AC and Pulse Metallized Polypropylene Film Capacitors KP/MKP Radial Lacquered Type

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1 A and Pulse Metallized Polypropylene Film apacitors KP/MKP Radial Lacquered Type seating plane (1) α (2) P A Ø dt 15 Dimensions in mm (1) Hole Ø 1.3 for d t = 0.8 mm (2) 0 α < 50 (3) F - F < 0.3 mm F = / mm (4) A = / mm for 10 mm pitch A = / mm for 15 mm pitch A = / mm for pitch > 22.5 mm double conical hole 1.6 > 0.5 A Dimensions in mm APPLIATIONS Where high currents and steep pulses occur. For deflection circuits in television sets. REFERENE SPEIFIATIONS IE MARKING -value; tolerance; rated voltage; manufacturer s type; manufacturer s location DIELETRI Polypropylene film l ELETRODES Metallized and aluminum ONSTRUTION Internal serial construction l RATED (D) VOLTAGE 630 V, 1000 V, 1600 V, 2000 V h lt P A h w lt 10 w l F' (3) F Ø dt h' H w β β ϒ ϒ magnified view direction A β 15 Ø dt FEATURES 10 mm to 27.5 mm pitch Supplied loose in box (including lock lead versions) and taped Bent back version for automatic insertion available Material categorization: for definitions of compliance please see ENAPSULATION Flame retardant epoxy material (lass UL 94 V-0) LIMATI TESTING LASS AORDING TO IE /105/56 APAITANE RANGE (E24 SERIES) 0.1 nf to 270 nf APAITANE TOLERANE ± 5 %; ± 3.5 % LEADS Tinned wire RATED TEMPERATURE 85 MAXIMUM APPLIATION TEMPERATURE 105 PERFORMANE GRADE for > 5.6 nf: grade 1 (long life) for 5.6 nf: grade 2 STABILITY GRADE Grade 2 DETAIL SPEIFIATION For more detailed data and test requirements contact: dc-film@vishay.com RATED (A) VOLTAGE 300 V, 400 V, 500 V, 600 V RATED PEAK-TO-PEAK VOLTAGE 850 V, 1100 V, 1400 V, 1700 V Revision: 10-Aug-15 1 Document Number: 28127

2 OMPOSITION OF ATALOG NUMBER 375 TYPE AND PITHES 10.0 mm/7.5 mm 15.0 mm/7.5 mm 10.0 mm 15.0 mm 22.5 mm 27.5 mm BF2 375 YY Y 2222 (1) 375 YY Y (1) old ordering number APAITANE (numerically; but not for lock lead) Example: 104 = 10 x 10 = 100 nf MULTIPLIER (nf) TYPE PAKAGING LEAD ONFIGURATION Loose in box Taped on reel (2) (bent back) Note (2) For detailed tape specifications refer to Packaging Information or end of catalog SPEIFI REFERENE DATA (630 V D ) PREFERRED TYPES -TOL. 630 V 1000 V 1600 V 2000 V Lead length 5.0 mm ± 1.0 mm ± 5 % Lock lead 4.0 mm + 1.0/- 0.5 mm ± 5 % H = 16.0 mm; P 0 = 15.0 mm; ± 5 % Reel diameter 500 mm Dimensions of this code numbers stays between brackets ON REQUEST Lead length 5.0 ± 1.0 mm ± 3.5 % Loose in box ± 5 % Lead length 3.5 ± 0.5 mm ± 3.5 % Taped on reel (2) H = 16.0 mm; P 0 = 12.7 mm; ± 5 % Reel diameter = 500 mm ± 3.5 % H = 16.0 mm; P 0 = 15.0 mm; Taped on reel (2) ± 3.5 % Reel diameter = 500 mm Dimensions of this code numbers stays between brackets (bent back) H = 16.0 mm; P 0 = 15.0 mm; ± 5 % Reel diameter = 356 mm DESRIPTION VALUE Tangent of loss angle at (x 10-4 ) 10 khz 100 khz Pitch = 10 mm, 15 mm, and 7.5 mm (bent back) 6 10 Pitch = 22.5 mm 8 15 Pitch = 27.5 mm 8 20 Rated voltage pulse slope (du/dt) R : Pitch = 10 mm V/μs Pitch = 15 mm and 7.5 mm (bent back) 8000 V/μs Pitch = 22.5 mm 2800 V/μs Pitch = 27.5 mm 1900 V/μs R between leads at 500 V, 1 min > M R between interconnected leads and case, 500 V, 1 min > M Ionization (A) voltage (typical value) at 50 p peak discharge at 50 p peak discharge > 400 V at 20 p peak discharge Withstanding (D) voltage (cut off current 10 ma), rise time 1000 V/s for 47 nf 1008 V, 1 min for > 47 nf Withstanding (D) voltage between leads and case 2840 V, 1 min Maximum application temperature 105 Revision: 10-Aug-15 2 Document Number: 28127

