PEH532SCG4100M2 [KEMET]
Aluminum Electrolytic Capacitor, Polarized, Aluminum (wet), 250V, 20% +Tol, 20% -Tol, 1000uF, Through Hole Mount, ROHS COMPLIANT;型号: | PEH532SCG4100M2 |
厂家: | KEMET CORPORATION |
描述: | Aluminum Electrolytic Capacitor, Polarized, Aluminum (wet), 250V, 20% +Tol, 20% -Tol, 1000uF, Through Hole Mount, ROHS COMPLIANT 电容器 |
文件: | 总14页 (文件大小:551K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
Snap-In Aluminum Electrolytic Capacitors
PEH532 Series, +105ºC
Overview
Applications
KEMET's PEH532 is a long-life electrolytic capacitor designed
to offer high ripple current capability and low mounting cost. Low
ESR is the result of a very low resistive paper/electrolyte system.
Low ESR, together with the TDC thermal concept, gives the
PEH532 a high ripple current capability.
Typical applications for KEMET's PEH532 capacitor include
switch mode power supplies (SMPS), drives, welding equipment,
uninterruptible power supplies (UPS), and other power electronic
applications where high current ratings and compact size are
important.
Benefits
• Snap-In
• 2,000 hours at +105°C
• PCB mounting
• Low ESR and ESL
• High ripple current
Part Number System
PEH532
J
AC
433
0
M
2
Series
Voltage (VDC)
Size Code
Capacitance Code (µF)
Version
Capacitance Tolerance
M = ±20%
Termination
Snap-In type
Aluminum
Electrolytic
J = 35
See Dimension
Table
The second two digits
indicate the two most
significant digits of the
capacitance value. The
first digit indicates the
total number digits.
0 = Standard
See Termination
Table
M = 63
P = 100
R = 200
S = 250
U = 350
V = 400
Y = 450
One world. One KEMET
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
1
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Performance Characteristics
Item
Performance Characteristics
Capacitance Range
Rated Voltage
68 – 27,000 µF
35 – 450 VDC
Temperature Range
Capacitance Tolerance
-40 to +105°C
±20% at 100 Hz / +20°C
+105°C (hours)
2,000
Operational Lifetime
Shelf Life
4 years at +40°C 0 VDC
I = 0.003 CV (µA)
Leakage Current
C = rated capacitance (µF), V = rated voltage (VDC). Voltage applied for 5 minutes at +20°C.
Procedure
Requirements
0.75 mm displacement amplitude or 10g maximum
acceleration. Vibration applied for three 2-hour sessions at
10 – 500 Hz (Capacitor clamped by body).
No leakage of electrolyte or other visible damage.
Deviations in capacitance and tanδ from initial
measurements must not exceed: ∆ C/C < 5%
Vibration Test Specifications
Standards
IEC 60384-4 long life grade 40/85/56, in accordance with CECC 30 301–809
Test Method & Performance
Endurance Life Test
Conditions
Temperature
Test Duration
Ripple Current
Voltage
Performance
+105°C
2,000 hours
Maximum ripple current specified in table
The sum of DC voltage and the peak AC voltage must not exceed the rated voltage of the capacitor
Performance
The following specifications will be satisfied when the capacitor is tested at +20°C:
≤ 160 V
Within 15% of the initial value
Capacitance Change
> 160 V
Within 10% of the initial value
Equivalent Series Resistance
Leakage Current
Does not exceed 200% of the initial value
Does not exceed leakage current limit
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
2
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Dimensions – Millimeters
Dimensions in mm
D X L
Size Code
D1
±0.5
22.5
22.5
22.5
22.5
22.5
22.5
25.5
25.5
25.5
25.5
25.5
25.5
30.5
30.5
30.5
30.5
30.5
30.5
35.5
35.5
35.5
35.5
35.5
35.5
35.5
L1
±1.0
26
31
36
41
46
51
26
31
36
41
46
51
26
31
36
41
46
51
26
31
36
41
46
51
56
22 x 25
22 x 30
22 x 35
22 x 40
22 x 45
22 x 50
25 x 25
25 x 30
25 x 35
25 x 40
25 x 45
25 x 50
30 x 25
30 x 30
30 x 35
30 x 40
30 x 45
30 x 50
35 x 25
35 x 30
35 x 35
35 x 40
35 x 45
35 x 50
35 x 55
AB
AC
AD
AE
AF
AG
BB
BC
BD
BE
BF
BG
CB
CC
CD
CE
CF
CG
DB
DC
DD
DE
DF
DG
DH
Note: Add 0.5 mm to D and 1 mm to L for Sleeving
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
3
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Termination Tables
Termination Code
2
2S
3
4
•
4S
Diameter (mm)
22
25
30
35
•
•
•
•
•
•
•
•
•
•
•
•
•
Mounting: These capacitors are designed to be mounted by their terminations alone and may be used in any position.
