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  • 北京元坤伟业科技有限公司

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  • BFC237328105
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  • 北京元坤伟业科技有限公司

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  • BFC237328105
  • 数量5000 
  • 厂家Vishay/BC Components 
  • 封装贴/插片 
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  • BFC237328105
  • 数量96500 
  • 厂家VISHAY-威世 
  • 封装DIP-2.车规 
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  • 深圳市芯脉实业有限公司

     该会员已使用本站11年以上
  • BFC237328105
  • 数量26980 
  • 厂家VISHAY 
  • 封装原厂原封 
  • 批号全新环保批次 
  • 新到现货、一手货源、当天发货、bom配单
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产品型号BFC237328105的Datasheet PDF文件预览

MKT373  
Vishay BCcomponents  
www.vishay.com  
DC Film Capacitors  
MKT Radial Potted Type  
FEATURES  
• 15 mm to 27.5 mm lead pitch.  
Supplied loose in box and taped on reel  
• Material categorization:  
for definitions of compliance please see  
www.vishay.com/doc?99912  
APPLICATIONS  
Blocking and coupling, bypass and energy reservoir  
QUICK REFERENCE DATA  
Capacitance tolerance  
Capacitance range (E12 series)  
Rated DC voltage  
10 %, 5 %  
0.047 μF to 15 μF  
100 V, 250 V, 400 V, 630 V  
63 V, 160 V, 220 V, 250 V  
55/105/56  
Rated AC voltage  
Climatic testing class (according to IEC 60068-1)  
Rated temperature  
85 °C  
Maximum application temperature  
Performance grade  
105 °C  
Grade 1 (long life)  
Tinned wire  
Leads  
Reference standards  
Dielectric  
IEC 60384-2  
Polyester film  
Electrodes  
Metallized  
Mono construction  
Construction  
Encapsulation  
Marking  
Flame retardant plastic case and epoxy resin (UL-class 94 V-0)  
C-value; tolerance; rated voltage; manufacturer’s symbol;  
year and week of manufacturer; manufacturer’s type  
Note  
For more detailed data and test requirements, contact dc-film@vishay.com  
DIMENSIONS  
w
l
h
lt  
P
Ø dt  
Revision: 08-Sep-16  
Document Number: 28193  
1
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
www.vishay.com  
COMPOSITION OF CATALOG NUMBER  
TYPE AND PITCHES  
CAPACITANCE  
(numerically)  
MULTIPLIER  
(nF)  
ꢀ5.0 mm  
0.ꢀ  
2
3
4
5
373  
22.5 mm  
27.5 mm  
ꢀ0  
ꢀ00  
Example:  
ꢀ04 = ꢀ0 x ꢀ0 = ꢀ00 nF  
BFC2  
373  
XX  
XX  
YY  
YY  
Y
Y
2222 (*) 373  
(*) Old ordering number  
PREFERRED TYPES  
TYPE  
PACKAGING  
LEAD CONFIGURATION  
C-TOL.  
ꢀ0 %  
5 %  
100 V  
23  
24  
250 V  
43  
44  
400 V  
53  
630 V  
63  
Lead length  
5.0 mm ꢀ.0 mm  
H (ꢀ) = ꢀ8.5 mm  
P0 = ꢀ2.7 mm  
Reel diameter = 356 mm  
Loose in box  
54  
64  
373  
compact  
ꢀ0 %  
27  
47  
57  
67  
68  
Taped on reel (ꢀ)  
5 %  
ꢀ0 %  
5 %  
28  
2ꢀ  
22  
48  
4ꢀ  
42  
58  
5ꢀ  
52  
Lead length  
5.0 mm ꢀ.0 mm  
Loose in box  
373  
standard  
-
H (ꢀ) = ꢀ8.5 mm  
P0 = ꢀ2.7 mm  
Reel diameter = 356 mm  
ꢀ0 %  
5 %  
25  
26  
45  
46  
55  
56  
Taped on reel (ꢀ)  
Note  
(1)  
For detailed tape specifications refer to packaging information: www.vishay.com/doc?28139  
SPECIFIC REFERENCE DATA  
DESCRIPTION  
VALUE  
Tangent of loss angle:  
C 0.1 μF  
0.1 μF < C 0.47 μF  
0.47 μF < C 1.0 μF  
1.0 μF < C 10 μF  
C > 10 μF  
at 1 kHz  
at 10 kHz  
at 100 kHz  
75 x 10-4  
75 x 10-4  
75 x 10-4  
75 x 10-4  
75 x 10-4  
130 x 10-4  
130 x 10-4  
130 x 10-4  
150 x 10-4  
-
250 x 10-4  
300 x 10-4  
-
-
-
Rated voltage pulse slope (dU/dt)R at  
100 VDC  
250 VDC  
400 VDC  
630 VDC  
P = 15 mm  
P = 22.5 mm  
P = 27.5 mm  
14 V/μs  
5 V/μs  
4 V/μs  
16 V/μs  
7 V/μs  
6 V/μs  
34 V/μs  
14 V/μs  
12 V/μs  
90 V/μs  
35 V/μs  
30 V/μs  
R between leads, for C 0.33 μF  
at 100 V; 1 min  
> 15 000 M  
> 15 000 M  
> 30 000 M  
at 500 V; 1 min  
> 30 000 M  
RC between leads, for C > 0.33 μF  
at 100 V; 1 min  
> 5000 s  
> 10 000 s  
> 10 000 s  
at 500 V; 1 min  
> 10 000 s  
R between interconnecting leads and case  
> 30 000 M  
(foil method)  
Withstanding (DC) voltage (cut off current 10 mA) (1);  
rise time 1000 V/s  
Withstanding (DC) voltage between leads and case  
Maximum application temperature  
160 V; 1 min  
200 V; 1 min  
400 V; 1 min  
500 V; 1 min  
640 V; 1 min  
800 V; 1 min  
1008 V; 1 min  
1260 V; 1 min  
105 °C  
Note  
(1)  
See “Voltage Proof Test for Metallized Film Capacitors”: www.vishay.com/doc?28169  
Revision: 08-Sep-16  
Document Number: 28193  
2
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
www.vishay.com  
ELECTRICAL DATA - COMPACT SIZE  
CATALOG NUMBER BFC2 373 XXYYY AND PACKAGING  
LOOSE IN BOX  
REEL (1)(2)  
DIMENSIONS  
URDC  
(V)  
CAP.  
