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  design, specifications are subject to change without notice. ask factory for technical specifications before purchase and/or use . whenever a doubt about safety arises from this product, please inform us immediately for technical consultation without fail. '$ plastic film capacitors stacked metallized pps film chip capacitor type: echu(x) stacked metallized pps film as dielectric with simple mold-less construction features small in size (minimum size 1.6 mm ? 0.8 mm) 85 ?c, 85 %rh, w.v. ? 1.0 for 500 hours for reflow soldering rohs directive compliant recommended applications time-constant filtering oscillation and resonance explanation of part numbers 123456789101112 e c h u product code dielectric & construction rated voltage capacitance x cap. tol. suffix suffix specifications construction dimensions in mm (not to scale) ? please consult us for flow soldering ? in case of applying voltage in alternating current (50 hz or 60 hz sine wave) to a capacitor with dc rated voltage, please refer to the page of ?ermissible voltage (r.m.s) in alternating current corresponding to dc rated voltage? 1c 16 vdc 1h 50 vdc 5 8 mm size ?80 mm 9 12 mm size ?30 mm ? tape width 8 mm and diameter ?30 mm reel is prepared. tape width reel diameter category temp. range (including temperature-rise on unit surface) rated voltage capacitance range capacitance tolerance withstand voltage dissipation factor (tan ) insulation resistance (ir) 55 ? to 125 ? 16 vdc|50 vdc (50 vdc: 0.12 ? or more: derating or rated voltage by 1.25 % / ?at more than 105 ?) 0.00010 ? to 0.22 f (e12) 2 %(g), 5 %(j) between terminals : rated volt. (vdc) ? 150 % 60 s tan? 0.6 % (20 ?, 1 khz) 16 vdcir ?3000 m
(20 ?, 10 vdc, 60 s) 50 vdcir ?3000 m
(20 ?, 50 vdc, 60 s) soldering conditions reflow soldering : 260 ?c max. and 95 sec max. at more than 220 ?c (temp. at cap. surface) saize code l wh e g k1 1.6 0.8 0.7 0.35 ?0.4 j1 2.0 1.25 0.9 0.45 ?0.6 j2 2.0 1.25 1.1 0.45 ?0.6 h1 3.2 1.6 0.9 0.65 ?1.0 h2 3.2 1.6 1.1 0.65 ?1.0 h3 3.2 1.6 1.5 0.65 ?1.0 g1 3.2 2.5 1.1 0.65 ?1.0 g2 3.2 2.5 1.5 0.65 ?1.0 g3 3.2 2.5 2.1 0.65 ?1.0 e1 4.8 3.3 1.5 0.80 ?2.0 e2 4.8 3.3 2.1 0.80 ?2.0 d1 6.0 4.1 1.9 0.80 ?2.0 d3 6.0 4.1 2.5 0.80 ?2.0 d4 6.0 4.1 2.8 0.80 ?2.0 g 2 % j 5 % p ? ? ? p1 ?32 12.11.14 20:49 y [ w 16
