passing, interference suppression in low voltage applications
(i.e.:AUToMoTIVe).
PRoDUCT CoDe:
A50
D max
Ød ±0.05
<7
0.6
≥7<16
0.8
≥16
1
All dimensions are in mm.
geNeRAl TeChNICAl DATA
Dielectric:
polyester film (polyethylene terephthalate).
The part number, comprising 14 digits, is formed as follows:
Plates:
aluminium layer deposited by evaporation under
1 2 3
4
5
6 7 8 9 10 11 12 13 14
vacuum.
Winding:
non-inductive type.
-
A 5 0
leads:
tinned wire.
Protection:
polyester tape wrapping and thermosetting resin
Digit 1 to 3
Series code.
end fill.
Digit 4
d.c. rated voltage:
Marking:
Manufacturer’s logo, series (1.50), dielectric
C = 50V
D = 63V e = 100V
I = 250V
code (MKT), capacitance, tolerance, D.C. rated
M =400V P = 630V Q =1000V
voltage.
Climatic category:
55/105/56 IeC 60068-1
Digit 5
Length (mm):
Operating temperature range:
-55 to +105°C
F=11; H=14; K=20.5; Q=28; T=33
Digits 7 - 8 - 9 indicate the first three digits of
Related documents:
IeC 60384-2
Digit 6 to 9
Capacitance value and the 6th digit indicates
the number of zeros that must be added to
obtain the Rated Capacitance in pF.
Digit 10 to 11 Mechanical version and/or packaging (table1)
Digit 12
Identifies the dimensions and electrical
characteristics.
Internal use
Digit 13
Winding scheme
Digit 14
Capacitance tolerance:
J=5%; K=10%; M=20%.
PRODuCT CODe SySTeM
Table 1 (for more detailed information, please refer to page
14).
Standard
packaging style
Reel Ø 355 mm
Loose
Rated
Cap.
0.47
µF
0.68
µF
1.0
µF
1.5
µF
2.2
µF
3.3
µF
4.7
µF
6.8
µF
10.0
µF
50Vdc/30Vac
D
max
5.0
5.0
6.5
7.0
8.0
7.5
8.5
10.0
12.0
L
max
11.0
11.0
11.0
14.0
14.0
20.5
20.5
20.5
20.5
Ordering code
(Digit 10 to 11)
26
AA
Max
dv/dt
(V/µs)
4.0
4.0
4.0
4.0
4.0
2.0
2.0
2.0
2.0
Max K
0
(V
2
/µs)
0.40 e3
0.40 e3
0.40 e3
0.40 e3
0.40 e3
0.20 e3
0.20 e3
0.20 e3
0.20 e3
Part Number
A50CF 3470
--
0
--
A50CF 3680
--
0
--
A50CF 4100
--
0
--
A50CH 4150
--
0
--
A50CH 4220
--
0
--
A50CK 4330
--
0
--
A50CK 4470
--
0
--
A50CK 4680
--
0
--
A50CK 5100
--
0
--
Rated
Cap.
0.33
µF
0.47
µF
0.68
µF
1.0
µF
1.5
µF
2.2
µF
3.3
µF
4.7
µF
6.8
µF
10.0
µF
63Vdc/40Vac
D
max
5.0
6.0
6.0
7.0
6.5
8.0
9.5
9.5
11.0
11.5
L
max
11.0
14.0
14.0
14.0
20.5
20.5
20.5
28.0
28.0
33.0
single sided metallized
polyester film
Max
dv/dt
(V/µs)
4.0
4.0
4.0
4.0
2.0
2.0
2.0
1.5
1.5
1.0
Max K
0
(V
2
/µs)
0.50 e3
0.50 e3
0.50 e3
0.50 e3
0.25 e3
0.25 e3
0.25 e3
0.19 e3
0.19 e3
0.13 e3
Part Number
A50DF 3330
--
6
--
A50DH 3470
--
6
--
A50DH 3680
--
6
--
A50DH 4100
--
6
--
A50DK 4150
--
6
--
A50DK 4220
--
6
--
A50DK 4330
--
6
--
A50DQ 4470
--
6
--
A50DQ 4680
--
6
--
A50DT 5100
--
6
--
Mechanical version and packaging (Table1)
Internal use
Tolerance: J (±5%); K (±10%); M (±20%)
All dimensions are in mm.
