AEC-Q200 Panasonic Ytmonterad induktor, 10 μH, Metall kärnmaterial Skärmning, 0645 Inkapsling SRF100 kHz ±20 %
- RS-artikelnummer:
- 811-7178
- Tillv. art.nr:
- ETQP4M100YFN
- Tillverkare / varumärke:
- Panasonic
Antal (1 enhet)*
14,19 kr
(exkl. moms)
17,74 kr
(inkl. moms)
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- Dessutom levereras 15 enhet(er) från den 27 april 2026
- Dessutom levereras 880 enhet(er) från den 04 maj 2026
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Enheter | Per enhet |
|---|---|
| 1 + | 14,19 kr |
*vägledande pris
- RS-artikelnummer:
- 811-7178
- Tillv. art.nr:
- ETQP4M100YFN
- 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 | |
| Induktans | 10μH | |
| Produkttyp | Ytmonterad induktor | |
| Maximal DC-ström | 8.3A | |
| Förpackning/kartong | 0645 | |
| Längd | 6.5mm | |
| Förpackning | Låda | |
| Fordonsstandard | AEC-Q200 | |
| Skärmning | Ja | |
| Maximalt DC-resistans | 59.6mΩ | |
| Minsta arbetsstemperatur | -40°C | |
| Maximal arbetstemperatur | 150°C | |
| Serie | ETQP4M | |
| Induktanstolerans | ±20 % | |
| Standarder/godkännanden | RoHS | |
| Kärnmaterial | Metall | |
| Höjd | 4.5mm | |
| Djup | 6mm | |
| Termineringsutförande | Ytmontering | |
| Maximal självresonansfrekvens | 100kHz | |
| Induktorkonstruktion | Trådlindad | |
| Gjuten | Ja | |
| Välj alla | ||
|---|---|---|
Varumärke Panasonic | ||
Induktans 10μH | ||
Produkttyp Ytmonterad induktor | ||
Maximal DC-ström 8.3A | ||
Förpackning/kartong 0645 | ||
Längd 6.5mm | ||
Förpackning Låda | ||
Fordonsstandard AEC-Q200 | ||
Skärmning Ja | ||
Maximalt DC-resistans 59.6mΩ | ||
Minsta arbetsstemperatur -40°C | ||
Maximal arbetstemperatur 150°C | ||
Serie ETQP4M | ||
Induktanstolerans ±20 % | ||
Standarder/godkännanden RoHS | ||
Kärnmaterial Metall | ||
Höjd 4.5mm | ||
Djup 6mm | ||
Termineringsutförande Ytmontering | ||
Maximal självresonansfrekvens 100kHz | ||
Induktorkonstruktion Trådlindad | ||
Gjuten Ja | ||
- COO (ursprungsland):
- JP
Panasonic ETQP4M Series Surface Mount Inductor, 10 μH Inductance, 8.3A Maximum DC Current - ETQP4M100YFN
This surface mount inductor is designed for high-efficiency electrical applications. With an inductance value of 10 μH and a maximum direct current rating of 8.3A, this component is suitable for a variety of circuits. The compact dimensions of 6.5 x 6 x 4.5mm make it ideal for constrained spaces, while its wire-wound construction ensures reliable performance across operating conditions.
Features & Benefits
• Designed to meet AEC-Q200 automotive standards for safety
• Maximum operating temperature rated at +150 °C for durability
• Shielded construction minimises electromagnetic interference
• Low DC resistance of 59.6 mΩ enhances energy efficiency
• Offers a tolerance of ±20 % for versatile applications
• Capable of operating from -40 °C to +150 °C for extreme environments
Applications
• Used in electronic control units within automotive systems
• Employed in power supply circuits for efficient energy management
• Suitable for DC-DC converters ensuring stable performance
• Incorporated in signal processing to reduce noise
• Utilised in industrial automation for reliable operation
What specifications should be considered when selecting an inductor for automotive applications?
The inductor's compliance with AEC-Q200 standards is crucial for automotive use as it assures robustness. Additionally, evaluating its maximum DC current and resistance helps ensure that it can withstand the demands of the application without overheating or losing performance.
How does the temperature range affect the usability in different environments?
A wide temperature range of -40 °C to +150 °C means it can function in various climates, maintaining reliability in both hot and cold conditions. This versatility supports deployment in outdoor and industrial settings where thermal conditions fluctuate.
What impact does the low DC resistance have on circuit efficiency?
A low DC resistance of 59.6 mΩ reduces power losses, thereby improving overall circuit efficiency. This characteristic is essential for applications where energy conservation is a priority, particularly in battery-operated devices.
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