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EEFCD0xxxxXR - (UE XR Series) Specialty Polymer Aluminum Electrolytic Chip Capacitors

Download the EEFCD0xxxxXR datasheet PDF. This datasheet also covers the EEFUE0J181XR variant, as both devices belong to the same (ue xr series) specialty polymer aluminum electrolytic chip capacitors family and are provided as variant models within a single manufacturer datasheet.

Features

  • s.
  • Specifications Operating Temp. Range w w Rated W. V. Range Nominal Cap. Range Capacitance Tolerance DC Leakage Current a D . w.
  • Lower ESR.
  • Higher Ripple Current S a t e e h U 4 t m o . c Specialty Polymer Aluminum Electrolytic Chip Capacitors (SP.
  • Cap) / Type XR Japan -40 to +105oC 2 to 8 V. DC 33 to 390 mF ±20 % (120Hz/+20oC) 0.06 max (CD), 0.10 max (UD/UE) (120Hz / +20°C) l < 0.06 CV after 2 minutes (2W. V. , 2.5W. V. , 4W. V. ), l < 0.04 CV after 2 minutes (6.3W.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (EEFUE0J181XR_Panasonic.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number EEFCD0xxxxXR
Manufacturer Panasonic
File Size 125.22 KB
Description (UE XR Series) Specialty Polymer Aluminum Electrolytic Chip Capacitors
Datasheet download datasheet EEFCD0xxxxXR Datasheet

Full PDF Text Transcription

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Surface Mount Type Series: Type: CD / UD / UE XR ■ Features ■ Specifications Operating Temp. Range w w Rated W.V. Range Nominal Cap. Range Capacitance Tolerance DC Leakage Current a D . w ● Lower ESR ● Higher Ripple Current S a t e e h U 4 t m o .c Specialty Polymer Aluminum Electrolytic Chip Capacitors (SP–Cap) / Type XR Japan -40 to +105oC 2 to 8 V. DC 33 to 390 mF ±20 % (120Hz/+20oC) 0.06 max (CD), 0.10 max (UD/UE) (120Hz / +20°C) l < 0.06 CV after 2 minutes (2W.V., 2.5W.V., 4W.V.), l < 0.04 CV after 2 minutes (6.3W.V., 8W.V.) Dissipation Factor Surge Voltage Rated Working Voltage x 1.25 (+15 to +35oC) After applying rated working voltage for 1000 hours at + 105*2°C, and then being stabilized at +20°C, the capacitor shall meet the following limits.
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