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Электронный компонент: K73-11

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K73-11
___________________________________________________________________________________________
METALLIZED POLYESTER FILM CAPACITORS
:
.673633.013
,
,
.
73-16,
,
,
, 42 -2.
:
,
.
Specifications:
.673633.013
Designed to operate in DC, AC and ripple
current circuits and in pulse mode
.
Can be used instead of K73-16,
,
,
, 42 -2.
Design: wrapped with adhesive tape;
capacitor ends sealed with epoxy compound
.
32
+5
L max
D m
a
x
d
0,001 .... 22
Rated capacitance
0,001 ... 22 F
(
-60
o
C ...+85
o
C)
63; 100; 160; 250;
400; 630; 1000;
1600
Rated voltage
(temperature range
-60
o
C...+85
o
C)
63; 100; 160; 250;
400; 630; 1000;
1600 V
5; 10; 20 %
Capacitance tolerance
5; 10; 20 %
f = 1
0,012
Dissipation factor at f = 1 kHz
0,012
0,33
U
= 63, 100
U
160
12 000 MO
30 000 MO
Insulation resistance at
r 0,33 F
Ur = 63,100 V
Ur 160 V
12 000 MOhm
30 000 MOhm
> 0,33
U
= 63, 100
U
160
4000 MO
10 000 MO
Time constant at
r > 0,33 F
Ur = 63, 100 V
Ur 160 V
4000 MOhmF
10 000 MOhmF
U
= 250 ,
2,7
-60...+125
o
C
-60...+85
o
C
Operating
temperature
range
at Ur = 250 V, r 2,7 F
-60...+125
o
C
-60...+85
o
C
18%
Capacitance
change
within
positive temperature range
18%
125
o
C
70
o
C
10 000
15 000
Operating
time
operating temperature up to 125
o
C
operating temperature up to 70
o
C
10 000 hours
15 000 hours
10
Shelf
life
10
years
(933%
.
402
o
C, 21
)
Climatic categories
RH 933%,
402
o
C, 21 days
:
73-11 - 250 - 1,5
- 10%
Ordering example:
Capacitor K73-11 - 250 V - 1,5 F - 10%
.
Capacitors can be delivered in packaging
with double-row adhesive tape for surface
mounting.
6+1
B
D
L
S
L, mm
B, mm
14
16
18
632
28
30
732
D, mm
S, mm
8
10 0,5
9...12
15 0,75
U
=63 / U
r
=63 V
U
=100 / U
r
=100 V
U
=160 / U
r
=160 V
,
C
r,
F
D
max
,
mm
L
max
,
mm
d,
mm
,
Mass, g
max
D
max
,
mm
L
max
,
mm
d,
mm
,
Mass, g
max
D
max
,
mm
L
max
,
mm
d,
mm
,
Mass, g
max
0.047
0.056
6 1.5
0.068
0.082
7 1.7
0.10
0.12
6
1.5 14 1.5
8
1.8
0.15
6
1.8 9
1.9
0.18
7 1.7
10
14 0.6
2.0
0.22
7 2.0
8 2.2
0.27
8 1.8
0.33
8 2.2
9 2.5
0.39
9 1.9
9 2.5
10 3.0
0.47 10
14 0.6
2.0 10
3.0
3.5
0.56 8
2.2 11
3.5
11
4.5
0.68 9
2.5 12
16
0.6
12 5.0
0.82 10
3.0 8
4.0
13
18
5.5
1.0 9
4.5
10
5.0
1.2
11 3.5
11 6.0
1.5 12
5.0
10 5.0
12 7.0
1.8 13
5.5 11
28 0.8
6.0 13
8.0
2.2 14
18
6.5 9
7.0 14
30
0.8
9.0
2.7 10
5.0 10
9.0 12
11
