152 CME
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Vishay BCcomponents
Aluminum Electrolytic Capacitors
SMD (Chip), High Voltage
FEATURES
• Extended useful life: up to 6000 h at 105 °C
• Polarized aluminum electrolytic capacitors,
non-solid electrolyte, self healing
• SMD-version with base plate, lead (Pb)-free
reflow solderable
• Charge and discharge proof, no peak current
limitation
150 CRZ
105 °C
higher
• Advanced temperature reflow soldering according to
JEDEC® J-STD-020
152 CME
105 °C
voltage
• Vibration proof, 4-pin version and 6-pin version
• AEC-Q200 qualified
Fig. 1
• High reliability
• Material categorization: for definitions of compliance
please see www.vishay.com/doc?99912
QUICK REFERENCE DATA
DESCRIPTION
VALUE
Nominal case sizes
(L x W x H in mm)
10 x 10 x 10
to 18 x 18 x 21
Rated capacitance range, CR
2.2 μF to 33 μF
Tolerance on CR
APPLICATIONS
• SMD technology, for high temperature reflow soldering
• Industrial and professional applications
± 20 %
Rated voltage range, UR
Category temperature range
-40 °C to +105 °C
Endurance test at 105 °C
1000 h to 5000 h
Useful life at 105 °C
1500 h to 6000 h
Useful life at 40 °C
1.8 x lR applied
75 000 h to 300 000 h
Shelf life at 0 V, 105 °C
Based on sectional
specification
• Automotive, general industrial, telecom
400 V to 450 V
• Smoothing, filtering, buffering
MARKING
• Rated capacitance (in μF)
• Rated voltage (in V)
• Date code, in accordance with IEC 60062
1000 h
• Black mark or “-” sign indicating the cathode (the anode is
identified by beveled edges)
IEC 60384-18 / CECC 32300
Climatic category IEC 60068
40 / 105 / 56
• Code indicating group number (E)
PACKAGING
Supplied in blister tape on reel
SELECTION CHART FOR CR, UR, AND RELEVANT NOMINAL CASE SIZES (L x W x H in mm)
UR (V)
CR
(μF)
400
450
2.2
10 x 10 x 10
10 x 10 x 10
3.9
10 x 10 x 10
-
4.7
12.5 x 12.5 x 13
5.6
12.5 x 12.5 x 16
6.8
12.5 x 12.5 x 13
-
10
12.5 x 12.5 x 16
16 x 16 x 16
15
16 x 16 x 21
18
16 x 16 x 16
-
22
16 x 16 x 21
18 x 18 x 16
18 x 18 x 16
33
18 x 18 x 21
18 x 18 x 21
Revision: 05-Nov-2019
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152 CME
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D
LMAX.
L1MAX.
HMAX.
MAX. 0.3
D
WMAX.
WMAX.
B
B
L1MAX. S
35V
1000u
3R-H
25V
2200u
L4-H
25V
220 u
A4-H
WMAX.
HMAX.
MAX. 0.3
min. 0.4/max. 1.0 (2 x)
HMAX.
MAX. 0.3
D
6-pin:
≥ Ø 16 mm
min. 0.4/max. 1.0 (2 x)
4-pin:
Ø 12.5 mm
min. 0.4/max. 1.0 (2 x)
2-pin:
≤ Ø 10 mm
Vishay BCcomponents
B
LMAX.
S
L1MAX.
LMAX.
S
Fig. 2 - Dimensional outline
Table 1
DIMENSIONS in millimeters AND MASS
NOMINAL
CASE SIZE
LxWxH
CASE
CODE
LMAX.
WMAX.
HMAX.
ØD
BMAX.
S
L1MAX.
MASS
(g)
10 x 10 x 10
1010
10.5
10.5
10.5
10.0
1.0
3.5
12.1
1.3
12.5 x 12.5 x 13
1213
12.9
12.9
14.0
12.5
1.3
3.6
14.9
2.6
12.5 x 12.5 x 16
1216
12.9
12.9
16.5
12.5
1.3
3.6
14.9
2.8
16 x 16 x 16
1616
16.6
16.6
17.5
16.0
1.3
6.5
18.6
5.5
16 x 16 x 21
1621
16.6
16.6
22.0
16.0
1.3
6.5
18.6
6.0
18 x 18 x 16
1816
19.0
19.0
17.5
18.0
1.3
6.5
21.0
8.0
18 x 18 x 21
1821
19.0
19.0
22.0
18.0
1.3
6.5
21.0
8.3
Table 2
TAPE AND REEL DIMENSIONS in millimeters, PACKAGING QUANTITIES
NOMINAL
CASE SIZE
LxWxH
CASE
CODE
PITCH
P1
TAPE WIDTH
W
TAPE
THICKNESS
T2
REEL DIAMETER
PACKAGING
QUANTITY
PER REEL
10 x 10 x 10
1010
16
24
11.6
380
500
12.5 x 12.5 x 13
1213
20
24
16.2
380
250
12.5 x 12.5 x 16
1216
24
32
18.5
380
200
16 x 16 x 16
1616
28
44
18.9
380
150
16 x 16 x 21
1621
28
44
23.4
380
100
18 x 18 x 16
1816
32
44
18.9
380
125
18 x 18 x 21
1821
32
44
23.4
380
100
Note
• Detailed tape dimensions see section “PACKAGING”
Revision: 05-Nov-2019
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152 CME
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Vishay BCcomponents
MOUNTING
SOLDERING
The capacitors are designed for automatic placement on to
printed-circuit boards.
