Electric Double Layer Capacitors (EDLC), Supercapacitors11 Products
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| Image | Part Number | Manufacturer | Description | Availability | Actions | |
|---|---|---|---|---|---|---|
![]() PDF | SKELCAP SCA1800 | Skeleton Technologies GmbH | CAP 1800F 2.85V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELCAP SCA0750 | Skeleton Technologies GmbH | CAP 750F 2.85V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELMOD 51V | Skeleton Technologies GmbH | CAPACITOR 177F 51V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELCAP SCF3200 | Skeleton Technologies GmbH | CAP 3200F 2.85V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELCAP SCA0300 | Skeleton Technologies GmbH | CAP 300F 2.85V THROUGH HOLE | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELMOD 102V | Skeleton Technologies GmbH | CAPACITOR 88F 102V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELSTART 24V | Skeleton Technologies GmbH | CAPACITOR 340F 24V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELMOD 170V | Skeleton Technologies GmbH | CAPACITOR 53F 170V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELCAP SCA1200 | Skeleton Technologies GmbH | CAP 1200F 2.85V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELCAP SCA0500 | Skeleton Technologies GmbH | CAP 500F 2.85V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote | |
![]() PDF | SKELSTART 12V | Skeleton Technologies GmbH | CAP 1280F 12V CHASSIS MOUNT | In Stock | MOQ: 1 Hover to quote |
Electric double layer capacitors and supercapacitors are a class of electrolytic (polarized) capacitors that offer exceptionally high capacitance values in relation to their physical size and low voltage ratings; individual devices have ratings of a few volts at most, though products incorporating numerous series-connected devices to achieve higher voltage ratings are available. Exhibiting losses that are generally high by standards of other electrolytic capacitors yet low in comparison to electrochemical cells, they are often used as alternatives to the latter in applications requiring high cycle counts or power density.












