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 MKT 370
Vishay BCcomponents
DC Film Capacitor MKT Radial Potted Type
l w
FEATURES
Available taped and loose in box RoHS compliant
h
ENCAPSULATION
Flame retardant plastic case and epoxy resin (UL-class 94 V-0)
lt
CLIMATIC TESTING CLASS ACC. TO IEC 60068-1
P 0.3 O dt
55/100/56
Dimensions in mm
CAPACITANCE RANGE (E12 SERIES) APPLICATIONS
Blocking and coupling, bypass and energy reservoir, telecom, industrial, consumer 0.00068 F to 1.5 F
CAPACITANCE TOLERANCE
10 %, 5 %
REFERENCE STANDARDS
IEC 60384-2
LEADS
Tinned wire
MARKING
C-value; tolerance; rated voltage; manufacturer's symbol; year and week of manufacturer; manufacturer's type
RATED TEMPERATURE
85 C
DIELECTRIC
Polyester film
MAXIMUM APPLICATION TEMPERATURE
100 C
ELECTRODES
Metallized
PERFORMANCE GRADE
Grade 1 (long life)
CONSTRUCTION
Mono construction Series construction for 630 V 0.00068 F ~ 0.0018 F
DETAIL SPECIFICATION
For more detailed data and test requirements contact: dc-film@vishay.com
RATED (DC) VOLTAGE
Standard size: 63 V, 100 V, 250 V, 400 V Compact size: 100 V, 250 V, 400 V, 630 V
RATED (AC) VOLTAGE
Standard size: 40 V, 63 V, 160 V, 220 V Compact size: 40 V, 63 V, 160 V, 220 V
Document Number: 28108 Revision: 17-Nov-08
For technical questions, contact: dc-film@vishay.com
www.vishay.com 77
MKT 370
Vishay BCcomponents
COMPOSITION OF CATALOG NUMBER
TYPE AND PITCHES 370 5.08 mm CAPACITANCE (numerically) Example: 104 = 10 x 10 = 100 nF MULTIPLIER (nF) 0.1 1 10 100 2 3 4 5
DC Film Capacitor MKT Radial Potted Type
BFC2 2222 (*)
TYPE PACKAGING
370 370
XX XX
C-TOL. 10 % 5% 10 % 5% 10 % 5% 10 % 5% C-TOL. 10 % 5% 10 % 5% 10 % 5% 10 % 5%
YY YY
Y Y
63 V 11 12 15 16 18 19 75 76 PREFERRED TYPES 100 V 250 V 21 41 22 42 25 45 26 46 28 48 29 49 85 35 86 36 PREFERRED TYPES 250 V 400 V EE FE EF FF EH FH EI FI EL FL EM FM EB FB EC FC 400 V 51 52 55 56 58 59 65 66 630 V GE GF GH GI GL GM GB GC
(*) Old ordering number LEAD CONFIGURATION Lead length 4.0 + 1.0/- 0.5 mm Loose in box 370 (standard size) Lead length 26.0 2.0 mm Taped on reel (1) Ammopack (1) TYPE PACKAGING H = 18.5 mm; P0 = 12.7 mm; Reel diameter = 356 mm H = 18.5 mm; P0 = 12.7 mm LEAD CONFIGURATION Lead length 4.0 + 1.0/- 0.5 mm Loose in box 370 (compact size) Lead length 26.0 2.0 mm Taped on reel (1) Ammopack (1) H = 18.5 mm; P0 = 12.7 mm; Reel diameter = 356 mm H = 18.5 mm; P0 = 12.7 mm
100 V CE CF CH CI CL CM CB CC
Notes (1) For detailed tape specifications refer to packaging information: www.vishay.com/doc?28139 or end of catalog (2) SPQ = Standard Packing Quantity
SPECIFIC REFERENCE DATA (STANDARD SIZE)
DESCRIPTION Tangent of loss angle: C 0.1 F 0.1 F < C 0.47 F 0.47 F < C 1.5 F Rated voltage pulse slope (dU/dt)R at R between leads, for C 0.33 F at 10 V; 1 min at 100 V; 1 min RC between leads 0.33 F < C 1.0 F at 10 V; 1 min C > 1.0 F at 10 V; 1 min C > 0.33 F at 100 V; 1 min R between interconnecting leads and case (foil method) Withstanding (DC) voltage (cut off current 10 mA); Withstanding (DC) voltage between leads and case Maximum application temperature 63 Vdc 60 V/s > 15 000 M > 15 000 M > 5000 s > 1000 s > 30 000 M 100 V; 1 min 200 V; 1 min > 5000 s > 30 000 M > 30 000 M 160 V; 1 min 400 V; 1 min 200 V; 1 min 500 V; 1 min 100 C > 30 000 M 640 V; 1 min 800 V; 1 min > 30 000 M > 30 000 M at 1 kHz 75 x 10-4 75 x 10-4 75 x 10-4 100 Vdc 110 V/s VALUE at 10 kHz 130 x 10-4 130 x 10-4 130 x 10-4 250 Vdc 330 V/s at 100 kHz 250 x 10-4 300 x 10-4 400 Vdc 630 V/s