(μF)  
MASS  
(g) (3)  
lt = 5.0 mm 1.0 mm  
H = 18.5 mm; P0 = 12.7 mm  
C-VALUE  
..YYY  
w x h x l  
(mm)  
C-TOL. = 10 %  
C-TOL. = 5 %  
C-TOL. = 10 %  
C-TOL. = 5 %  
XX  
(SPQ)  
XX  
(SPQ)  
XX  
(SPQ)  
XX  
(SPQ)  
URAC = 63 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.60 mm 0.06 mm  
0.33  
0.39  
0.47  
0.56  
0.68  
0.82  
1.0  
33ꢀ  
39ꢀ  
ꢀ7ꢀ  
56ꢀ  
68ꢀ  
82ꢀ  
105  
125  
155  
185  
23...  
(1000)  
2ꢀ...  
(1000)  
27...  
(1100)  
28...  
(1100)  
5.0 x 11.0 x 17.5  
1.1  
1.2  
100  
1.5  
1.8  
23...  
(1000)  
2ꢀ...  
(1000)  
27...  
(900)  
28...  
(900)  
2.2  
6.0 x 12.0 x 17.5  
1.5  
225  
U
RAC = 63 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
2.7  
3.3  
3.9  
4.7  
275  
335  
395  
ꢀ75  
23...  
2ꢀ...  
27...  
28...  
7.0 x 13.5 x 17.5  
8.5 x 15.0 x 17.5  
2.0  
2.7  
(1000)  
(1000)  
(800)  
(800)  
23...  
(1000)  
2ꢀ...  
(1000)  
27...  
(650)  
28...  
(650)  
URAC = 160 V; PITCH = 15.0 mm 0.ꢀ0 mm; dt = 0.60 mm 0.06 mm  
0.15  
0.18  
0.22  
0.27  
0.32  
0.39  
0.47  
15ꢀ  
18ꢀ  
22ꢀ  
27ꢀ  
33ꢀ  
39ꢀ  
ꢀ7ꢀ  
ꢀ3...  
ꢀꢀ...  
ꢀ7...  
ꢀ8...  
5.0 x 11.0 x 17.5  
1.1  
1.5  
(1000)  
(1000)  
(1100)  
(1100)  
ꢀ3...  
(1000)  
ꢀꢀ...  
(1000)  
ꢀ7...  
(900)  
ꢀ8...  
(900)  
6.0 x 12.0 x 17.5  
7.0 x 13.5 x 17.5  
U
RAC = 160 V; PITCH = 15.0 mm 0.ꢀ0 mm; dt = 0.80 mm 0.08 mm  
0.56  
0.68  
0.82  
1.0  
56ꢀ  
68ꢀ  
82ꢀ  
105  
ꢀ3...  
(1000)  
ꢀꢀ...  
(1000)  
ꢀ7...  
(800)  
ꢀ8...  
(800)  
2.0  
ꢀ3...  
(1000)  
ꢀꢀ...  
(1000)  
ꢀ7...  
(650)  
ꢀ8...  
(650)  
8.5 x 15.0 x 17.5  
10.0 x 16.5 x 17.5  
2.7  
3.5  
250  
ꢀ3...  
(500)  
ꢀꢀ...  
(500)  
ꢀ7...  
(600)  
ꢀ8...  
(600)  
1.2  
125  
U
RAC = 160 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
1.5  
1.8  
2.2  
2.7  
155  
185  
225  
275  
ꢀ3...  
ꢀꢀ...  
ꢀ7...  
ꢀ8...  
8.5 x 18.0 x 26.0  
10.0 x 19.5 x 26.0  
4.5  
5.7  
(200)  
(200)  
(450)  
(450)  
ꢀ3...  
(200)  
ꢀꢀ...  
(200)  
ꢀ7...  
(350)  
ꢀ8...  
(350)  
U
RAC = 160 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
ꢀ3...  
ꢀꢀ...  
3.3  
11.0 x 21.0 x 31.0  
8.2  
-
-
-
-
335  
(100)  
(100)  
3.9  
4.7  
395  
ꢀ75  
ꢀ3...  
(100)  
ꢀꢀ...  
(100)  
13.0 x 23.0 x 31.0 10.2  
Revision: 08-Sep-16  
Document Number: 28193  
3
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
www.vishay.com  
ELECTRICAL DATA - COMPACT SIZE  
DIMENSIONS  
CATALOG NUMBER BFC2 373 XXYYY AND PACKAGING  
LOOSE IN BOX  
REEL (1)(2)  
URDC  
(V)  
CAP.  