Dummy pins on 4-pin decks must be isolated.
Termination
Code
Termination
Style
LL
±1
Standard Termination Option
2
2 Pin
6.3
Other Termination Options
2S
3
2 Pin
3 Pin
4 Pin
4 Pin
4
4
4
6.3
4
4S
Dimensions in mm
Style 2/2S
L
LL
D
10 ±0.1
2 ±0.1
Ø2.5 Minimum
+ ve
LL
Style 3
3.3 ±0.1
Ø2 ±0.1 Typical
+
-
10 ± 0.1
4.75 ± 0.1
Style 4/4S
4HOLES ø2 ±0.1
ON A ø22.5 PCD
LL
- ve
-
+
30°
30°
+ ve
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
4
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Shelf Life
The capacitance, ESR and impedance of a capacitor will not change significantly after extended storage periods, however the leakage
current will very slowly increase. KEMET products are particularly stable and allow a shelf life in excess of three years at 40°C. See
sectional specification under each product series for specific data.
Re-age (Reforming) Procedure
Apply the rated voltage to the capacitor at room temperature for a period of one hour, or until the leakage current has fallen to a steady
value below the specified limit. During re-aging a maximum charging current of twice the specified leakage current or 5 mA (whichever
is greater) is suggested.
Reliability
The reliability of a component can be defined as the probability that it will perform satisfactorily under a given set of conditions for a
given length of time.
In practice, it is impossible to predict with absolute certainty how any individual component will perform; thus, we must utilize probability
theory. It is also necessary to clearly define the level of stress involved (e.g. operating voltage, ripple current, temperature and time).
Finally, the meaning of satisfactory performance must be defined by specifying a set of conditions which determine the end of life of the
component.
Reliability as a function of time, R(t), is normally expressed as: R(t)=e-λt
where R(t) is the probability that the component will perform satisfactorily for time t, and λ is the failure rate.
Failure Rate
The failure rate is the number of components failing per unit time. The failure rate of most electronic components follows the
characteristic pattern:
• Early failures are removed during the manufacturing process.
• The operational life is characterized by a constant failure rate.
• The wear out period is characterized by a rapidly increasing failure rate.
The failures in time (FIT) are given with a 60% confidence level for the various type codes. By convention, FIT is expressed as 1 x 10-9
failures per hour. Failure rate is also expressed as a percentage of failures per 1,000 hours.
e.g., 100 FIT = 1 x 10-7 failures per hour = 0.01%/1,000 hours
End of Life Definition
Catastrophic Failure: short circuit, open circuit or safety vent operation
Parametric Failure:
• Change in capacitance > ±10%
• Leakage current > specified limit
• ESR > 2 x initial ESR value
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
5
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
MTBF
The mean time between failures (MTBF) is simply the inverse of the failure rate.
