Vishay MAL211659228E3 Aluminum capacitors radial long life Datasheet

116 RLL
Vishay BCcomponents
Aluminum Capacitors
Radial Long Life
FEATURES
Fig.1 Component outline
048 RML
miniaturized
148 RUS
• Polarized aluminum electrolytic capacitors,
non-solid electrolyte
• Radial leads, cylindrical aluminum case,
all-insulated (light blue)
• Natural pitch 2.5 mm and 5 mm
• Charge and discharge proof
• Miniaturized, high CV-product per unit volume
• Long useful life: 2000 h at 105 °C, high reliability
RoHS
COMPLIANT
• Lead (Pb)-free versions are RoHS compliant
higher
CV-values
85 °C
036 RSP
APPLICATIONS
• Automotive, telecommunication, industrial and EDP
• Stand-by applications in audio and video equipment
• Coupling, decoupling, timing; smoothing, filtering and
buffering in dc-to-dc converters
• Portable and mobile equipment (small size, low mass)
116 RLL
105 °C
QUICK REFERENCE DATA
DESCRIPTION
VALUE
Nominal Case sizes (Ø D x L in mm)
Rated capacitance range, CR
5 x 11 and 8.2 x 11
Tolerance on CR
± 20 %
Rated voltage range, UR
6.3 to 100 V
Category temperature range
- 55 to + 105 °C
Endurance test at 105 °C
1500 hours
Endurance test at 85 °C
5000 hours
Useful life at 105 °C
2000 hours
Useful life at 40 °C, 1.3 x IR applied
Shelf life at 0 V, 105 °C
Climatic category IEC 60068
• Rated capacitance (in µF)
• Tolerance on rated capacitance, code letter in accordance
with IEC 60062 (M for ± 20 %)
• Rated voltage (in V)
• Date code in accordance with IEC 60062
200 000 hours
1500 hours
Based on sectional specification
MARKING
The capacitors are marked (where possible)
with the following information:
0.47 to 470 µF
IEC 60384-4/EN130300
55/105/56
•
•
•
•
Code indicating factory of origin
Name of manufacturer
Minus-sign on top to identify the negative terminal
Series number (116)
SELECTION CHART FOR CR, UR AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm)
CR
(µF)
0.47
1.0
1.5
2.2
3.3
4.7
6.8
10
15
22
33
47
68
100
150
220
330
470
6.3
10
16
25
5 x 11
8.2 x 11
5 x 11
8.2 x 11
-
5 x 11
8.2 x 11
-
5 x 11
8.2 x 11
-
Document Number: 28316
Revision: 14-Oct-08
UR (V)
35
5 x 11
8.2 x 11
-
40
5 x 11
8.2 x 11
-
50
5 x 11
5 x 11
5 x 11
5 x 11
5 x 11
5 x 11
5 x 11
5 x 11
8.2 x 11
5 x 11
5 x 11
8.2 x 11
8.2 x 11
8.2 x 11
8.2 x 11
-
For technical questions, contact: [email protected]
63
100
8.2 x 11
8.2 x 11
-
8.2 x 11
8.2 x 11
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113
116 RLL
Aluminum Capacitors
Radial Long Life
Vishay BCcomponents
DIMENSIONS in millimeters AND AVAILABLE FORMS
ØD
L
-
+
15 min
F
Case Ø D x L = 5 x 11 and 8.2 x 11 mm
Pitch F = 5 mm
5 min
Ød
Fig.2 Form CA: Long leads
Fig.3 Form TFA: Taped in box (ammopack)
ØD
L
+1
4 0
-
+
Ød
5 ± 0.5
Case Ø D x L = 5 x 11 mm only
Pitch F = 2.5 mm
Case Ø D x L = 8.2 x 11 mm only
Fig.4 Form CB: Cut leads
Fig.5 Form TNA: Taped in box (ammopack)
Table 1
DIMENSIONS in millimeters, MASS AND PACKAGING QUANTITIES
NOMINAL
CASE SIZE
ØDxL
PACKAGING QUANTITIES
CASE
CODE
ØD
Ø Dmax.
Lmax.
