Panasonic 330 μF Surface Mount Polymer Capacitor, 2.5 V

RS Stock No.: 795-5809Brand: PanasonicManufacturers Part No.: 2R5TPE330M9
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Technical Document

Specifications

Product Type

Polymer Capacitor

Technology

Polymer

Capacitance

330μF

Voltage

2.5 V

Mount Type

Surface Mount

Package/Case

D2E

Tolerance

±20 %

Maximum Operating Temperature

105°C

Dimensions

7.3 x 4.3 x 1.8 mm

Height

1.8mm

Depth

4.3mm

Length

7.3mm

Series

POSCAP TPE

Electrolyte Type

Solid

Minimum Operating Temperature

-55°C

Ripple Current

3900mA

Leakage Current

82.5μA

Lifetime

1000 h

Automotive Standard

No

Product details

POSCAP TPE series

Panasonic TPE 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 enables large capacitance. High in electric conductivity, the conductive polymer utilised for the electrolyte enables low ESR of 15 mΩ. TPE tantalum capacitors have high heat resistance and reliability making them suitable for high frequency and digital devices.

Small size
Solid electrolytic chip capacitors
Excellent frequency characteristics
Lower impedance compared to standard aluminium electrolytic and tantalum capacitors
Low ESR allows for a high ripple current rating compared to other electrolytic capacitors
Conductive polymer enables a self-healing mechanism
Tantalum oxide ensures that no vibration is generated and there is no noise on the PCB

Applications

Typical applications include backup and bypass capacitors for digital equipment and noise removal. These tantalum capacitors can be used in PCs, mobile phones, home appliances, automotive and industrial equipment.

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Stock information temporarily unavailable.

64.30 MOP

12.861 MOP Each (In a Pack of 5) (ex VAT)

Panasonic 330 μF Surface Mount Polymer Capacitor, 2.5 V
Select packaging type

64.30 MOP

12.861 MOP Each (In a Pack of 5) (ex VAT)

Panasonic 330 μF Surface Mount Polymer Capacitor, 2.5 V

Stock information temporarily unavailable.

Select packaging type

quantityUnit pricePer Pack
5 - 74512.861 MOP64.30 MOP
750 - 149512.593 MOP62.96 MOP
1500+12.325 MOP61.62 MOP

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Click here to find out more

Technical Document

Specifications

Product Type

Polymer Capacitor

Technology

Polymer

Capacitance

330μF

Voltage

2.5 V

Mount Type

Surface Mount

Package/Case

D2E

Tolerance

±20 %

Maximum Operating Temperature

105°C

Dimensions

7.3 x 4.3 x 1.8 mm

Height

1.8mm

Depth

4.3mm

Length

7.3mm

Series

POSCAP TPE

Electrolyte Type

Solid

Minimum Operating Temperature

-55°C

Ripple Current

3900mA

Leakage Current

82.5μA

Lifetime

1000 h

Automotive Standard

No

Product details

POSCAP TPE series

Panasonic TPE 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 enables large capacitance. High in electric conductivity, the conductive polymer utilised for the electrolyte enables low ESR of 15 mΩ. TPE tantalum capacitors have high heat resistance and reliability making them suitable for high frequency and digital devices.

Small size
Solid electrolytic chip capacitors
Excellent frequency characteristics
Lower impedance compared to standard aluminium electrolytic and tantalum capacitors
Low ESR allows for a high ripple current rating compared to other electrolytic capacitors
Conductive polymer enables a self-healing mechanism
Tantalum oxide ensures that no vibration is generated and there is no noise on the PCB

Applications

Typical applications include backup and bypass capacitors for digital equipment and noise removal. These tantalum capacitors can be used in PCs, mobile phones, home appliances, automotive and industrial equipment.

Ideate. Create. Collaborate

JOIN FOR FREE

No hidden fees!

design-spark
design-spark
  • Download and use our DesignSpark software for your PCB and 3D Mechanical designs
  • View and contribute website content and forums
  • Download 3D Models, Schematics and Footprints from more than a million products
Click here to find out more