MTBF= 1/λ
early failures
wear out
operational life
Time
The failure rate is derived from our periodic test results. The failure rate (λR) is, therefore, only given at test temperature for life tests. An
estimation is also given at 40°C. The expected failure rate for this capacitor range is based on our periodic test results for capacitors
with structural similarity. Failure rate is frequently quoted in FIT (Failures In Time) where 1 FIT = 1 x 10-9 failures per hour. Failure rate
per hour includes both catastrophic and parametric failures.
Environmental Compliance
As an environmentally conscious company, KEMET is working continuously with improvements concerning the environmental effects
of both our capacitors and their production. In Europe (RoHS Directive) and in some other geographical areas like China, legislation
has been put in place to prevent the use of some hazardous materials, such as lead (Pb), in electronic equipment. All products in this
catalog are produced to help our customers’ obligations to guarantee their products and fulfill these legislative requirements. The only
material of concern in our products has been lead (Pb), which has been removed from all designs to fulfill the requirement of containing
less than 0.1% of lead in any homogeneous material. KEMET will closely follow any changes in legislation world wide and makes any
necessary changes in its products, whenever needed.
Some customer segments such as medical, military and automotive electronics may still require the use of lead in electrode coatings.
To clarify the situation and distinguish products from each other, a special symbol is used on the packaging labels for RoHS compatible
capacitors.
Because of customer requirements, there may appear additional markings such as LF = Lead Free or LFW = Lead Free Wires on the
label.
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
6
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Table 1 – Ratings & Part Number Reference
Rated
Capacitance
Case Size Ripple Current Maximum
ESR Maximum
VDC
Size Code
Part Number
100 Hz
20°C (µF)
3300
3900
4700
4700
5600
5600
6800
6800
6800
8200
8200
8200
10000
10000
10000
12000
12000
12000
15000
15000
18000
22000
27000
1200
1500
1800
2200
2200
2700
2700
3300
3300
3300
3900
3900
4700
4700
4700
5600
5600
6800
6800
8200
10000
560
100 Hz
105°C (A)
1.9
2.0
2.3
2.1
2.6
2.2
2.8
2.6
3.1
3.3
2.9
3.3
3.3
3.8
3.6
3.6
4.4
3.6
5.0
4.2
4.9
5.4
5.9
1.3
1.6
1.7
2.0
1.9
2.3
2.2
2.7
2.5
2.7
2.8
3.1
20 kHz
40°C (A)
5.1
5.4
6.2
5.8
7.1
5.9
7.5
7.0