Mechanical version and packaging (Table1)
Internal use
Tolerance: J (±5%); K (±10%); M (±20%)
Note: If the working voltage (V) is lower than the rated voltage (V
R
), the capacitor may work at higher dv/dt. In this case the
maximum value allowed is obtained multiplying the above value (see table dv/dt) with the ratio V
R
/V.
The pulse characteristic K
0
depends on the voltage wave-form and in any case it cannot overcome the value given in
the above table.
21
09/2008
MeTAllIZeD POlyeSTeR FIlM CAPACITOR
D.C. MulTIPuRPOSe APPlICATIONS
PRoDUCT CoDe:
A50
MKT Series
A50
Part Number
Rated
Cap.
0.10
µF
0.15
µF
0.22
µF
0.33
µF
0.47
µF
0.68
µF
1.0
µF
1.5
µF
2.2
µF
3.3
µF
4.7
µF
6.8
µF
10.0
µF
Rated
Cap.
0.047
µF
0.068
µF
0.10
µF
0.15
µF
0.22
µF
0.33
µF
0.47
µF
0.68
µF
1.0
1.5
2.2
3.3
4.7
6.8
10.0
µF
µF
µF
µF
µF
µF
µF
100Vdc/63Vac
D
max
5.0
5.0
5.0
6.0
6.0
7.0
7.0
8.0
9.5
9.5
10.0
12.0
14.5
L
max
11.0
11.0
11.0
14.0
14.0
14.0
20.5
20.5
20.5
28.0
33.0
33.0
33.0
Max
dv/dt
(V/µs)
5.0
5.0
5.0
5.0
5.0
5.0
3.0
3.0
3.0
2.0
1.0
1.0
1.0
Max
dv/dt
(V/µs)
10.0
10.0
10.0
10.0
10.0
7.0
7.0
7.0
4.0
4.0
2.5
2.5
2.5
2.5
2.5
Max
dv/dt
(V/µs)
13.5
13.5
13.5
13.5
13.5
13.5
13.5
10.0
10.0
10.0
6.5
6.5
4.0
4.0
4.0
4.0
Max K
0
(V
2
/µs)
1.0 e3
1.0 e3
1.0 e3
1.0 e3
1.0 e3
1.0 e3
0.6 e3
0.6 e3
0.6 e3
0.4 e3
0.3 e3
0.3 e3
0.3 e3
Max K
0
(V
2
/µs)
5.0 e3
5.0 e3
5.0 e3
5.0 e3
5.0 e3
3.5 e3
3.5 e3
3.5 e3
2.0 e3
2.0 e3
1.3 e3
1.3 e3
1.3 e3
1.3 e3
1.3 e3
Max K
0
(V
2
/µs)
11.0 e3
11.0 e3
11.0 e3
11.0 e3
11.0 e3
11.0 e3
11.0 e3
8.0 e3
8.0 e3
8.0 e3
5.2 e3
5.2 e3
3.2 e3
3.2 e3
3.2 e3
3.2 e3
Part Number
Rated
Cap.
1000 pF
1500 pF
2200 pF
3300 pF
4700 pF
6800 pF
0.010
µF
0.015
µF
0.022
µF
0.033
µF
0.047
µF
0.068
µF
0.10
µF
0.15
µF
0.22
µF
0.33
µF
0.47
µF
0.68
µF
1.0
µF
Rated
Cap.