3 U RD = 630 V; U RA = 300 V; U PP = 850 V (KINKED); -TOL. = ± 5 % Notes SPQ = Standard Packing Quantity (1) Net weight for short lead product only (g) (1) LOOSE IN BOX LEADS 5 mm ± 1.0 mm ATALOG NUMBER BF2 375 YYY AND PAKAGING ORIGINAL PITH REEL PITH = 7.5 mm (BENT BAK) Ø 500 mm Ø 500 mm Ø 356 mm (pf) PITH = 10.0 mm ± 0.4 mm; d t = 0.60 mm ± 0.06 mm PITH = 10.0 mm PITH = 7.5 mm (BENT BAK) x 13.0 x (1200) x 13.5 x (1100) x 14.0 x (1750) (1000) x 14.5 x (1500) (900) VALUE..YYY 272 Revision: 10-Aug-15 3 Document Number: 28127

4 U RD = 630 V; U RA = 300 V; U PP = 850 (KINKED); -TOL. = ± 5 % Notes SPQ = Standard Packing Quantity (1) Net weight for short lead product only (g) (1) LOOSE IN BOX ATALOG NUMBER BF2 375 YYY AND PAKAGING REEL VALUE LEADS ORIGINAL PITH PITH = 7.5 mm (BENT BAK) 5 mm ± 1.0 mm Ø 500 mm Ø 500 mm Ø 356 mm..yyy (pf) PITH = 15.0 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 7.5 mm (BENT BAK) x 14.0 (16.0) x (1200) (1000) (550) x 14.5 (16.0) x (1100) (900) x 15.0 (16.0) x (1000) (800) x 15.5 (17.0) x (1500) (900) (750) x 16.0 (17.5) x (1500) (800) (700) x 16.5 (18.0) x (1250) (800) (650) (350) x 17.0 (18.5) x (1250) (750) (600) (350) x 17.5 (19.0) x (1000) x 18.5 (20.0) x (900) (600) (300) (μf) PITH = 22.5 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 22.5 mm PITH = 7.5 mm (BENT BAK) (700) 16 (550) 18 (300) 333 On request x 20.0 x (650) x 20.5 x (600) x 21.0 x (550) x 21.5 x x 22.0 x Revision: 10-Aug-15 4 Document Number: 28127

5 U RD = 630 V; U RA = 300 V; U PP = 850 (KINKED); -TOL. = ± 5 % Notes Loose in box, all lengths have same SPQ SPQ = Standard Packing Quantity (1) Net weight for short lead product only U RD = 630 V; U RA = 300 V; U PP = 850 V (LOK LEAD); -TOL. = ± 5 % Notes SPQ = Standard Packing Quantity (1) Net weight for short lead product only (g) (1) ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX REEL VALUE LEADS ORIGINAL PITH PITH = 7.5 mm (BENT BAK) 5 mm ± 1.0 mm Ø 500 mm Ø 500 mm Ø 356 mm (μf) PITH = 22.5 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 22.5 mm PITH = 7.5 mm (BENT BAK) x 22.5 x x 23.0 x (μf) PITH = 27.5 mm ± 0.5 mm; d t = 0.80 mm ± 0.08 mm PITH = 27.5 mm PITH = 7.5 mm (BENT BAK) x 22.5 x x 23.0 x x 23.5 x x 24.0 x x 24.5 x x 25.5 x (350) x 26.0 x (300) x 26.5 x (300) (g) (1) (pf) x 16.0 x x 16.5 x ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX I t = 4.0 mm mm/- 0.5 mm PITH = 10.0 mm ± 1.0 mm; d t = 0.60 mm ± 0.06 mm x 17.0 x (1750) x 17.5 x (1500)..YYY Revision: 10-Aug-15 5 Document Number: 28127

6 U RD = 630 V; U RA = 300 V; U PP = 850 V (LOK LEAD); -TOL. = ± 5 % ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX (g) (1) I t = 4.0 mm mm/- 0.5 mm (pf) PITH = 15.0 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 17.0 x x 17.5 x x 18.0 x x 18.5 x (1750) x 19.0 x (1500) x 19.5 x (1400) x 20.0 x (1250) x 20.5 x (1200) x 21.5 x On request (1000) (μf) PITH = 22.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 23.0 x (600) x 23.5 x (550) x 24.0 x x 24.5 x Revision: 10-Aug-15 6 Document Number: 28127