8.4
8.8
8.0
8.8
9.0
10.3
9.6
9.9
D x L (mm)
100 Hz 20°C (mΩ) 100 kHz 20°C (mΩ)
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
35
63
63
63
63
63
63
63
63
63
63
AC
AC
AD
BC
AE
BC
AE
BD
CC
AG
BE
CC
BF
CD
DC
BG
CE
DC
CF
DD
DE
DF
DG
AB
AC
AC
AD
BC
AE
BD
AG
BE
CC
BF
CD
BG
CE
DC
CE
DD
CF
DE
DF
DG
AB
AC
BB
AD
22 x 30
22 x 30
22 x 35
25 x 30
22 x 40
25 x 30
22 x 40
25 x 35
30 x 30
22 x 50
25 x 40
30 x 30
25 x 45
30 x 35
35 x 30
25 x 50
30 x 40
35 x 30
30 x 45
35 x 35
35 x 40
35 x 45
35 x 50
22 x 25
22 x 30
22 x 30
22 x 35
25 x 30
22 x 40
25 x 35
22 x 50
25 x 40
30 x 30
25 x 45
30 x 35
25 x 50
30 x 40
35 x 30
30 x 40
35 x 35
30 x 45
35 x 40
35 x 45
35 x 50
22 x 25
22 x 30
25 x 25
22 x 35
110
97
80
86
67
93
83
67
74
PEH532JAC4330M(1)
PEH532JAC4390M(1)
PEH532JAD4470M(1)
PEH532JBC4470M(1)
PEH532JAE4560M(1)
PEH532JBC4560M(1)
PEH532JAE4680M(1)
PEH532JBD4680M(1)
PEH532JCC4680M(1)
PEH532JAG4820M(1)
PEH532JBE4820M(1)
PEH532JCC4820M(1)
PEH532JBF5100M(1)
PEH532JCD5100M(1)
PEH532JDC5100M(1)
PEH532JBG5120M(1)
PEH532JCE5120M(1)
PEH532JDC5120M(1)
PEH532JCF5150M(1)
PEH532JDD5150M(1)
PEH532JDE5180M(1)
PEH532JDF5220M(1)
PEH532JDG5270M(1)
PEH532MAB4120M(1)
PEH532MAC4150M(1)
PEH532MAC4180M(1)
PEH532MAD4220M(1)
PEH532MBC4220M(1)
PEH532MAE4270M(1)
PEH532MBD4270M(1)
PEH532MAG4330M(1)
PEH532MBE4330M(1)
PEH532MCC4330M(1)
PEH532MBF4390M(1)
PEH532MCD4390M(1)
PEH532MBG4470M(1)
PEH532MCE4470M(1)
PEH532MDC4470M(1)
PEH532MCE4560M(1)
PEH532MDD4560M(1)
PEH532MCF4680M(1)
PEH532MDE4680M(1)
PEH532MDF4820M(1)
PEH532MDG5100M(1)
PEH532PAB3560M(1)
PEH532PAC3680M(1)
PEH532PBB3680M(1)
PEH532PAD3820M(1)
56
68
50
54
46
40
45
40
38
32
36
32
27
33
22
26
22
18
78
58
63
54
47
52
47
43
38
42
37
32
38
26
30
25
11.7
9.7
13.3
11.5
13.2
14.8
16.3
3.7
4.4
4.7
5.5
5.2
6.3
6.1
7.4
7.0
7.4
7.8
8.5
8.7
21
18
16
160
120
110
88
95
120
90
79
64
71
72
76
58
52
56
42
62
58
46
42
63
63
63
63
63
63
63
63
53
48
45
40
46
35
37
29
40
35
34
29
34
26
28
22
23
19
3.1
3.6
3.1
9.7
8.5
3.8
3.7
4.3
4.2
4.7
5.2
1.0
1.1
10.3
10.1
11.7
11.5
13.0
14.4
2.6
3.1
2.9
3.5
63
63
63
31
26
22
17
100
100
100
100
380
300
320
250
290
240
250
190
680
680
820
1.1
1.3
PEH532
J
AC
433
0
M
2
Seri
e
s
Voltage
(V
DC)
Siz
e
C
o
d
e
Capa
c
i
tance Code (µF)
Version Capacitance To
l
e
rance
Termination
See Termination
Snap-In type
J = 35
See Dimension
The second two digits
0 = Standard
M = ±20%
Table
Table
Aluminum
M = 63
P = 100
R = 200
S = 250
U = 350
V = 400
indicate the two most
Electrolytic
significant digits of the
capacitance value. The
first digit indicates the
total number digits.