(μF)  
MASS  
(g) (3)  
lt = 5.0 mm 1.0 mm  
H = 18.5 mm; P0 = 12.7 mm  
C-VALUE  
..YYY  
w x h x l  
(mm)  
C-TOL. = 10 %  
C-TOL. = 5 %  
C-TOL. = 10 %  
C-TOL. = 5 %  
XX  
XX  
XX  
(SPQ)  
XX  
(SPQ)  
(SPQ)  
(SPQ)  
URAC = 220 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.60 mm 0.06 mm  
0.047  
0.056  
0.068  
0.082  
0.10  
0.12  
0.15  
0.18  
0.22  
ꢀ73  
563  
683  
823  
10ꢀ  
12ꢀ  
15ꢀ  
18ꢀ  
22ꢀ  
53...  
5ꢀ...  
57...  
58...  
5.0 x 11.0 x 17.5  
6.0 x 12.0 x 17.5  
1.1  
(1000)  
(1000)  
(1100)  
(1100)  
53...  
(1000)  
5ꢀ...  
(1000)  
57...  
(900)  
58...  
(900)  
1.5  
URAC = 220 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.27  
0.33  
0.39  
0.47  
27ꢀ  
33ꢀ  
39ꢀ  
ꢀ7ꢀ  
53...  
5ꢀ...  
57...  
58...  
7.0 x 13.5 x 17.5  
8.5 x 15.0 x 17.5  
10.0 x 16.5 x 17.5  
2.0  
2.7  
3.5  
(1000)  
(1000)  
(800)  
(800)  
400  
53...  
(1000)  
53...  
(500)  
5ꢀ...  
(1000)  
5ꢀ...  
(500)  
57...  
(650)  
57...  
(600)  
58...  
(650)  
58...  
(600)  
0.56  
56ꢀ  
URAC = 220 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.68  
0.82  
1.0  
68ꢀ  
82ꢀ  
105  
125  
53...  
5ꢀ...  
57...  
58...  
8.5 x 18.0 x 26.0  
10.0 x 19.5 x 26.0  
4.5  
5.7  
(200)  
(200)  
(450)  
(450)  
53...  
(200)  
5ꢀ...  
(200)  
57...  
(350)  
58...  
(350)  
1.2  
URAC = 220 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
53...  
5ꢀ...  
1.5  
11.0 x 21.0 x 31.0  
8.2  
-
-
-
155  
(100)  
(100)  
1.8  
2.2  
185  
225  
53...  
(100)  
5ꢀ...  
(100)  
13.0 x 23.0 x 31.0 10.2  
-
URAC = 250 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.60 mm 0.06 mm  
0.047  
0.056  
0.068  
0.082  
ꢀ73  
563  
683  
823  
63...  
6ꢀ...  
67...  
68...  
5.0 x 11.0 x 17.5  
6.0 x 12.0 x 17.5  
1.1  
1.5  
(1000)  
(1000)  
(1100)  
(1100)  
63...  
(1000)  
6ꢀ...  
(1000)  
67...  
(900)  
68...  
(900)  
URAC = 250 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.10  
0.12  
0.15  
0.18  
10ꢀ  
12ꢀ  
15ꢀ  
18ꢀ  
63...  
6ꢀ...  
67...  
68...  
7.0 x 13.5 x 17.5  
8.5 x 15.0 x 17.5  
10.0 x 16.5 x 17.5  
2.0  
2.7  
3.5  
(1000)  
(1000)  
(800)  
(800)  
63...  
(1000)  
63...  
(500)  
6ꢀ...  
(1000)  
6ꢀ...  
(500)  
67...  
(650)  
67...  
(600)  
68...  
(650)  
68...  
(600)  
0.22  
22ꢀ  
630  
URAC = 250 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.27  
0.33  
0.39  
0.47  
27ꢀ  
33ꢀ  
39ꢀ  
ꢀ7ꢀ  
63...  
6ꢀ...  
67...  
68...  
8.5 x 18.0 x 26.0  
10.0 x 19.5 x 26.0  
4.5  
5.7  
(200)  
(200)  
(450)  
(450)  
63...  
(200)  
6ꢀ...  
(200)  
67...  
(350)  
68...  
(350)  
URAC = 250 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
63...  
6ꢀ...  
0.56  
11.0 x 21.0 x 31.0  
8.2  
-
-
-
56ꢀ  
(100)  
(100)  
0.68  
0.82  
68ꢀ  
82ꢀ  
63...  
(100)  
63...  
(100)  
6ꢀ...  
(100)  
6ꢀ...  
(100)  
13.0 x 23.0 x 31.0 10.2  
15.0 x 25.0 x 31.5 13.4  
-
1.00  
105  
Notes  
SPQ = Standard Packing Quantity  
Reel diameter = 356 mm is available on request  
H = in-tape height; P0 = sprocket hole distance; for detailed specifications refer to packaging information: www.vishay.com/doc?28139  
Weight for short lead product only  
(1)  
(2)  
(3)  
Revision: 08-Sep-16  
Document Number: 28193  
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
www.vishay.com  
ELECTRICAL DATA - STANDARD SIZE  
CATALOG NUMBER BFC2 373 XXYYY AND PACKAGING  
LOOSE IN BOX  
REEL (1)(2)  
DIMENSIONS  
URDC  
(V)  
C
(μF)  
MASS  
(g) (3)  
lt = 5.0 mm 1.0 mm  
H = 18.5 mm; P0 = 12.7 mm  
C-VALUE  
..YYY  
w x h x l  
(mm)  
C-TOL. = 10 %  
XX  
(SPQ)  
C-TOL. = 5 %  
XX  
(SPQ)  
C-TOL. = 10 %  
C-TOL. = 5 %  
XX  
(SPQ)  
XX  
(SPQ)  
URAC = 63 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.60 mm 0.06 mm  
0.33  
0.39  
0.47  
0.56  
0.68  
0.82  
1.00  
33ꢀ  
39ꢀ  
ꢀ7ꢀ  
56ꢀ  
68ꢀ  
82ꢀ  
105  
21...  
