2222 118 16102 Vishay, 2222 118 16102 Datasheet - Page 8

CAPACITOR ALUM ELECT 1000UF, 25V, AXIAL

2222 118 16102

Manufacturer Part Number
2222 118 16102
Description
CAPACITOR ALUM ELECT 1000UF, 25V, AXIAL
Manufacturer
Vishay
Series
118 AHTr
Datasheets

Specifications of 2222 118 16102

Capacitor Dielectric Type
Aluminium Electrolytic
Capacitance Tolerance
± 20%
Esr
0.375ohm
Capacitance
1000µF
Voltage Rating
25VDC
Life Time @ Temperature
2000 Hours @ 125°C
Height
30mm
Diameter
12.5mm
Capacitor Mounting
Through Hole
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Document Number: 28334
Revision: 06-Sep-10
(Ω)
(Ω)
(Ω)
Z
Z
IMPEDANCE (Z)
Z
10
10
10
10
10
10
10
10
10
10
10
10
Case Ø D x L = 18 mm x 30 mm
1
Case Ø D x L = 18 mm x 30 mm
1
Case Ø D x L = 8 mm x 18 mm
1
3
2
3
2
-1
3
2
-1
-1
10
10
10
2
Curve 9: 1500 µF, 16 V and 1500 µF, 10 V
Curve 10: 1500 µF, 10 V and 2200 µF, 6.3 V
Curve 11: 3300 µF, 6.3 V
10
11
Fig.15 Typical impedance as a function of frequency
Fig.17 Typical impedance as a function of frequency
1
2
3
4
Fig.13 Typical impedance as a function of frequency
1
2
3
4
5
6
7
8
9
2
3
4
5
6
7
8
1
10
10
2
2
10
3
10
10
3
3
10
10
10
4
4
4
For technical questions, contact:
10
Curve 1: 47 µF, 200 V
Curve 2: 220 µF, 100 V
Curve 3: 470 µF, 63 V
Curve 4: 1000 µF, 40 V
Curve 5: 2200 µF, 25 V
Curve 6: 3300 µF, 18 V
Curve 7: 4700 µF, 10 V
Curve 8: 6800 µF, 6.3V
10
Curve 1: 22 µF, 200 V
Curve 2: 68 µF, 100 V
Curve 3: 150 µF, 63 V
Curve 4: 220 µF, 63 V
Curve 5: 330 µF, 40 V
Curve 6: 470 µF, 40 V
Curve 7: 680 µF, 25 V
Curve 8: 1000 µF, 25 V
and 1000 µF, 16 V
5
5
10
Curve 1: 47 V
Curve 2: 100 V
Curve 3: 220 V
Curve 4: 470 V
5
Axial High Temperature
10
10
T
T
T
Aluminum Capacitors
f (Hz)
amb
amb
amb
6
6
f (Hz)
f (Hz)
(40 °C)
(40 °C)
(°C)
10
10
10
6
7
7
aluminumcaps1@vishay.com
(Ω)
(Ω)
Z
( )
Z
10
10
Ω
Z
10
10
10
10
10
10
10
10
10
10
Case Ø D x L = 12.5 mm x 30 mm
1
Case Ø D x L = 10 mm x 25 mm
Case Ø D x L = 18 mm x 30 mm
1
3
2
1
-1
3
2
2
-1
-2
-1
10
10
10
2
10
11
Fig.16 Typical impedance as a function of frequency
1
2
3
4
Fig.14 Typical impedance as a function of frequency
Fig.18 Typical impedance as a function of frequency
1
2
3
4
5
6
8
9
7
1
2
3
4
5
6
7
8
10
10
2
2
10
Curve 1: 22 µF, 200 V
Curve 2: 68 µF, 100 V
Curve 3: 150 µF, 63 V
Curve 4: 220 µF, 63 V
Curve 5: 330 µF, 40 V
Curve 6: 470 µF, 40 V
3
10
10
Vishay BCcomponents
3
3
10
10
10
Curve 1: 47 µF, 200 V
Curve 2: 220 µF, 100 V
Curve 3: 470 µF, 63 V
Curve 4: 1000 µF, 40 V
Curve 5: 2200 µF, 25 V
Curve 6: 3300 µF, 18 V
Curve 7: 4700 µF, 10 V
Curve 8: 6800 µF, 6.3 V
4
4
4
Curve 7: 680 µF, 25 V
Curve 8: 1000 µF, 25 V
Curve 9: 1500 µF, 16 V
Curve 10: 1500 µF, 10 V
and 2200 µF, 6.3 V
Curve 11: 3300 µF, 6.3 V
10
10
5
5
Curve 1: 100 V
Curve 2: 220 V
Curve 3: 470 V
Curve 4: 1000 V
10
118 AHT
www.vishay.com
5
10
10
T
T
T
f (Hz)
amb
amb
amb
6
6
f (Hz)
f (Hz)
(20 °C)
(°C)
(20 °C)
10
10
10
231
6
7
7

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