design, specifications are subject to change without notice. ask factory for technical specifications before purchase and/or use . whenever a doubt about safety arises from this product, please inform us immediately for technical consultation without fail. '$ plastic film capacitors rating, dimensions & quantity/reel capacitance tolerance : 2 % (g), 5 % (j) taping specification for automatic mounting refer to the page of taping specifications chip 0.00010 0.00012 0.00015 0.00018 0.00022 0.00027 0.00033 0.00039 0.00047 0.00056 0.00068 0.00082 0.0010 0.0012 0.0015 0.0018 0.0022 0.0027 0.0033 0.0039 0.0047 0.0056 0.0068 0.0082 0.010 0.012 0.015 0.018 0.022 0.027 0.033 0.039 0.047 0.056 0.068 0.082 0.10 0.12 0.15 0.18 0.22 cap. (?) echu1c101 ? x5 1.6 0.8 0.7 k1 echu1c121 ? x5 1.6 0.8 0.7 k1 echu1c151 ? x5 1.6 0.8 0.7 k1 echu1c181 ? x5 1.6 0.8 0.7 k1 echu1c221 ? x5 1.6 0.8 0.7 k1 echu1c271 ? x5 1.6 0.8 0.7 k1 echu1c331 ? x5 1.6 0.8 0.7 k1 echu1c391 ? x5 1.6 0.8 0.7 k1 echu1c471 ? x5 1.6 0.8 0.7 k1 echu1c561 ? x5 1.6 0.8 0.7 k1 echu1c681 ? x5 1.6 0.8 0.7 k1 echu1c821 ? x5 1.6 0.8 0.7 k1 echu1c102 ? x5 1.6 0.8 0.7 k1 echu1c122 ? x5 1.6 0.8 0.7 k1 echu1c152 ? x5 1.6 0.8 0.7 k1 echu1c182 ? x5 1.6 0.8 0.7 k1 echu1c222 ? x5 1.6 0.8 0.7 k1 echu1c272 ? x5 1.6 0.8 0.7 k1 echu1h101 ? x5 2.0 1.25 0.9 j1 echu1h121 ? x5 2.0 1.25 0.9 j1 echu1h151 ? x5 2.0 1.25 0.9 j1 echu1h181 ? x5 2.0 1.25 0.9 j1 echu1h221 ? x5 2.0 1.25 0.9 j1 echu1h271 ? x5 2.0 1.25 0.9 j1 echu1h331 ? x5 2.0 1.25 0.9 j1 echu1h391 ? x5 2.0 1.25 0.9 j1 echu1h471 ? x5 2.0 1.25 0.9 j1 echu1h561 ? x5 2.0 1.25 0.9 j1 echu1h681 ? x5 2.0 1.25 0.9 j1 echu1h821 ? x5 2.0 1.25 0.9 j1 echu1h102 ? x5 2.0 1.25 0.9 j1 echu1h122 ? x5 2.0 1.25 0.9 j1 echu1h152 ? x5 2.0 1.25 0.9 j1 echu1h182 ? x5 2.0 1.25 0.9 j1 echu1h222 ? x5 2.0 1.25 0.9 j1 echu1h272 ? x5 2.0 1.25 0.9 j1 echu1h332 ? x5 3.2 1.6 0.9 h1 echu1h392 ? x5 3.2 1.6 0.9 h1 echu1h472 ? x5 3.2 1.6 0.9 h1 echu1h562 ? x5 3.2 1.6 0.9 h1 echu1h682 ? x5 3.2 1.6 0.9 h1 echu1h822 ? x5 3.2 1.6 1.1 h2 echu1h103 ? x5 3.2 1.6 1.1 h2 echu1h123 ? x5 3.2 2.5 1.1 g1 echu1h153 ? x5 3.2 2.5 1.1 g1 echu1h183 ? x5 3.2 2.5 1.5 g2 echu1h223 ? x5 3.2 2.5 1.5 g2 echu1h273 ? x5 3.2 2.5 1.5 g2 echu1h333 ? x5 3.2 2.5 2.1 g3 echu1h393 ? x5 3.2 2.5 2.1 g3 echu1h473 ? x9 4.8 3.3 1.5 e1 echu1h563 ? x9 4.8 3.3 1.5 e1 echu1h683 ? x9 4.8 3.3 1.5 e1 echu1h823 ? x9 4.8 3.3 2.1 e2 echu1h104 ? x9 4.8 3.3 2.1 e2 echu1h124 ? x9 6.0 4.1 1.9 d1 echu1h154 ? x9 6.0 4.1 1.9 d1 echu1h184 ? x9 6.0 4.1 2.5 d3 echu1h224 ? x9 6.0 4.1 2.8 d4 3000 2000 3000 2000 echu1c332 ? x5 2.0 1.25 0.9 j1 echu1c392 ? x5 2.0 1.25 0.9 j1 echu1c472 ? x5 2.0 1.25 0.9 j1 