F
MASS (g)
FORM
CA, CB
FORM
TFA, TNA
5 x 11
11
0.5
5.5
12
2.5 ± 0.5
≈ 0.4
1000
2000
8.2 x 11
13
0.6
8.7
12
5.0 ± 0.5
≈ 1.1
1000
1000
Note
Tape dimension see section ‘PACKAGING’.
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For technical questions, contact: [email protected]
Document Number: 28316
Revision: 14-Oct-08
116 RLL
Aluminum Capacitors
Radial Long Life
ORDERING EXAMPLE
ELECTRICAL DATA
SYMBOL
Vishay BCcomponents
Electrolytic capacitor 116 series
DESCRIPTION
CR
rated capacitance at 100 Hz, tolerance ± 20 %
220 µF/16 V; ± 20 %
IR
rated RMS ripple current at 100 kHz, 105 °C
Nominal case size: Ø 8.2 x 11 mm; Form TFA
IL1
max. leakage current after 1 minutes at UR
tan δ
max. dissipation factor at 100 Hz
Z
max. impedance at 100 kHz and 20 °C
Ordering code: MAL211635221E3
Former 12NC: 2222 116 35221
Note
Unless otherwise specified, all electrical values in Table 2 apply at
Tamb = 20 °C, P = 86 to 106 kPa, RH = 45 to 75 %.
Table 2
ELECTRICAL DATA AND ORDERING INFORMATION
CR
UR
100 Hz
(V)
(µF)
6.3
10
16
25
35
40
50
63
100
NOMINAL
IR
IL1
CASE
Z
tan δ
100 kHz
SIZE
100 kHz
1 min
100 Hz
105 °C
ØDxL
(Ω)
(µA)
(mA)
(mm)
ORDERING CODE MAL2116 .....
BULK PACKAGING
LONG LEADS
FORM
CA
F
(mm)
TAPED AMMOPACK
CUT LEADS
FORM
CB
F
(mm)
FORM
TFA
F
(mm)
FORM
TNA
F
(mm)
2.5
150
5 x 11
130
8.7
0.25
1.3
53151E3
2.5
-
-
33151E3
5.0
73151E3
470
8.2 x 11
300
21
0.25
0.45
53471E3
5.0
63471E3
5.0
33471E3
5.0
-
-
100
5 x 11
130
9
0.2
1.4
54101E3
2.5
-
-
34101E3
5.0
74101E3
2.5
330
8.2 x 11
280
23
0.2
0.45
54331E3
5.0
64331E3
5.0
34331E3
5.0
-
-
68
5 x 11
130
9.5
0.16
1.5
55689E3
2.5
-
-
35689E3
5.0
75689E3
2.5
220
8.2 x 11
280
24
0.16
0.5
55221E3
5.0
65221E3
5.0
35221E3
5.0
-
-
47
5 x 11
120
10
0.14
1.6
56479E3
2.5
-
-
36479E3
5.0
76479E3
2.5
150
8.2 x 11
260
26
0.14
0.5
56151E3
5.0
66151E3
5.0
36151E3
5.0
-
-
33
5 x 11
110
9.9
0.12
1.7
50339E3
2.5
-
-
30339E3
5.0
70339E3
2.5
100
8.2 x 11
240
24
0.12
0.55
50101E3
5.0
60101E3
5.0
30101E3
5.0
-
-
33
5 x 11
110
10.9
0.12
1.7
57339E3
2.5
-
-
37339E3
5.0
77339E3
2.5
100
8.2 x 11
240
27
0.12
0.55
57101E3
5.0
67101E3
5.0
37101E3
5.0
-
-
0.47
5 x 11
30
3.1
0.09
10
51477E3
2.5
-
5.0
31477E3
5.0
71477E3
2.5
1.0
5 x 11
40
3.3
0.09
6
51108E3
2.5
-
5.0
31108E3
5.0
71108E3
2.5
1.5
5 x 11
50
3.5
0.09
4
51158E3
2.5
-
5.0
31158E3
5.0
71158E3
2.5
2.2
5 x 11
60
3.7
0.09
3.5
51228E3
2.5
-
5.0
31228E3
5.0
71228E3
2.5
3.3
5 x 11
65
4
0.09
3.1
51338E3
2.5
-
5.0
31338E3
5.0
71338E3
2.5
4.7
5 x 11
70
4.4
0.09
2.8
51478E3
2.5
-
5.0
31478E3
5.0
71478E3
2.5
6.8
5 x 11
75
5
0.09
2.5
51688E3
2.5
-