Y = 450
(1)
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
7
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Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Table 1 – Ratings & Part Number Reference cont'd
Rated
Capacitance
Case Size Ripple Current Maximum
ESR Maximum
VDC
Size Code
Part Number
100 Hz
20°C (µF)
100 Hz
20 kHz
D x L (mm)
100 Hz 20°C (mΩ) 100 kHz 20°C (mΩ)
105°C (A)
40°C (A)
100
100
100
100
100
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
200
250
250
250
250
250
250
250
250
250
250
250
250
250
250
250
250
250
250
250
250
2700
3300
3300
3900
4700
270
DD
CG
DE
DF
DG
AC
BB
AD
BC
AD
BC
AE
BD
CC
AF
BE
AG
BF
CD
BG
CD
CE
DD
CF
DE
DF
DG
DH
AC
BB
AD
BC
AE
BC
CB
AF
BD
AG
BE
CC
AG
BF
BG
CE
DC
CF
DD
CG
35 x 35
30 x 50
35 x 40
35 x 45
35 x 50
22 x 30
25 x 25
22 x 35
25 x 30
22 x 35
25 x 30
22 x 40
25 x 35
30 x 30
22 x 45
25 x 40
22 x 50
25 x 45
30 x 35
25 x 50
30 x 35
30 x 40
35 x 35
30 x 45
35 x 40
35 x 45
35 x 50
35 x 55
22 x 30
25 x 25
22 x 35
25 x 30
22 x 40
25 x 30
30 x 25
22 x 45
25 x 35
22 x 50
25 x 40
30 x 30
22 x 50
25 x 45
25 x 50
30 x 40
35 x 30
30 x 45
35 x 35
30 x 50
2.8
3.3
3.2
3.6
4.0
0.8
0.8
0.9
0.9
1.0
1.0
1.1
1.1
1.2
1.2
1.2
1.4
1.4
1.5
1.6
1.6
1.8
1.9
2.1
2.1
2.5
2.8
3.1
0.7
0.7
0.9
0.9
1.0
0.9
1.0
1.1
1.1
1.2
1.2
1.2
1.3
1.4
1.5
1.6
1.5
1.8
1.8
2.1
7.5
8.9
8.6
9.7
10.9
2.1
2.1
2.5
2.5
2.7
2.7
3.1
3.1
3.3
3.5
3.5
3.9
4.0
4.1
4.5
4.5
5.2
5.2
5.8
6.0
6.9
7.7
8.7
2.1
2.0
2.4
2.4
2.7
2.6
2.7
3.1
3.0
3.5
3.4
3.4
3.8
3.8
4.3
4.5
4.3
5.1
5.0
5.8
81
64
66
56
47
64
50
52
44
37
PEH532PDD4270M(1)
PEH532PCG4330M(1)
PEH532PDE4330M(1)
PEH532PDF4390M(1)
PEH532PDG4470M(1)
PEH532RAC3270M(1)
PEH532RBB3270M(1)
PEH532RAD3330M(1)
PEH532RBC3330M(1)
PEH532RAD3390M(1)
PEH532RBC3390M(1)
PEH532RAE3470M(1)
PEH532RBD3470M(1)
PEH532RCC3470M(1)
PEH532RAF3560M(1)
PEH532RBE3560M(1)
PEH532RAG3680M(1)
PEH532RBF3680M(1)
PEH532RCD3680M(1)
PEH532RBG3820M(1)
PEH532RCD3820M(1)
PEH532RCE4100M(1)
PEH532RDD4100M(1)
PEH532RCF4120M(1)
PEH532RDE4120M(1)
PEH532RDF4150M(1)
PEH532RDG4180M(1)
PEH532RDH4220M(1)
PEH532SAC3220M(1)
PEH532SBB3220M(1)
PEH532SAD3270M(1)
PEH532SBC3270M(1)
PEH532SAE3330M(1)
PEH532SBC3330M(1)
PEH532SCB3330M(1)
PEH532SAF3390M(1)
PEH532SBD3390M(1)
PEH532SAG3470M(1)
PEH532SBE3470M(1)
PEH532SCC3470M(1)
PEH532SAG3560M(1)
PEH532SBF3560M(1)
PEH532SBG3680M(1)
PEH532SCE3680M(1)
PEH532SDC3680M(1)
PEH532SCF3820M(1)
PEH532SDD3820M(1)
PEH532SCG4100M(1)
510
530
420
420
360
370
300
300
290
250
250
210
210
200
170
170
140
140
120
120
96
270
290
220
230
190
200
160
170
160
140
140
110
110
110
96
93
76
79
64
66
53
45
38
260
270
210
220
170
180
170
140
150
120
130
120
110
110
90
84
91
70
75
58
270
330
330
390
390
470
470
470
560
560
680
680
680
820
820
1000
1000
1200
1200
1500
1800
2200
220
220
270
81
67
520
540
420
430
350
360
350
290
300
250
250
250
210
210
180
170
180
140
150
120
270
330
330
330
390
390
470
470
470
560
560
680
680
680
820
820
1000
PEH532
J
AC
433
0
M
2
Size Code
Series
Voltage (VDC)
Capacitance Code (µF)
Version
Capacitance Tolerance
Termination
See Termination
M = ±20%
Snap-In type
J = 35
See Dimension
The second two digits
0 = Standard
Table
Table
Aluminum
M = 63
P = 100
R = 200
S = 250
U = 350
V = 400
indicate the two most
Electrolytic
significant digits of the
capacitance value. The
first digit indicates the
total number digits.