echu1c562 ? x5 2.0 1.25 0.9 j1 echu1c682 ? x5 2.0 1.25 0.9 j1 echu1c822 ? x5 2.0 1.25 1.1 j2 echu1c103 ? x5 2.0 1.25 1.1 j2 echu1c123 ? x5 3.2 1.6 0.9 h1 echu1c153 ? x5 3.2 1.6 0.9 h1 echu1c183 ? x5 3.2 1.6 0.9 h1 echu1c223 ? x5 3.2 1.6 0.9 h1 echu1c273 ? x5 3.2 1.6 1.1 h2 echu1c333 ? x5 3.2 1.6 1.1 h2 echu1c393 ? x5 3.2 1.6 1.5 h3 echu1c473 ? x5 3.2 1.6 1.5 h3 echu1c563 ? x5 3.2 2.5 1.5 g2 echu1c683 ? x5 3.2 2.5 1.5 g2 echu1c823 ? x5 3.2 2.5 2.1 g3 echu1c104 ? x5 3.2 2.5 2.1 g3 3000 4000 2000 rated volt. 16 vdc part no. dimensions (mm) lwh size code q'ty rated volt. 50 vdc part no. dimensions (mm) lwh size code q'ty a cap. tol. code a recommended for land dimensions (mm) size code land dimensions reflow soldering abc k1 0.6 2.0 0.7 j1,j2 0.8 2.4 1.1 h1,h2,h3 1.8 3.6 1.4 g1,g2,g3 1.8 3.6 2.3 e1,e2 3.0 5.6 3.0 d1,d3,d4 4.0 7.0 3.8 ? it is not warrantable that you can mount the capacitor without trouble under all the mounting condition when ?ecommender for land dimensions?is adopted. p ? ? ? p1 ?32 12.11.14 20:49 y [ w 17
(stacked metallized film) 3.3nf 10nf 27nf -10 -5 0 5 10 -60 -40 -20 0 20 40 60 80 100 120 140 capacitance change(%) 3.3nf 10nf 27nf 0 2 4 6 8 10 -60 -40 -20 0 20 40 60 80 100 120 140 temperature characteristics frequency characteristics electrical characteristics 10nf 3.3nf 27nf 10nf 27nf 1.e+06 1.e+07 1.e+08 1.e+09 1.e+10 1.e+11 1.e+12 -60 -40 -20 0 20 40 60 80 100 120 140 3.3nf 10nf 27nf -10 -5 0 5 10 1 10 100 1000 10000 3.3nf 10nf 27nf 0 2 4 6 8 10 1 10 100 1000 10000 3.3nf 10nf 27nf 0.1 1 10 100 1000 10000 100000 1 10 100 1000 10000 insulation resistance(ohm) dissipation factor(%) capacitance change(%) impedance(ohm) dissipation factor(%) at 1khz at 1khz at dc10v frequency(khz) temperature(degree c) frequency(khz) temperature(degree c) echu (x) typ e dc10v series frequency(khz) temperature(degree c)
(stacked metallized film) permissible current permissible voltage applicable specifications dc rated voltage (v) frequency(khz) frequency(khz) echu (x) typ e dc10v series * please consult panasonic if y our condition exceeds the abov e *the current ( 0-p ) value is calculated usin g nominal ca p acitance. *permissible volta g e g ra p h is the case of sine waveform. when y ou use this p roduct , p eak volta g e must not exceed dc rated volta g e. to 27nf from 3.3nf 0 4 8 12 16 20 -60 -40 -20 0 20 40 60 80 100 120 140 voltage derating by temperature surface temperature of capacitor(degreec) pulse handling capability (dv/dt) (max 