Soldering conditions are defined by the curve, temperature
versus time, where the temperature is that measured on the
component during processing.
Optimum dimensions of soldering pads depend amongst
others on soldering method, mounting accuracy, print
layout and / or adjacent components.
For maximum conditions refer to Fig. 4.
Any temperature versus time curve which does not exceed
the specified maximum curves may be applied.
For recommended soldering pad dimensions, refer to Fig. 3
and Table 3.
As a general principle, temperature and duration shall be the
minimum necessary required to ensure good soldering
connections. However, the specified maximum curves
should never be exceeded.
e
a
c
a
d
b
f
b
b
d
a
c
a
a
Case size Ø D ≤ 10 mm
c
a
Case size Ø D ≥ 16 mm
Case size Ø D = 12.5 mm
Fig. 3 - Recommended soldering pad dimensions
Table 3
RECOMMENDED SOLDERING PAD DIMENSIONS in millimeters
CASE CODE
a
b
c
d
e
f
1010
4.4
2.5
4.0
-
-
-
1213
6.3
2.5
4.0
4.2
5.0
5.6
1216
6.3
2.5
4.0
4.2
5.0
5.6
1616
7.8
9.6
4.7
-
-
-
1621
7.8
9.6
4.7
-
-
-
1816
8.8
9.6
4.7
-
-
-
1821
8.8
9.6
4.7
-
-
-
Revision: 05-Nov-2019
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152 CME
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Vishay BCcomponents
ADVANCED SOLDERING PROFILE FOR LEAD (Pb)-FREE REFLOW PROCESS
ACCORDING TO JEDEC J-STD-020
T (°C)
TPeak
230
217
t4
t3
200
190
t2
150
t1
25
time (s)
Fig. 4 - Maximum temperature load during reflow soldering
Table 4
REFLOW SOLDERING CONDITIONS for MAL215299xxxE3
CASE CODE
1010
CASE CODE
1213 TO 1216
CASE CODE
1616 TO 1821
Max. time from 25 °C to TPeak
300 s
300 s
300 s
Max. ramp-up rate to 150 °C
3 K/s
3 K/s
3 K/s
Max. time from 150 °C to 200 °C (t1)
150 s
150 s
150 s
Max. time from 190 °C to 200 °C (t2)
110 s
110 s
110 s
0.5 K/s to 3 K/s
0.5 K/s to 3 K/s
0.5 K/s to 3 K/s
Max. time above TLiquidus (217 °C) (t3)
90 s
90 s
90 s
Max. time above 230 °C (t4)
70 s
65 s
60 s
260 °C
250 °C
245 °C
40 s
30 s
30 s
3 K/s to 6 K/s
3 K/s to 6 K/s
3 K/s to 6 K/s
PROFILE FEATURES
Ramp up rate from 200 °C to TPeak
Peak temperature TPeak
Max. time above TPeak minus 5 °C
Ramp-down rate from TLiquidus
Notes
• Temperature measuring point on top of the case and on terminals
• Max. 2 runs with pause of min. 30 min in between
Revision: 05-Nov-2019
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152 CME
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ORDERING EXAMPLE
ELECTRICAL DATA
Electrolytic capacitor 152 CME series
SYMBOL
DESCRIPTION
CR
Rated capacitance at 100 Hz, tolerance ± 20 %
IR
Rated RMS ripple current at 100 Hz, 105 °C
IL2
tan
Z
33 μF / 450 V; ± 20 %
Nominal case size: 18 mm x 18 mm x 21 mm; blister tape on
reel
Max. leakage current after 2 min at UR
Ordering code: MAL215299706E3
Max. dissipation factor at 100 Hz
Max. impedance at 100 kHz
Note
• Unless otherwise specified, all electrical values in Table 5 apply
at Tamb = 20 °C, P = 86 kPa to 106 kPa, RH = 45 % to 75 %
Table 5
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
400
450
CR
(μF)
NOMINAL
CASE SIZE
LxWxH
(mm)
IR
105 °C
100 Hz
(mA)
IL1
1 min
(μA)
tan
100 Hz
Z
10 kHz
20 °C
()
LIFE
CODE (1)
ORDERING CODE
MAL2152.....
