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ISL976 LP2950AC 1SHA25TR PUMA6 TF50016 MSM541 9435GJ BSO211P
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  rev. 7 b surface mount aluminum electrolytic capacitors meritek SLL series ( low leakage, 85 c ) f eatures ? low leakage current (0.5 a to 2.0 a max.) ? load life : 8 5 c 2000 hours ? height : 5.4mm s pecifications item characteristic operation temperature range - 40 ~ + 8 5 c rated working voltage 6.3 ~ 50v dc capacitance tolerance (120hz 20 c) 20%(m) lea kage current (20 c) i 0.0 02 cv or 0.5 ( a ) *whichever is greater after 2 minutes i : leakage current ( a) c : rated capacitance ( f) v : working voltage (v) surge voltage (20 c) w.v. 6.3 10 16 25 35 50 s.v. 8 13 20 32 44 63 dissi pation factor (tan ) (120hz 20 c) w.v. 6.3 10 16 25 35 50 tan 0.2 4 0.20 0.16 0.14 0.12 0.10 low temperature stability impedance ratio at 120hz rated voltage (v) 6.3 10 16 25 35 50 - 25 c / +20 c 4 3 2 2 2 2 - 40 c / +20 c 8 6 4 4 3 3 load life after 20 00 hours application of w.v. and + 8 5 c ripple current value, the capacitor s hall meet the following limits. (dc + ripple peak voltage rate working voltage) capacitance change 2 5 % of initial value dissipation factor 200% of initial specified valu e leakage current initial specified value shelf life at + 8 5 c, no voltage application after 1000 hours, the capacitor shall meet the limits for load life characteristics. (with voltage treatment) resistance to soldering heat capacitors placed on a 25 0 c hot plate for 30 seconds with their electrode terminals facing downward will fulfill the following conditions after being cooled to room temperature. capacitance change 10% of initial value dissipation factor initial specified value leakage current initial specified value p art n umbering s ystem s ll 5 0 v 100 m f 054 meritek series voltage capacitance capacitance expressed in microfarads (f). first two digits are significant fig ures. third digit denotes number of zeros. 'r' d enotes decimal point for values less than 10 f tolerance m= 20% case diameter code case height (mm) the third digit denotes the first decimal place for example, 054 = 5.4 mm case diameter code d d 4 .0 e 5 .0 f 6.3 r o h s
rev. 7 b surface mount aluminum electrolytic capacitors meritek SLL series ( low leakage, 85 c ) d imensions (mm) d l a h i w p k 4.0 5. 4 4.3 5.5max 1.8 0.650.1 1.0 0.35 +0.15 - 0.20 5.0 5. 4 5.3 6.5max 2.2 0.650.1 1.5 0.35 +0.15 - 0.20 6.3 5. 4 6.6 7.8max 2.6 0.650.1 2.1 0.35 +0.15 - 0.20 c ase s ize & m ax r ipple c urrent cap. ( f ) v 6.3 10 16 25 35 50 item dxl r.c. dxl r.c. dxl r.c. dxl r.c. dxl r.c. dxl r.c. 0.1 0r1 4x5.4 1.0 0.22 r22 4x5.4 2.3 0.33 r33 4x5.4 3.5 0.47 r47 4x5.4 5 1.0 010 4x5.4 10 2.2 2r2 4x5.4 15 3.3 3r3 4x5.4 18 4.7 4r7 4x5.4 19 4x5.4 20 5x5.4 23 10 100 4x5.4 25 5x5.4 28 5x5.4 30 6.3x5.4 34 22 220 4x5.4 31 5x5.4 35 5x5.4 39 6.3x5.4 52 6.3x5.4 54 33 330 5x5.4 39 5x5.4 43 6.3x5.4 57 6.3x5.4 63 47 470 5x5.4 47 6.3x5.4 59 6.3x5.4 68 100 101 6.3x5.4 71 6.3x5.4 76 case size : d x l (mm) max ripple cu rrent : ma(rms) 85 c 1 20 hz r o h s
rev. 7 b surface mount aluminum electrolytic capacitors meritek SLL series ( low leakage, 85 c ) t aping d x l w 0.3 a 0.2 b 0.2 p 0 0.1 p 1 0.1 p 2 0.1 f 0.1 ? d 0 0.1 t 1 0.1 e 0.1 t 2 0.2 ? 4x5.4 12.0 4.7 4.7 4.0 8.0 2.0 5.5 1.5 0.4 1.75 5.7 ? 5x5.4 12.0 5.7 5.7 4 .0 12.0 2.0 5.5 1.5 0.4 1.75 5.7 ? 6.3x5.4 16.0 7.0 7.0 4.0 12.0 2.0 7.5 1.5 0.4 1.75 5.7 ? 4x5.8 12.0 4.7 4.7 4.0 8.0 2.0 5.5 1.5 0.4 1.75 6.3 ? 5x5.8 12.0 5.7 5.7 4.0 12.0 2.0 5.5 1.5 0.4 1.75 6.4 ? 6.3x5.8 16.0 7.0 7.0 4.0 12.0 2.0 7.5 1.5 0.4 1.75 6.4 ? 6.3x7.7 16.0 7.0 7.0 4.0 12.0 2.0 7.5 1.5 0.4 1.75 8.2 ? 8x6.2 16.0 8.7 8.7 4.0 12.0 2.0 7.5 1.5 0.4 1.75 6.8 ? 8x10.2 24.0 8.7 8.7 4.0 16.0 2.0 11.5 1.5 0.4 1.75 11.0 ? 10x10.2 24.0 10.7 10.7 4.0 16.0 2.0 11.5 1.5 0.4 1.75 11.0 p ackage d x l a 2. 0 b min c 0.5 d 0.8 e 0.5 w 1.0 t 1.0 t 0.5 ? 4 ? 5 380 50 13 21 2.0 14.0 20.0 3.0 ? 6.3 380 50 13 21 2.0 18.0 24.0 3.0 ? 8x6.2 380 50 13 21 2.0 18.0 24.0 3.0 ? 8x10.2 380 50 13 21 2.0 26.0 32.0 3.0 ? 10x10.2 380 50 13 21 2.0 26.0 32.0 3.0 r o h s
rev. 7 b surface mount aluminum electrolytic capacitors meritek SLL series ( low leakage, 85 c ) p ermissble r eflow c ondition a ir r eflow and ir r eflow preheat: within 120sec., 190c or less. soldering time: within 50 sec., 230c peak temperature: less than 250c, within 10 sec. possible reflow cycle : 2 cycl es the final test values should be as following: (a) capacitance change: Q 10% of initial value (b) dissipation factor: Q initial specified value (c) leakage current: Q initial specified value (d) visual: no damage r o h s


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