MAL205154153E3 Vishay, MAL205154153E3 Datasheet - Page 7

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MAL205154153E3

Manufacturer Part Number
MAL205154153E3
Description
Cap Aluminum 15000uF 10VDC 20% 25 X 40mm Printed Wiring 0.037 Ohm 4100mA 12000 hr Bulk
Manufacturer
Vishay
Type
Electrolyticr
Datasheets

Specifications of MAL205154153E3

Mounting
Through Hole
Capacitance Value
15000 uF
Voltage
10 Vdc
Product Height
40 mm
Operating Temperature
-40 to 85 °C
Tolerance
20 %
Tolerance (+ Or -)
20%
Esr
37mOhm
Mounting Style
Through Hole
Construction
Printed Wiring
Dcl
900uA
Lifetime
12000
Product Diameter (mm)
25mm
Product Height (mm)
40mm
Product Depth (mm)
Not Requiredmm
Product Length (mm)
Not Requiredmm
Seated Plane Height
Not Requiredmm
Lead Spacing (nom)
Not Requiredmm
Operating Temp Range
-40C to 85C
Capacitance
15000uF
Ripple Current
4.1A
Lead Free Status / RoHS Status
Compliant
Document Number: 28346
Revision: 14-Aug-08
EQUIVALENT RESISTANCE (ESR)
ESR
ESR
10
10
10
10
10
10
10
10
10
(Ω)
10
1
Z
Z
1
Z
-1
1
0
-1
2
0
-1
-2
2
2
10
Case Ø D x L = 35 x 50, 40 x 40, 40 x 50, 40 x 70 and 40 x 100 mm
ESR
Case Ø D x L = 35 x 50, 40 x 40, 40 x 50, 40 x 70 and 40 x 100 mm
Case Ø D x L = 25 x 40 mm
Z
- 50
- 50
0
Fig.14 Typical multiplier of ESR as a function of
= impedance at 20 °C, 100 Hz
1
2
3
4
5
6
7
8
0
1
2
3
4
1
2
3
4
Fig.16 Typical multiplier of impedance as a
= typical at 20 °C, 100 Hz
10
Fig.18 Typical impedance as a function
2
function of ambient temperature.
ambient temperature.
10
0
0
3
of frequency
10
4
Curve 1: U
Curve 2: U
Curve 3: U
Curve 4: U
Curve 1: U
Curve 2: U
Curve 3: U
Curve 4: U
Curve 1: 100 µF, 385 V
Curve 2: 220 µF, 200 V
Curve 3: 1000 µF, 100 V
Curve 4: 3300 µF, 63 V
Curve 5: 4700 µF, 40 V
Curve 6: 6800 µF, 25 V
Curve 7: 10 000 µF, 16 V
Curve 8: 15 000 µF, 10 V
50
50
10
Power Economic Printed Wiring
For technical questions, contact: aluminumcaps2@vishay.com
5
R
R
R
R
R
R
R
R
= 385 V
= 200 V
= 100 V
= 10 V to 63 V
= 385 V
= 200 V
= 100 V
= 10 V to 63 V
Aluminum Capacitors
10
T
amb
6
4
T
T
3
2
1
4
2, 3
1
amb
f (Hz)
amb
(20 °C)
100
100
(°C)
(°C)
10
7
IMPEDANCE (Z)
10
10
10
10
10
10
(Ω)
10
(Ω)
10
10
Z
Z
10
10
1
1
Z
Z
1
-1
-1
-2
-2
2
-1
2
Fig.15 Typical multiplier ofimpedance as a function of
Fig. 19 Typical impedance as a function of frequency.
0
10
10
2
Case Ø D x L = 25 x 30 mm
Case Ø D x L = 25 x 40 mm
Fig.17 Typical impedance as a function of frequency.
Case Ø D x L = 25 x 30, 25 x 40, 30 x 40, and 35 x 40 mm
Z
- 50
0
1
2
3
4
5
6
7
8
1
2
3
4
5
6
7
8
= impedance at 20 °C, 10 kHz
1
2
3
4
10
10
2
2
ambient temperature
10
10
3
3
0
Vishay BCcomponents
051/053 PEC-PW
10
10
4
4
Curve 1: 150 µF, 385 V
Curve 2: 330 µF, 200 V
Curve 3: 1500 µF, 100 V
Curve 4: 4700µF, 63 V
Curve 5: 6800 µF, 40 V
Curve 6: 10 000 µF, 25 V
Curve 7: 15 000 µF, 16 V
Curve 8: 22 000 µF, 10 V
Curve 1: U
Curve 2: U
Curve 3: U
Curve 4: U
Curve 1: 68 µF, 385 V
Curve 2: 150 µF, 200 V
Curve 3: 680 µF, 100 V
Curve 4: 2200 µF, 63 V
Curve 5: 3300 µF, 40 V
Curve 6: 4700 µF, 25 V
Curve 7: 6800 µF, 16 V
Curve 8: 10 000 µF, 10 V
10
10
50
5
5
R
R
R
R
= 385 V
= 200 V
= 100 V
= 10 V to 63 V
www.vishay.com
10
10
T
T
amb
amb
6
6
T
f (Hz)
f (Hz)
4
2, 3
1
(20 °C)
(20 °C)
amb
100
(°C)
10
10
7
7
7

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