www.vishay.com 78
For technical questions, contact: dc-film@vishay.com
Document Number: 28108 Revision: 17-Nov-08
MKT 370
DC Film Capacitor MKT Radial Potted Type
SPECIFIC REFERENCE DATA (COMPACT SIZE)
DESCRIPTION Tangent of loss angle: C 0.1 F 0.1 F < C 0.47 F C > 0.47 F Rated voltage pulse slope (dU/dt)R at R between leads, for C 0.33 F at 100 V; 1 min RC between leads C > 0.33 F at 100 V; 1 min R between interconnecting leads and case (foil method) Withstanding (DC) voltage (cut off current 10 mA); Withstanding (DC) voltage between leads and case Maximum application temperature > 5000 s > 30 000 M 160 V; 1 min 200 V; 1 min > 30 000 M 400 V; 1 min 500 V; 1 min 100 C > 30 000 M 640 V; 1 min 800 V; 1 min > 30 000 M 1008 V; 1 min 1260 V; 1 min > 15 000 M > 30 000 M > 30 000 M > 30 000 M 100 Vdc 37 V/s at 1 kHz 75 x 10-4 75 x 10-4 75 x 10-4 250 Vdc 44 V/s VALUE at 10 kHz 130 x 10-4 130 x 10-4 130 x 10-4 400 Vdc 200 V/s at 100 kHz 250 x 10-4 300 x 10-4 630 Vdc 540 V/s
Vishay BCcomponents
URdc = 63 V; URac = 40 V CATALOGUE NUMBER BFC2 370 ... AND PACKAGING AMMOPACK C (F) DIMENSIONS wxhxl (mm) MASS (g) (1) H = 18.5 mm; P0 = 12.7 mm C-tol. = 10 % XX (SPQ) Pitch = 5.08 0.30 mm; dt = 0.50 0.05 mm 0.056 0.068 0.082 0.1 0.12 0.15 0.18 0.22 0.27 0.33 0.39 0.47 0.56 0.68 0.82 1.0 1.2
(2)
LOOSE IN BOX Short leads C-tol. = 10 % XX (SPQ) C-tol. = 5% XX (SPQ) Long leads C-tol. = 10 % XX (SPQ) C-tol. = 5% XX (SPQ)
REEL C-VALUE C-tol. = 10 % XX (SPQ) C-tol. = 5% XX (SPQ) ..YYY
C-tol. = 5% XX (SPQ)
563 683 823 2.5 x 6.5 x 7.2 0.18 75... (2000) 76... (2000) 11... (2000) 12... (2000) 15... (1000) 16... (1000) 18... (2000) 19... (2000) 104 124 154 184 224 274 3.5 x 8.0 x 7.2 0.3 75... (1500) 76... (1500) 11... (2000) 12... (2000) 15... (1000) 16... (1000) 18... (1500) 19... (1500) 334 394 474 4.5 x 9.0 x 7.2 0.42 75... (1000) 76... (1000) 11... (2000) 12... (2000) 15... (1000) 16... (1000) 18... (1000) 19... (1000) 564 684 824 6.0 x 11.0 x 7.2 0.64 75... (750) 76... (750) 11... (2000) 12... (2000) 15... (1000) 16... (1000) 18... (1000) 19... (1000) 105 125 155
1.5 (2) Note (1) Weight for short lead products only (2) For C = 1.2 F and C = 1.5 F: U Rdc = 50 V and URac = 32 V
Document Number: 28108 Revision: 17-Nov-08
For technical questions, contact: dc-film@vishay.com
www.vishay.com 79
MKT 370
Vishay BCcomponents
URdc = 100 V; URac = 63 V (standard size) CATALOGUE NUMBER BFC2 370 ... AND PACKAGING AMMOPACK C (F) DIMENSIONS wxhxl (mm) MASS (g) (1) H = 18.5 mm; P0 = 12.7 mm C-tol. = 10 % XX (SPQ) Pitch = 5.08 0.30 mm; dt = 0.50 0.05 mm 0.001 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 0.27 0.33 0.39 0.47
(1)
DC Film Capacitor MKT Radial Potted Type
LOOSE IN BOX Short leads C-tol. = 10 % XX (SPQ) C-tol. = 5% XX (SPQ) Long leads C-tol. = 10 % XX (SPQ) C-tol. = 5% XX (SPQ)
REEL C-VALUE C-tol. = 10 % XX (SPQ) C-tol. = 5% XX (SPQ) ..YYY
C-tol. = 5% XX (SPQ)
102 122 152 182 222 272 332 392 472 562 682 822 2.5 x 6.5 x 7.2 0.18 85... (2000) 86... (2000) 21... (2000) 22... (2000) 25... (1000) 26... (1000) 28... (2000) 29... (2000) 103 123 153 183 223 273 333 393 473 563 683 823 104 124 3.5 x 8.0 x 7.2 0.30 85... (1500) 86... (1500) 21... (2000) 22... (2000) 25... (1000) 26... (1000) 28... (1500) 29... (1500) 154 184 224 4.5 x 9.0 x 7.2 0.42 85... (1000) 85... (750) 86... (1000) 86... (750) 21... (2000) 21... (2000) 22... (2000) 22... (2000) 25... (1000) 25... (1000) 26... (1000) 26... (1000) 28... (1000) 28... (1000) 29... (1000) 29... (1000) 274 334 6.0 x 11.0 x 7.2 0.64 394 474
