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F970J476MBA Datasheet(PDF) 1 Page - Nichicon corporation |
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F970J476MBA Datasheet(HTML) 1 Page - Nichicon corporation |
1 / 2 page SOLID TANTALUM ELECTROLYTIC CAPACITORS Standard ratings ∗ As for the surge and derated voltage at 125˚C, refer to page 332 for details. 5N (0.51kg • f) For 10 ± 1 seconds F97 Resin-moldedChip, High Reliability (High temperature / moisture resistance) Series Type numbering system (Example : 16V 3.3µF) Dimensions Marking Drawing Specifications Taping code (Refer to page 333 for details) F 1 9 2 7 3 1 4 C 5 3 6 3 7 5 8 M 9 A 10 11 Case code Capacitance tolerance Rated capacitance Rated voltage Series C • N Case A • B Case L H S W1 W2 S L H S W1 W2 S A Case B Case C Case C475 10 16r Rated voltage (Voltage code) Rated Capacitance (Capacitance code ) Rated voltage (V) Rated Capacitance (µF) Rated Voltage (V) Month code Month code N Case Case code A B C N LW1 W2 HS (mm) 3.2 ± 0.2 3.5 ± 0.2 6.0 ± 0.2 7.3 ± 0.2 1.6 ± 0.2 2.8 ± 0.2 3.2 ± 0.2 4.3 ± 0.2 1.2 ± 0.1 2.2 ± 0.1 2.2 ± 0.1 2.4 ± 0.1 1.6 ± 0.2 1.9 ± 0.2 2.5 ± 0.2 2.8 ± 0.2 0.8 ± 0.2 0.8 ± 0.2 1.3 ± 0.2 1.3 ± 0.2 Item --55 to +125˚C (Rated temperature : +85˚C) Category Temperature Range Capacitance Tolerance Performance Characteristics ± 20%, ± 10% (at 120Hz) Leakage Current ∗ • After 1 minute' s application of rated voltage,leakage current at 20˚C is not more than 0.01CV or 0.5 µA, whichever is greater. • After 1 minute' s application of rated voltage,leakage current at 85˚C is not more than 0.1CV or 5 µA,whichever is greater. • After 1 minute' s application of derated voltage,leakage current at 125˚C is not more than 0.125CV or 6.3 µA,whichever is greater. Capacitance Change by Temperature +15% Max. (at +125˚C) +10% Max. (at +85˚C) --10% Max. (at --55˚C) Damp Heat (Steady State) At 85˚C, 85% R.H.,For 1000 hours (No voltage applied) Capacitance Change •••••• Within ±10% of the initial value Dissipation Factor ••••••••••• Initial specified value or less Leakage Current •••••••••••• 125% or less than the initial specified value Load Humidity After 500 hour' s application of rated voltage in series with a 33Ω resistor at 60˚C, 90 to 95% R.H.,capacitors meet the characteristics requirements table below. Capacitance Change •••••• Within ±10% of the initial value Dissipation Factor •••••••••• Initial specified value or less Leakage Current •••••••••••• 125% or less than the initial specified value Temperature Cycles At --55˚C / +125˚C,For 30 minutes each,1000 cycles Capacitance Change •••••• Within ± 5% of the initial value Dissipation Factor ••••••••••• Initial specified value or less Leakage Current •••••••••••• • Initial specified value or less Resistance to Soldering Heat 10 seconds reflow at 260˚C, 5 seconds immersion at 260˚C. Capacitance Change •••••• Within ± 5% of the initial value Dissipation Factor ••••••••••• Initial specified value or less Leakage Current •••••••••••• • Initial specified value or less Solderability After immersing capacitors completely into a solder pot at 245˚C for 2 to 3 seconds,more than 3/4 of their electrode area shall remain covered with new solder. Surge ∗ After application of surge in series with a 33Ω resistor at the rate of 30 seconds ON, 30 seconds OFF,for 1000 successive test cycles at 85˚C,capacitors shall meet the characteristic requirements table below. Capacitance Change •••••• Within ± 5% of the initial value Dissipation Factor ••••••••••• Initial specified value or less Leakage Current •••••••••••• • Initial specified value or less Endurance ∗ After 2000 hours' application of rated voltage in series with a 3 Ω resistor at 85˚C,or derated voltage in series with a 3Ω resistor at 125˚C,capacitors shall meet the characteristic requirements table below. Capacitance Change •••••• Within ±10% of the initial value Dissipation Factor ••••••••••• Initial specified value or less Leakage Current •••••••••••• • Initial specified value or less Shear Test After applying the pressure load of 5N for 10 ± 1 seconds horizontally to the center of capacitor side body which has no electrode and has been soldered beforehand on a substrate, there shall be found neither exfoliation nor its sign at the terminal electrode. Terminal Strength 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 capacitor, the pressure strength is applied with a specified jig at the center of the substrate so that substrate may bend by 1mm as illustrated. Then, there shall be found no remarkable abnormality on the capacitor terminals. 45 45 R230 20 Dissipation Factor Refer to next page ESR (100kHz) Refer to next page Compliant to the RoHS directive (2002/95/EC). Compliant to AEC-Q200. 6.3 10 16 20 25 35 0J 1A 1C 1D 1E 1V 0.47 474 A 0.68 684 A A A 1 105 A A (A) 1.5 155 A A (A) • B 2.2 225 A A A (A) • BB 3.3 335 AAABB (B) • C 4.7 475 A A • BA • BA • B(B) • CC 6.8 685 A • BB B (B) • C C (C) • N 10 106 A • BA • B • C(B) • CC • NN 15 156 B B (B) • C N (C) • N 22 226 A • BA • BB • C • NC • N (N) 33 336 A • CB • C • NB • C • N (N) 47 476 B • C(B) • C • N (C) • N 68 686 N N 100 107 N (C) • (N) Cap.( µF) V Code ( ) The series in parentheses are being developed. Please contact to your local Nichicon sales office when these series are being designed in your application. Applications Automotive electronics(Engine ECU) Industrial equipment CAT.8100B |
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