10000cycles) rating voltage capacitance value(uf) code dv/dt (v/us) current (0-p) (a) 0.0033 332 47 0.16 0.0039 392 44 0.17 0.0047 472 40 0.19 0.0056 562 37 0.21 0.0068 682 34 0.23 0.0082 822 31 0.25 0.01 103 28 0.28 0.012 123 26 0.31 0.015 153 24 0.36 0.018 183 22 0.40 0.022 223 20 0.44 0.027 273 18 0.49 dc 10v effective value (arms) 3.3nf 3.9nf 4.7nf 5.6nf 6.8nf 8.2nf 10nf 12nf 15nf 18nf 22nf 27nf 0.0 0.1 0.2 0.3 0.4 0.5 1 10 100 1000 to 27nf from 3.3nf 1 10 100 1 10 100 1000 effective value (vrms) (at sine wave)
echu (x) type dc16v series temperature characteristics frequency characteristics electrical characteristics < typical data > ( stacked metallized film) 0 2 4 6 8 10 -60 -40 -20 0 20 40 60 80 100 120 140 temperature(degree c) at 1khz 0.010 uf 0. 10 uf -10 temperature(degree c) -5 0 5 10 -60 -40 -20 0 20 40 60 80 100 120 140 at 1khz 0.010 uf 0. 10 uf capacitance change(%) -10 -5 0 5 10 1 10 100 1000 10000 0.010 uf 3300 pf 0. 10 uf frequency (khz) capacitance change(%) dissipation factor(%) 3 0 1 2 1 10 100 1000 10000 0.010 uf 3300 pf 0. 10 uf frequency (khz) dissipation factor(%) temperature(degree c) 1. e+06 1. e+07 1. e+08 1. e+09 1. e+10 1. e+11 1. e+12 -60 -40 -20 0 20 40 60 80 100 120 140 0. 10 uf 0.010 uf at dc 10v insuration resistance(ohm) frequency (khz) 0.01 0.1 1 10 100 1000 10000 10 100 1000 10000 100000 0.010 uf 3300 pf 0. 10 uf impedance(ohm)
echu (x) type dc16v series pulse handling capability ( dv / dt ) (max 10000cycles) applicable specifications ( stacked metallized film) 86 80 74 68 62 58 52 48 43 40 37 33 31 28 26 24 22 20 19 dv / dt (v/us) 0.0033 0.0039 0.0047 0.0056 0.0068 0.0082 0.010 0.012 0.015 0.018 0.022 0.027 0.033 0.039 0.047 0.056 0.068 0.082 0.10 capacitance value( uf ) 332 392 472 562 682 822 103 123 153 183 223 273 333 393 473 563 683 823 104 code dc 16v rating voltage 0.28 0.31 0.35 0.38 0.42 0.48 0.52 0.58 0.65 0.72 0.81 0.89 1.02 1.09 1.22 1.34 1.50 1.64 1.90 current( 0-p ) (a) * please consult panasonic if your condition exceeds the above spec. * the current( 0-p ) value is calculated using nominal capacitance. * permissible voltage graph is the case of sine waveform. when you use this product, peak voltage must not exceed dc rated voltage. permissible voltage 1 10 100 10 100 1000 from 3300 pf to 0.039 uf from 0.047 uf to 0.10 uf ( at sine wave) frequency (khz) effective value (a) permissible current 0.0 0.5 1.0 1.5 2.0 10 100 1000 0.10 uf 0.082 uf 0.068 uf 0.056 uf 0.047 uf 0.039 uf 0.033 uf 0.027 uf 0.022 uf 0.018 uf 0.015 uf 0.012 uf 0.010 uf 8200 pf 6800 pf 4700 pf 3900 pf 3300 pf frequency (khz) 5600 pf effective value (a) voltage derating by temperature 0 5 10 15 20 -60 -40 -20 0 20 40 60 80 100 120 140 surface temperature of capacitor( degreec ) dc rated voltage (v)