Note Weight for short lead products only
www.vishay.com 80
For technical questions, contact: dc-film@vishay.com
Document Number: 28108 Revision: 17-Nov-08
MKT 370
DC Film Capacitor MKT Radial Potted Type
URdc = 100 V; URac = 40 V (compact size) CATALOGUE NUMBER BFC2 370 ... AND PACKAGING AMMOPACK LOOSE IN BOX REEL H = 18.5 mm; Short leads Long leads P0 = 12.7 mm C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = 10 % 5% 10 % 5% 10 % 5% 10 % 5% XX XX XX XX XX XX XX XX (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ)
Vishay BCcomponents
C (F)
DIMENSIONS wxhxl (mm)
MASS (g) (1)
C-VALUE
..YYY 124 154 184 224 274 334 394 474 564
Pitch = 5.08 0.30 mm; dt = 0.50 0.05 mm 0.12 0.15 0.18 3.5 x 8.0 x 7.2 0.30 0.22 0.27 0.33 0.39 4.5 x 9.0 x 7.2 0.42 0.47 0.56
(1)
CB... (1500)
CC... (1500)
CE... (2000)
CF... (2000)
CH... (1000)
CI... (1000)
CL... (1500)
CM... (1500)
CB... (1000) CB... (750)
CC... (1000) CC... (750)
CE... (2000) CE... (2000)
CF... (2000) CF... (2000)
CH... (1000) CH... (1000)
CI... (1000) CI... (1000)
CL... (1000) CL... (1000)
CM... (1000) CM... (1000)
6.0 x 11.0 x 7.2
0.64
Note Weight for short lead products only
URdc = 250 V; URac = 160 V (standard size) CATALOGUE NUMBER BFC2 370 ... AND PACKAGING AMMOPACK LOOSE IN BOX REEL H = 18.5 mm; Short leads Long leads P0 = 12.7 mm C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = 10 % 5% 10 % 5% 10 % 5% 10 % 5% XX XX XX XX XX XX XX XX (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ)
C (F)
DIMENSIONS wxhxl (mm)
MASS (g) (1)
C-VALUE
..YYY 102 122 152 182 222 272 332 392 472 562 682 822 103 123 153 183 223 273 333 393 473 563 683 823 104
Pitch = 5.08 0.30 mm; dt = 0.50 0.05 mm 0.001 0.0012 0.0015 0.0018 0.0022 0.0027 0.0033 0.0039 2.5 x 6.5 x 7.2 0.18 0.0047 0.0056 0.0068 0.0082 0.010 0.012 0.015 0.018 0.022 0.027 3.5 x 8.0 x 7.2 0.30 0.033 0.039 0.047 4.5 x 9.0 x 7.2 0.42 0.056 0.068 6.0 x 11.0 x 7.2 0.64 0.082 0.10
(1)
35... (2000)
36... (2000)
41... (2000)
42... (2000)
45... (1000)
46... (1000)
48... (2000)
49... (2000)
35... (1500) 35... (1000) 35... (750)
36... (1500) 36... (1000) 36... (750)
41... (2000) 41... (2000) 41... (2000)
42... (2000) 42... (2000) 42... (2000)
45... (1000) 45... (1000) 45... (1000)
46... (1000) 46... (1000) 46... (1000)
48... (1500) 48... (1000) 48... (1000)
49... (1500) 49... (1000) 49... (1000)
Note Weight for short lead products only For technical questions, contact: dc-film@vishay.com www.vishay.com 81
Document Number: 28108 Revision: 17-Nov-08
MKT 370
Vishay BCcomponents
URdc = 250 V; URac = 63 V (compact size) CATALOGUE NUMBER BFC2 370 ... AND PACKAGING AMMOPACK LOOSE IN BOX REEL H = 18.5 mm; Short leads Long leads P0 = 12.7 mm C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = 10 % 5% 10 % 5% 10 % 5% 10 % 5% XX XX XX XX XX XX XX XX (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) EB... (2000) EC... (2000) EE... (2000) EF... (2000) EH... (1000) EI... (1000) EL... (2000) EM... (2000)
DC Film Capacitor MKT Radial Potted Type
C (F)
DIMENSIONS wxhxl (mm)
MASS (g) (1)
C-VALUE
..YYY 223 273 333 393 473 563 683 823 104 124 154 184 224
Pitch = 5.08 0.30 mm; dt = 0.50 0.05 mm 0.022 2.5 x 6.5 x 7.2 0.18 0.027 0.033 0.039 0.047 3.5 x 8.0 x 7.2 0.30 0.056 0.068 0.082 4.5 x 9.0 x 7.2 0.42 0.10 0.12 0.15 6.0 x 11.0 x 7.2 0.64 0.18 0.22
(1)
EB... (1500)
EC... (1500)
EE... (2000)
EF... (2000)
EH... (1000)
EI... (1000)
EL... (1500)
EM... (1500)
EB... (1000) EB... (750)
