KYOCERA AVX 220μF Electrolytic Tantalum Capacitor 6.3V dc, TPS Series
- RS Stock No.:
- 135-9978
- Mfr. Part No.:
- TPSD227K006R0050
- Brand:
- KYOCERA AVX
Currently unavailable
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- RS Stock No.:
- 135-9978
- Mfr. Part No.:
- TPSD227K006R0050
- Brand:
- KYOCERA AVX
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | KYOCERA AVX | |
Technology | Electrolytic | |
Capacitance | 220µF | |
Voltage | 6.3V dc | |
Mounting Type | Surface Mount | |
Package/Case | 2917 | |
Equivalent Series Resistance | 50mΩ | |
Lead Pitch | 4.4mm | |
Length | 7.3mm | |
Height | 2.9mm | |
Dimensions | 7.3 x 4.3 x 2.9mm | |
Series | TPS | |
Electrolyte Type | Solid | |
Maximum Operating Temperature | +125°C | |
Leakage Current | 13.9 μA | |
Polarised | Polar | |
Terminal Type | SMT | |
Minimum Operating Temperature | -55°C | |
Dissipation Factor | 8% | |
Dielectric Material Family | Tantalum | |
Surge Voltage | 5 V dc @ +125 °C, 8 V dc @ +85 °C | |
Select all | ||
---|---|---|
Brand KYOCERA AVX | ||
Technology Electrolytic | ||
Capacitance 220µF | ||
Voltage 6.3V dc | ||
Mounting Type Surface Mount | ||
Package/Case 2917 | ||
Equivalent Series Resistance 50mΩ | ||
Lead Pitch 4.4mm | ||
Length 7.3mm | ||
Height 2.9mm | ||
Dimensions 7.3 x 4.3 x 2.9mm | ||
Series TPS | ||
Electrolyte Type Solid | ||
Maximum Operating Temperature +125°C | ||
Leakage Current 13.9 μA | ||
Polarised Polar | ||
Terminal Type SMT | ||
Minimum Operating Temperature -55°C | ||
Dissipation Factor 8% | ||
Dielectric Material Family Tantalum | ||
Surge Voltage 5 V dc @ +125 °C, 8 V dc @ +85 °C | ||
TPS Series 2.5 to 6.3Vdc
The TPS series of low ESR SMD capacitors from AVX are designed for use mainly in power supply applications. The TPS series of capacitor are available in 14 different case sizes.
Low ESR (equivalent series resistance)
High ripple current capability
Low power and heat dissipation
High ripple current capability
Low power and heat dissipation