22...  
25...  
26...  
5.0 x 11.0 x 17.5  
6.0 x 12.0 x 17.5  
1.1  
(1000)  
(1000)  
(1100)  
(1100)  
21...  
(1000)  
22...  
(1000)  
25...  
(900)  
26...  
(900)  
1.5  
U
RAC = 63 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
1.2  
1.5  
1.8  
2.2  
125  
155  
185  
225  
21...  
22...  
25...  
26...  
7.0 x 13.5 x 17.5  
8.5 x 15.0 x 17.5  
2.0  
2.7  
(1000)  
(1000)  
(800)  
(800)  
21...  
(1000)  
22...  
(1000)  
25...  
(650)  
26...  
(650)  
100  
U
RAC = 63 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
2.7  
3.3  
3.9  
4.7  
275  
335  
395  
ꢀ75  
21...  
22...  
25...  
26...  
8.5 x 18.0 x 26.0  
10.0 x 19.5 x 26.0  
4.5  
5.7  
(200)  
(200)  
(450)  
(450)  
21...  
(200)  
22...  
(200)  
25...  
(350)  
26...  
(350)  
URAC = 63 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
5.6  
6.8  
8.2  
10  
565  
685  
825  
106  
126  
156  
21...  
22...  
11.0 x 21.0 x 31.0  
8.2  
-
-
-
-
-
-
(100)  
(100)  
21...  
(100)  
22...  
(100)  
13.0 x 23.0 x 31.0 10.2  
18.0 x 28.0 x 31.5 18.4  
12  
21...  
(100)  
22...  
(100)  
15  
U
RAC = 160 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.60 mm 0.06 mm  
0.15  
0.18  
0.22  
0.27  
0.33  
0.39  
0.47  
15ꢀ  
18ꢀ  
22ꢀ  
27ꢀ  
33ꢀ  
39ꢀ  
ꢀ7ꢀ  
ꢀ1...  
ꢀ2...  
ꢀ5...  
ꢀ6...  
5.0 x 11.0 x 17.5  
6.0 x 12.0 x 17.5  
1.1  
(1000)  
(1000)  
(1100)  
(1100)  
ꢀ1...  
(1000)  
ꢀ2...  
(1000)  
ꢀ5...  
(900)  
ꢀ6...  
(900)  
1.5  
U
RAC = 160 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.56  
0.68  
0.82  
1.0  
56ꢀ  
68ꢀ  
82ꢀ  
105  
ꢀ1...  
ꢀ2...  
ꢀ5...  
ꢀ6...  
7.0 x 13.5 x 17.5  
8.5 x 15.0 x 17.5  
2.0  
2.7  
(1000)  
(1000)  
(800)  
(800)  
250  
ꢀ1...  
(1000)  
ꢀ2...  
(1000)  
ꢀ5...  
(650)  
ꢀ6...  
(650)  
U
RAC = 160 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
1.2  
1.5  
1.8  
2.2  
125  
155  
185  
225  
ꢀ1...  
ꢀ2...  
ꢀ5...  
ꢀ6...  
8.5 x 18.0 x 26.0  
10.0 x 19.5 x 26.0  
4.5  
5.7  
(200)  
(200)  
(450)  
(450)  
ꢀ1...  
(200)  
ꢀ2...  
(200)  
ꢀ5...  
(350)  
ꢀ6...  
(350)  
U
RAC = 160 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
2.7  
3.3  
3.9  
4.7  
275  
335  
395  
ꢀ75  
ꢀ1...  
ꢀ2...  
13.0 x 23.0 x 31.0 10.2  
15.0 x 28.0 x 31.5 13.4  
-
-
-
-
(100)  
(100)  
ꢀ1...  
(100)  
ꢀ2...  
(100)  
Revision: 08-Sep-16  
Document Number: 28193  
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
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MKT373  
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ELECTRICAL DATA - STANDARD SIZE  
DIMENSIONS  
CATALOG NUMBER BFC2 373 XXYYY AND PACKAGING  
LOOSE IN BOX  
REEL (1)(2)  
URDC  
(V)  
C
MASS  
(g) (3)  
lt = 5.0 mm 1.0 mm  
H = 18.5 mm; P0 = 12.7 mm  
C-VALUE  
..YYY  
w x h x l  
(mm)  
(μF)  
C-TOL. = 10 %  
XX  
(SPQ)  
C-TOL. = 5 %  
XX  
(SPQ)  
C-TOL. = 10 %  
C-TOL. = 5 %  
XX  
(SPQ)  
XX  
(SPQ)  
URAC = 220 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.60 mm 0.06 mm  
0.047  
0.056  
0.068  
0.082  
0.10  
ꢀ73  
563  
683  
823  
10ꢀ  
12ꢀ  
15ꢀ  
51...  
52...  
55...  
56...  
5.0 x 11.0 x 17.5  
6.0 x 12.0 x 17.5  
1.1  
1.5  
(1000)  
(1000)  
(1100)  
(1100)  
0.12  
51...  