7 (μf) PITH = 22.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 25.0 x x 25.5 x x 26.0 x (350) (μf) PITH = 27.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 25.5 x x 26.0 x x 26.5 x (350) x 27.0 x (350) x 27.5 x (350) x 28.5 x (300) x 29.0 x (250) x 29.5 x (250) Notes SPQ = Standard Packing Quantity (1) Net weight for short lead product only (g) (1) ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX I t = 4.0 mm mm/- 0.5 mm SPEIFI REFERENE DATA (1000 V D ) DESRIPTION VALUE Tangent of loss angle at (x 10-4 ) 10 khz 100 khz Pitch = 10 mm, 15 mm, and 7.5 mm (bent back) 6 10 Pitch = 22.5 mm 8 15 Pitch = 27.5 mm 8 20 Rated voltage pulse slope (du/d t ): Pitch = 10 mm V/μs Pitch = 15 mm and 7.5 mm (bent back) V/μs Pitch = 22.5 mm 5000 V/μs Pitch = 27.5 mm 3300 V/μs R between leads at 500 V, 1 min > M R between interconnected leads and case, 500 V, 1 min > M Ionization (A) voltage (typical value) at 50 p peak discharge > 500 V at 20 p peak discharge Withstanding (D) voltage (cut off current 10 ma), rise time 1000 V/s for 47 nf 1600 V, 1 min [1.6 - ( x (- 47))] x 1000 V, 1 min for > 47 nf Withstanding (D) voltage between leads and case 2840 V, 1 min Maximum application temperature 105 Revision: 10-Aug-15 7 Document Number: 28127

8 U RD = 1000 V; U RA = 400 V; U PP = 1100 V (KINKED); -TOL. = ± 5 % (g) (1) Notes Loose in box, all lengths have same SPQ SPQ = Standard Packing Quantity (1) Net weight for short lead product only LOOSE IN BOX ATALOG NUMBER BF2 375 YYY AND PAKAGING REEL VALUE LEADS ORIGINAL PITH PITH = 7.5 mm (BENT BAK) 5 mm ± 1.0 mm Ø 500 mm Ø 500 mm Ø 356 mm..yyy (pf) PITH = 10.0 mm ± 0.4 mm; d t = 0.60 mm ± 0.06 mm PITH = 10.0 mm PITH = 7.5 mm (BENT BAK) x 13.0 x (1200) x 13.5 x (1100) x 14.0 x (1750) (1000) (pf) PITH = 15.0 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 15.0 mm PITH = 7.5 mm (BENT BAK) x 14.5 (16.0) x (1100) (900) x 15.0 (16.5) x (1000) (800) Revision: 10-Aug-15 8 Document Number: 28127

9 U RD = 1000 V; U RA = 400 V; U PP = 1100 V (KINKED); -TOL. = ± 5 % (g) (1) Notes Loose in box, all lengths have same SPQ SPQ = Standard Packing Quantity (1) Net weight for short lead product only ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX REEL VALUE LEADS ORIGINAL PITH PITH = 7.5 mm (BENT BAK) 5 mm ± 1.0 mm Ø 500 mm Ø 500 mm Ø 356 mm..yyy (pf) PITH = 15.0 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 15.0 mm PITH = 7.5 mm (BENT BAK) x 15.0 (16.5) x (1000) (800) x 16.0 (17.5) x (1500) (800) (700) x 16.5 (18.0) x (1250) (800) (650) (350) x 17.0 (18.5) x (1250) (750) (600) (350) x 17.5 (19.0) x (1000) (700) (550) (300) x 18.5 (19.5) x (1000) (650) (550) (300) 153 (μf) PITH = 22.5 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 22.5 mm PITH = 7.5 mm (BENT BAK) x 19.0 x (800) x 19.5 x (750) x 20.0 x (650) x 20.5 x (600) x 21.0 x (550) x 21.5 x x 22.0 x (μf) PITH = 27.5 mm ± 0.5 mm; d t = 0.80 mm ± 0.08 mm PITH = 27.5 mm PITH = 7.5 mm (BENT BAK) x 20.0 x (1000) x 20.5 x (750) x 21.0 x (650) x 21.5 x (550) x 22.0 x (550) x 22.5 x x 23.0 x x 23.5 x x 24.0 x x 24.5 x x 25.0 x (350) x 25.5 x (350) 154 Revision: 10-Aug-15 9 Document Number: 28127

10 U RD = 1000 V; U RA = 400 V; U PP = 1100 V (LOK LEAD); -TOL. = ± 5 % ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX (g) I t = 4.0 mm mm/- 0.5 mm (pf) PITH = 10.0 mm ± 1.0 mm; d t = 0.60 mm ± 0.06 mm x 16.0 x x 16.5 x x 17.0 x (pf) PITH = 15.0 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 17.5 x x 18.0 x Revision: 10-Aug Document Number: (1750)

