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T520V227M006ATE015
TANTALUM POLYMER CAPACITORS
⚠️ Reference pricing provided. In case of supply shortages, we will connect you with our trusted procurement partners to ensure your project's continuity.
- Manufacturer: KEMET / PARTNER STOCK
- Product type: Tantalum Polymer Capacitors
- SVHC: No SVHC (21-Jan-2025)
- Product Range: T520 KO-CAP Series
| Delivery and price | |
|---|---|
| Units per pack | 3000 |
| Price | 1.18 € |
| Current stock | 1000+ |
| Lead time | 30 days |
## **T520V227M006ATE015** T520, Tantalum, Polymer Tantalum, Commercial Grade, 220 uF, 20%, 6.3 VDC, SMD, Polymer, Molded, Low Profile/ESR, NonCombustible, 15 mOhms, 1.9 mm, 2817 / 7343 **==> picture [162 x 71] intentionally omitted <==** **----- Start of picture text -----**<br> [1 ———— Glue pad TI 7<br>shape/design at F<br>KEMET's option a<br>|<br>L<br>Click here for the 3D model.<br>**----- End of picture text -----**<br> |**General Information**|| |---|---| |Series|T520| |Dielectric|Polymer Tantalum| |Style|SMD Chip| |Description|SMD, Polymer, Molded, Low<br>Profile/ESR, NonCombustible| |Features|Low ESR| |RoHS|Yes| |Termination|Tin| |Typical Component Weight|274.3 mg| |Shelf Life|52 Weeks| |MSL|3| |**Dimensions**|| |---|---| |L|7.3mm +/-0.3mm| |W|4.3mm +/-0.3mm| |H|1.8mm +/-0.1mm| |T|0.13mm REF| |S|1.3mm +/-0.3mm| |F|2.4mm +/-0.1mm| |A|3.8mm MIN| |X|0.05mm REF| |**Packaging Specifications**|| |Packaging|T&R, 178mm| |Packaging Quantity|1000| |**Specifications**|| |---|---| |Capacitance|220 uF| |Tolerance|20%| |Voltage DC|6.3 VDC (105C)| |Temperature Range|-55/+105°C| |Rated Temperature|105°C| |Life|2000 Hrs (105C)| |Humidity|60C, 90% RH, 500 Hours, No| ||Load| |Dissipation Factor|10% 120Hz 25C| |Failure Rate|N/A| |ESR|15 mOhms (100kHz 25C)| |Ripple Current|3500 mA (rms, 100kHz 45C),| ||3500 mA (rms, 100kHz 45C),<br>2450 mA (rms, 85C), 875 mA| ||(rms, 105C)| |Leakage Current|138.6 uA (5min 25°C)| Statements of suitability for certain applications are based on our knowledge of typical operating conditions for such applications, but are not intended to constitute - and we specifically disclaim - any warranty concerning suitability for a specific customer application or use. This Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by us with reference to the use of our products is given gratis, and we assume no obligation or liability for the advice given or results obtained. ©︎ 2006 - 2026 YAGEO Generated 06/03/2026 **T520V227M006ATE015** T520, Tantalum, Polymer Tantalum, Commercial Grade, 220 uF, 20%, 6.3 VDC, SMD, Polymer, Molded, Low Profile/ESR, NonCombustible, 15 mOhms, 1.9 mm, 2817 / 7343 ## For the complete simulation environment please visit . ©︎ 2006 - 2026 YAGEO Generated 06/03/2026 **T520V227M006ATE015** T520, Tantalum, Polymer Tantalum, Commercial Grade, 220 uF, 20%, 6.3 VDC, SMD, Polymer, Molded, Low Profile/ESR, NonCombustible, 15 mOhms, 1.9 mm, 2817 / 7343 ©︎ 2006 - 2026 YAGEO Generated 06/03/2026 ## **T520V227M006ATE015** T520, Tantalum, Polymer Tantalum, Commercial Grade, 220 uF, 20%, 6.3 VDC, SMD, Polymer, Molded, Low Profile/ESR, NonCombustible, 15 mOhms, 1.9 mm, 2817 / 7343 ## This is not a specification! The responses shown represent the typical response for each part type. Specific responses may vary, depending on manufacturing variation affects of all parameters involved, including the specified tolerances applied to capacitance and unspecified variations of ESR, ESL, and leakage resistance. The responses shown do not represent a specified or implied maximum capability of the device for all applications. - The ESR used for ripple “Ripple Current/Voltage vs. Frequency” plots is the ESR at ambient temperature. - The ESR in the “Temperature Rise vs. Ripple Current” plots is adjusted to each incremental temperature rise before the power and ripple current is calculated. - The effects shown herein are based on measured data from a multiple part sample of the parts in question. - Ripple capability of this device will be factored by thermal resistance (Rth) created by circuit traces (addi affects of all parameters involved, including the specified tolerances applied to capacitance and unspecified variations of ESR, ESL, and leakage resistance. - The peak voltages generated in the “Temperature Rise vs. Combined Ripple Currents” plot are calculated for each frequency and are not combined with voltages generated at any other harmonics. - Please consult with the catalog or field applications engineer for maximum capability of the device in specific applications. All product information and data (collectively, the “Information”) are subject to change without notice. KEMET K-SIM is designed to simulate behavior of components with respect to frequency, ambient temperature, and DC bias levels. The responses shown represent the typical response for each part type. Specific responses may vary, depending on manufacturing variation effects of all parameters involved, including the specified tolerances applied to capacitance and unspecified variations of ESR, ESL, and leakage resistance. All Information given herein is believed to be accurate and reliable, but is presented without guarantee, warranty, or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on our knowledge of typical operating conditions for such applications, but are not intended to constitute – and we specifically disclaim – any warranty concerning suitability for a specific customer application or use. This Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by us with reference to the use of our products is given gratis, and we assume no obligation or liability for the advice given or results obtained. If you have any questions please contact K-SIM. ©︎ 2006 - 2026 YAGEO Generated 06/03/2026
Updated at June 9, 2026
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