(1000)  
52...  
(1000)  
55...  
(900)  
56...  
(900)  
0.15  
URAC = 220 V; PITCH = 15.0 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.18  
0.22  
0.27  
0.33  
18ꢀ  
22ꢀ  
27ꢀ  
33ꢀ  
51...  
52...  
55...  
56...  
7.0 x 13.5 x 17.5  
8.5 x 15.0 x 17.5  
2.0  
2.7  
(1000)  
(1000)  
(800)  
(800)  
400  
51...  
(1000)  
52...  
(1000)  
55...  
(650)  
56...  
(650)  
URAC = 220 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.39  
0.47  
0.56  
0.68  
39ꢀ  
ꢀ7ꢀ  
56ꢀ  
68ꢀ  
51...  
52...  
55...  
56...  
8.5 x 18.0 x 26.0  
10.0 x 19.5 x 26.0  
4.5  
5.7  
(200)  
(200)  
(450)  
(450)  
51...  
(200)  
52...  
(200)  
55...  
(350)  
56...  
(350)  
URAC = 220 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.82  
1.0  
82ꢀ  
105  
125  
125  
51...  
52...  
13.0 x 23.0 x 31.0 10.2  
15.0 x 25.0 x 31.5 13.4  
-
-
-
-
(100)  
(100)  
1.2  
51...  
(100)  
52...  
(100)  
1.5  
Notes  
SPQ = Standard Packing Quantity  
Reel diameter = 356 mm is available on request  
H = in-tape height; P0 = sprocket hole distance; for detailed specifications refer to packaging information: www.vishay.com/doc?28139  
Weight for short lead product only  
(1)  
(2)  
(3)  
Revision: 08-Sep-16  
Document Number: 28193  
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ELECTRICAL DATA - AVAILABLE ON REQUEST  
CATALOG NUMBER BFC2 373 XXYYY AND PACKAGING  
DIMENSIONS  
w x h x l  
(mm)  
LOOSE IN BOX  
REEL (1)(2)  
URDC  
(V)  
C
(μF)  
MASS  
(g) (3)  
lt = 5.0 mm 1.0 mm  
H = 18.5 mm  
C-TOL. = 10 % C-TOL. = 5 % SPQ C-TOL. = 10 % C-TOL. = 5 %  
RAC = 63 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
SPQ  
U
1.5  
1.8  
2.2  
6.0 x 15.5 x 26.0  
7.0 x 16.5 x 26.0  
2.7  
90012  
90022  
90002  
90013  
90023  
90003  
300  
90018  
90028  
90008  
90019  
90029  
90009  
600  
550  
100  
3.3  
200  
U
RAC = 63 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
6.1 90032 90033 100  
RAC = 160 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
4.7  
9.0 x 19.0 x 31.0  
-
U
0.47  
0.56  
0.68  
0.82  
1.0  
90042  
90052  
90062  
90072  
90082  
90046  
90053  
90063  
90073  
90083  
90048  
90058  
90068  
90078  
90088  
90049  
90059  
90069  
90079  
90089  
6.0 x 15.5 x 26.0  
7.0 x 16.5 x 26.0  
2.7  
300  
600  
550  
3.3  
200  
250  
URAC = 160 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
1.2  
1.5  
1.8  
2.2  
90172  
90092  
90102  
90112  
90173  
90093  
90103  
90113  
9.0 x 19.0 x 31.5  
9.0 x 21.0 x 31.0  
6.1  
8.2  
100  
100  
-
-
URAC = 220 V; PITCH = 22.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.22  
0.27  
0.33  
6.0 x 15.5 x 26.0  
7.0 x 16.5 x 26.0  
2.7  
90122  
90132  
90142  
90123  
90133  
90143  
300  
90128  
90138  
90148  
90129  
90139  
90149  
600  
550  
400  
3.3  
200  
U
RAC = 220 V; PITCH = 27.5 mm 0.ꢀ mm; dt = 0.80 mm 0.08 mm  
0.68  
9.0 x 19.0 x 31.5  
6.1 90152 90153 100  
-
Notes  
SPQ = Standard Packing Quantity  
Reel diameter = 356 mm is available on request  
H = in-tape height; P0 = sprocket hole distance; for detailed specifications refer to packaging information: www.vishay.com/doc?28139  
Weight for short lead product only  
(1)  
(2)  
(3)  
Revision: 08-Sep-16  
Document Number: 28193  
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
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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  
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 space for length (Imax.), width (wmax.) and height (hmax.) of film capacitors to take in account on the printed-circuit  
board is shown in the drawing:  
• For products with pitch 15 mm, w = l = 0.3 mm and h = 0.1 mm  
• For products with 15 mm < pitch 27.5 mm, w = l = 0.5 mm and h = 0.1 mm  
Eccentricity defined as in drawing. The maximum eccentricity is smaller than or equal to the lead diameter of the product  
concerned.  
Wmax. = W + Δ  
Eccentricity  
CBA116  
I
max. = I + Δ  
hmax. = h + Δ  
Seating plane  
SOLDERING  
For general soldering conditions and wave soldering profile, we refer to the application note:   
“Soldering Guidelines for Film Capacitors”: www.vishay.com/doc?28171  
Storage Temperature  
Tstg = -25 °C to +35 °C with RH maximum 75 % without condensation  
Ratings and Characteristics Reference Conditions  
Unless otherwise specified, all electrical values apply to an ambient free air temperature of 23 °C 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 h 4 h by heating the products in a circulating air oven at  
the rated temperature and a relative humidity not exceeding 20 %.  
