EEE-FK0J102P Panasonic - ECG, EEE-FK0J102P Datasheet
EEE-FK0J102P
Specifications of EEE-FK0J102P
PCE3763TR
Related parts for EEE-FK0J102P
EEE-FK0J102P Summary of contents
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Q Q δ ° ° ° δ ° δ Q φ ° φ ∗ φ ∗ ° ° ° ° ° ° ° ° ° max ° K ...
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Q Ω ° ° ...
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Q An explanation of the taping dimensions can be found on page 84. Refl ow profi les can be found on page 86. Endurance: 105 º C 2000h - 5000h δ ° ° ° Ω ...
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Q An explanation of the taping dimensions can be found on page 84. Refl ow profi les can be found on page 86. º Endurance: 105 C 2000h - 5000h δ ° ° ° Ω ...
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Q An explanation of the taping dimensions can be found on page 84. Refl ow profi les can be found on page 86. º Endurance: 105 C 2000h - 5000h ■ Frequency Correction Factor of Rated Ripple Current Frequency (Hz) ...
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Load Life Endurance 10 0 -10 -20 -30 -40 -50 0 500 1 0.8 0.6 0.4 0 500 500 EEVFK0J220R (6.3V22µF, ø4x5.8) EEVFK0J101P (6.3V100µF, ø6.3x5.8) EEVFK0J152P (6.3V1500µF, ø10x10.2) 1000 1500 ...
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Frequency Characteristics (Impedance) ● 16WV EEVFK1C100R (16V10µF, ø4x5.8) EEVFK1C220R (16V22µF, ø5x5.8) EEVFK1C470P (16V47µF, ø6.3x5.8) EEVFK1C221P (16V220µF, ø8x6.2) EEVFK1C471P (16V470µF, ø8x10.2) EEVFK1C681P (16V680µF, ø10x10.2) EEVFK1C152Q (16V1500µF, ø12.5x13.5) 1000 100 10 1 0.1 0.01 0 100 Frequency (kHz) ● ...
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Frequency Characteristics (ESR) ● 16WV EEVFK1C100R (16V10µF, ø4x5.8) EEVFK1C220R (16V22µF, ø5x5.8) EEVFK1C470P (16V47µF, ø6.3x5.8) EEVFK1C221P (16V220µF, ø8x6.2) EEVFK1C471P (16V470µF, ø8x10.2) EEVFK1C681P (16V680µF, ø10x10.2) EEVFK1C152Q (16V1500µF, ø12.5x13.5) 1000 100 10 1 0.1 0.01 0 100 Frequency (kHz) ● ...
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Temperature Characteristics ● ø6.3 x 5.8 EEVFK0J101R (6.3V100µF, ø6.3x5.8) EEVFK1C470P (16V47µF, ø6.3x5.8) EEVFK1J100P (63V10µF, ø6.3x5.8) EEVFK1K4R7P (80V4.7µF, ø6.3x5. -10 -20 -30 -40 -60 -40 - Temperature ( ) ● ø8 x 10.2 EEVFK0J102P ...
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... No P 8mm to 10mm No 4mm to 5mm 6mm No P 8mm to 10mm No EEV- Q 12.5mm Yes M 16mm to 18mm Yes R 3mm to 5mm Yes P 6mm Yes EEE- P 8mm to 10mm Yes Fig. 1 260 250 240 230 220 210 200 Time in 200deg.C or more / s Fig. 3 260 250 240 230 220 ...