116 RLL
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Revision: 15-Jul-16 1Document Number: 28316
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Aluminum Electrolytic Capacitors
Radial Long Life
Fig. 1
FEATURES
Long useful life: 2000 h at 105 °C
Miniaturized, high CV-product per unit volume
Natural pitch 2.5 mm and 5 mm
Polarized aluminum electrolytic capacitors,
non-solid electrolyte
Radial leads, cylindrical aluminum case, all-insulated
(light blue)
Charge and discharge proof
Material categorization: for definitions of compliance
please see www.vishay.com/doc?99912
APPLICATIONS
Automotive, telecommunication, industrial and EDP
Stand-by applications in audio and video equipment
Coupling, decoupling, timing, smoothing, filtering and
buffering in DC/DC converters
Portable and mobile equipment (small size, low mass)
MARKING
The capacitors are marked (where possible) with the
following information:
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
Code indicating factory of origin
Name of manufacturer
“-”-sign on top to identify the negative terminal
Series number (116)
QUICK REFERENCE DATA
DESCRIPTION VALUE
Nominal case sizes (Ø D x L in mm) 5 x 11 and 8.2 x 11
Rated capacitance range, CR1.5 μF to 470 μF
Tolerance on CR± 20 %
Rated voltage range, UR6.3 V to 100 V
Category temperature range -55 °C to +105 °C
Endurance test at 105 °C 1500 h
Endurance test at 85 °C 5000 h
Useful life at 105 °C 2000 h
Useful life at 40 °C, 1.3 x IR applied 200 000 h
Shelf life at 0 V, 105 °C 1500 h
Based on sectional specification IEC 60384-4 / EN 130300
Climatic category IEC 60068 55 / 105 / 56
036 RSP
048 RML 148 RUS
miniaturized
higher
CV-values
85 °C 116 RLL
105 °C
SELECTION CHART FOR CR, UR, AND RELEVANT NOMINAL CASE SIZES (Ø D x L in mm)
CR
(μF)
UR (V)
6.310162535405063100
1.5------5 x 11 --
3.3------5 x 11 --
4.7------5 x 11 -8.2 x 11
6.8------5 x 11 --
10 ------5 x 11 8.2 x 11 8.2 x 11
------8.2 x 11 --
15------5 x 11 --
22 ------5 x 11 8.2 x 11 -
------8.2 x 11 --
33----5 x 11 5 x 11 8.2 x 11 --
47 - - - 5 x 11 - - 8.2 x 11 - -
68 - - 5 x 11 - - - 8.2 x 11 - -
100 - 5 x 11 - - 8.2 x 11 8.2 x 11 - - -
150 5 x 11 - - 8.2 x 11 - - - - -
220--8.2 x 11 ------
330-8.2 x 11 -------
4708.2 x 11 --------
116 RLL
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Revision: 15-Jul-16 2Document Number: 28316
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DIMENSIONS in millimeters AND AVAILABLE FORMS
Fig. 2 - Form CA: Long leads Fig. 3 - Form TFA: Taped in box (ammopack)
Fig. 4 - Form CB: Cut leads Fig. 5 - Form TNA: Taped in box (ammopack)
Table 1
Note
For detailed tape dimension please see www.vishay.com/doc?28360
L
F
15 min
5 min
Ø d
Ø D
+-
Case Ø D x L = 5 mm x 11 mm and 8.2 mm x 11 mm
Pitch F = 5 mm
Case Ø D x L = 8.2 mm x 11 mm only
Ø D
Ø d
5 ± 0.5
L
4 +1
0
+-
Case Ø D x L = 5 mm x 11 mm only
Pitch F = 2.5 mm
DIMENSIONS in millimeters, MASS, AND PACKAGING QUANTITIES
NOMINAL
CASE SIZE
Ø D x L
CASE
CODE Ø d Ø Dmax. Lmax. F MASS
(g)
PACKAGING QUANTITIES
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
116 RLL
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Revision: 15-Jul-16 3Document Number: 28316
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Note
Unless otherwise specified, all electrical values in Table 2 apply
at Tamb = 20 °C, P = 86 kPa to 106 kPa, RH = 45 % to 75 %.
ORDERING EXAMPLE
Electrolytic capacitor 116 series
220 μF / 16 V; ± 20 %
Nominal case size: Ø 8.2 mm x 11 mm; form TFA
Ordering code: MAL211635221E3
Former 12NC: 2222 116 35221
Table 2
ELECTRICAL DATA
SYMBOL DESCRIPTION
CRRated capacitance at 100 Hz, tolerance ± 20 %
IRRated RMS ripple current at 100 kHz, 105 °C
IL1 Max. leakage current after 1 min at UR
tan Max. dissipation factor at 100 Hz
Z Max. impedance at 100 kHz and 20 °C
ELECTRICAL DATA AND ORDERING INFORMATION
UR
(V)
CR
100 Hz
(μF)
NOMINAL
CASE SIZE
Ø D x L
(mm)
IR
100 kHz
105 °C
(mA)
IL1
1 min
(μA)
tan
100 Hz
Z
100 kHz
()
ORDERING CODE MAL2116 .....