Revision: 08-Sep-16  
Document Number: 28193  
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
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CHARACTERISTICS  
2
6
ꢀ kHz  
4
2
b. ꢀ00 V series  
c. 250 V series  
d. 400 V and 630 V series  
d
c
0
max.  
0
- ꢀ  
typical  
b
- 2  
- 4  
- 6  
- 2  
- 3  
min.  
- 20  
ꢀ05  
ꢀ02  
ꢀ03  
Capacitance as a function of frequency  
ꢀ04  
- 60  
20  
60 Tamb (°C) ꢀ00  
f (Hz)  
Capacitance as a function of ambient temperature  
ꢀ02  
ꢀ.2  
400  
V
;
56 nF  
0.8  
0.6  
0.4  
0.2  
0.0  
ꢀ0ꢀ  
ꢀ00  
250  
V
;
2.2 µF  
ꢀ00 V  
;
ꢀ5  
µF  
ꢀ0-ꢀ  
ꢀ0-2  
ꢀ0-3  
ꢀ04  
ꢀ05  
ꢀ06  
ꢀ07  
ꢀ08  
- 60  
- 20  
20  
60 Tamb (°C) ꢀ00  
f (Hz)  
Max. DC and AC voltage as a function of temperature  
Impedance as a function of frequency  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
Compact size  
Compact size  
470 nF  
2.2 µF  
ꢀ5 µF  
470 nF  
2.2 µF  
ꢀ5 µF  
T
amb 85 °C, ꢀ00 VDC  
Tamb  
85 °C, ꢀ00 VDC  
ꢀ0ꢀ  
ꢀ0ꢀ  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
f (Hz)  
f (Hz)  
Max. AC voltage as a function of frequency  
Max. AC voltage as a function of frequency  
Revision: 08-Sep-16  
Document Number: 28193  
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MKT373  
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ꢀ03  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
ꢀ03  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
Compact size  
Compact size  
ꢀ50 nF  
ꢀ50 nF  
Tamb 85 °C, 250 VDC  
85 °C < Tamb ꢀ05 °C, 250 VDC  
ꢀ0ꢀ  
ꢀ0ꢀ  
ꢀ0ꢀ  
ꢀ0ꢀ  
ꢀ0ꢀ  
ꢀ0ꢀ  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
ꢀ05  
ꢀ05  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
ꢀ05  
ꢀ05  
f (Hz)  
f (Hz)  
Max. AC voltage as a function of frequency  
Max. AC voltage as a function of frequency  
ꢀ03  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
ꢀ03  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
Compact size  
Compact size  
47 nF  
47 nF  
T
amb 85 °C, 400 VDC  
85 °C < Tamb ꢀ05 °C, 400 VDC  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ02  
ꢀ03  
ꢀ04  
f (Hz)  
f (Hz)  
Max. AC voltage as a function of frequency  
Max. AC voltage as a function of frequency  
ꢀ03  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
ꢀ03  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
Compact size  
Compact size  
56 nF  
56 nF  
T
amb ꢀ05 °C, 630 VDC  
85 °C < Tamb ꢀ05 °C, 630 VDC  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ02  
ꢀ03  
ꢀ04  
f (Hz)  
f (Hz)  
Max. AC voltage as a function of frequency  
Max. AC voltage as a function of frequency  
Revision: 08-Sep-16  
Document Number: 28193  
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MKT373  
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ꢀ02  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
Standard size  
Standard size  
330 nF  
4.7 nF  
ꢀ.0 nF  
330 nF  
ꢀ0ꢀ  
4.7 nF  
ꢀ.0 µF  
T
amb 85 °C, ꢀ00 VDC  
ꢀ02  
85 °C < Tamb 85 °C, ꢀ05 VDC  
ꢀ00  
ꢀ0ꢀ  
ꢀ0ꢀ  
ꢀ03  
ꢀ04  
ꢀ05  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
f (Hz)  
f (Hz)  
Max. AC voltage as a function of frequency  
Max. AC voltage as a function of frequency  
ꢀ03  
ꢀ03  
Standard size  
Standard size  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
ꢀ02  
ꢀ0ꢀ  
ꢀ00  
T
amb 85 °C, 250 VDC  
85 °C < Tamb ꢀ05 °C, 250 VDC  
ꢀ0ꢀ  
ꢀ0ꢀ  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
f (Hz)  
f (Hz)  
Max. AC voltage as a function of frequency  
Max. AC voltage as a function of frequency  
ꢀ03  
ꢀ02  
ꢀ03  
ꢀ02  
Standard size  
Standard size  
ꢀ0ꢀ  
ꢀ0ꢀ  
T
amb 85 °C, 400 VDC  
85 °C < Tamb ꢀ05 °C, 400 VDC  
ꢀ00  
ꢀ0ꢀ  
ꢀ00  
ꢀ0ꢀ  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
f (Hz)  
f (Hz)  
Max. AC voltage as a function of frequency  
Max. AC voltage as a function of frequency  
Revision: 08-Sep-16  
Document Number: 28193  
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Maximum RMS current (sinewave) as a function of frequency  
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”.  
