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  conductive polymer tantalum solid electrolytic capacitors adapted to the rohs directive (2002/95/ec). f32 conductive polymer resin-molded chip specifications type numbering system (example : 6.3v 100f) dimensions (mm) case code l w 1 w 2 hs a 3.2 0.2 1.6 0.2 1.2 0.1 1.6 0.2 0.8 0.2 b 3.5 0.2 2.8 0.2 2.2 0.1 1.9 0.2 0.8 0.2 c 6.0 0.2 3.2 0.2 2.2 0.1 2.5 0.2 1.3 0.2 n 7.3 0.2 4.3 0.2 2.4 0.1 2.8 0.2 1.3 0.2 l h s s w 2 w 1 l h s s w 2 w 1 conductive polymer capacitance code a case month code rated voltage code (voltage code) jar month code month code rated capacitance ( f) rated voltage (6.3v is marked as " 6v " ) rated voltage (6.3v is marked as " 6v " ) month code rated capacitance ( f) rated capacitance ( f) 68 p6v 220 p4v p 680 4v conductive polymer conductive polymer c case n case b case rated voltage (6.3v is marked as " 6v " ) marking f32 j 0 1 0 7 m b a 123 5 46 78 91011 rated capacitance capacitance tolerance case code rated voltage series taping code (refer to page 302 for details) item performance characteristics category temperature range capacitance tolerance dissipation factor(at 120hz) esr (100khz) leakage current ripple current damp heat (steady state) temperature cycles resistance to soldering heat surge endurance 1 endurance 2 shear test terminal strength e55 to +105?c (rated temperature + 85?c) 20% (120hz) refer to the list below refer to the list below after 5 minutes' application of rated voltage, leakage current at 20?c is not more than 0.1cv at 60?c, 90 to 95% r.h. 500hours (no voltage applied) e55?c / +105?c 30 minutes each 5 cycle test condition;10 second reflow at 240?c capacitance change .. within e20 to +30% of initial value dissipation factor ....... 1.5 times initial specified value or less leakage current ......... initial specified value or less capacitance change .. within 20% of initial value dissipation factor ....... initial specified value or less leakage current ......... initial specified value or less capacitance change .. within 20% of initial value dissipation factor ....... 1.3 times initial specified value or less leakage current ......... initial specified value or less after application of surge voltage in series with a 1k? resistor at the rate of 30 seconds on, 30 seconds off, for 1000 successive test cycles at 85?c, capacitors meet the characteristics requirements listed below. capacitance change ... within 20% of initial value dissipation factor ........ initial specified value or less leakage current .......... initial specified value or less after 1000 hours' application of rated voltage in series with a 3? resistor at 85?c. capacitance change .... within 20% of initial value dissipation factor ... 1.5 times initial specified value or less leakage current ... initial specified value or less after 1000 hours' application of rated voltage in series with a 3? resistor at 105?c,capacitors meet the characteristic requirements listed below capacitance change .... within 20% of initial value dissipation factor ... 3 times initial specified value or less leakage current ... initial specified value or less after applying the pressure load of 5n for 101 seconds horizontally to the center of capacitor side body which has no electrode and has been soldered beforehand on an aluminum substrate, there shall be found neither exfoliation nor its sign at the terminal electrode. keeping a capacitor surface-mounted on a substrate upside down and supporting the substrate at both of the opposite bottom points 45mm apart from the center of the capacitor, the pressure strength is applied with a specified jig at the center of the substrate so that the substrate may bend by 1mm as illustrated. then, there shall be found no remarkable abnormality on the capacitor terminals. refer to the list below 5n (0.51kg f) for 101 seconds 20 r230 45 45 1 mm ? as for the surge voltage refer to page 301 for details. a b case c n case 1000 108 680 687 330 337 22 226 33 336 47 476 68 686 100 107 150 157 220 227 n ( b ) c b n c a a b b ( b ) c n a b b ( b ) c n a a a 2.5 0e 4 0g 6.3 0j 10 1a b c c 10 226 a a n s w n code v cap. ( f) capacitance code standard ratings rated volt ( v ) 55.0 82.5 250 18.8 27.2 40.0 60.0 88.0 132 272 21 29.6 42.9 63.0 94.5 139 208 10 22.0 33.0 47.0 100 150 220 8 10 10 6 6 8 8 8 10 10 6 6 8 8 9 10 10 6 6 6 8 9 9 10 45 (35) 55 (45) 25 180 180 70 (45,35) 45 (35) 55 (45) 55 25 180 180 70 70 (45,35) 100 (55,45) 55 (40) 40 (25) 180 180 200 70 55 55 55 (40,25) 2.5 4 6.3 10 part number f320e227mba f320e337mcc f320e108mnc f320g476maa f320g686maa F320G107MBA f320g157mba f320g227mcc f320g337mcc f320g687mnc f320j336maa f320j476maa f320j686mba f320j107mba f320j157mcc f320j227mnc f320j337mnc f321a106maa f321a226maa f321a336maa f321a476mba f321a107mcc f321a157mcc f321a227mnc case code b c n a a b b c c n a a b b c n n a a a b c c n 1374 1414 2449 645 645 1102 1374 1414 1414 2449 645 645 1102 1102 1049 1651 1936 645 645 612 1102 1414 1414 1651 rated capacitance ( f) leakage current ( a) disspation factor (%@120hz) esr (m?@100khz) rated ripple (marms@100khz) 220 330 1000 10 22 33 47 100 150 220 33 47 68 100 150 220 330 47 68 100 150 220 330 680 standard ratings ( ) esr specification types are also available upon request. please contact to your local nichicon sales office when these series are being designed in your application. cat.8100x


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