Категории
  • Tantalum - Polymer Capacitors(22)
Результат:(22)

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    PTMIV336DT100

    PTANT 20% 35V 33UF D LSR 100

    Cal-Chip Electronics, Inc.

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    PTMOJ337DT025

    PTANT 20% OJV 330UF D LSR 25

    Cal-Chip Electronics, Inc.

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    PTMIC107YT050

    PTANT 20% 16V 100UF Y LSR 50

    Cal-Chip Electronics, Inc.

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    PTMID476DT055

    PTANT 20% 20V 47UF D LSR 55

    Cal-Chip Electronics, Inc.

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    PTMIC476YT070

    PTANT 20% 16V 47UF Y LSR 70

    Cal-Chip Electronics, Inc.

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    PTMIC337ET050

    PTANT 20% 16V 330UF E LSR 50

    Cal-Chip Electronics, Inc.

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    PTMIV476ET055

    PTANT 20% 35V 47UF E LSR 55

    Cal-Chip Electronics, Inc.

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    PTMIC157YT050

    PTANT 20% 16V 150UF Y LSR 50

    Cal-Chip Electronics, Inc.

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    PTMOJ227BT070

    PTANT 20% 6.3V 220UF B LSR 70

    Cal-Chip Electronics, Inc.

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    PTMIE226BT100

    PTANT 20% 25V 22UF B LSR 100

    Cal-Chip Electronics, Inc.

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    PTMIE156BT100

    PTANT 20% 25V 15UF B LSR 100

    Cal-Chip Electronics, Inc.

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    PTMOJ686BT070

    PTANT 20% 6.3V 68UF B LSR 70

    Cal-Chip Electronics, Inc.

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    PTMOJ157BT045

    PTANT 20% 6.3V 150UF B LSR 45

    Cal-Chip Electronics, Inc.

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    PTMOJ107AT100

    PTANT 20% 6.3V 100UF A LSR 100

    Cal-Chip Electronics, Inc.

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    PTMOJ157BT070

    PTANT 20% 6.3V 150UF B LSR 70

    Cal-Chip Electronics, Inc.

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    PTMOJ476BT070

    PTANT 20% 6.3V 150UF B LSR 70

    Cal-Chip Electronics, Inc.

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    PTMIV106BT200

    PTANT 20% 35V 10UF B LSR 200

    Cal-Chip Electronics, Inc.

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    PTMOJ107BT070

    PTANT 20% 6.3V 100UF B LSR 70

    Cal-Chip Electronics, Inc.

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    PTMOJ476AT200

    PTANT 20% 6.3V 47UF A LSR 200

    Cal-Chip Electronics, Inc.

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    PTMIE106AT150

    PTANT 20% 25V 10UF A LSR 150

    Cal-Chip Electronics, Inc.

  • Total 22
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    Tantalum polymer capacitors are a polarized capacitor type distinguished by their use of a conductive polymer anode material, instead of the manganese dioxide traditionally used for other dry tantalum devices. While their cost tends to be higher, they also generally exhibit better electrical performance compared to traditional Ta-MnO2 device construction, along with a more benign failure mode that simplifies application considerations.
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