11 ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX (g) I t = 4.0 mm mm/- 0.5 mm (pf) PITH = 15.0 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 19.0 x (1500) x 19.5 x (1400) x 20.0 x (1250) x 20.5 x (1200) x 21.0 x (1100) (μf) PITH = 22.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 22.0 x (750) x 22.5 x (700) x 23.0 x (600) x 23.5 x (550) x 24.0 x x 24.5 x x 25.0 x (μf) PITH = 27.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 23.0 x (800) x 23.5 x (600) x 24.0 x (550) x 24.5 x (550) x 25.0 x x 25.5 x x 26.0 x x 26.5 x (350) x 27.0 x (350) x 27.5 x (350) x 28.0 x (350) x 28.5 x (300) Notes SPQ = Standard Packing Quantity (1) Net weight for short lead product only Revision: 10-Aug Document Number: 28127

12 SPEIFI REFERENE DATA (1600 V D ) DESRIPTION VALUE Tangent of loss angle at (x 10-4 ): 10 khz 100 khz Pitch = 10 mm, 15 mm and 7.5 mm (bent back) 6 10 Pitch = 22.5 mm 6 15 Pitch = 27.5 mm 6 20 Rated voltage pulse slope (du/d t ): Pitch = 10 mm Pitch = 15 mm and 7.5 mm (bent back) V/μs Pitch = 22.5 mm 7000 V/μs Pitch = 27.5 mm 4700 V/μs R between leads at 500 V, 1 min > M R between interconnected leads and case, 500 V, 1 min > M Ionization (A) voltage (typical value) at 50 p peak discharge > 550 V at 10 p peak discharge Withstanding (D) voltage (cut off current 10 ma), rise time 1000 V/s for 47 nf 2560 V, 1 min for > 47 nf Withstanding (D) voltage between leads and case 2840 V, 1 min Maximum application temperature 105 U RD = 1600 V; U RA = 500 V; U PP = 1400 V (KINKED); -TOL. = ± 5 % (g) (1) LOOSE IN BOX LEADS 5 mm ± 1.0 mm ATALOG NUMBER BF2 375 YYY AND PAKAGING ORIGINAL PITH REEL PITH = 7.5 mm (BENT BAK) Ø 500 mm Ø 500 mm Ø 356 mm VALUE (pf) PITH = 15.0 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 15.0 mm PITH = 7.5 mm (BENT BAK) x 14.5 (15.0) x (1100) 36 (900) x 15.0 (15.5) x (1000) 36 (800) x 14.5 (16.0) x (1100) 36 (900) x 15.0 (16.5) x (1000) 36 (800) x 15.5 (17.0) x (1500) 32 (900) 36 (750) x 16.0 (17.5) x (1500) 32 (800) 36 (700) x 16.5 (18.0) x (1250) 32 (800) 36 (650) 38 (350) x 17.0 (18.5) x (1250) 32 (750) 36 (600) 38 (350) x 17.5 (19.0) x (1000) 32 (700) 36 (550) 38 (300) x 18.5 (19.5) x (1000) 32 (650) 36 (550) 38 (300) YYY Revision: 10-Aug Document Number: 28127

13 (g) (1) (μf) PITH = 22.5 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 22.5 mm PITH = 7.5 mm (BENT BAK) x 19.0 x (800) x 19.5 x (750) x 20.0 x (650) x 20.5 x (600) x 21.0 x (550) x 21.5 x x 22.0 x x 22.5 x x 23.0 x Notes Loose in box, all lengths have same SPQ SPQ = Standard Packing Quantity (1) Net weight for short lead product only x 23.5 x (350) (μf) PITH = 27.5 mm ± 0.5 mm; d t = 0.80 mm ± 0.08 mm PITH = 27.5 mm PITH = 7.5 mm (BENT BAK) x 22.0 x x 22.5 x x 23.0 x x 23.5 x x 24.0 x x 24.5 x x 25.0 x x 25.5 x LOOSE IN BOX LEADS 5 mm ± 1.0 mm (550) (350) (350) ATALOG NUMBER BF2 375 YYY AND PAKAGING ORIGINAL PITH REEL PITH = 7.5 mm (BENT BAK) Ø 500 mm Ø 500 mm Ø 356 mm VALUE..YYY Revision: 10-Aug Document Number: 28127