EC... (1000) EC... (750)
EE... (2000) EE... (2000)
EF... (2000) EF... (2000)
EH... (1000) EH... (1000)
EI... (1000) EI... (1000)
EL... (1000) EL... (1000)
EM... (1000) EM... (1000)
Note Weight for short lead products only
URdc = 400 V; URac = 220 V (standard size) CATALOGUE NUMBER BFC2 370 ... AND PACKAGING AMMOPACK LOOSE IN BOX REEL H = 18.5 mm; Short leads Long leads P0 = 12.7 mm C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = 10 % 5% 10 % 5% 10 % 5% 10 % 5% XX XX XX XX XX XX XX XX (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ)
C (F)
DIMENSIONS wxhxl (mm)
MASS (g) (1)
C-VALUE
..YYY 102 122 152 182 222 272 332 392 472 562 682 822 103 123 153 183 223 273 333 393 473
Pitch = 5.08 0.30 mm; dt = 0.50 0.05 mm 0.001 0.0012 0.0015 0.0018 0.0022 0.0027 2.5 x 6.5 x 7.2 0.18 0.0033 0.0039 0.0047 0.0056 0.0068 0.0082 0.010 0.012 3.5 x 8.0 x 7.2 0.30 0.015 0.018 0.022 4.5 x 9.0 x 7.2 0.42 0.027 0.033 6.0 x 11.0 x 7.2 0.64 0.039 0.047
(1)
65... (2000)
66... (2000)
51... (2000)
52... (2000)
55... (1000)
56... (1000)
58... (2000)
59... (2000)
65... (1500) 65... (1000) 65... (750)
66... (1500) 66... (1000) 66... (750)
51... (2000) 51... (2000) 51... (2000)
52... (2000) 52... (2000) 52... (2000)
55... (1000) 55... (1000) 55... (1000)
56... (1000) 56... (1000) 56... (1000)
58... (1500) 58... (1000) 58... (1000)
59... (1500) 59... (1000) 59... (1000)
Note Weight for short lead products only
www.vishay.com 82
For technical questions, contact: dc-film@vishay.com
Document Number: 28108 Revision: 17-Nov-08
MKT 370
DC Film Capacitor MKT Radial Potted Type
URdc = 400 V; URac = 160 V (compact size) CATALOGUE NUMBER BFC2 370 ... AND PACKAGING AMMOPACK LOOSE IN BOX REEL H = 18.5 mm; Short leads Long leads P0 = 12.7 mm C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = 10 % 5% 10 % 5% 10 % 5% 10 % 5% XX XX XX XX XX XX XX XX (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ)
Vishay BCcomponents
C (F)
DIMENSIONS wxhxl (mm)
MASS (g) (1)
C-VALUE
..YYY 103 123 153 183 223 273 333 393 473 563 683 823 104
Pitch = 5.08 0.30 mm; dt = 0.50 0.05 mm 0.01 0.012 2.5 x 6.5 x 7.2 0.18 0.015 0.018 0.022 0.027 3.5 x 8.0 x 7.2 0.30 0.033 0.039 0.047 4.5 x 9.0 x 7.2 0.42 0.056 0.068 0.082 6.0 x 11.0 x 7.2 0.64 0.10
(1)
FB... (2000)
FC... (2000)
FE... (2000)
FF... (2000)
FH... (1000)
FI... (1000)
FL... (2000)
FM... (2000)
FB... (1500) FB... (1000) FB... (750)
FC... (1500) FC... (1000) FC... (750)
FE... (2000) FE... (2000) FE... (2000)
FF... (2000) FF... (2000) FF... (2000)
FH... (1000) FH... (1000) FH... (1000)
FI... (1000) FI... (1000) FI... (1000)
FL... (1500) FL... (1000) FL... (1000)
FM... (1500) FM... (1000) FM... (1000)
Note Weight for short lead products only
URdc = 630 V; URac = 220 V (compact size) CATALOGUE NUMBER BFC2 370 ... AND PACKAGING AMMOPACK LOOSE IN BOX REEL H = 18.5 mm; Short leads Long leads P0 = 12.7 mm C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = C-tol. = 10 % 5% 10 % 5% 10 % 5% 10 % 5% XX XX XX XX XX XX XX XX (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ) (SPQ)
C (F)
DIMENSIONS wxhxl (mm)
MASS (g) (1)
C-VALUE
..YYY 681 821 102 122 152 182 202 222 242 272 332 392 472 562 682 822 103 123 153 183 223 273 333
Pitch = 5.08 0.30 mm; dt = 0.50 0.05 mm 0.00068 0.00082 0.001 0.0012 0.0015 0.0018 0.002 0.0022 0.0024 3.5 x 8.0 x 7.2 0.35 0.0027 0.0033 0.0039 0.0047 0.0056 0.0068 0.0082 0.01 0.012 4.5 x 9.0 x 7.2 0.45 0.015 0.018 0.022 6.0 x 11.0 x 7.2 0.65 0.027 0.033
(1)
GB... (1500)
GC... (1500)
