Panasonic 120 μF Polymerkondensator 10 V dc, Ytmontering
- RS-artikelnummer:
- 795-5162
- Tillv. art.nr:
- 10SVPC120M
- Tillverkare / varumärke:
- Panasonic
Antal (1 förpackning med 5 enheter)*
45,31 kr
(exkl. moms)
56,64 kr
(inkl. moms)
GRATIS leverans för online beställningar över 500,00 kr
I lager
- Dessutom levereras 1 415 enhet(er) från den 30 mars 2026
- Dessutom levereras 3 930 enhet(er) från den 06 april 2026
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Enheter | Per enhet | Per förpackning* |
|---|---|---|
| 5 + | 9,062 kr | 45,31 kr |
*vägledande pris
- RS-artikelnummer:
- 795-5162
- Tillv. art.nr:
- 10SVPC120M
- Tillverkare / varumärke:
- Panasonic
Specifikationer
Datablad
Lagstiftning och ursprungsland
Produktdetaljer
Hitta liknande produkter genom att välja ett eller flera attribut.
Välj alla | Attribut | Värde |
|---|---|---|
| Varumärke | Panasonic | |
| Produkttyp | Polymerkondensator | |
| Teknologi | Polymer | |
| Kapacitans | 120μF | |
| Typ av fäste | Ytmontering | |
| Förpackning/kartong | 1000 | |
| Polaritet | Polära | |
| Ledardelning | 2.1mm | |
| Tolerans | ±20 % | |
| Maximal arbetstemperatur | 105°C | |
| Mått | 6.3 (Dia) x 5.9 mm | |
| Djup | 6.6mm | |
| Längd | 5.9mm | |
| Serie | SVPC | |
| Höjd | 5.9mm | |
| Elektrolyttyp | Fast | |
| Minsta arbetsstemperatur | -55°C | |
| Rippelström | 2.32A | |
| Läckström | 300μA | |
| Livslängd | 2000 h | |
| Fordonsstandard | Nej | |
| Förlustfaktor | 12% | |
| Välj alla | ||
|---|---|---|
Varumärke Panasonic | ||
Produkttyp Polymerkondensator | ||
Teknologi Polymer | ||
Kapacitans 120μF | ||
Typ av fäste Ytmontering | ||
Förpackning/kartong 1000 | ||
Polaritet Polära | ||
Ledardelning 2.1mm | ||
Tolerans ±20 % | ||
Maximal arbetstemperatur 105°C | ||
Mått 6.3 (Dia) x 5.9 mm | ||
Djup 6.6mm | ||
Längd 5.9mm | ||
Serie SVPC | ||
Höjd 5.9mm | ||
Elektrolyttyp Fast | ||
Minsta arbetsstemperatur -55°C | ||
Rippelström 2.32A | ||
Läckström 300μA | ||
Livslängd 2000 h | ||
Fordonsstandard Nej | ||
Förlustfaktor 12% | ||
- COO (ursprungsland):
- JP
Panasonic SVPC Series Polymer Capacitor, 120μF Capacitance, 10V DC Voltage - 10SVPC120M
This polymer capacitor is designed for surface mounting, providing robust performance in electronic applications. With a capacitance of 120 μF and an operating voltage of 10V DC, it maintains stability across a range of conditions. Its compact dimensions of 6.3mm in diameter and 5.9mm in height ensure it fits snugly onto circuit boards, making it a versatile choice for various devices.
Features & Benefits
• Solid electrolyte technology enhances reliability and performance
• Low equivalent series resistance of 27 mΩ improves efficiency
• Wide operational temperature range from -55°C to +105°C
• Tolerance of ±20% ensures reliable performance under varying conditions
• Minimal leakage current of 300 μA supports long-term operation
• Designed for surface mounting to optimise space on PCBs
Applications
• Used in automation systems for efficient electronic control
• Ideal for circuit design in consumer electronics
• Suitable for power supply systems requiring stable capacitance
• Utilised in mechanical devices needing compact, reliable components
What benefits does solid electrolyte technology provide in practical applications?
The solid electrolyte ensures increased reliability and reduces the risk of leakage, making it suitable for long-term use in various electronic circuits.
How does the low equivalent series resistance impact performance?
A low equivalent series resistance allows for improved energy efficiency, with minimal power loss during operation, enhancing the overall performance of electronic devices.
What are the implications of the wide operational temperature range for usage?
The wide temperature range enables this component to function effectively in environments that experience extreme temperatures, ensuring consistent performance across various applications.
What specific challenges can this component help address in automation systems?
Its stability under varying conditions and low leakage current make it ideal for maintaining consistent functionality in automation systems, reducing the risks of component failure.
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