1000 pF
1500 pF
2200 pF
3300 pF
4700 pF
6800 pF
0.010
µF
0.015
µF
0.022
µF
0.033
µF
0.047
µF
0.068
µF
0.10
µF
0.15
µF
0.22
µF
0.33
µF
0.47
µF
630Vdc/220Vac*
D
max
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
6.0
6.0
6.0
7.0
7.0
8.5
10.0
10.5
12.0
14.5
17.5
L
max
11.0
11.0
11.0
11.0
11.0
11.0
14.0
14.0
14.0
20.5
20.5
20.5
28.0
28.0
28.0
33.0
33.0
33.0
33.0
A50eF
A50eF
A50eF
A50eH
A50eH
A50eH
A50eK
A50eK
A50eK
A50eQ
A50eT
A50eT
A50eT
3100--6--
3150--6--
3220--6--
3330--6--
3470--6--
3680--6--
4100--6--
4150--6--
4220--6--
4330--6--
4470--6--
4680--6--
5100--6--
Max
dv/dt
(Vµs)
20
20
20
20
20
20
20
20
20
15
15
15
10
10
10
6
6
6
6
Max
dv/dt
(Vµs)
50
50
50
50
50
50
30
30
30
15
15
15
15
10
10
10
10
Max K
0
(V
2
µs)
.25.0
e3
.25.0
e3
.25.0
e3
.25.0
e3
.25.0
e3
.25.0
e3
.25.0
e3
.25.0
e3
.25.0
e3
.19.0
e3
.19.0
e3
.19.0
e3
.13.0
e3
.13.0
e3
.13.0
e3
7.5 e3
7.5 e3
7.5 e3
7.5 e3
Max K
0
(V
2
/µs)
100 e3
100 e3
100 e3
100 e3
100 e3
100 e3
60 e3
60 e3
60 e3
30 e3
30 e3
30 e3
30 e3
20 e3
20 e3
20 e3
20 e3
A50PF 1150
--
6
--
A50PF 1100
--
6
--
A50PF 1220
--
6
--
A50PF 1330
--
6
--
A50PF 1470
--
6
--
A50PF 1680
--
6
--
A50PH 2100
--
6
--
A50PH 2150
--
6
--
A50PH 2220
--
6
--
A50PK 2330
--
6
--
A50PK 2470
--
6
--
A50PK 2680
--
6
--
A50PQ 3100
--
6
--
A50PQ 3150
--
6
--
A50PQ 3220
--
6
--
A50PT 3330
--
6
--
A50PT 3470
--
6
--
A50PT 3680
--
6
--
A50PT 4100
--
6
--
Part Number
A50QH 1100
--
0
--
A50QH 1150
--
0
--
A50QH 1220
--
0
--
A50QH 1330
--
0
--
A50QH 1470
--
0
--
A50QH 1680
--
0
--
A50QK 2100
--
0
--
A50QK 2150
--
0
--
A50QK 2220
--
0
--
A50QQ 2330
--
0
--
A50QQ 2470
--
0
--
A50QQ 2680
--
0
--
A50QQ 3100
--
0
--
A50QT 3150
--
0
--
A50QT 3220
--
0
--
A50QT 3330
--
0
--
A50QT 3470
--
0
--
250Vdc/160Vac
D
max
5.0
5.0
5.5
5.5
6.5
6.0
7.0
8.5
8.5
10.0
11.0
13.0
15.5
18.5
22.0
L
max
11.0
11.0
14.0
14.0
14.0
20.5
20.5
20.5
28.0
28.0
33.0
33.0
33.0
33.0
33.0
Part Number
2470
--
6
--
2680
--
6
--
3100
--
6
--
3150
--
6
--
3220
--
6
--
3330
--
6
--
3470
--
6
--
3680
--
6
--
A50IF
A50IF
A50IH
A50IH
A50IH
A50IK
A50IK
A50IK
1000Vdc/250Vac*
D
max
6.5
6.5
6.5
6.5
7.5
8.0
7.0
7.5
9.0
8.0
9.0
10.5
12.5
13.5
16.0
19.0
22.0
L
max
14.0
14.0
14.0
14.0
14.0
14.0
20.5
20.5
20.5
28.0
28.0
28.0
28.0
33.0
33.0
33.0
33.0
A50IQ 4100
--
6
--
A50IQ 4150
--
6
--
A50IT
A50IT
A50IT
A50IT
A50IT
4220
--
6
--
4330
--
6
--
4470
--
6
--
4680
--
6
--
5100
--
6
--
Rated
Cap.