Y = 450
(1)
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
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Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Table 1 – Ratings & Part Number Reference cont'd
Rated
Capacitance
Case Size Ripple Current Maximum
ESR Maximum
VDC
Size Code
Part Number
100 Hz
20°C (µF)
100 Hz
20 kHz
D x L (mm)
100 Hz 20°C (mΩ) 100 kHz 20°C (mΩ)
105°C (A)
40°C (A)
350
350
350
350
350
350
350
350
350
350
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
400
450
450
450
450
450
450
450
450
450
450
450
450
450
450
450
330
330
330
390
390
470
470
560
560
680
82
100
100
120
120
120
150
150
150
180
180
220
220
220
220
270
270
330
330
390
390
470
560
68
BG
CE
DC
BG
CE
CF
DD
CG
DE
DF
AC
AC
BB
AD
BC
CB
AE
BD
CB
AF
CC
AG
BE
CD
DB
BF
CD
CE
DD
CG
DE
DF
DG
AC
BB
AC
BB
AD
BC
AE
BC
CB
AF
BD
CC
AG
BE
CC
25 x 50
30 x 40
35 x 30
25 x 50
30 x 40
30 x 45
35 x 35
30 x 50
35 x 40
35 x 45
22 x 30
22 x 30
25 x 25
22 x 35
25 x 30
30 x 25
22 x 40
25 x 35
30 x 25
22 x 45
30 x 30
22 x 50
25 x 40
30 x 35
35 x 25
25 x 45
30 x 35
30 x 40
35 x 35
30 x 50
35 x 40
35 x 45
35 x 50
22 x 30
25 x 25
22 x 30
25 x 25
22 x 35
25 x 30
22 x 40
25 x 30
30 x 25
22 x 45
25 x 35
30 x 30
22 x 50
25 x 40
30 x 30
1.2
1.2
1.2
1.3
1.3
1.5
1.5
1.7
1.7
1.9
0.5
0.6
0.6
0.6
0.7
0.7
0.8
0.8
0.8
0.8
0.9
1.0
1.0
1.0
1.0
1.1
1.1
1.3
1.3
1.5
1.5
1.7
1.9
0.5
0.5
0.6
0.6
0.6
0.6
0.7
0.7
0.7
0.8
0.8
0.9
0.9
0.9
0.9
3.2
3.4
3.3
3.5
3.7
4.2
4.1
4.7
4.7
5.3
1.4
1.6
1.6
1.8
1.8
1.9
2.1
2.1
2.1
2.4
2.4
2.7
2.7
2.8
2.7
3.0
3.1
3.6
3.7
4.1
4.1
4.7
5.3
1.4
1.4
1.5
1.5
1.8
1.8
2.0
1.9
2.0
2.3
2.3
2.4
2.6
2.6
2.6
400
390
400
340
330
280
280
230
240
190
1300
1100
1100
920
930
920
740
740
740
620
620
510
510
500
510
420
410
340
340
280
290
240
200
1300
1400
1100
1100
910
920
760
780
770
620
620
620
520
520
520
250
250
250
220
210
180
180
150
150
120
810
670
690
560
570
560
450
450
460
380
380
310
320
310
320
260
250
210
210
170
180
150
120
790
800
670
680
540
540
450
470
460
370
370
360
310
310
310
PEH532UBG3330M(1)
PEH532UCE3330M(1)
PEH532UDC3330M(1)
PEH532UBG3390M(1)
PEH532UCE3390M(1)
PEH532UCF3470M(1)
PEH532UDD3470M(1)
PEH532UCG3560M(1)
PEH532UDE3560M(1)
PEH532UDF3680M(1)
PEH532VAC2820M(1)
PEH532VAC3100M(1)
PEH532VBB3100M(1)
PEH532VAD3120M(1)
PEH532VBC3120M(1)
PEH532VCB3120M(1)
PEH532VAE3150M(1)
PEH532VBD3150M(1)
PEH532VCB3150M(1)
PEH532VAF3180M(1)
PEH532VCC3180M(1)
PEH532VAG3220M(1)
PEH532VBE3220M(1)
PEH532VCD3220M(1)
PEH532VDB3220M(1)
PEH532VBF3270M(1)
PEH532VCD3270M(1)
PEH532VCE3330M(1)
PEH532VDD3330M(1)
PEH532VCG3390M(1)
PEH532VDE3390M(1)
PEH532VDF3470M(1)
PEH532VDG3560M(1)
PEH532YAC2680M(1)
PEH532YBB2680M(1)
PEH532YAC2820M(1)
PEH532YBB2820M(1)
PEH532YAD3100M(1)