GE... (2000)
GF... (2000)
GH... (1000)
GI... (1000)
GL... (1500)
GM... (1500)
GB... (1000) GB... (750)
GC... (1000) GC... (750)
GE... (2000) GE... (2000)
GF... (2000) GF... (2000)
GH... (1000) GH... (1000)
GI... (1000) GI... (1000)
GL... (1000) GL... (1000)
GM... (1000) GM... (1000)
Note Weight for short lead products only For technical questions, contact: dc-film@vishay.com www.vishay.com 83
Document Number: 28108 Revision: 17-Nov-08
MKT 370
Vishay BCcomponents
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: www.vishay.com/doc?28139 or end of catalog. Specific Method of Mounting to Withstand Vibration and Shock In order to withstand vibration and shock tests, it must be ensured that stand-off pips are in good contact with the printed-circuit board: * 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 Space Requirements On Printed-Circuit Board The maximum length and width of film capacitors is shown in the drawing: * Eccentricity as in drawing. The maximum eccentricity is smaller than or equal to the lead diameter of the product concerned. * Product height with seating plane as given by "IEC 60717" as reference: hmax. h + 0.3 mm
DC Film Capacitor MKT Radial Potted Type
Eccentricity
bmax. = b + 0.3 mm
lmax. = l + 0.3 mm
Storage Temperature * Storage temperature: Tstg = - 25 C to + 40 C with RH maximum 80 % without condensation Ratings and Characteristics Reference Conditions Unless otherwise specified, all electrical values apply to an ambient temperature of 23 1 C, 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 4 h by heating the products in a circulating air oven at the rated temperature and a relative humidity not exceeding 20 %.
www.vishay.com 84
For technical questions, contact: dc-film@vishay.com
Document Number: 28108 Revision: 17-Nov-08
MKT 370
DC Film Capacitor MKT Radial Potted Type
CHARACTERISTICS
Capacitance as a function of frequency (typical curve)
2 C/C (%) 6 C/C (%)
Vishay BCcomponents
Capacitance as a function of temperature (typical curve)
1 kHz a. 63 V series b. 100 V series c. 250 V series d. 400 V series
max.
1
4 2
d c b a
0 0 -1 -2 -2 -4
min. typical
-3 2 10
10
3
10
4
f (Hz)
10
5
-6 - 60
- 20
20
60 Tamb (C) 100
Max. DC and AC voltage as a function of temperature
1.2 1.0 0.8 10 0.6 10- 1 0.4 0.2 0.0 - 60 10- 2
0
Impedance as a function of frequency
102
Impedance ()
factor
101
63
63 V; 1 F
V; 1
25 00 nF
0V ;1
0n
F
- 20
20
60 Tamb (C) 100
10- 3 104
105
106
107
f (Hz)
108
Max. AC voltage as function of frequency
102 AC Voltage (V) 102 AC Voltage (V)
Max. AC voltage as function of frequency
101
10 0 22 nF 0 10 nF 00 nF
nF
56
101
100 101
Tamb = 85 C, 63 VDC 102 103 104 f (Hz) 105
Tamb 105 C, 63 VDC 100 101 102 103 104
10 22 0 nF 0 10 nF 00 nF
f (Hz)
Document Number: 28108 Revision: 17-Nov-08
For technical questions, contact: dc-film@vishay.com
www.vishay.com 85
56
nF
105
MKT 370
Vishay BCcomponents
DC Film Capacitor MKT Radial Potted Type
Max. AC voltage as function of frequency
102 AC Voltage (V) 101
Max. AC voltage as function of frequency
102 AC Voltage (V)
101
12 22 nF n 47 F nF 10 0 33 nF 0 nF
Tamb 85 C, 100 VDC 100 101 102 103 104 f (Hz) 105
85 C < Tamb 105 C, 100 VDC 100 1 10 102 103
n 22 F n 47 F 10 nF 0 33 nF 0 nF
12
104
f (Hz)
105
Max. AC voltage as function of frequency
102 AC Voltage (V) Compact size 102 AC Voltage (V)
Max. AC voltage as function of frequency
Compact size
101
10 22 0 n 0F nF
101
10 22 0 n 0F nF
Tamb 85 C, 100 VDC 100 1 10 102
10
3
10
4
f (Hz)
10
5
100 101