5.0
31688E3
5.0
71688E3
2.5
2.5
10
5 x 11
80
6
0.09
2.2
51109E3
2.5
-
5.0
31109E3
5.0
71109E3
10
8.2 x 11
160
6
0.05
1.0
90084E3
5.0
90085E3
5.0
90036E3
5.0
-
-
15
5 x 11
90
7.5
0.09
2.0
51159E3
2.5
-
5.0
31159E3
5.0
71159E3
2.5
22
5 x 11
110
9.6
0.09
1.9
51229E3
2.5
-
5.0
31229E3
5.0
71229E3
2.5
22
8.2 x 11
190
9.6
0.06
0.9
90025E3
5.0
90086E3
5.0
90039E3
5.0
-
-
33
8.2 x 11
190
13
0.09
0.77
51339E3
5.0
61339E3
5.0
31339E3
5.0
-
-
47
8.2 x 11
210
17
0.09
0.65
51479E3
5.0
61479E3
5.0
31479E3
5.0
-
-
68
8.2 x 11
240
23
0.09
0.55
51689E3
5.0
61689E3
5.0
31689E3
5.0
-
-
10
8.2 x 11
160
7
0.06
1.3
58109E3
5.0
68109E3
5.0
38109E3
5.0
-
-
22
8.2 x 11
190
11
0.06
0.9
58229E3
5.0
68229E3
5.0
38229E3
5.0
-
-
2.2
8.2 x 11
60
4.3
0.06
4
59228E3
5.0
69228E3
5.0
39228E3
5.0
-
-
4.7
8.2 x 11
75
5.8
0.07
3.5
59478E3
5.0
69478E3
5.0
39478E3
5.0
-
-
10
8.2 x 11
100
9
0.08
3
59109E3
5.0
69109E3
5.0
39109E3
5.0
-
-
Document Number: 28316
Revision: 14-Oct-08
For technical questions, contact: [email protected]
www.vishay.com
115
116 RLL
Aluminum Capacitors
Radial Long Life
Vishay BCcomponents
ADDITIONAL ELECTRICAL DATA
PARAMETER
CONDITIONS
VALUE
Voltage
Surge voltage
Reverse voltage
Current
Us ≤ 1.3 UR
Urev ≤ 1 V
Leakage current
After 1 minutes at UR
After 5 minutes at UR
IL1 ≤ 0.006 CR x UR + 3 µA
IL5 ≤ 0.001 CR x UR + 3 µA
Case Ø D x L = 5 x 11 mm
Case Ø D x L = 8.2 x 11 mm
typ. 13 nH
typ. 16 nH
Calculated from tan δmax. and CR (see Table 2)
ESR = tan δ/2 π f CR
Inductance
Equivalent series inductance (ESL)
Resistance
Equivalent series resistance (ESR)
CAPACITANCE (C)
2
3
4
1
1.1
C
C0
7
1
1.0
C
C0
1.0
0.9
4
0.8
3
1
2
3
0.9
4
5
Curve 1: 50 V (≤ 2.2 µF)
0.8 Curve 2: 50 V (> 2.2 µF)
Curve 3: 50 V (≥ 15 µF)
Curve 4: 35 V, 40 V, 63 V, 100 V
Curve 5: 25 V
0.7 Curve 6: 16 V
Curve 7: 6.3 V, 10 V
2
0.7
Curve 1: 6.3 V
Curve 2: 10 V, 16 V
Curve 3: 35 V, 40 V, 63 V, 100 V
Curve 4: 50 V
1
0.6
- 60
- 40
- 20
0
20
40
60
80
100
10 2
10
120
6
7
10 3
10 4
f (Hz) 10 5
Tamb (°C)
Tamb (°C)
C0 = Capacitance at 20 °C, 100 Hz
C0 = Capacitance at 20 °C, 100 Hz
Fig.6 Typical multiplier of capacitance as a function
of ambient temperature
Fig.7 Typical multiplier of capacitance as a function
of ambient frequency
IMPEDANCE (Z)
103
103
Curve 1: 0.47 µF
Curve 2: 1.0 µF
Curve 3: 1.5 µF
Curve 4: 2.2 µF
Curve 5: 3.3 µF
Curve 6: 4.7 µF
Curve 7: 6.8 µF
Curve 8: 10 µF
Curve 9: 15 µF
Curve 10: 22 µF
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
Z
(Ω)
102
10
Curve 1: 2.2 µF
Curve 2: 4.7 µF
Curve 3: 10 µF, 100 V
Curve 4: 10 µF, 50 V
Curve 5: 22 µF, 50 V
