085 CS
Vishay BCcomponents
Aluminum Capacitors
SMD (Chip) Standard
FEATURES
•
Polarized aluminum electrolytic
non-solid electrolyte, self healing
capacitors,
•
Miniaturized, high CV per unit volume, low height
•
Charge and discharge proof
Fig.1 Component outlines
APPLICATIONS
•
SMD technology, boards with restricted mounting height
085 CS
longer
life
139 CLL
•
General applications, consumer electronics, low profile
and lightweight equipment
•
Decoupling, smoothing, filtering and buffering
MARKING
QUICK REFERENCE DATA
DESCRIPTION
Nominal case sizes
(L x W x H in mm)
Rated capacitance range, C
R
Tolerance on C
R
Rated voltage range, U
R
Category temperature range
Endurance test at 85
°C
Useful life at 85 °C
Useful life at 40 °C;
1.4 x l
R
applied
VALUE
8.8 x 3.7 x 3.9 and
11.9 x 3.7 x 3.9
0.47 to 22 µF
6.3 to 63 V
- 10 to + 50 % or ± 20 %
The capacitors are marked (where possible) with the
following information:
E
N
- 40 to + 85 °C
1000 hours
R
1500 hours
W
•
Rated capacitance (in µF)
•
Rated voltage code (see Table 1), the U
R
code letter
indicates the position of the decimal point in the
capacitance value
•
Name of manufacturer
•
‘-’ sign indicating the cathode. The anode is identified by
bevelled edges
Examples
for C
R
; U
R
marking:
H22 represents 0.22 µF; 63 V
2G2 represents 2.2 µF; 40 V
22C represents 22 µF; 6.3 V
Table 1
Shelf life at 0 V, 85 °C
FO
40 000 hours
500 hours
Resistance to soldering
heat test
Based on sectional
specification
immersion in solder:
10 s at 260 °Cor 20 s at 215 °C
IEC 60384-18/CECC 32300
40/085/56
D
U
R
(V)
Code letter
RATED VOLTAGE MARKING CODE
6.3
C
10
D
16
E
25
F
40
G
63
H
Climatic category IEC 60068
N
SELECTION CHART FOR C
R
, U
R
AND RELEVANT NOMINAL CASE SIZES
(L x W x H in mm)
C
R
(µF)
U
R
(V)
6.3
-
-
-
-
-
-
8.8 x 3.7 x 3.9
-
11.9 x 3.7 x 3.9
10
-
-
-
-
-
8.8 x 3.7 x 3.9
-
11.9 x 3.7 x 3.9
-
16
-
-
-
-
8.8 x 3.7 x 3.9
-
11.9 x 3.7 x 3.9
-
-
25
-
-
-
8.8 x 3.7 x 3.9
-
11.9 x 3.7 x 3.9
-
-
-
40
-
-
8.8 x 3.7 x 3.9
-
11.9 x 3.7 x 3.9
-
-
-
-
63
8.8 x 3.7 x 3.9
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
11.9 x 3.7 x 3.9
-
-
-
-
-
O
0.47
1.0
2.2
3.3
4.7
6.8
10
15
22
T
E
S
IG
•
Supplied in blister tape on reel
N
•
Flexible terminals, reflow and wave solderable
Document Number: 28300
Revision: 28-May-08
For technical questions, contact: aluminumcaps1@vishay.com
S
•
SMD-version, rectangular case, insulated
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1
085 CS
Vishay BCcomponents
DIMENSIONS
in millimeters
Aluminum Capacitors
SMD (Chip) Standard
2 max.
3.9
2 max. max.
2 max.
3.9
2 max. max.
2.7
max.
2.7
max.
2.7
max.
2.7
max.
N
E
G
4.4
4.4
A
13.5
16.8
b.
Case size 11.9 x 3.7 x 3.9 mm
a. Case size
8.8
x 3.7 x 3.9 mm
Fig.2 Dimensional outlines
PACKAGING
Tape on reel packaging: 2000 per reel
Detailed tape dimensions see section ‘PACKAGING’
MOUNTING
The capacitors are designed for automatic placement on
printed-circuit boards or hybrid circuits.
