Tehnička dokumentacija
Tehnički podaci
Brand
Wurth ElektronikTechnology
Polymer
Capacitance
39µF
Voltage
20V dc
Dielectric Material Family
Aluminium
Mounting Type
Surface Mount
Equivalent Series Resistance
25mΩ
Lead Pitch
2.1mm
Tolerance
±20%
Maximum Operating Temperature
+105°C
Height
6.3mm
Dimensions
7.7 (Dia) x 6.3mm
Series
WCAP-PSLP
Lifetime
2000h
Ripple Current
2.67A
Minimum Operating Temperature
-55°C
Dissipation Factor
8%
Diameter
7.7mm
Polarised
Polar
Leakage Current
600 μA
Zemlja podrijetla
China
Detalji o proizvodu
Wurth Elektronik SMD Aluminium Polymer Capacitor - WCAP-PSLP series
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
Informacije o stanju skladišta trenutno nisu dostupne.
Provjerite ponovno kasnije.
KM 1.109,57
KM 1,233 Each (On a Reel of 900) (bez PDV-a)
KM 1.298,20
KM 1,443 Each (On a Reel of 900) (s PDV-om)
900
KM 1.109,57
KM 1,233 Each (On a Reel of 900) (bez PDV-a)
KM 1.298,20
KM 1,443 Each (On a Reel of 900) (s PDV-om)
900
Tehnička dokumentacija
Tehnički podaci
Brand
Wurth ElektronikTechnology
Polymer
Capacitance
39µF
Voltage
20V dc
Dielectric Material Family
Aluminium
Mounting Type
Surface Mount
Equivalent Series Resistance
25mΩ
Lead Pitch
2.1mm
Tolerance
±20%
Maximum Operating Temperature
+105°C
Height
6.3mm
Dimensions
7.7 (Dia) x 6.3mm
Series
WCAP-PSLP
Lifetime
2000h
Ripple Current
2.67A
Minimum Operating Temperature
-55°C
Dissipation Factor
8%
Diameter
7.7mm
Polarised
Polar
Leakage Current
600 μA
Zemlja podrijetla
China
Detalji o proizvodu
Wurth Elektronik SMD Aluminium Polymer Capacitor - WCAP-PSLP series
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