0 . 0 1 0 . 1 1 1 0 1 0 0 1 0 0 0 1 0 0 0 0 1 0 0 1 0 0 0 1 0 0 0 0 1 0 0 0 0 0 1 0 0 p f 1 0 0 0 p f 0 . 0 3 9 u f 0 . 1 u f 0 . 2 2 u f 1 . e + 0 6 1 . e + 0 7 1 . e + 0 8 1 . e + 0 9 1 . e + 1 0 1 . e + 1 1 1 . e + 1 2 - 6 0 - 4 0 - 2 0 0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 0 . 0 1 u f 1 0 0 p f 1 0 0 0 p f 0 . 1 u f 0 . 2 2 u f ( s t a c k e d m e t a l l i z e d f i l m ) - 1 0 - 5 0 5 1 0 - 6 0 - 4 0 - 2 0 0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 1 0 0 p f 1 0 0 0 p f 0 . 0 1 u f 0 . 1 u f 0 . 2 2 u f c a p a c i t a n c e c h a n g e ( % ) 0 2 4 6 8 1 0 - 6 0 - 4 0 - 2 0 0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 1 0 0 p f 1 0 0 0 p f 0 . 0 1 u f 0 . 1 u f 0 . 2 2 u f t e m p e r a t u r e c h a r a c t e r i s t i c s f r e q u e n c y c h a r a c t e r i s t i c s e l e c t r i c a l c h a r a c t e r i s t i c s < t y p i c a l d a t a > - 1 0 - 5 0 5 1 0 1 0 1 0 0 1 0 0 0 1 0 0 0 0 0 . 0 3 9 u f 1 0 0 0 p f 1 0 0 p f 0 . 2 2 u f 0 . 1 u f 0 1 2 3 1 0 1 0 0 1 0 0 0 1 0 0 0 0 0 . 0 3 9 u f 1 0 0 0 p f 1 0 0 p f 0 . 1 u f 0 . 2 2 u f i n s u l a t i o n r e s i s t a n c e ( o h m ) d i s s i p a t i o n f a c t o r ( % ) c a p a c i t a n c e c h a n g e ( % ) i m p e d a n c e ( o h m ) d i s s i p a t i o n f a c t o r ( % ) a t 1 k h z a t 1 k h z a t d c 5 0 v f r e q u e n c y ( k h z ) t e m p e r a t u r e ( d e g r e e c ) f r e q u e n c y ( k h z ) t e m p e r a t u r e ( d e g r e e c ) e c h u ( x ) t y p e d c 5 0 v s e r i e s f r e q u e n c y ( k h z ) t e m p e r a t u r e ( d e g r e e c )
1 1 0 1 0 0 1 0 1 0 0 1 0 0 0 f r o m 1 0 0 p f t o 2 7 0 0 p f 0 . 0 0 . 2 0 . 4 0 . 6 0 . 8 1 . 0 1 . 2 1 0 1 0 0 1 0 0 0 3 3 0 0 p f 3 9 0 0 p f 4 7 0 0 p f 5 6 0 0 p f 6 8 0 0 p f 8 2 0 0 p f 0 . 0 1 u f 0 . 0 1 2 u f 0 . 0 1 5 u f 0 . 0 1 8 u f 0 . 0 2 2 u f 0 . 0 2 7 u f 0 . 0 3 3 u f 0 . 0 3 9 u f 0 . 0 0 0 . 0 2 0 . 0 4 0 . 0 6 0 . 0 8 0 . 1 0 0 . 1 2 1 0 1 0 0 1 0 0 0 2 7 0 0 p f 2 2 0 0 p f 1 8 0 0 p f 1 5 0 0 p f 1 2 0 0 p f 1 0 0 0 p f 8 2 0 p f 6 8 0 p f 5 6 0 p f ?^ 1 0 0 p f 0 . 0 0 . 5 1 . 0 1 . 5 2 . 0 1 0 1 0 0 0 . 0 4 7 u f 0 . 0 5 6 u f 0 . 0 6 8 u f 0 . 0 8 2 u f 0 . 1 u f 0 . 1 2 u f 0 . 