PEH532YBC3100M(1)
PEH532YAE3120M(1)
PEH532YBC3120M(1)
PEH532YCB3120M(1)
PEH532YAF3150M(1)
PEH532YBD3150M(1)
PEH532YCC3150M(1)
PEH532YAG3180M(1)
PEH532YBE3180M(1)
PEH532YCC3180M(1)
68
82
82
100
100
120
120
120
150
150
150
180
180
180
PEH532
J
AC
433
0
M
2
Size Code
Series
Voltage (VDC)
Capacitance Code (µF)
Version
Capacitance Tolerance
Termination
See Termination
M = ±20%
Snap-In type
J = 35
See Dimension
The second two digits
0 = Standard
Table
Table
Aluminum
M = 63
P = 100
R = 200
S = 250
U = 350
indicate the two most
Electrolytic
significant digits of the
capacitance value. The
first digit indicates the
total number digits.
(1)
V = 400
Y = 450
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013
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Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Mechanical Data
The capacitor may be mounted in any position. PEH532 is supplied with a PVC insulation sleeve, thickness 0.3 mm. Voltage proof of
the insulation sleeve = 2.5 kVDC (1 minute). The minus pole is marked on the case surface. UL recognized sleeving is available for
custom parts in this range, upon request. (UL No. E358957)
Print Detail
Standard Marking for PEG and PEH types
• KEMET Logo
• Rated capacitance
• Capacitance tolerance
• Rated voltage
• Date code
• Polarity indication
• Article code
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013 10
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Construction
The manufacturing process begins with the anode foil being
electrochemically etched to increase the surface area and then
“formed” to produce the aluminum oxide layer. Both the anode and
cathode foils are then interleaved with absorbent paper and wound
into a cylinder. During the winding process, aluminum tabs are
attached to each foil to provide the electrical contact.
Extended cathode
Anode foil
Foil tabs
The deck, complete with terminals, is attached to the tabs and then
folded down to rest on top of the winding. The complete winding
is impregnated with electrolyte before being housed in a suitable
container, usually an aluminum can, and sealed. Throughout the
process, all materials inside the housing must be maintained at the
highest purity and be compatible with the electrolyte.
Tissues
Cathode foil
Each capacitor is aged and tested before being sleeved and
packed. The purpose of aging is to repair any damage in the oxide
layer and thus reduce the leakage current to a very low level. Aging
is normally carried out at the rated temperature of the capacitor and
is accomplished by applying voltage to the device while carefully
controlling the supply current. The process may take several hours
to complete.