85 C < Tamb 105 C, 100 VDC 102 103 104 f (Hz) 105
Max. AC voltage as function of frequency
AC Voltage (V) 103 103
Max. AC voltage as function of frequency
AC Voltage (V)
102
102
101
4.7 10nF 2 nF 4 2n 10 7 nFF 0n F
101
4. 10 7 nF n 22 F 1047 nnF 0n F F
85 C < Tamb 105 C, 250 VDC
100 101
Tamb 85 C, 250 VDC 102 103 104 f (Hz) 105
100 101 102 103 104 f (Hz) 105
www.vishay.com 86
For technical questions, contact: dc-film@vishay.com
Document Number: 28108 Revision: 17-Nov-08
MKT 370
DC Film Capacitor MKT Radial Potted Type
Max. AC voltage as function of frequency
102 AC Voltage (V) Compact size 102 AC Voltage (V) Compact size
Vishay BCcomponents
Max. AC voltage as function of frequency
101
101
Tamb 85 C, 250 VDC 100 101 102 103 104 f (Hz) 105 100 101
85 C < Tamb 105 C, 250 VDC 102 103 104 f (Hz) 105
Max. AC voltage as function of frequency
103 103
Max. AC voltage as function of frequency
AC Voltage (V)
102
1. 2. 0 n 4.72 n F 10 n F 33 nF F nF
AC Voltage (V) 102
101
101
1. 2. 0 n 4.72 n F 10 n F 33 nF F nF
Tamb 85 C, 400 VDC 100 101 102 103 104 f (Hz) 105 100 101
85 C < Tamb 105 C, 400 VDC 102 103 104 f (Hz) 105
Max. AC voltage as function of frequency
103 Compact size 103
Max. AC voltage as function of frequency
AC Voltage (V)
AC Voltage (V)
Compact size
102
102
10
1
10 22 nF 1047 nnF 0n F F
10
1
1. 2. 0 n 4.72 n F 10 n F nF F
Tamb 85 C, 400 VDC 100 101 102 103 104 f (Hz) 105 100 101
85 C < Tamb 105 C, 400 VDC 102 103 104 f (Hz) 105
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MKT 370
Vishay BCcomponents
DC Film Capacitor MKT Radial Potted Type
Max. AC voltage as function of frequency
102 AC Voltage (V) 101
Max. AC voltage as function of frequency
102 AC Voltage (V) 101
8n 0.6 F
2.
68 0.
2.2 nF
nF
2 nF
33
33
Tamb 85 C, 630 VDC 100 101 102 103
104
f (Hz)
105
100 101
85 C < Tamb 100 C, 630 VDC 102 103
Maximum RMS current (sinewave) as a function of frequency The maximum RMS current is defined by Iac = x C x Uac. Uac is the maximum AC voltage depending on the ambient temperature in the curves "Max. RMS voltage and AC current as a function of frequency".
Tangent of loss angle as a function of frequency
103
Dissipation factor (x 10-4)
5 4 3 2 1
10 4
102
101 10 2 10 3
Curve 1: C = 0.33 F Curve 2: 0.33 F, C = 1.2 F Curve 3: 1.2 F, C = 3.9 F Curve 4: 3.9 F,C = 6.8 F Curve 5: C = 6.8 F
10 3
10 4
f (Hz) 10 5
10 2 - 50
RC (s)
HEAT CONDUCTIVITY (G) AS A FUNCTION OF (ORIGINAL) PITCH AND CAPACITOR BODY THICKNESS IN mW/C
Wmax. (mm) 2.5 3.5 4.5 6.0 HEAT CONDUCTIVITY (mW/C) PITCH 5 mm 2.5 3.0 4.0 5.5
nF
Insulation resistance as a function of the ambient temperature (typical curve)
10 5
nF
104
f (Hz)
105
0
50
Tamb (C)
100
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Document Number: 28108 Revision: 17-Nov-08
MKT 370
DC Film Capacitor MKT Radial Potted Type
POWER DISSIPATION AND MAXIMUM COMPONENT 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-384-01/101: Technical Information Film Capacitors". 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 (C) * P = Power dissipation of the component (mW) * G = Heat conductivity of the component (mW/C)
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MEASURING THE COMPONENT TEMPERATURE
A thermocouple must be attached to the capacitor body as in:
Thermocouple
The temperature is measured in unloaded (Tamb) and maximum loaded condition (TC). The temperature rise is given by T = TC - Tamb. To avoid radiation or convection, the capacitor should be tested in a wind-free box.
