'key characteristics' table for details of effective frequency ranges

Applications include:

High frequency noise suppression for d.c. power lines
Noise suppression in digital high impedance circuits
Noise suppression in high speed digital signals (clocks etc.)
Noise suppression in video IF signals

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P.O.A.

Murata, DSS6, Signal Filter, 100 V dc, 6A, Solder, 8 x 2.54 x 7mm
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P.O.A.

Murata, DSS6, Signal Filter, 100 V dc, 6A, Solder, 8 x 2.54 x 7mm
Stock information temporarily unavailable.
Select packaging type

Technical Document

Specifications

Brand

Murata

Series

DSS6

Maximum Current Rating

6A

Maximum Voltage Rating

100 V dc

Termination Style

Solder

Dimensions

8 x 2.54 x 7mm

Depth

2.54mm

Height

7mm

Length

8mm

Maximum Operating Temperature

+85°C

Minimum Operating Temperature

-25°C

Product details

Three Terminal Capacitors DSS6/DSS9 Series

Unlike conventional two terminal capacitors which have high residual inductance within the lead wires, thereby impeding the path of high frequency noise to ground, a three terminal capacitor forms a T-filter providing high inductance in series with the line, via two integral ferrite beads, and low inductance to ground via the bypass capacitor. Thus they provide increased attenuation with frequency over conventional decoupling capacitors

Note: See 'key characteristics' table for details of effective frequency ranges

Applications include:

High frequency noise suppression for d.c. power lines
Noise suppression in digital high impedance circuits
Noise suppression in high speed digital signals (clocks etc.)
Noise suppression in video IF signals