14 U RD = 1600 V; U RA = 500 V; U PP = 1400 V (LOK LEAD); -TOL. = ± 5 % ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX (g) I t = 4.0 mm mm/- 0.5 mm (pf) PITH = 15.0 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 17.5 x x 18.0 x x 17.5 x x 18.0 x x 18.5 x (1750) x 19.0 x (1500) x 19.5 x (1400) x 20.0 x (1250) x 20.5 x (1200) x 21.5 x (1100) (μf) PITH = 22.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 22.0 x (750) x 22.5 x (700) x 23.0 x (600) x 23.5 x (550) x 24.0 x x 24.5 x x 25.0 x x 25.5 x x 26.0 x (350) x 26.5 x (350) (μf) PITH = 27.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 25.0 x x 25.5 x x 26.0 x x 26.5 x (350) x 27.0 x (350) x 27.5 x (350) x 28.0 x (300) x 28.5 x (300) Notes SPQ = Standard Packing Quantity (1) Net weight for short lead product only Revision: 10-Aug Document Number: 28127

15 SPEIFI REFERENE DATA (2000 V D ) DESRIPTION VALUE Tangent of loss angle at (x 10-4 ): 10 khz 100 khz Pitch = 10 mm, 15 mm, and 7.5 mm (bent back) 6 10 Pitch = 22.5 mm 6 10 Pitch = 27.5 mm 6 15 Rated voltage pulse slope (du/d t ): Pitch = 10 mm Pitch = 15 mm and 7.5 mm (bent back) V/μs Pitch = 22.5 mm V/μs Pitch = 27.5 mm 6700 V/μs R between leads at 500 V, 1 min > M R between interconnected leads and case, 500 V, 1 min > M Ionization (A) voltage (typical value) at 50 p peak discharge > 600 V at 20 p peak discharge Withstanding (D) voltage (cut off current 10 ma), rise time 1000 V/s for 47 nf 3200 V, 1 min for > 47 nf Withstanding (D) voltage between leads and case 2840 V, 1 min Maximum application temperature 105 U RD = 2000 V; U RA = 600 V; U PP = 1700 (KINKED); -TOL. = ± 5 % (g) (1) ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX REEL VALUE LEADS 5 mm ± 1.0 mm ORIGINAL PITH PITH = 7.5 mm (BENT BAK) Ø 500 mm Ø 500 mm Ø 356 mm (pf) PITH = 15.0 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 15.0 mm PITH = 7.5 mm (BENT BAK) x 14.5 (15.0) x (1100) (900) YYY Revision: 10-Aug Document Number: 28127

16 (g) (1) (pf) PITH = 15.0 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 15.0 mm PITH = 7.5 mm (BENT BAK) x 15.0 (15.5) x (1000) (800) x 15.5 (16.0) x x 14.5 (16.0) x (1500) x 15.0 (16.5) x (1000) (800) x 15.5 (17.0) x x 16.0 (17.5) x (1500) (1500) x 16.5 (18.0) x (1250) (800) (650) (350) x 17.0 (18.5) x x 17.5 (19.0) x x 18.0 (19.5) x x 18.5 (20.0) x (1250) (1000) (1000) (900) (μf) PITH = 22.5 mm ± 0.4 mm; d t = 0.80 mm ± 0.08 mm PITH = 22.5 mm PITH = 7.5 mm (BENT BAK) x 19.0 x (800) x 19.5 x (750) x 20.0 x (650) x 20.5 x (600) x 21.0 x (550) x 21.5 x x 22.0 x x 22.5 x ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX REEL VALUE LEADS 5 mm ± 1.0 mm ORIGINAL PITH 42 (900) 42 (420) 42 (900) 42 (800) 42 (750) 42 (700) 42 (650) 42 (600) PITH = 7.5 mm (BENT BAK) Ø 500 mm Ø 500 mm Ø 356 mm 46 (750) 46 (900) 46 (750) 46 (700) 46 (600) 46 (550) 46 (550) (350) 48 (300) 48 (300) 48 (300)..YYY Revision: 10-Aug Document Number: 28127

17 (μf) PITH = 27.5 mm ± 0.5 mm; d t = 0.80 mm ± 0.08 mm PITH = 27.5 mm PITH = 7.5 mm (BENT BAK) x 22.0 x x 22.5 x x 23.0 x x 23.5 x x 24.0 x x 24.5 x x 25.5 x x 26.0 x Notes Loose in box, all lengths have same SPQ SPQ = Standard Packing Quantity (1) Net weight for short lead product only (550) (350) (300) U RD = 2000 V; U RA = 600 V; U PP = 1700 V (LOK LEAD) (pf) 100 (g) (1) (g) (1) x 17.5 x ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX I t = 4.0 mm mm/- 0.5 mm PITH = 15.0 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX REEL VALUE LEADS 5 mm ± 1.0 mm ORIGINAL PITH PITH = 7.5 mm (BENT BAK) Ø 500 mm Ø 500 mm Ø 356 mm..yyy Revision: 10-Aug Document Number: 28127

