Oxley, FLTM, Signal Filter, 350 V dc 1000MHz, 10A, Panel Mount, 4.7 (Dia.) x 32.7mm

Nr. stoc RS: 239-208Producator: Oxley
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Documente tehnice

Specificatii

Marca

Oxley

Serie

FLTM

Maximum Current Rating

10A

Maximum Voltage Rating

350 V dc

Timp montare

Panel Mount

Operating Frequency

1000MHz

Dimensiuni

4.7 (Dia.) x 32.7mm

Inaltime

22.2mm

Lungime

32.7mm

Temperatura maxima de lucru

+85°C

Temperatura minima de lucru

-55°C

Capacitate

5nF

Tara de origine

United Kingdom

Detalii produs

RS Pro Signal Filters

From RS Pro, this range consists of PI-section RFI suppression filters that combine tubular capacitors with a ferrite inductor. These passive filters are suitable for applications where high insertion loss is required from 10 MHz to 10 GHz along with negligible DC and low frequency voltage drop.

Informatii indisponibile despre stoc

Incercati din nou mai tarziu

Informatii indisponibile despre stoc

€ 29,77

Buc. (fara TVA)

€ 35,43

Buc. (cu TVA)

Oxley, FLTM, Signal Filter, 350 V dc 1000MHz, 10A, Panel Mount, 4.7 (Dia.) x 32.7mm

€ 29,77

Buc. (fara TVA)

€ 35,43

Buc. (cu TVA)

Oxley, FLTM, Signal Filter, 350 V dc 1000MHz, 10A, Panel Mount, 4.7 (Dia.) x 32.7mm
Informatii indisponibile despre stoc

Cumpara in pachete mari

CantitatePret unitar
1 - 24€ 29,77
25 - 49€ 26,62
50 - 99€ 25,75
100 - 199€ 24,57
200+€ 23,93

Documente tehnice

Specificatii

Marca

Oxley

Serie

FLTM

Maximum Current Rating

10A

Maximum Voltage Rating

350 V dc

Timp montare

Panel Mount

Operating Frequency

1000MHz

Dimensiuni

4.7 (Dia.) x 32.7mm

Inaltime

22.2mm

Lungime

32.7mm

Temperatura maxima de lucru

+85°C

Temperatura minima de lucru

-55°C

Capacitate

5nF

Tara de origine

United Kingdom

Detalii produs

RS Pro Signal Filters

From RS Pro, this range consists of PI-section RFI suppression filters that combine tubular capacitors with a ferrite inductor. These passive filters are suitable for applications where high insertion loss is required from 10 MHz to 10 GHz along with negligible DC and low frequency voltage drop.