BULK PACKAGING TAPED AMMOPACK
LONG LEADS CUT LEADS
FORM
CA
F
(mm)
FORM
CB
F
(mm)
FORM
TFA
F
(mm)
FORM
TNA
F
(mm)
6.3 150 5 x 11 130 8.7 0.25 1.3 53151E3 2.5 - - 33151E3 5.0 73151E3 2.5
470 8.2 x 11 300 21 0.25 0.45 53471E3 5.0 63471E3 5.0 33471E3 5.0 - -
10 100 5 x 11 130 9.0 0.20 1.4 54101E3 2.5 - - 34101E3 5.0 74101E3 2.5
330 8.2 x 11 280 23 0.20 0.45 54331E3 5.0 64331E3 5.0 34331E3 5.0 - -
16 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 - -
25 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 - -
35 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 - -
40 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 - -
50
1.5 5 x 11 50 3.5 0.09 4.0 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 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 0.09 2.5 51688E3 2.5 - 5.0 31688E3 5.0 71688E3 2.5
10 5 x 11 80 6.0 0.09 2.2 51109E3 2.5 - 5.0 31109E3 5.0 71109E3 2.5
10 8.2 x 11 160 6.0 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 - -
63 10 8.2 x 11 160 7.0 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 - -
100 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 0.08 3.0 59109E3 5.0 69109E3 5.0 39109E3 5.0 - -
116 RLL
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Revision: 15-Jul-16 4Document Number: 28316
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
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CAPACITANCE (C)
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)
Fig. 8 - Typical impedance as a function of frequency Fig. 9 - Typical impedance as a function of frequency
ADDITIONAL ELECTRICAL DATA
PARAMETER CONDITIONS VALUE
Voltage
Surge voltage Us 1.3 UR
Reverse voltage Urev 1 V
Current
Leakage current After 1 min at URIL1 0.006 CR x UR + 3 μA
After 5 min at URIL5 0.001 CR x UR + 3 μA
Inductance
Equivalent series inductance (ESL) Case Ø D x L = 5 mm x 11 mm Typ. 13 nH
Case Ø D x L = 8.2 mm x 11 mm Typ. 16 nH
Resistance
Equivalent series resistance (ESR) Calculated from tan max. and CR (see Table 2) ESR = tan /2 f CR
0.6
0.7
0.8
0.9
1.0
1.1
C
0
C
1
2
3
4
123
4
- 60 - 40 - 20 0 20 40 60 80 100 120
Tamb (°C)C0 = Capacitance at 20 °C, 100 Hz
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
105
104
103
102
10 f (Hz)
0.7
0.8
0.9
1.0
C
0
C2
1
3
4
6
5
7
7
1
C0 = Capacitance at 20 °C, 100 Hz
Curve 1: 50 V (2.2 µF)
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
Curve 6: 16 V
Curve 7: 6.3 V, 10 V
Tamb (°C)
Tamb (°C)
f (Hz)
10
1
Z
( )
Ω
1
3
2
4
5
7
8
6
102 103 104 105 106
103
102
Case Ø D x L = 5 mm x 11 mm
Curve 1: 1.5 µF
Curve 2: 2.2 µF
Curve 3: 3.3 µF
Curve 4: 4.7 µF
Curve 5: 6.8 µF
Curve 6: 10 µF
Curve 7: 15 µF
Curve 8: 22 µF
Tamb (°C)
Case Ø D x L = 8.2 mm x 11 mm
1
10-1
f (Hz)
Z
(Ω)
2
1
3
4
6
5
7
8
10
9
11
12
13
102 103 104 105 106
103
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
116 RLL
www.vishay.com Vishay BCcomponents
Revision: 15-Jul-16 5Document Number: 28316
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
RIPPLE CURRENT AND USEFUL LIFE
Fig. 10 - Multiplier of useful life as a function of ambient temperature and ripple current load
Table 3
Table 4
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.
MULTIPLIER OF RIPPLE CURRENT (IR) AS A FUNCTION OF FREQUENCY
FREQUENCY
(Hz)
IR MULTIPLIER
UR = 6.3 V TO 10 V UR = 16 V TO 35 V UR = 40 V TO 100 V (CR 10 μF)
50 0.70 0.60 0.50
100 0.77 0.71 0.63
300 0.86 0.85 0.78
1000 0.92 0.93 0.88
3000 0.96 0.96 0.94
10K to 100K 1.00 1.00 1.00
TEST PROCEDURES AND REQUIREMENTS
TEST PROCEDURE
(quick reference) REQUIREMENTS
NAME OF TEST REFERENCE
Endurance
IEC 60384-4 /
EN 130300
subclause 4.13
Tamb = 105 °C; UR applied;
1500 h
UR 6.3 V; C/C: +15 % / -30 %
UR > 6.3 V; C/C: ± 15 %
tan 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; C/C: +45 % / -50 %
UR > 6.3 V; C/C: ± 45 %
tan 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 /
EN 130300
subclause 4.17
Tamb = 105 °C; no voltage applied;
1500 h
After test: UR to be applied for 30 min, 24 h to 48 h
before measurement
C/C, tan , Z:
For requirements see
“Endurance test” above
IL5 2 x spec. limit
3.8
3.7
3.6
3.5
3.4
3.3
3.2
3.0
2.8
2.6
2.4
2.2
2.0
1.8
1.6
1.4
1.2
1.0
0.8
0.5
0.0
3.1
IA
R
I
(1)
200
100
60
30
150
20
6.0
4.0
2.0
1.5
12
8.0
3.0
1.0
Lifetime multiplier
Tamb (°C)
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
MEA240
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