3.3 11
6.0 11
10 13
12
3.9 12
7.0 12
11 14
13
4.7 13
8.0
15
14
5.6 14
9.0
13 12
17 18
6.8 15
10 15
14 19
44 1.0
21
8.2 16
30
0.8
11 17
18
10 14
12 19
21
12 16
15 21
44 1.0
26
15 17
18
18 19
21
22 21
44 1.0
26
U
=250 / U
r
=250 V
U
=400 / U
r
=400 V
,
C
r
, F
D
max
,
mm
L
max
,
mm
d,
mm
,
Mass, g
max
D
max
,
mm
L
max
,
mm
d,
mm
,
Mass, g
max
0.022
0.027
7 1.5
0.033
0.039
8 2.0
0.047
0.056
7 1.5
9 2.2
0.068 8
1.6 10
14 0.6
2.4
0.082 8
0.10
9 1.7
9
2.5
0.12 10
14 0.6
1.8 10
3.0
0.15 8
2.0 11
3.5
0.18 9
2.4 12
4.0
0.22 10
2.8 13
4.5
0.27 3.0
14
5.0
0.33
11
5.0 15
18
6.0
0.39 12
5.5 10
4.0
0.47 13
6.0 11
5.0
0.56 14
18
6.5 12
6.0
0.68 10
7.0 13
7.0
0.82 11
7.5 14
8.0
1.0 12
8.0 15
30
0.8
9.0
1.2 13
9.0
1.5 14
10
1.8 15
11
2.2 17
30
0.8
12
2.7 14
12
3.3 16
15
3.9 17
18
4.7 19
21
5.6 20
24
6.8 22
28
8.2 26
40
10 28
44 1.0
46
U
=630 / U
r
=630 V
U
=1000 / U
r
=1000 V
U
=1600 / U
r
=1600 V
,
C
r,
F
D
max
,
mm
L
max
,
mm
d,
mm
,
Mass, g
max
D
max
,
mm
L
max
,
mm
d,
mm
,
Mass, g
max
D
max
,
mm
L
max
,
mm
d,
mm
,
Mass, g
max
0.0010
1.0
0.0012
0.0015
1.2
0.0018
0.0022
1.3
0.0027
1.4
0.0033
1.5
0.0039
1.6
0.0047
0.0056
1.7 10
3.0
0.0068
11
3.5
0.0082
6
1.8
12
4.0
0.010
9
2.5
13
18
4.5
0.012
7 1.9
10
3.0
9
4.5
0.015
11
3.5
9
4.5
0.018
8 2.0
12
4.0
0.022
9
2.2
13
18
4.5
10 5.0
0.027
10
14 0.6
8 4.0
11 6.0
0.033
2.4
12
30
0.8
7.0
0.039
8 9
4.5
10 9.0
0.047
9
2.5
10 5.0
11 10
0.056
11
6.0
12
11
0.068
10 3.0
12
30
0.8
7.0 13
12
0.082
11
3.5
10
9.0
0.10
12
4.0
15 14
0.12
13
4.5
11 10
16 15
0.15
15
18
6.0 18
21
0.18
10
5.0
13 12
19 23
0.22
11
5.5
15
14
21
44 1.0
26
0.27
12
6.0
17
18
0.33
13
8.0
18
44 1.0
21
0.39
14
9.0
0.47
16
30
0.8
10
U
t
Permissible voltage U
t
as a function of ambient temperature
Ut
0
-20
-40
-60
20
40
60
85 100
125
100
80
60
50
40
20
%
t
C
o
U
U
f
f
Permissible amplitude of AC sinusoidal voltage or amplitude of AC sinusoidal component of ripple voltage
U
f
as a function of frequency f
U
C
0,4
0,8
0,6
0,2
1
2
4
6
8
10
20
40
60
80
100
200
400
600
800
0,47 1,0
22
10
0,1
63
100
160
250
400
630
1000
1600
4,7
0,001 0,0047 0,01
f
U
,
t
T=1/f
10
10
10
10
10
10
2
5
2
5
2
5
2
5
5
2
5
6
3
2
U
f
4
U
f
:
Limits:
U
f
U
t
U
f
350 B
U
= 400 B; 630 B
U
f
700 B
U
= 1000 B; 1600 B
U
f
U
t
U
f
350 V for U
r
= 400 V; 630 V
U
f
700 V for U
r
= 1000 V; 1600 V
U
f
:
Example of calculation of U
f
:
: f = 10
3
, U
=630 B, C =1
: U
f
= 120 B
Given: f = 10
3
Hz , U
r
= 630 V, C
r
= 1F
Finding: U
f
= 120 V