ꢀ03  
ꢀ05  
ꢀ04  
ꢀ03  
ꢀ02  
5
4
3
2
ꢀ02  
Curve ꢀ: C = 0.33 µF  
Curve 2: 0.33 µF, C = .2 µF  
Curve 3: ꢀ.2 µF, C = 3.9 µF  
Curve 4: 3.9 µF, C = 6.8 µF  
Curve 5: C = 6.8 µF  
ꢀ0ꢀ  
ꢀ02  
ꢀ03  
ꢀ04  
ꢀ05  
ꢀ00  
- 50  
0
50  
Tamb (°C)  
f (Hz)  
Tangent of loss angle as a function of frequency  
Insulation resistance as a function of the ambient temperature  
(typical curve)  
ꢀ6  
ꢀ2  
8
4
0
- 60  
- 20  
20  
60  
ꢀ00  
amb (°C)  
T
Maximum allowed component temperature rise (T)  
as a function of the ambient temperature Tamb (°C)  
HEAT CONDUCTIVITY (G) AS A FUNCTION OF (ORIGINAL) PITCH AND CAPACITOR BODY  
THICKNESS IN mW/°C  
HEAT CONDUCTIVITY (mW/°C)  
WMAX.  
(mm)  
PITCH 15.0 mm  
PITCH 22.5 mm  
PITCH 27.5 mm  
5.0  
6.0  
10  
11  
12  
16  
18  
-
-
19  
21  
25  
28  
-
-
-
7.0  
-
8.5  
-
10.0  
11.0  
13.0  
15.0  
18.0  
-
36  
42  
48  
57  
-
-
-
-
-
-
Revision: 08-Sep-16  
Document Number: 28193  
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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”, www.vishay.com/doc?28147.  
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)  
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.  
For capacitors connected in parallel, normally the proof voltage and possibly the rated voltage must be reduced. For information  
depending of the capacitance value and the number of parallel connections contact: dc-film@vishay.com  
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 ionization 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  
divided by the applied voltage.  
For all other pulses following equation must be fulfilled:  
T
2
dU  
dt  
dU  
dt  
2 x   
------- x dt URDC x -------  
rated  
0
T is the pulse duration.  
4. The maximum component surface temperature rise must be lower than the limits (see graph “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).  
Revision: 08-Sep-16  
Document Number: 28193  
13  
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
www.vishay.com  
VOLTAGE CONDITIONS FOR 6 ABOVE  
ALLOWED VOLTAGES  
Tamb 85 °C  
85 °C < Tamb 105 °C  
See “Max. AC voltage as function  
of temperature” per characteristics  
Maximum continuous RMS voltage  
URAC  
Maximum temperature RMS-overvoltage (< 24 h)  
Maximum peak voltage (VO-P) (< 2 s)  
1.25 x URAC  
1.6 x URDC  
URAC  
1.3 x URDC  
Example  
C = 330 nF - 63 V used for the voltage signal shown in next drawing.  
UP-P = 40 V; UP = 35 V; T1 = 100 μs; T2 = 200 μs  
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 μs = 0.4 V/μs  
This is lower than 60 V/μs (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  
Tꢀ  
T2  
INSPECTION REQUIREMENTS  
General Notes  
Sub-clause numbers of tests and performance requirements refer to the “Sectional Specification, Publication IEC 60384-2 and  
Specific Reference Data”.  
GROUP C INSPECTION REQUIREMENTS  
SUB-CLAUSE NUMBER AND TEST  
CONDITIONS  
PERFORMANCE REQUIREMENTS  
SUB-GROUP C1A PART OF SAMPLE   
OF SUB-GROUP C1  
4.1 Dimensions (detail)  
4.3.1 Initial measurements  
As specified in chapters “General Data” of  
this specification  
Capacitance  
Tangent of loss angle:  
for C 470 nF at 100 kHz  
for 470 nF < C 10 μF at 10 kHz  
for C > 10 μF at 1 kHz  
4.3 Robustness of terminations  
4.4 Resistance to soldering heat  
Tensile and bending  
No visible damage  
Method: 1A  
Solder bath: 280 °C 5 °C  
Duration: 10 s  
Revision: 08-Sep-16  
Document Number: 28193  
1ꢀ  
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
www.vishay.com  
GROUP C INSPECTION REQUIREMENTS  
SUB-CLAUSE NUMBER AND TEST  
CONDITIONS  
PERFORMANCE REQUIREMENTS  
SUB-GROUP C1A PART OF SAMPLE   
OF SUB-GROUP C1  
4.14 Component solvent resistance  
Isopropylalcohol at room temperature  
Method: 2  
Immersion time: 5 min 0.5 min  
Recovery time: min. 1 h, max. 2 h  
4.4.2 Final measurements  
Visual examination  
No visible damage  
Legible marking  
Capacitance  
|C/C| 2 % of the value measured initially  
Tangent of loss angle  
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  
SUB-GROUP C1B PART OF SAMPLE   
OF SUB-GROUP C1  
4.6.1 Initial measurements  
Capacitance  
No visible damage  
Tangent of loss angle:  
for C 470 nF at 100 kHz  
for 470 nF < C 10 μF at 10 kHz  
for C > 10 μF at 1 kHz  
4.6 Rapid change of temperature  
A = -55 °C  
B = +105 °C  
5 cycles  
Duration t = 30 min  
4.7 Vibration  
Visual examination  
Mounting:   
No visible damage  
see section “Mounting” of this specification  
Procedure B4  
Frequency range: 10 Hz to 55 Hz  
Amplitude: 0.75 mm or  
Acceleration 98 m/sꢀ  
(whichever is less severe)  
Total duration 6 h  
4.7.2 Final inspection  
4.9 Shock  
Visual examination  
No visible damage  
Mounting:   
see section “Mounting” of this specification  
Pulse shape: half sine  
Acceleration: 490 m/sꢀ  
Duration of pulse: 11 ms  
4.9.3 Final measurements  
Visual examination  
Capacitance  
No visible damage  