0.010
µF
0.015
µF
0.022
µF
0.033
µF
0.047
µF
0.068
µF
0.10
µF
0.15
µF
0.22
µF
0.33
µF
0.47
µF
0.68
µF
1.0
1.5
2.2
3.3
µF
µF
µF
µF
400Vdc/200Vac
D
max
5.0
5.0
5.0
5.0
6.0
6.0
6.5
6.0
7.5
8.5
8.5
10.0
10.5
12.5
15.0
18.5
L
max
11.0
11.0
11.0
11.0
14.0
14.0
14.0
20.5
20.5
20.5
28.0
28.0
33.0
33.0
33.0
33.0
Part Number
A50MF 2100
--
6
--
A50MF 2150
--
6
--
A50MF 2220
--
6
--
A50MF 2330
--
6
--
A50MH 2470
--
6
--
A50MH 2680
--
6
--
A50MK 3150
--
6
--
A50MK 3220
--
6
--
A50MK 3330
--
6
--
A50MQ 3470
--
6
--
A50MQ 3680
--
6
--
A50MT 4100
--
6
--
A50MT 4150
--
6
--
A50MT 4220
--
6
--
A50MT 4330
--
6
--
A50MH 3100
--
6
--
Mechanical version and packaging (Table1)
Internal use
Tolerance: J (±5%); K (±10%); M (±20%)
Mechanical version and packaging (Table1)
Internal use
Tolerance: J (±5%); K (±10%); M (±20%)
All dimensions are in mm.
Note: If the working voltage (V) is lower than the rated voltage (V
R
), the capacitor may work at higher dv/dt. In this case the
maximum value allowed is obtained multiplying the above value (see table dv/dt) with the ratio V
R
/V.
The pulse characteristic K
0
depends on the voltage wave-form and in any case it cannot overcome the value given in
the above table.
*Not suitable for across-the-line applications. Please refer to Interference Suppression Capacitors (page
145).
09/2008
22
MeTAllIZeD POlyeSTeR FIlM CAPACITOR
D.C. MulTIPuRPOSe APPlICATIONS
PRoDUCT CoDe:
A50
MKT Series
A50
eleCTRICAl ChARACTeRISTICS
Rated voltage (V
R
):
50 Vdc
400 Vdc
Rated temperature (T
R
):
63 Vdc 100 Vdc
630 Vdc 1000 Vdc
+85 °C
250 Vdc
TeST MeThOD AND PeRFORMANCe
Damp heat, steady state:
Test conditions
Temperature:
Relative humidity (RH):
Test duration:
Performance
Capacitance change |∆C/C|:
DF change (∆tgδ):
Insulation resistance:
Temperature derated voltage:
for temperatures between +85°C and +105°C a decreasing
factor of 1.25% per degree °C on the rated voltage V
R
(d.c.
and a.c.) has to be applied.
1000pF to 10µF
Capacitance range:
Capacitance values:
e6 series (IeC 60063 Norm).
Capacitance tolerances
(measured at 1 kHz):
±5% (J); ±10% (K); ±20% (M).
Total self-inductance
(L):
≈ 7nH
max 1 nH per 1 mm lead and capacitor length.
Dissipation factor (DF):
tgδ 10
-4
at +25°C ±5°C
kHz
1
10
100
C
≤
0.1
µ
F
0.1µF<C
≤
1
µ
F
C >1
µ
F
+40°C±2°C
93% ±2%
56 days
≤ 5%
≤ 50x10
-4
at 1kHz
≥ 50% of initial limit.
≤
80
≤
150
≤
250
≤
80
≤
150
≤
100
endurance:
Test conditions
+85°C ±2°C
Temperature:
Test duration:
2000 h
Voltage applied:
1.25xV
R
Performance
Capacitance change |∆C/C|:
≤ 5%
DF change (∆tgδ):
≤ 30x10
-4
at 10kHz for C≤ 1µF
≤ 20x10
-4
at 1kHz for C> 1µF
Insulation resistance:
≥ 50% of initial limit.
Resistance to soldering heat:
Test conditions
+260°C±5°C
Solder bath temperature:
Dipping time (with heat screen):10 s±1 s
Performance
Capacitance change |∆C/C|:
≤2%
DF change (∆tgδ):
≤ 30x10
-4
at 10kHz for C≤ 1µF
≤ 20x10
-4
at 1kHz for C> 1µF
Insulation resistance:
≥ initial limit.
long term stability
(after two years):
Storage:
standard environmental conditions (see page 12).
Performance
Capacitance change |∆C/C|:
≤ 3% for C≤ 0.1µF
≤ 2% for C> 0.1µF
RelIABIlITy:
Reference MIL HDB 217
Application conditions:
Temperature:
+40°C±2°C
Voltage:
0.5xV
R
Failure rate:
≤ 5 FIT
-9
(1 FIT = 1x10 failures/components x h)
Failure criteria:
(according to DIN 44122)
Short or open circuit
Capacitance change |∆C/C|: >10%
>2 x initial limit.
