2222 056 48332 Vishay, 2222 056 48332 Datasheet - Page 7

CAPACITOR ALUM ELEC, 3300µF, 63V

2222 056 48332

Manufacturer Part Number
2222 056 48332
Description
CAPACITOR ALUM ELEC, 3300µF, 63V
Manufacturer
Vishay
Datasheet

Specifications of 2222 056 48332

Capacitance Tolerance
± 20%
Termination Type
Snap-In
Working Voltage, Dc
63V
Leaded Process Compatible
Yes
Capacitance
3300µF
Voltage Rating
63V
Capacitor Terminals
Quick Connect
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
CAPACITANCE (C)
Document Number: 28340
Revision: 18-Aug-08
ADDITIONAL ELECTRICAL DATA
Voltage
Surge voltage
Reverse voltage
Current
Leakage current
Inductance
Equivalent series inductance (ESL)
C
C
C
C
0
0
1.2
1.1
1.0
0.9
0.8
0.7
0.6
1.1
1.0
0.9
0.8
0.7
0.6
Fig.6 Typical multiplier of capacitance as a function of
- 100
10
1
C
C
Curve 1: U
Curve 2: U
Curve 3: U
0
0
Fig.7 Typical multiplier of capacitance as a
= capacitance at 20 °C and 100 Hz
= capacitance at 20 °C and 100 Hz
PARAMETER
R
R
R
= 10 V and 16 V
= 25 V, 35 V and 40 V
≥ 40 V
- 50
function of frequency
ambient temperature
1
2
3
10
2
0
Curve 1: U
Curve 2: U
Curve 3: U
10
R
R
R
For technical questions, contact: aluminumcaps2@vishay.com
= 100 V
= 200 V
≥ 250 V and ≤ 40 V
3
Power Standard Miniature Snap-In
50
≤ 250 V versions
≥ 385 V versions
After 1 minute at U
After 5 minutes at U
All case sizes
f (Hz)
T
amb
Aluminum Capacitors
(°C)
3
2
1
100
10
4
CONDITIONS
R
R
EQUIVALENT SERIES RESISTANCE (ESR)
ESR
ESR
ESR
ESR
0
10
1.5
0
1.0
0.5
0
1
- 100
1
10
Fig.8 Typical multiplier of ESR as a function of
1
Fig.9 Typical multiplier of ESR as a function
ESR
ESR
Curve 1: U
Curve 2: U
0
0
= typical at 20 °C and 100 Hz
= typical at 20 °C and 100 Hz
- 50
R
R
1
2
3
> 100 V
≤ 100 V
U
U
U
I
I
typ. 19 nH
max. 25 nH
L1
L5
ambient temperature
s
s
rev
= 1.15 x U
= 1.1 x U
≤ 0.006 C
≤ 0.002 C
≤ 1 V
10
Vishay BCcomponents
of frequency
2
0
R
056/057 PSM-SI
R
R
R
x U
x U
VALUE
R
R
50
+ 4 µA
+ 4 µA
Curve 1: U
Curve 2: U
Curve 3: U
10
3
2
1
2, 3
1
www.vishay.com
100
f (Hz)
R
R
R
≥ 250 V
= 200 V
≤ 100 V
T
amb
(°C)
150
10
4
7

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