ESRL Series, Aluminum - Polymer Capacitors

Results:
14
Manufacturer
Series
Capacitance
Voltage - Rated
ESR (Equivalent Series Resistance)
Ripple Current @ High Frequency
Impedance
Operating Temperature
Applications
Height - Seated (Max)
Surface Mount Land Size
Tolerance
Lead Spacing
Mounting Type
Size / Dimension
Ripple Current @ Low Frequency
Lifetime @ Temp.
Ratings
Type
Package / Case
Features
Results remaining14
Applied Filters:
ESRL
Select
ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeFeaturesToleranceImpedanceRatingsOperating TemperatureHeight - Seated (Max)CapacitancePackage / CaseSize / DimensionApplicationsLead SpacingSeriesTypeVoltage - RatedESR (Equivalent Series Resistance)Lifetime @ Temp.Ripple Current @ High FrequencySurface Mount Land SizeRipple Current @ Low Frequency
ESRL150M12B
CAP ALUM POLY 15UF 20% 12.5V SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
15 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
12.5 V
40mOhm
1000 Hrs @ 105°C
1.4 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL220M08B
CAP ALUM POLY 22UF 20% 8V SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
22 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
8 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL330M06R
CAP ALUM POLY 33UF 20% 6.3V SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
33 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
6.3 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL390M04R
CAP ALUM POLY 39UF 20% 4V SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
39 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
4 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL470M04R
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
47 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
4 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL560M0ER
CAP ALUM POLY 56UF 20% 2.5V SMD
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
56 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
2.5 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL680M02B
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Quantity
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PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
68 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
2 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL150M12R
CAP ALUM POLY 15UF 20% 12.5V SMD
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
15 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
12.5 V
40mOhm
1000 Hrs @ 105°C
1.4 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL220M08R
CAP ALUM POLY 22UF 20% 8V SMD
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
22 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
8 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL330M06B
CAP ALUM POLY 33UF 20% 6.3V SMD
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
33 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
6.3 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL390M04B
CAP ALUM POLY 39UF 20% 4V SMD
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
39 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
4 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL470M04B
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
47 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
4 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL560M0EB
CAP ALUM POLY 56UF 20% 2.5V SMD
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
56 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
2.5 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-
ESRL680M02R
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Surface Mount
-
±20%
-
-
-55°C ~ 105°C
0.043" (1.10mm)
68 µF
2917 (7343 Metric)
0.287" L x 0.169" W (7.30mm x 4.30mm)
Bypass, Decoupling
-
ESRL
Polymer
2 V
35mOhm
1000 Hrs @ 105°C
1.6 A @ 100 kHz
0.287" L x 0.169" W (7.30mm x 4.30mm)
-

About  Aluminum - Polymer Capacitors

Aluminum polymer capacitors are a type of polarized capacitor that utilizes an aluminum electrode material with an aluminum oxide dielectric, similar to standard electrolytic capacitors. However, they differ from traditional electrolytic capacitors by employing a conductive polymer material instead of conventional fluid electrolytes. Compared to standard aluminum electrolytic capacitors, polymer capacitors typically demonstrate enhanced electrical performance. This improvement comes at the expense of higher cost and increased sensitivity to the operating environment. Polymer capacitors are known for their ability to offer advantages such as lower equivalent series resistance (ESR), higher ripple current handling capabilities, and longer operational lifespans in certain applications. Despite these performance benefits, the use of a conductive polymer material in these capacitors contributes to their higher manufacturing costs. Additionally, polymer capacitors are more sensitive to factors such as temperature, voltage, and current, requiring careful consideration of operating conditions to ensure optimal performance and reliability. In summary, aluminum polymer capacitors provide improved electrical characteristics compared to standard aluminum electrolytic capacitors, but their higher cost and greater susceptibility to environmental factors necessitate careful evaluation of their suitability for specific applications.