Curve 6: 33 µF
Curve 7: 47 µF
Curve 8: 68 µF
Curve 9: 100 µF
Z
(Ω)
102
5
6
7
8
9
10
11
12
13
10
1
1
2
3
4
1
10-1
102
103
104
105
6
f (Hz) 10
Tamb (°C)
102
103
104
105
f (Hz) 106
Tamb (°C)
Case Ø D x L = 5 x 11 mm
Case Ø D x L = 8.2 x 11 mm
Fig.8 Typical impedance as a function of frequency
Fig.9 Typical impedance as a function of frequency
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For technical questions, contact: [email protected]
Document Number: 28316
Revision: 14-Oct-08
116 RLL
Aluminum Capacitors
Radial Long Life
Vishay BCcomponents
RIPPLE CURRENT AND USEFUL LIFE
MEA240
3.8
IA
IR
3.7
3.6
3.5
3.4
3.3
3.2
3.1
3.0
2.8
lifetime multiplier
2.6
0
1.
2.4
5
1.
0
2.
2.2
0
3.
0
4.
2.0
0
6.
0
8.
1.8
12
1.6
20
30
60
1)
0
10 0
15 0
20
1.4
1.2
1.0
0.8
0.5
0.0
IA = actual ripple current at 100 Hz
IR = rated ripple current at 100 Hz, 105 °C
(1)
= useful life at 105 °C and IR applied: 2000 h
40
50
60
70
80
90
100
110
Tamb (°C)
Fig.10 Multiplier of useful life as a function of ambient temperature and ripple current load
Table 3
MULTIPLIER OF RIPPLE CURRENT (IR) AS A FUNCTION OF FREQUENCY
FREQUENCY
(Hz)
IR MULTIPLIER
UR = 16 to 35 V
0.60
0.71
0.85
0.93
0.96
1.00
UR = 6.3 to 10 V
0.70
0.77
0.86
0.92
0.96
1.00
50
100
300
1000
3000
10 to 100 k
UR = 40 to 100 V (CR ≥ 10 µF)
0.50
0.63
0.78
0.88
0.94
1.00
Table 4
TEST PROCEDURES AND REQUIREMENTS
TEST
NAME OF TEST
REFERENCE
PROCEDURE
(quick reference)
REQUIREMENTS
Endurance
IEC 60384-4/
EN130300
subclause 4.13
Tamb = 105 °C; UR applied;
1500 h
UR ≤ 6.3 V; ΔC/C: + 15/- 30 %
UR > 6.3 V; ΔC/C: ± 15 %
tan δ ≤ 1.3 x spec. limit
Z ≤ 2 x spec. limit
IL5 ≤ spec. limit
Useful life
CECC 30301
subclause 1.8.1
Tamb = 105 °C; UR and IR applied;
2000 h
UR ≤ 6.3 V; ΔC/C: + 45/- 50 %
UR > 6.3 V; ΔC/C: ± 45 %
tan δ ≤ 3 x spec. limit
Z ≤ 3 x spec. limit
IL5 ≤ spec. limit
no short or open circuit
total failure percentage: ≤ 1%
Shelf life
(storage at
high temperature)
IEC 60384-4/
EN130300
subclause 4.17
Tamb = 105 °C; no voltage applied;
1500 h
after test: UR to be applied for 30 min, 24 to 48 h
before measurement
ΔC/C, tan δ, Z:
for requirements
see ‘Endurance test’ above
IL5 ≤ 2 x spec. limit
Document Number: 28316
Revision: 14-Oct-08
For technical questions, contact: [email protected]
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Disclaimer
All product specifications and data are subject to change without notice.
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Document Number: 91000
Revision: 18-Jul-08
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