MAL212313151E3 Vishay, MAL212313151E3 Datasheet - Page 8

CAP 6.3V 150UF SOLID ELECT AXIAL

MAL212313151E3

Manufacturer Part Number
MAL212313151E3
Description
CAP 6.3V 150UF SOLID ELECT AXIAL
Manufacturer
Vishay
Series
SAL-A 123r
Datasheet

Specifications of MAL212313151E3

Capacitance
150µF
Voltage Rating
6.3V
Tolerance
±20%
Lifetime @ Temp.
20000 Hrs @ 125°C
Operating Temperature
-55°C ~ 125°C
Features
General Purpose
Ripple Current
160mA
Esr (equivalent Series Resistance)
1.500 Ohm
Impedance
1 Ohm
Mounting Type
Through Hole
Package / Case
Axial, Can
Size / Dimension
0.299" Dia x 0.803" L (7.60mm x 20.40mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Height
-
Lead Spacing
-
Surface Mount Land Size
-
Other names
2222 123 13151
222212313151
4266PHTB
MAL212313151
123 SAL-A
Vishay BCcomponents
IMPEDANCE (Z)
EQUIVALENT SERIES RESISTANCE (ESR)
Typical ESR: see Figs to 24; the standard deviation is 20 % of each value.
www.vishay.com
258
(Ω)
( )
ESR
Ω
Z
(Ω)
10
Z
10
10
10
10
10
10
10
10
10
10
-1
1
-1
-2
2
-1
-2
1
2
1
2
10
10
Fig.16 Typical impedance as a function of frequency
Fig.18 Typical impedance as a function of frequency
Fig.20 Typical ESR as a function of ambient temperature
2
Curve 1: 10 mF, 25 V; 6.8 mF, 35 and 40 V
Curve 2: 10 mF, 16 V
Curve 3: 22 mF, 16 V
Curve 4: 33 mF, 10 V
Curve 5: 47 mF, 6.3 and 10 V; 68 mF, 6.3 V
Case Ø D x L = 10.3 x 32.0 mm; U
Case Ø D x L = 12.9 x 32.0 mm; U
Case Ø D x L = 6.7 x 15.3 mm
1
2
3
- 80
1
2
3
4
5
10
10
2
- 40
3
10
0
3
10
4
40
10
4
For technical questions, contact: aluminumcaps2@vishay.com
R
R
= 6.3 to 16 V
80
= 6.3 to 10 V
10
Curve 1: 680 µF, 10 V
Curve 2: 1000 µF, 6.3 V
Curve 3: 1500 µF, 6.3 V
5
Curve 1: 220 µF, 16 V
Curve 2: 330 µF, 16 V
Curve 3: 330 µF, 10 V
Curve 4: 470 µF, 10 V
Curve 5: 680 µF, 6.3 V
10
120
5
ESR at 100 Hz
10
160
T
T
6
10
amb
amb
f (Hz) 10
6
T
Aluminum Capacitors
= 25 °C
amb
= 25 °C
f (Hz)
1
3
2
4
5
200
(°C)
10
7
Solid Axial
7
( )
(Ω)
ESR
Ω
Z
(Ω)
10
Z
10
10
10
10
10
10
10
1
10
10
10
-1
3
2
-1
1
-1
-2
2
Fig.21 Typical ESR as a function of ambient temperature
1
2
Fig.17 Typical impedance as a function of frequency
10
10
Fig.19 Typical impedance as a function of frequency
Case Ø D x L = 10.3 x 32.0 mm;
U
Case Ø D x L = 7.6 x 20.4 mm
2
Curve 1: 10 µF, 35 and 40 V
Curve 2: 33 µF, 25 V
Curve 3: 47 µF, 25 V
Curve 4: 68 µF, 10 V; 150 µF, 6.3 V
Case Ø D x L = 12.9 x 32.0 mm; U
R
= 25 to 40 V
- 80
1
2
3
4
5
6
10
1
2
3
2
10
- 40
3
10
0
3
10
4
40
10
4
Curve 1: 100 µF, 35 and 40 V
Curve 2: 150 µF, 35 V
Curve 3: 220 µF, 25 V
Curve 4: 470 µF, 16 V
Curve 5: 680 µF, 16 V
Curve 6: 1000 µF, 10 V
R
80
= 10 to 40V
Curve 1: 47 V, 40 V
Curve 2: 68 V, 35 and 40 V
Curve 3: 150 V, 25 V
Document Number: 28355
10
5
10
120
Revision: 23-Jun-08
5
ESR at 100 Hz
10
160
T
T
6
10
amb
amb
f (Hz) 10
T
6
amb
= 25 °C
= 25 °C
f (Hz)
1
2
3
4
5
200
(°C)
10
7
7

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