Etching
Forming
Winding
Decking
Impregnation
Assembly
Aging
Damage to the oxide layer can occur due to variety of reasons:
• Slitting of the anode foil after forming
• Attaching the tabs to the anode foil
• Minor mechanical damage caused during winding
A sample from each batch is taken by the quality department after
completion of the production process.
The following tests are applied and may be varied at the request
of the customer. In this case the batch, or special procedure, will
determine the course of action.
Testing
Electrical:
Mechanical/Visual:
• Overall dimensions
• Torque test of mounting stud
• Print detail
• Box labels
• Packaging, including packed
quantity
• Leakage current
• Capacitance
• ESR
• Impedance
• Tan Delta
Sleeving
Packing
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013 11
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
KEMET Corporation
World Headquarters
Europe
Asia
Southern Europe
Paris, France
Tel: 33-1-4646-1006
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Tel: 852-2305-1168
2835 KEMET Way
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Tel: 39-051-939111
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Tel: 86-755-2518-1306
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Greenville, SC 29606
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Tel: 86-21-6447-0707
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Tel: 49-2307-438110
Corporate Offices
Fort Lauderdale, FL
Tel: 954-766-2800
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Tel: 886-2-27528585
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Tel: 44-1279-460122
North America
Southeast Asia
Singapore
Southeast
Tel: 65-6586-1900
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Tel: 407-855-8886
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Tel: 358-9-5406-5000
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Tel: 60-4-6430200
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Tel: 978-658-1663
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Tel: 91-806-53-76817
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Tel: 248-994-1030
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Tel: 408-433-9950
Mexico
Guadalajara, Jalisco
Tel: 52-33-3123-2141
Note: KEMET reserves the right to modify minor details of internal and external construction at any time in the interest of product improvement. KEMET does not
assume any responsibility for infringement that might result from the use of KEMET Capacitors in potential circuit designs. KEMET is a registered trademark of
KEMET Electronics Corporation.
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013 12
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Other KEMET Resources
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Resource
Location
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http://capacitoredge.kemet.com
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http://www.kemet.com/products
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Disclaimer
All product specifications, statements, information and data (collectively, the “Information”) in this datasheet are subject to change. The customer is responsible for checking and
verifying the extent to which the Information contained in this publication is applicable to an order at the time the order is placed.
All Information given herein is believed to be accurate and reliable, but it is presented without guarantee, warranty, or responsibility of any kind, expressed or implied.
Statements of suitability for certain applications are based on KEMET Electronics Corporation’s (“KEMET”) knowledge of typical operating conditions for such applications, but are
not intended to constitute – and KEMET specifically disclaims – any warranty concerning suitability for a specific customer application or use. The 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 KEMET with reference to the use of KEMET’s products is given gratis, and KEMET assumes no obligation or liability for the advice given or results obtained.
Although KEMET designs and manufactures its products to the most stringent quality and safety standards, given the current state of the art, isolated component failures may still
occur. Accordingly, customer applications which require a high degree of reliability or safety should employ suitable designs or other safeguards (such as installation of protective
circuitry or redundancies) in order to ensure that the failure of an electrical component does not result in a risk of personal injury or property damage.
Although all product–related warnings, cautions and notes must be observed, the customer should not assume that all safety measures are indicted or that other measures may not
be required.
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013 13
Snap-In Aluminum Electrolytic Capacitors – PEH532, +105ºC
Digitally signed by Jeannette Calvo
DN: c=US, st=FL, l=Fort Lauderdale, o=KEMET Corp., ou=Marketing Communications,
cn=Jeannette Calvo, email=jeannettecalvo@kemet.com
Date: 2013.09.11 11:36:45 -04'00'
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
A4023_PEH532 • 9/9/2013 14
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