APPLICATION NOTE AND LIMITING CONDITIONS
These capacitors are not suitable for mains applications as across-the-line capacitors without additional protection, as described hereunder. These mains applications are strictly regulated in safety standards and therefore electromagnetic interference suppression capacitors conforming the standards must be used. To select the capacitor for a certain application, the following conditions must be checked: 1. The peak voltage (UP) shall not be greater than the rated DC voltage (URdc) 2. The peak-to-peak voltage (UP-P) shall not be greater than 22 x URac to avoid the ionisation inception level 3. The voltage peak slope (dU/dt) shall not exceed the rated voltage pulse slope in an RC-circuit at rated voltage and without ringing. If the pulse voltage is lower than the rated DC voltage, the rated voltage pulse slope may be multiplied by URdc and T divided by the applied voltage. dU 2 dU For all other pulses following equation must be fulfilled: 2 x ------- x dt < U Rdc x -------
dt dt
0 rated
T is the pulse duration. 4. The maximum component surface temperature rise must be lower than the limits (see figure max. allowed component temperature rise). 5. Since in circuits used at voltages over 280 V peak-to-peak the risk for an intrinsically active flammability after a capacitor breakdown (short circuit) increases, it is recommended that the power to the component is limited to 100 times the values mentioned in the table: "Heat conductivity" 6. When using these capacitors as across-the-line capacitor in the input filter for mains applications or as series connected with an impedance to the mains the applicant must guarantee that the following conditions are fulfilled in any case (spikes and surge voltages from the mains included).
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MKT 370
Vishay BCcomponents
Voltage Conditions for 6 Above
ALLOWED VOLTAGES Maximum continuous RMS voltage Maximum temperature RMS-overvoltage (< 24 h) Maximum peak voltage (VO-P) (< 2 s) Tamb 85 C URac 1.25 x URac 1.6 x URdc 85 C < Tamb 100 C See "Max. AC voltage as function of temperature CBB952" per characteristics URac 1.3 x URdc
DC Film Capacitor MKT Radial Potted Type
EXAMPLE
C = 330 nF - 63 V used for the voltage signal shown in next drawing. UP-P = 40 V; UP = 35 V; T1 = 100 s; T2 = 200 s The ambient temperature is 35 C Checking conditions: 1. The peak voltage UP = 35 V is lower than 63 Vdc 2. The peak-to-peak voltage 40 V is lower than 22 x 40 Vac = 113 UP-P 3. The voltage pulse slope (dU/dt) = 40 V/100 s = 0.4 V/s This is lower than 60 V/s (see specific reference data for each version) 4. The dissipated power is 16.2 mW as calculated with fourier terms The temperature rise for Wmax. = 3.5 mm and pitch = 5 mm will be 16.2 mW/3.0 mW/C = 5.4 C This is lower than 15 C temperature rise at 35 C, according figure max. allowed component temperature rise 5. Not applicable 6. Not applicable
Voltage Signal
Voltage
UP
UP-P
Time T1 T2
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Document Number: 28108 Revision: 17-Nov-08
MKT 370
DC Film Capacitor MKT Radial Potted Type
INSPECTION REQUIREMENTS
General Notes: Sub-clause numbers of tests and performance requirements refer to the "Sectional Specification, Puplication IEC 60384-2 and Specific Reference Data". Group C Inspection Requirements
SUB-CLAUSE NUMBER AND TEST SUB-GROUP C1A PART OF SAMPLE OF SUB-GROUP C1 4.1 4.3.1 Dimensions (detail) Initial measurements Capacitance Tangent of loss angle: For C 470 nF at 100 kHz or for C > 470 nF at 10 kHz Tensile and bending Method: 1A Solder bath: 280 C 5 C Duration: 10 s Isopropylalcohol at room temperature Method: 2 Immersion time: 5 0.5 min Recovery time: Min. 1 h, max. 2 h Visual examination Capacitance Tangent of loss angle No visible damage Legible marking |C/C| 2 % of the value measured initially Increase of tan 0.005 for: C 100 nF or 0.010 for: 100 nF < C 220 nF or 0.015 for: 220 nF < C 470 nF and 0.003 for: C > 470 nF Compared to values measured in 4.3.1 No visible damage As specified in chapters "MKT 370 General Data" of this specification CONDITIONS PERFORMANCE REQUIREMENTS
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4.3 4.4
Robustness of terminations Resistance to soldering heat
4.14
Component solvent resistance
4.4.2
Final measurements
SUB-GROUP C1B PART OF SAMPLE OF SUB-GROUP C1 4.6.1 Initial measurements Capacitance Tangent of loss angle: For C 470 nF at 100 kHz or for C > 470 nF at 10 kHz A = - 55 C B = + 100 C 5 cycles Duration t = 30 min 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/s (whichever is less severe) Total duration 6 h Visual examination No visible damage
4.6
Rapid change of temperature
4.7
Vibration
4.7.2
Final inspection
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MKT 370