2.2
10 x 10 x 10
30
97
0.15
13.0
L1
99601E3
3.9
10 x 10 x 10
50
117
0.15
8.5
L1
99602E3
6.8
12.5 x 12.5 x 13
60
152
0.15
4.7
L2
99603E3
10
12.5 x 12.5 x 16
80
190
0.15
3.5
L3
99604E3
18
16 x 16 x 16
100
286
0.15
2.1
L4
99605E3
22
16 x 16 x 21
130
334
0.15
1.5
L5
99606E3
22
18 x 18 x 16
140
334
0.15
1.5
L4
99607E3
33
18 x 18 x 21
190
466
0.15
1.1
L5
99608E3
2.2
10 x 10 x 10
30
100
0.20
14.5
L1
99701E3
4.7
12.5 x 12.5 x 13
50
134
0.20
5.9
L2
99702E3
5.6
12.5 x 12.5 x 16
65
146
0.20
5.2
L3
99703E3
10
16 x 16 x 16
90
205
0.20
2.9
L4
99704E3
15
16 x 16 x 21
110
273
0.20
2.1
L5
99705E3
22
18 x 18 x 16
120
367
0.20
1.7
L4
99706E3
33
18 x 18 x 21
160
516
0.20
1.1
L5
99707E3
Note
• Determines the applicable row in the table “Endurance Test Duration and Useful Life”
Table 6
ADDITIONAL ELECTRICAL DATA
PARAMETER
CONDITIONS
VALUE
IEC 60384-18, subclause 4.14
Us 1.10 x UR
IEC 60384-18, subclause 4.16; TA 105 °C
Urev 1 V
Voltage
Surge voltage for short periods
Reverse voltage for short periods
Current
Leakage current
After 1 min at UR
IL1 0.03 x CR x UR + 70 μA
After 5 min at UR
IL5 0.015 x CR x UR + 30 μA
Inductance
Equivalent series inductance (ESL)
Ø D = 10 mm
Typ. 16 nH
Ø D 12.5 mm
Typ. 18 nH
Calculated from tan max. and CR (see Table 5)
ESR = tan /2fCR
Resistance
Equivalent series resistance (ESR) at 100 Hz
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RIPPLE CURRENT AND USEFUL LIFE
Table 7
ENDURANCE TEST DURATION AND USEFUL LIFE
LIFE CODE
ENDURANCE AT 105 °C
(h)
USEFUL LIFE AT 105 °C
(h)
USEFUL LIFE AT 40 °C
1.8 x IR APPLIED (h)
L1
1000
1500
75 000
L2
2500
3000
150 000
L3
3000
4000
200 000
L4
4000
5000
250 000
L5
5000
6000
300 000
Note
• Multiplier of useful life code: CCC206
CCC206
3.8
IA 3.7
IR 3.6
3.5
3.4
3.3
3.2
3.1
3.0
2.8
Lifetime multiplier
2.6
1.
0
2.4
5
1.
0
2.
2.2
0
4.
0
6.
0
8.
1.8
12
IA = Actual ripple current at 100 Hz
IR = Rated ripple current at 100 Hz, 105 °C
1.6
20
30
60
0
10 0
15 0
20
1.4
1.2
1.0
0.8
0.5
0.0
0
3.
2.0
40
50
60
70
80
90
100
110
Tamb (°C)
Fig. 5 - Multiplier of useful life as a function of ambient temperature and ripple current load
Table 8
MULTIPLIER OF RIPPLE CURRENT (IR) AS A FUNCTION OF FREQUENCY
FREQUENCY (Hz)
UR
(V)
50
100
300
1000
3000
10 000
30 000
400
0.75
1.00
1.30
1.60
1.90
2.20
2.50
450
0.75
1.00
1.30
1.60
1.90
2.20
2.50
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Table 9
TEST PROCEDURES AND REQUIREMENTS
TEST
NAME OF TEST
REFERENCE
PROCEDURE
(quick reference)
REQUIREMENTS
Mounting
IEC 60384-18,
subclause 4.3
Shall be performed prior to tests mentioned below;
reflow soldering;
for maximum temperature load
refer to chapter “Mounting”
C/C: ± 5 %
tan spec. limit
IL2 spec. limit
Endurance
IEC 60384-18 /
CECC 32300,
subclause 4.15
Tamb = 105 °C; UR applied;
for test duration see Table 7
UR 400 V; C/C: ± 20 %
tan 2 x spec. limit
IL2 spec. limit
Useful life
CECC 30301,
subclause 1.8.1
Tamb = 105 °C; UR and IR applied;
for test duration see Table 7
C/C: ± 50 %
tan 3 x spec. limit
IL2 spec. limit
no short or open circuit
total failure percentage: 1 %
Shelf life
(storage at high
temperature)
IEC 60384-18 /
CECC 32300,
subclause 4.17
Tamb = 105 °C; no voltage applied;
1000 h
after test: UR to be applied for 30 min,
24 h to 48 h before measurement
For requirements
see “Endurance test” above
Reverse voltage
IEC 60384-18 /
CECC 32300,
subclause 4.16
Tamb = 105 °C:
125 h at U = -1.0 V,
followed by 125 h at UR
C/C: ± 15 %
tan 1.5 x spec. limit
IL2 spec. limit
Statements about product lifetime are based on calculations and internal testing. They should only be interpreted as estimations. Also due to external factors, the
lifetime in the field application may deviate from the calculated lifetime. In general, nothing stated herein shall be construed as a guarantee of durability.
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