18 ATALOG NUMBER BF2 375 YYY AND PAKAGING LOOSE IN BOX (g) I t = 4.0 mm mm/- 0.5 mm (pf) PITH = 15.0 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 18.0 x x 18.5 x (1750) x 17.5 x x 18.0 x x 18.5 x (1750) x 19.0 x (1500) x 19.5 x (1400) x 20.0 x (1250) x 20.5 x (1200) x 21.0 x (1100) x 21.5 x (1000) (μf) PITH = 22.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 22.0 x (750) x 22.5 x (700) x 23.0 x (600) x 23.5 x (550) x 24.0 x x 24.5 x x 25.0 x x 25.5 x (μf) PITH = 27.5 mm ± 1.0 mm; d t = 0.80 mm ± 0.08 mm x 25.0 x x 25.5 x x 26.0 x x 26.5 x (350) x 27.0 x (350) x 27.5 x (350) x 28.5 x (300) x 29.0 x (250) Notes SPQ = Standard Packing Quantity (1) Net weight for short lead product only Revision: 10-Aug Document Number: 28127

19 MOUNTING Normal Use The capacitors are designed for mounting on printed-circuit boards. The capacitors packed in bandoliers are designed for mounting in printed-circuit boards by means of automatic insertion machines. For detailed tape specifications refer to Packaging information or end of catalog. Specific Method of Mounting to Withstand Vibration and Shock For pitches 15 mm capacitors shall be mechanically fixed by the leads For larger pitches the capacitors shall be mounted in the same way and the body clamped Storage Temperature T stg = -25 to +35 with RH maximum 75 % without condensation Ratings and haracteristics Reference onditions Unless otherwise specified, all electrical values apply to an ambient temperature of 23 ± 1, an atmospheric pressure of 86 kpa to 106 kpa and a relative humidity of 50 % ± 2 %. For reference testing, a conditioning period shall be applied over 96 h ± 4 h by heating the products in a circulating air oven at the rated temperature and a relative humidity not exceeding 20 %. Revision: 10-Aug Document Number: 28127

20 HARATERISTIS 8 Δ/ (%) 4 0 max Impedance (Ω) nf; 1000 V 12 nf; 1000 V 33 nf; 630 V 47 nf; 1000V 100 nf; 630 V 1.5 nf; 1600 V-2000 V-2500 V -4 typical min T amb ( ) f (Hz) 10 9 apacitance as a function of ambient temperature (typical curve) Impedance as a function of frequency (typical curve) Factor ΔT ( ) T amb ( ) T amb ( ) Maximum D voltage as a function of temperature Maximum allowed component temperature rise as a function of ambient temperature Revision: 10-Aug Document Number: 28127

21 A voltage (V) nf 2.2 nf 4.7 nf 10 nf 47 nf 100 nf 220 nf T amb 85, 630 V D f (Hz) < T amb 105, 630 V D f (Hz) 10 8 Max. RMS voltage (sinewave) as a function of frequency Max. RMS voltage (sinewave) as a function of frequency 10 3 A voltage (V) pf 220 pf 470 pf 1.0 nf 2.2 nf 4.7 nf 47 nf 22 nf 100 nf T amb 85, 1000 V D f (Hz) 10 8 Max. RMS voltage (sinewave) as a function of frequency Max. RMS voltage (sinewave) as a function of frequency 10 3 A voltage (V) A voltage (V) 1.0 nf 2.2 nf 4.7 nf 10 nf 47 nf 100 nf 220 nf 10 3 A voltage (V) nf 2.2 nf 100 pf 220 pf 470 pf 22 nf 47 nf 4.7 nf 100 nf 85 < T amb 105, 1000 V D f (Hz) A voltage (V) nf 4.7 nf 2.2 nf 1.0 nf 4.7 nf 47 nf 22 nf 10 nf 10 nf 22 nf 2.2 nf T amb 85, 1600 V D f (Hz) nf 85 < T amb 105, 1600 V D f (Hz) 10 8 Max. RMS voltage (sinewave) as a function of frequency Max. RMS voltage (sinewave) as a function of frequency Revision: 10-Aug Document Number: 28127