Optimum dimensions of soldering pads depend upon
soldering method, mounting accuracy, print lay-out and/or
adjacent components.
For recommended pad dimensions, refer to Fig. 3
and Table 2.
Table 2
R
RECOMMENDED SOLDERING PAD DIMENSIONS
in millimeters (placement accuracy ± 0.25 mm)
NOMINAL CASE SIZE
LxWxH
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
FOR REFLOW SOLDERING
C
2.9
2.9
D
2.5
2.5
E
3.0
6.0
F
10.1
13.3
B
4.1
7.4
E
N
E
W
D
FO
A
B
S
B
A
F
7.5
9 max.
a.
10.8
12.2 max.
b.
IG
FOR WAVE SOLDERING
C
4.7
4.7
D
3.7
3.7
E
2.9
6.1
F
4.1
max.
3.9
max.
4.1
max.
S
3.9
max.
G
8.4
8.4
9.7
3.5
6.5
14.0
17.3
12.9
E
T
D G
D
G
N
O
C
B
A
F
reflow soldering
solder land/
solder paste
pattern
solder resist
pattern
occupied
area
C
wave
soldering
tracks or
dummy tracks
Fig.3 Recommended pad dimensions for reflow and
wave
soldering
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2
For technical questions, contact: aluminumcaps1@vishay.com
Document Number: 28300
Revision: 28-May-08
085 CS
Aluminum Capacitors
SMD (Chip) Standard
a
Vishay BCcomponents
c
flow-direction of solder
d
b
For dimensions a,
b,
c and d, refer to Table 3
Flow direction of solder preferably onto side-walls or plus-side of the capacitors
Fig.4 Minimum ditances
between
085 CS capacitors on a printed-circuit
board
for
wave
soldering
For maximum conditions of different soldering methods see
Figs 5, 6 and 7.
Table 3
AS A GENERAL PRINCIPLE, TEMPERATURE AND
DURATION SHALL BE THE MINIMUM NECESSARY
REQUIRED
TO
ENSURE
GOOD
SOLDERING
CONNECTIONS.
MINIMUM DISTANCES BETWEEN CAPACITORS
in millimeters
NOMINAL CASE SIZE
LxWxH
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
Table4
CASE
CODE
1a
1
W
E
a
min.
12
15
D
E
b
min.
12
15
50
Soldering conditions are defined by the curve, temperature
versus time. The temperature is that measured on the
soldering pad during processing.
Any temperature/time curve which does not exceed the
specified maximum curves may be applied.
S
SOLDERING
IG
c
min.
6.8
6.8
100
N
d
min.
6.8
6.8
CURING CONDITIONS FOR SMD-GLUE
MAX. T
amb
(°C)
125
140
150
160
N
FO
MAX. EXPOSURE TIME
(minutes)
10
3
1
0.5
R
T
280
T
Pad
(°C) 260
240
220
200
180
160
140
120
100
80
0
280
T
Pad
(°C) 260
240
220
200
180
160
140
120
100
80
N
O
50
100
150
200
f(s)
250
0
150
S
200
f(s)
250
Fig.5 Maximum temperature load during infrared reflow soldering Fig.6 Maximum temperature load during
vapor
phase reflow soldering
Document Number: 28300
Revision: 28-May-08
For technical questions, contact: aluminumcaps1@vishay.com
www.vishay.com
3
085 CS
Vishay BCcomponents
Aluminum Capacitors
SMD (Chip) Standard
280
T
Pad
(°C) 260
240
220
200
180
160
140
120
100
80
0
50
100
150
200
f(s)
Fig.7 Maximum temperature load during (double-)
wave
soldering
ELECTRICAL DATA
SYMBOL
C
R
I
R
I
L5
Tan
δ
Z
Note
DESCRIPTION
rated capacitance at 100 Hz
(tolerance - 10 to + 50 % or ± 20 %)
rated RMS ripple current at 100 Hz, 85
°C
max. leakage current after 5 minutes at U
R
max. dissipation factor at 100 Hz
max. impedance at 10 kHz
ORDERING EXAMPLE
Electrolytic capacitor 085 series
10 µF/16 V; - 10/+ 50 %
Unless otherwise specified, all electrical values in Table 6 apply at
T
amb
= 20
°C,
P = 86 to 106 kPa, RH = 45 to 75 %
.