|C/C| 3 % of the value measured in 4.6.1  
Tangent of loss angle  
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 4.6.1  
Insulation resistance  
As specified in section “Insulation  
Resistance” of this specification  
Revision: 08-Sep-16  
Document Number: 28193  
15  
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
www.vishay.com  
GROUP C INSPECTION REQUIREMENTS  
SUB-CLAUSE NUMBER AND TEST  
CONDITIONS  
PERFORMANCE REQUIREMENTS  
SUB-GROUP C1 COMBINED SAMPLE   
OF SPECIMENS OF SUB-GROUPS   
C1A AND C1B  
4.10  
Climatic sequence  
4.10.2 Dry heat  
Temperature: +105 °C  
Duration: 16 h  
4.10.3 Damp heat cyclic  
Test Db, first cycle  
4.10.4 Cold  
Temperature: -55 °C  
Duration: 2 h  
4.10.6 Damp heat cyclic  
Test Db, remaining cycles  
4.10.6.2 Final measurements  
Voltage proof = URDC for 1 min within 15 min  
No breakdown of flash-over  
after removal from testchamber  
Visual examination  
Capacitance  
No visible damage  
Legible marking  
|C/C| 3 % of the value measured in   
4.4.2 or 4.9.3  
Tangent of loss angle  
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  
0.005 for: C > 470 nF  
Compared to values measured in 4.3.1 or  
4.6.1  
Insulation resistance  
50 % of values specified in section  
“Insulation Resistance” of this specification  
SUB-GROUP C2  
4.11 Damp heat steady state  
56 days, 40 °C, 90 % to 95 % RH  
4.11.1 Initial measurements  
4.11.3 Final measurements  
Capacitance  
Tangent of loss angle at 1 kHz  
Voltage proof = URDC for 1 min within 15 min  
No breakdown of flash-over  
after removal from testchamber  
Visual examination  
No visible damage  
Legible marking  
Capacitance  
|C/C| 5 % of the value measured in 4.11.1.  
Tangent of loss angle  
Increase of tan   0.005  
Compared to values measured in 4.11.1  
Insulation resistance  
50 % of values specified in section  
“Insulation Resistance” of this specification  
Revision: 08-Sep-16  
Document Number: 28193  
16  
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MKT373  
Vishay BCcomponents  
www.vishay.com  
GROUP C INSPECTION REQUIREMENTS  
SUB-CLAUSE NUMBER AND TEST  
SUB GROUP C3  
CONDITIONS  
PERFORMANCE REQUIREMENTS  
4.12 Endurance  
Duration: 2000 h  
1.25 x URDC at 85 °C  
0.8 x 1.25 URDC at 105 °C  
4.12.1 Initial measurements  
Capacitance  
Tangent of loss angle:  
for C 470 nF at 100 kHz  
for 470 nF < C 10 μF at 10 kHz  
for C > 10 μF at 1 kHz  
4.12.5 Final measurements  
Visual examination  
Capacitance  
No visible damage  
Legible marking  
|C/C| 5 % compared to values measured  
in 4.12.1  
Tangent of loss angle  
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 4.12.1  
Insulation resistance  
10 000 cycles  
50 % of values specified in section  
“Insulation Resistance” of this specification  
SUB-GROUP Cꢀ  
4.13 Charge and discharge  
Charged to URDC  
Discharge resistance:  
UR  
R = ---------------------------------------------------  
C x 2.5 x dU/dtR  
4.13.1 Initial measurements  
4.13.3 Final measurements  
Capacitance  
Tangent of loss angle:  
for C 470 nF at 100 kHz  
for 470 nF < C 10 μF at 10 kHz  
for C > 10 μF at 1 kHz  
Capacitance  
|C/C| 3 % compared to values measured  
in 4.13.1  
Tangent of loss angle  
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  
Insulation resistance  
50 % of values specified in section  
“Insulation Resistance” of this specification  
Revision: 08-Sep-16  
Document Number: 28193  
17  
For technical questions, contact: dc-film@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
Legal Disclaimer Notice  
www.vishay.com  
Vishay  
Disclaimer  
ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE  
RELIABILITY, FUNCTION 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  
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consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular  
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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  
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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  
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Customers 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  
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© 2017 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED  
Revision: 08-Feb-17  
Document Number: 91000  
1
配单直通车
BFC237328105产品参数
型号:BFC237328105
是否无铅: 不含铅
是否Rohs认证: 符合
生命周期:Active
包装说明:,
Reach Compliance Code:unknown
ECCN代码:EAR99
HTS代码:8532.25.00.70
风险等级:5.66
其他特性:RATED AC VOLTAGE (V): 63
电容:1 µF
电容器类型:FILM CAPACITOR
介电材料:POLYESTER
高度:11 mm
JESD-609代码:e3
长度:17.5 mm
安装特点:THROUGH HOLE MOUNT
负容差:5%
端子数量:2
最高工作温度:105 °C
最低工作温度:-55 °C
封装形状:RECTANGULAR PACKAGE
封装形式:Radial
包装方法:TR, 14 INCH
正容差:5%
额定(AC)电压(URac):63 V
额定(直流)电压(URdc):100 V
表面贴装:NO
端子面层:Tin (Sn)
端子节距:15 mm
端子形状:WIRE
宽度:5 mm
Base Number Matches:1
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