1 5 u f 0 . 1 8 u f 0 . 2 2 u f ( s t a c k e d m e t a l l i z e d f i l m ) e f f e c t i v e v a l u e ( a r m s ) p e r m i s s i b l e c u r r e n t p e r m i s s i b l e c u r r e n t a p p l i c a b l e s p e c i f i c a t i o n s e f f e c t i v e v a l u e f r e q u e n c y ( k h z ) f r e q u e n c y ( k h z ) e c h u ( x ) t y p e d c 5 0 v s e r i e s * p l e a s e c o n s u l t p a n a s o n i c i f y o u r c o n d i t i o n e x c e e d s t h e a b o v e * t h e c u r r e n t ( 0 - p ) v l u e i s c a l c u l a t e d u s i n g n o m i n a l c a p a c i t a n c e . * p e r m i s s i b l e v o l t a g e g r a p h i s t h e c a s e o f s i n e w a v e f o r m . w h e n y o u u s e t h i s p r o d u c t , p e a k v o l t a g e m u s t n o t e x c e e d d c r a t e d v o l t a g e . e f f e c t i v e v a l u e ( a r m s ) p e r m i s s i b l e v o l t a g e p e r m i s s i b l e c u r r e n t ( a t s i n e w a v e ) f r e q u e n c y ( k h z ) e f f e c t i v e v a l u e ( a r m s ) f r e q u e n c y ( k h z )
r a t i n g v o l t a g e c a p a c i t a n c e v a l u e ( u f ) c o d e d v / d t ( v / u s ) c u r r e n t ( a o - p ) 0 . 0 0 0 1 0 1 0 1 1 1 0 0 0 . 1 1 0 . 0 0 0 1 2 1 2 1 1 0 5 0 0 . 1 3 0 . 0 0 0 1 5 1 5 1 9 4 0 0 . 1 4 0 . 0 0 0 1 8 1 8 1 8 9 0 0 . 1 6 0 . 0 0 0 2 2 2 2 1 8 0 0 0 . 1 8 0 . 0 0 0 2 7 2 7 1 7 3 0 0 . 2 0 0 . 0 0 0 3 3 3 3 1 6 9 0 0 . 2 3 0 . 0 0 0 3 9 3 9 1 6 1 0 0 . 2 4 0 . 0 0 0 4 7 4 7 1 5 8 0 0 . 2 7 0 . 0 0 0 5 6 5 6 1 5 2 0 0 . 2 9 0 . 0 0 0 6 8 6 8 1 4 8 0 0 . 3 3 0 . 0 0 0 8 2 8 2 1 4 4 0 0 . 3 6 0 . 0 0 1 0 1 0 2 4 0 0 0 . 4 0 0 . 0 0 1 2 1 2 2 3 7 0 0 . 4 4 0 . 0 0 1 5 1 5 2 3 4 0 0 . 5 1 0 . 0 0 1 8 1 8 2 3 1 0 0 . 5 6 0 . 0 0 2 2 2 2 2 2 7 0 0 . 5 9 0 . 0 0 2 7 2 7 2 2 6 0 0 . 7 0 d c 5 0 v 1 1 0 1 0 0 1 0 1 0 0 0 . 2 2 u f 0 . 1 8 u f 0 . 1 5 u f 0 . 1 2 u f 0 . 1 0 u f 0 . 0 8 2 u f 0 . 0 6 8 u f 0 . 0 5 6 u f 0 . 0 4 7 u f 1 1 0 1 0 0 1 0 1 0 0 1 0 0 0 f r o m 3 3 0 0 p f t o 0 . 0 1 2 u f f r o m 0 . 0 1 5 u f t o 0 . 0 3 9 u f ( s t a c k e d m e t a l l i z e d f i l m ) p e r m i s s i b l e v o l t a g e p e r m i s s i b l e v o l t a g e a p p l i c a b l e s p e c i f i c a t i o n s f r e q u e n c y ( k h z ) f r e q u e n c y ( k h z ) e c h u ( x ) t y p e d c 5 0 v s e r i e s * p l e a s e c o n s u l t p a n a s o n i c i f y o u r c o n d i t i o n e x c e e d s t h e a b o v e * t h e c u r r e n t ( 0 - p ) v a l u e i s c a l c u l a t e d u s i n g n o m i n a l c a p a c i t a n c e . * p e r m i s s i b l e v o l t a g e g r a p h i s t h e c a s e o f s i n e w a v e f o r m . w h e n y o u u s e t h i s p r o d u c t , p e a k v o l t a g e m u s t n o t e x c e e d d c r a t e d v o l t a g e . r a t i n g v o l t a g e c a p a c i t a n c e v a l u e ( u f ) c o d e d v / d t ( v / u s ) c u r r e n t ( a o - p ) 0 . 