22 A voltage (V) A voltage (V) nf 0.22 nf 0.47 nf 2.2 nf 4.7 nf 1.0 nf nf 4.7 nf 10 nf 0.1 nf 0.22 nf 0.47 nf 1.0 nf 22 nf 22 nf 10 nf T amb 85, 2000 V D f (Hz) 10 8 Max. RMS voltage (sinewave) as a function of frequency 85 < T amb 105, 2000 V D f (Hz) 10 8 Max. RMS voltage (sinewave) as a function of frequency 10 2 Dissipation factor (x 10-4) Dissipation factor (x 10-4 ) f (Hz) KP/MPK 2. KP/MPK 3. KP/MPK 10.0 mm and 15 mm pitch all versions 22.5 mm pitch, 1000 V, 1600 V, 2000 V and 2500 V versions 22.5 mm pitch, 630 V versions 27.5 mm pitch, 1000 V, 1600 V and 2000 V versions 27.5 mm pitch, 630 V versions Tangent of loss angle (typical curve) f (Hz) KP/MPK 2. KP/MPK 3. KP/MPK 10.0 mm and 15 mm pitch all versions 22.5 mm pitch, 1000 V, 1600 V, 2000 V and 2500 V versions 22.5 mm pitch, 630 V versions 27.5 mm pitch, 1000 V, 1600 V and 2000 V versions 27.5 mm pitch, 630 V versions Maximum curves 10 6 R (s) T amb ( ) Insulation resistance as a function of ambient temperature Revision: 10-Aug Document Number: 28127

23 HEAT ONDUTIVITY (G) AS A FUNTION OF (ORIGINAL) PITH AND APAITOR BODY THIKNESS IN mw/ W max. HEAT ONDUTIVITY (mw/ ) PITH 10 mm PITH 15 mm PITH 22.5 mm PITH 27.5 mm POWER DISSIPATION AND MAXIMUM OMPONENT TEMPERATURE RISE The power dissipation must be limited in order not to exceed the maximum allowed component temperature rise as a function of the free ambient temperature. The power dissipation can be calculated according type detail specification HQN /101: Technical Information Film apacitors The component temperature rise ( T) can be measured (see section Measuring the component temperature for more details) or calculated by T = P/G: T = component temperature rise ( ) P = power dissipation of the component (mw) G = heat conductivity of the component (mw/ ) Revision: 10-Aug Document Number: 28127

24 MEASURING THE OMPONENT TEMPERATURE A thermocouple must be attached to the capacitor body as in: Thermocouple The temperature is measured in unloaded (T amb ) and maximum loaded condition (T ). The temperature rise is given by T = T - T amb. To avoid radiation or convection, the capacitor should be tested in a wind-free box. APPLIATION NOTE AND LIMITING ONDITIONS To select the capacitor for a certain application, the following conditions must be checked: 1. The peak voltage (U P ) shall not be greater than the rated D voltage (U RD ). 2. The peak-to-peak voltage (U PP ) shall not be greater than the maximum (U p-p ) to avoid the ionization inception level. 3. The voltage pulse slope (du/dt) shall not exceed the rated voltage pulse slope in an R-circuit at rated voltage and without ringing. If the pulse voltage is lower than the rated D voltage, the rated voltage pulse slope may be multiplied by U RD and divided by the applied voltage. For all other pulses following equation must be fulfilled: 2 x T 0 du dt 2 x dt U x du RD dt rated T is the pulse duration. 4. The maximum component surface temperature rise must be lower than the limits. Example = 10 nf 1600 V, KP/MPK This is a signal as in the drawing below U P-P = 1200 V; U P = 1100 V; T 1 = 12 μs; T 2 = 64 μs The ambient temperature is 50 hecking conditions: 1. The peak voltage U P = 1100 V is lower than 1600 V D 2. The peak-to-peak voltage 1200 V is lower than 2 02 x 550 V A = 1414 U P-P 3. The voltage pulse slope (du/dt) = 320 V is much lower than 7000 V/μs 4. The dissipated power is 170 mw as calculated with fourier terms This gives a temperature rise of 170 mw/(17 mw/ ) = 10 which is allowed according Fig. Max. allowed temperature rise as a function of ambient temperature for an ambient temperature of 50 _width) Voltage U P U P-P T 1 T 2 Time Revision: 10-Aug Document Number: 28127

25 INSPETION REQUIREMENTS General Notes Sub-clause numbers of tests and performance requirements refer to the Sectional Specification, Publication IE and Specific Reference Data. Group Inspection Requirements SUB-LAUSE NUMBER AND TEST ONDITIONS PERFORMANE REQUIREMENTS SUB-GROUP 1A PART OF SAMPLE OF SUB-GROUP Dimensions (detail) As specified in chapters General Data of this specification Initial measurements apacitance Tangent of loss angle at 100 khz 4.3 Robustness of terminations Tensile: load 10 N; 10 s Bending: load 5 N; 4 x 90 No visible damage 4.4 Resistance to soldering heat Method: 1A Solder bath: 280 ± 5 Duration: 10 s 4.14 omponent solvent resistance Isopropylalcohol at room temperature Method: 2 Immersion time: 5 min ± 0.5 min Recovery time: min. 1 h, max. 2 h Final measurements Visual examination No visible damage Legible marking apacitance / 1 % + 5 pf of the value measured initially Tangent of loss angle Increase of tan : ompared to values measured in SUB-GROUP 1B PART OF SAMPLE OF SUB-GROUP Initial measurements apacitance Tangent of loss angle at 100 khz 4.15 Solvent resistance of the marking Isopropylalcohol at room temperature Method: 1 Rubbing material: cotton wool Immersion time: 5 min ± 0.5 min No visible damage Legible marking 4.6 Rapid change of temperature A = -55 B = cycles Duration t = 30 min 4.7 Vibration Visual examination Mounting: See section Mounting of this specification Procedure B4 Frequency range: 10 Hz to 55 Hz Amplitude: 0.75 mm or Acceleration 98 m/s2 (whichever is less severe) Total duration 6 h No visible damage Revision: 10-Aug Document Number: 28127

