Panasonic 330μF Surface Mount Polymer Capacitor, 6.3V dc

Κωδικός Προϊόντος της RS: 795-5932PΚατασκευαστής: PanasonicΚωδικός Κατασκευαστή: 6TPB330ML
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Τεχνικό φυλλάδιο

Προδιαγραφές

Technology

Polymer

Capacitance

330µF

Dielectric Material Family

Tantalum

Voltage

6.3V dc

Mounting Type

Surface Mount

Package/Case

D3L

Equivalent Series Resistance

40mΩ

Tolerance

±20%

Length

7.3mm

Depth

4.3mm

Height

2.8mm

Maximum Operating Temperature

+105°C

Dimensions

7.3 x 4.3 x 2.8mm

Series

POSCAP TPB

Electrolyte Type

Solid

Minimum Operating Temperature

-55°C

Leakage Current

207.9 μA

Λεπτομέρειες Προϊόντος

POSCAP TPB series

Panasonic TPB series tantalum capacitors are part of the POSCAP range. Constructed from sintered tantalum as the anode material, the large surface area of the porous materials allows large capacitance. High in electric conductivity, the conductive polymer utilised for the electrolyte ensures low ESR. TPB tantalum capacitors have high heat resistance and reliability making them suitable for high frequency and digital devices.

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Panasonic 330μF Surface Mount Polymer Capacitor, 6.3V dc
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Panasonic 330μF Surface Mount Polymer Capacitor, 6.3V dc
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Επιλέγξτε συσκευασία

Τεχνικό φυλλάδιο

Προδιαγραφές

Technology

Polymer

Capacitance

330µF

Dielectric Material Family

Tantalum

Voltage

6.3V dc

Mounting Type

Surface Mount

Package/Case

D3L

Equivalent Series Resistance

40mΩ

Tolerance

±20%

Length

7.3mm

Depth

4.3mm

Height

2.8mm

Maximum Operating Temperature

+105°C

Dimensions

7.3 x 4.3 x 2.8mm

Series

POSCAP TPB

Electrolyte Type

Solid

Minimum Operating Temperature

-55°C

Leakage Current

207.9 μA

Λεπτομέρειες Προϊόντος

POSCAP TPB series

Panasonic TPB series tantalum capacitors are part of the POSCAP range. Constructed from sintered tantalum as the anode material, the large surface area of the porous materials allows large capacitance. High in electric conductivity, the conductive polymer utilised for the electrolyte ensures low ESR. TPB tantalum capacitors have high heat resistance and reliability making them suitable for high frequency and digital devices.