DF change (∆tgδ):
Insulation resistance:
<0.005 x initial limit.
Insulation resistance:
Test conditions
Temperature:
Voltage charge time:
Voltage charge:
Performance
For V
R
≤100 Vdc
≥ 3750 MΩ for
≥ 1000 s
for
For V
R
>100 Vdc
≥ 30000 MΩ for
≥ 10000 s
for
*Typical
value
+25°C±5°C
1 min
50 Vdc for V
R
<100 Vdc
100 Vdc for V
R
≥100 Vdc
(50000 MΩ)*
(5000 s)*
(50000 MΩ)*
(17000 s)*
C ≤ 0.33µF
C > 0.33µF
C ≤ 0.33µF
C > 0.33µF
Test voltage between terminations:
1.6xV
R
applied for 2 s at +25°C±5°C.
23
09/2008
MeTAllIZeD POlyeSTeR FIlM CAPACITOR
D.C. MulTIPuRPOSe APPlICATIONS
PRoDUCT CoDe:
A50
MKT Series
A50
MAX. VoLTAGe (Vr.m.s.) VeRSUS FReQUeNCY (sinusoidal wave-form / Th
≤
40°C)
09/2008
24
MeTAllIZeD POlyeSTeR FIlM CAPACITOR
D.C. MulTIPuRPOSe APPlICATIONS
PRoDUCT CoDe:
A50
MKT Series
A50
MAX. CURReNT (Ir.m.s.) VeRSUS FReQUeNCY (sinusoidal wave-form / Th
≤
40°C)
Statements of suitability for certain applications are based on our knowledge of typical operating conditions for such applications, but are not intended to constitute –
and we specifically disclaim – any warranty concerning suitability for a specific customer application or use. This Information is intended for use only by customers who
have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise
provided by us with reference to the use of our products is given gratis, and we assume no obligation or liability for the advice given or results obtained.
[i=s]This post was last edited by walker2048 on 2022-10-22 19:27[/i]Preface
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In the discharge process of tokamak plasma physics, the study of rupture and sawtooth is of great significance. Rupture and sawtooth exist in most tokamaks. Rupture is a notew...[Details]
As cellular phones become more advanced, the power consumption of the system during operation and the power consumption during standby are also increasing. Therefore, the power management design of...[Details]
From the PIC16F946 datasheet, we know that there are two ways to write values to the LCD for display:
1. Directly write the value to LCDDATA1~LCDDATA23
2. Use disconnect t...[Details]
A standard cell
is an electrochemical
cell
used as a voltage reference standard in many electrical standards laboratories
. If properly maintained, standard cells are very stable. The ...[Details]
1. With the development of modern industry and the continuous improvement of automation, some medium and large control systems have been greatly facilitated, which not only makes control easier, bu...[Details]
The potentiometer is an adjustable electronic component. The main functions of the potentiometer in the circuit are as follows:
1. Used as a voltage divider
A potentiometer is a continuou...[Details]
Experimental tasks
A DS18B20 is used to form a temperature measurement system. The temperature measurement accuracy reaches 0.1 degrees. The temperature range is between -20 degrees and +50 de...[Details]
In today's body control module (BCM) designs, savvy engineers are moving away from electromechanical relays whenever possible. Their next step is to eliminate fuses. But is eliminating fuses a nece...[Details]
In 2012, more than half of the cars in the European, Japanese and American car markets will be equipped with color displays, navigation systems, satellite communications and other in-vehicle infota...[Details]
At present, the traffic congestion in cities is quite serious. According to relevant news reports: In China, the traffic congestion has expanded from megacities such as Beijing, Shanghai, and Guangzho...[Details]
hint:
The number of speakers and their spacing limit the sound field of a portable stereo system.
Spatial audio attempts to artificially recreate the experience of listening to sounds i...[Details]
1 Basic Features
In computer control systems and various intelligent instruments and meters composed of single-chip microcomputers (or microprocessors), various external analog signals must be ...[Details]
With the rapid development of wireless
digital communication
, more challenges have been raised for integrated circuit design and testing. In the product design stage, in order to ensure
t...[Details]
The launch of Shenzhou IX is imminent, and Tiangong is welcoming visitors again. Yesterday, Professor Fu Qiang, Vice President of the Institute of Science and Industrial Technology of Harbin Instit...[Details]