26 SUB-LAUSE NUMBER AND TEST ONDITIONS PERFORMANE REQUIREMENTS Final inspection Visual examination No visible damage 4.9 Shock Mounting: see section Mounting of this specification Pulse shape: half sine Acceleration: 490 m/s2 Duration of pulse: 11 ms Final measurements Visual examination No visible damage apacitance For > 0.027μF: / 2 % or for 0.027μF: / 3 % + 5 pf of the value measured in Tangent of loss angle Increase of tan : ompared to values measured in SUB-GROUP 1 OMBINED SAMPLE OF SPEIMENS OF SUB-GROUPS 1A AND 1B 4.10 limatic sequence Insulation resistance As specified in chapter General data of this specification Dry heat Temperature: +105 Duration: 16 h Damp heat cyclic Test Db, first cycle old Temperature: -55 Duration: 2 h Damp heat cyclic Test Db, remaining cycles Final measurements Voltage proof = U RD for 1 min within 15 min after removal from testchamber No breakdown of flash-over Visual examination apacitance No visible damage Legible marking / 3 % of the value measured in or Tangent of loss angle Increase of tan : ompared to values measured in or Insulation resistance 50 % of values specified in chapters General data of this specification Revision: 10-Aug Document Number: 28127

27 SUB-LAUSE NUMBER AND TEST ONDITIONS PERFORMANE REQUIREMENTS SUB-GROUP Damp heat steady state 56 days, 40, 90 % to 95 % RH Initial measurements apacitance Tangent of loss angle at 1 khz Final measurements Voltage proof = U RD for 1 min within 15 min after removal from testchamber Visual examination apacitance No breakdown of flash-over No visible damage Legible marking / 1 % + 5 pf of the value measured in Tangent of loss angle Increase of tan ompared to values measured in Insulation resistance SUB GROUP Endurance Duration: 2000 h Temperature: 85 Voltage: 1.25 x max. U RD V RMS, 50 Hz Duration: 2000 h Temperature: % of values specified in section Insulation Resistance of this specification Initial measurements Voltage: x max. U RD V RMS, 50 Hz apacitance Tangent of loss angle at 100 khz Final measurements Visual examination No visible damage Legible marking Temperature: 85 apacitance For > μf: / 2 % + 5 pf or for > μf: / 3 % + 5 pf of the value measured in Temperature: 105 / 5 % + 5 pf Tangent of loss angle Increase of tan : ompared to values measured in Insulation resistance 50 % of values specified in chapters General data of this specification SUB-GROUP Temperature characteristics apacitance As specified in section apacitance of this specification Insulation resistance As specified in chapters General data of this specification Revision: 10-Aug Document Number: 28127

28 Legal Disclaimer Notice Vishay Disclaimer ALL PRODUT, PRODUT SPEIFIATIONS AND DATA ARE SUBJET TO HANGE WITHOUT NOTIE TO IMPROVE RELIABILITY, FUNTION OR DESIGN OR OTHERWISE. Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, Vishay ), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other disclosure relating to any product. Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special, consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular purpose, non-infringement and merchantability. Statements regarding the suitability of products for certain types of applications are based on Vishay s knowledge of typical requirements that are often placed on Vishay products in generic applications. Such statements are not binding statements about the suitability of products for a particular application. It is the customer s responsibility to validate that a particular product with the properties described in the product specification is suitable for use in a particular application. Parameters provided in datasheets and / or specifications may vary in different applications and performance may vary over time. All operating parameters, including typical parameters, must be validated for each customer application by the customer s technical experts. Product specifications do not expand or otherwise modify Vishay s terms and conditions of purchase, including but not limited to the warranty expressed therein. Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life-sustaining applications or for any other application in which the failure of the Vishay product could result in personal injury or death. ustomers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk. Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by any conduct of Vishay. Product names and markings noted herein may be trademarks of their respective owners VISHAY INTERTEHNOLOGY, IN. ALL RIGHTS RESERVED Revision: 08-Feb-17 1 Document Number: 91000

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