0 0 3 3 3 3 2 2 4 0 0 . 7 9 0 . 0 0 3 9 3 9 2 2 2 0 0 . 8 6 0 . 0 0 4 7 4 7 2 2 0 0 0 . 9 4 0 . 0 0 5 6 5 6 2 1 9 0 1 . 0 6 0 . 0 0 6 8 6 8 2 1 7 0 1 . 1 6 0 . 0 0 8 2 8 2 2 1 6 0 1 . 3 1 0 . 0 1 0 1 0 3 1 4 5 1 . 4 5 0 . 0 1 2 1 2 3 1 3 5 1 . 6 2 0 . 0 1 5 1 5 3 1 2 0 1 . 8 0 0 . 0 1 8 1 8 3 1 1 0 1 . 9 8 0 . 0 2 2 2 2 3 1 0 0 2 . 2 0 0 . 0 2 7 2 7 3 9 4 2 . 5 4 0 . 0 3 3 3 3 3 8 6 2 . 8 4 0 . 0 3 9 3 9 3 7 8 3 . 0 4 d c 5 0 v p u l s e h a n d l i n g c a p a b i l i t y ( d v / d t ) ( m a x 1 0 0 0 0 c y c l e s ) ( a t s i n e w a v e ) ( a t s i n e w a v e ) p u l s e h a n d l i n g c a p a b i l i t y ( d v / d t ) ( m a x 1 0 0 0 0 c y c l e s ) e f f e c t i v e v a l u e e f f e c t i v e v a l u e
0 1 0 2 0 3 0 4 0 5 0 6 0 - 6 0 - 4 0 - 2 0 0 2 0 4 0 6 0 8 0 1 0 0 1 2 0 1 4 0 f r o m 1 0 0 p f t o 0 . 1 u f f r o m 0 . 1 2 u f t o 0 . 2 2 u f ( s t a c k e d m e t a l l i z e d f i l m ) a p p l i c a b l e s p e c i f i c a t i o n s e c h u ( x ) t y p e d c 5 0 v s e r i e s * p l e a s e c o n s u l t p a n a s o n i c i f y o u r c o n d i t i o n e x c e e d s t h e a b o v e * t h e c u r r e n t ( 0 - p ) v a l u e i s c a l c u l a t e d u s i n g n o m i n a l c a p a c i t a n c e . * p e r m i s s i b l e v o l t a g e g r a p h i s t h e c a s e o f s i n e w a v e f o r m . w h e n y o u u s e t h i s p r o d u c t , p e a k v o l t a g e m u s t n o t e x c e e d d c r a t e d v o l t a g e . v o l t a g e d e r a t i n g b y t e m p e r a t u r e s u r f a c e t e m p e r a t u r e o f c a p a c i t o r ( d e g r e e c ) r a t i n g v o l t a g e c a p a c i t a n c e v a l u e ( u f ) c o d e d v / d t ( v / u s ) c u r r e n t ( a o - p ) 0 . 0 4 7 4 7 3 7 2 3 . 3 8 0 . 0 5 6 5 6 3 6 8 3 . 8 1 0 . 0 6 8 6 8 3 6 2 4 . 2 2 0 . 0 8 2 8 2 3 5 6 4 . 5 9 0 . 1 0 1 0 4 5 2 5 . 2 0 0 . 1 2 1 2 4 4 8 5 . 7 6 0 . 1 5 1 5 4 4 4 6 . 6 0 0 . 1 8 1 8 4 4 0 7 . 2 0 0 . 2 2 2 2 4 3 6 7 . 9 2 d c 5 0 v p u l s e h a n d l i n g c a p a b i l i t y ( d v / d t ) ( m a x 1 0 0 0 0 c y c l e s ) d c r a t e d v o l t a g e ( v )


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