Table 6
FO
ELECTRICAL DATA AND ORDERING INFORMATION
U
R
(V)
C
R
100 Hz
(µF)
10.0
NOMINAL
CASE SIZE
LxWxH
(mm)
I
R
100 Hz
85
°C
(mA)
11
20
10
18
9
16
8
14
7
13
4
6
11
13
I
L5
5 min
(µA)
3.1
3.3
3.1
3.3
3.2
3.3
3.2
3.3
3.2
3.4
3.1
3.1
3.3
3.4
ORDERING CODE MAL2085.......
Tan
δ
100 Hz
0.30
0.30
0.25
0.25
0.20
0.20
0.18
0.18
0.16
0.16
0.10
0.12
0.14
0.14
Z
10 kHz
(Ω)
20
9
24
11
26
12
27
13
32
15
120
55
25
17
- 10/+ 50 %
BLISTER TAPE
ON REEL FORM BR
23109E3
23229E3
24688E3
24159E3
25478E3
25109E3
26338E3
26688E3
27228E3
27478E3
28477E3
28108E3
28228E3
28338E3
± 20 %
BLISTER TAPE
ON REEL FORM BR
63109E3
63229E3
64688E3
64159E3
65478E3
65109E3
66338E3
66688E3
67228E3
67478E3
68477E3
68108E3
68228E3
68338E3
T
6.3
10
16
25
40
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
8.8 x 3.7 x 3.9
8.8 x 3.7 x 3.9
11.9 x 3.7 x 3.9
11.9 x 3.7 x 3.9
22
15
10
N
63
O
6.8
4.7
3.3
6.8
2.2
4.7
0.47
1.0
2.2
3.3
R
N
E
W
Nominal case size: 11.9 x 3.7 x 3.9 mm; Form BR
Ordering Code: MAL208525109E3
Former 12NC: 2222 085 25109
D
E
S
Document Number: 28300
Revision: 28-May-08
www.vishay.com
4
For technical questions, contact: aluminumcaps1@vishay.com
IG
250
N
S
085 CS
Aluminum Capacitors
SMD (Chip) Standard
Table 7
Vishay BCcomponents
ADDITIONAL ELECTRICAL DATA
PARAMETER
Voltage
Surge voltage for short periods
Reverse voltage
Current
Leakage current
Inductance
Equivalent series inductance (ESL)
Resistance
Equivalent series resistance (ESR)
nominal case size 8.8 x 3.7 x 3.9 mm
nominal case size 11.9 x 3.7 x 3.9 mm
after 1 minute at U
R
after 5 minutes at U
R
U
s
≤
1.15 x U
R
U
rev
≤
1 V
CONDITIONS
VALUE
I
L1
≤
0.02 C
R
x U
R
+ 3 µA
typ. 11 nH
CAPACITANCE
1.2
C
C
0
1.1
3
1.0
2
W
1
2
3
N
E
1.1
C
C
0
1.0
0.9
D
1
2
3
E
calculated from tan
δ
max
and C
R
(see Table
S
10
2
typ. 13 nH
ESR = tan
δ/2 πf
C
R
IG
I
L5
≤
0.002 C
R
x U
R
+ 3 µA
N
10
3
S
3
2
1
0.8
0.9
1
R
FO
0.7
Curve 1: 6.3
V
Curve 2: 25
V
Curve 3: 63
V
80
100
Curve 1: 6.3
V
Curve 2: 25
V
Curve 3: 63
V
0.6
10
0.8
- 40
- 20
0
20
40
60
10
4
T
amb
(20 °C)
C
0
= capacitance at 20 °C, 100 Hz
T
amb
(20 °C)
C
0
= capacitance at 20 °C, 100 Hz
N
O
T
Fig.7 Typical multiplier of capacitance as a function of
ambient temperature
Fig.9 Typical multiplier of capacitance as a function of frequency
Document Number: 28300
Revision: 28-May-08
For technical questions, contact: aluminumcaps1@vishay.com
www.vishay.com
5