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SUB-CLAUSE NUMBER AND TEST 4.9 Shock
DC Film Capacitor MKT Radial Potted Type
CONDITIONS Mounting: See section "Mounting" of this specification Pulse shape: Half sine Acceleration: 490 m/s Duration of pulse: 11 ms Visual examination Capacitance Tangent of loss angle No visible damage |C/C| 3 % of the value measured in 4.6.1 Increase of tan 0.010 for: C 220 nF or 0.015 for: 220 nF < C 470 nF and 0.003 for: C > 470 nF Compared to values measured in 4.6.1 As specified in section "Specific Reference Data 370" of this specification PERFORMANCE REQUIREMENTS
4.9.3
Final measurements
Insulation resistance SUB-GROUP C1 COMBINED SAMPLE OF SPECIMENS OF SUB-GROUPS C1A AND C1B 4.10 4.10.2 4.10.3 4.10.4 4.10.6 Climatic sequence Dry heat Damp heat cyclic Test Db, first cycle Cold Damp heat cyclic Test Db, remaining cycles Voltage proof = URdc for 1 min within 15 min after removal from testchamber Visual examination Capacitance Tangent of loss angle Temperature: - 55 C Duration: 2 h Temperature: + 100 C Duration: 16 h
4.10.6.2 Final measurements
No breakdown of flash-over No visible damage Legible marking |C/C| 5 % of the value measured in 4.4.2 or 4.9.3 Increase of tan 0.010 for: C 220 nF or 0.015 for: 220 nF < C 470 nF and 0.005 for: C > 470 nF Compared to values measured in 4.3.1 or 4.6.1 50 % of values specified in section "Specific Reference Data 370" of this specification
Insulation resistance SUB-GROUP C2 4.11 4.11.1 Damp heat steady state Initial measurements 56 days, 40 C, 90 % to 95 % RH Capacitance Tangent of loss angle at 1 kHz
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Document Number: 28108 Revision: 17-Nov-08
MKT 370
DC Film Capacitor MKT Radial Potted Type
SUB-CLAUSE NUMBER AND TEST 4.11.3 Final measurements CONDITIONS Voltage proof = URdc for 1 min within 15 min after removal from testchamber Visual examination Capacitance Tangent of loss angle Insulation resistance SUB-GROUP C3 4.12 Endurance Duration: 2000 h 1.25 x URdc at 85 C 0.8 x 1.25 URdc at 100 C Capacitance Tangent of loss angle: For C 470 nF at 100 kHz or for C > 470 nF at 10 kHz Visual examination Capacitance Tangent of loss angle No visible damage Legible marking |C/C| 5 % compared to values measured in 4.12.1 Increase of tan 0.005 for at 85 C 0.010 for at 100 C for: C 220 nF or 0.015 for: 220 nF < C 470 nF and 0.003 for: C > 470 nF Compared to values measured in 4.12.1 50 % of values specified in section "Specific Reference Data 370" of this specification
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PERFORMANCE REQUIREMENTS No breakdown of flash-over No visible damage Legible marking |C/C| 5 % of the value measured in 4.11.1. Increase of tan 0.005 Compared to values measured in 4.11.1 50 % of values specified in section "Specific Reference Data 370" of this specification
4.12.1
Initial measurements
4.12.5
Final measurements
Insulation resistance SUB-GROUP C4 4.13 Charge and discharge 10 000 cycles Charged to URdc Discharge resistance: UR R = ------------------------------------------------C x 2.5 x ( dU dt ) R Capacitance Tangent of loss angle: For C 470 nF at 100 kHz or for C > 470 nF at 10 kHz Capacitance Tangent of loss angle
4.13.1
Initial measurements
4.13.3
Final measurements
|C/C| 3 % compared to values measured in 4.13.1 Increase of tan 0.005 for: C 100 nF or 0.010 for: 100 nF < C 220 nF or 0.015 for: 220 nF < C 470 nF and 0.003 for: C > 470 nF Compared to values measured in 4.13.1 50 % of values specified in section "Specific Reference Data 370" of this specification
Insulation resistance
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Legal Disclaimer Notice
Vishay
Disclaimer
All product specifications and data are subject to change without notice. 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 herein or in any other disclosure relating to any product. Vishay disclaims any and all liability arising out of the use or application of any product described herein or of any information provided herein to the maximum extent permitted by law. The product specifications do not expand or otherwise modify Vishay's terms and conditions of purchase, including but not limited to the warranty expressed therein, which apply to these products. 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. The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications unless otherwise expressly indicated. Customers using or selling Vishay products not expressly indicated for use in such applications do so entirely at their own risk and agree to fully indemnify Vishay for any damages arising or resulting from such use or sale. Please contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications. Product names and markings noted herein may be trademarks of their respective owners.
Document Number: 91000 Revision: 18-Jul-08
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