![KEMET T541X337M010AH6530 Tantalum Polymer Capacitor, 330 µF, ± 20%, 10 V, X, 5000 µohm, 2917 [7343 Metric]](https://www.element14.cn/productimages/standard/en_GB/2338941-40.jpg)
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| Packaging Type | Quantity | Unit Price: | Total |
|---|---|---|---|
| Cut Tape | 1 | CNY184.590 | CNY184.59 |
| Quantity | Price (inc GST) |
|---|---|
| 1+ | CNY184.590 (CNY208.5867) |
| 10+ | CNY148.020 (CNY167.2626) |
| 50+ | CNY133.040 (CNY150.3352) |
| 100+ | CNY126.030 (CNY142.4139) |
| 250+ | CNY115.500 (CNY130.515) |
| 500+ | CNY110.620 (CNY125.0006) |
Product Information
Product Overview
The KO-CAP T541 Series solid electrolytic organic SMD Tantalum Capacitor with a conductive polymer cathode capable of delivering very low ESR and improved capacitance retention at high frequencies. KO-CAP combines the low ESR of multilayer ceramic, the high capacitance of aluminium electrolytic and the volumetric efficiency of tantalum into a single surface mount package. Unlike liquid electrolyte-based capacitors, KO-CAP has a very long operational life and high ripple current capabilities. This COTS polymer electrolytic offers the same performance advantages as other KO-CAP series with screening options associated with high reliability applications. This series is the first polymer electrolytic capacitor available with failure rate options as defined by KEMET's KO-CAP reliability assessment method. This method utilizes accelerated conditions applied to board-mounted samples to assess long term device reliability.
- Approved for DLA Drawing 04051/04052
- B, C and D failure rates available
- 100% accelerated steady state aging
- High frequency capacitance retention
- Very low ESR values down to 5mΩ
- Surge current testing options
- Volumetrically efficient
- EIA standard case sizes
Technical Specifications
330µF
10V
5000µohm
7.3mm
4mm
-55°C
T541 KO-CAP Series
Lead (04-Feb-2026)
± 20%
X
2917 [7343 Metric]
4.3mm
7.348A
125°C
-
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Country in which last significant manufacturing process was carried outCountry of Origin:United States
Country in which last significant manufacturing process was carried out
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