Wurth Elektronik 10μF Through Hole Polymer Capacitor, 63V dc

Nr. stoc RS: 839-2379Producator: Wurth ElektronikCod de producator: 870055874001
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Documente tehnice

Specificatii

Tehnologie

Polymer

Capacitate

10µF

Tensiune

63V dc

Dielectric

Aluminium

Timp montare

Through Hole

Rezistenta in serie

55mΩ

Pitch de plumb

3.5mm

Toleranta

±20%

Temperatura maxima de lucru

+105°C

Inaltime

11.5mm

Dimensiuni

8 (Dia) x 11.5mm

Serie

WCAP-PTHR

Curent de ondulare

1.4A

Temperatura minima de lucru

-55°C

Diametru

8mm

Leakage Current

126 μA

Durata de viata

2000h

Dissipation Factor

12%

Detalii produs

Wurth Elektronik General Purpose WCAP-PTHR Capacitor Series 105°C

Aluminium Polymer capacitors contain solid conductive polymer instead of wet electrolytic thus the benefits are:
High permissible ripple current due to lower ESR at high frequency range
Higher long term stability and expected life
No dry out phenomenon due to solid conductive polymer

Solid Radial 105°C

Informatii indisponibile despre stoc

Incercati din nou mai tarziu

Informatii indisponibile despre stoc

€ 2,85

Buc. (fara TVA)

€ 3,39

Buc. (cu TVA)

Wurth Elektronik 10μF Through Hole Polymer Capacitor, 63V dc

€ 2,85

Buc. (fara TVA)

€ 3,39

Buc. (cu TVA)

Wurth Elektronik 10μF Through Hole Polymer Capacitor, 63V dc
Informatii indisponibile despre stoc

Cumpara in pachete mari

CantitatePret unitar
1 - 9€ 2,85
10 - 24€ 2,68
25 - 49€ 2,46
50 - 99€ 2,28
100+€ 2,05

Documente tehnice

Specificatii

Tehnologie

Polymer

Capacitate

10µF

Tensiune

63V dc

Dielectric

Aluminium

Timp montare

Through Hole

Rezistenta in serie

55mΩ

Pitch de plumb

3.5mm

Toleranta

±20%

Temperatura maxima de lucru

+105°C

Inaltime

11.5mm

Dimensiuni

8 (Dia) x 11.5mm

Serie

WCAP-PTHR

Curent de ondulare

1.4A

Temperatura minima de lucru

-55°C

Diametru

8mm

Leakage Current

126 μA

Durata de viata

2000h

Dissipation Factor

12%

Detalii produs

Wurth Elektronik General Purpose WCAP-PTHR Capacitor Series 105°C

Aluminium Polymer capacitors contain solid conductive polymer instead of wet electrolytic thus the benefits are:
High permissible ripple current due to lower ESR at high frequency range
Higher long term stability and expected life
No dry out phenomenon due to solid conductive polymer

Solid Radial 105°C