Microchip MIC2250YML-TR, 1-Channel Boost, Buck, Voltage Regulator, 32 V, SOT-23 5-Pin
- N° de stock RS:
- 598-270
- Référence fabricant:
- MIC2250YML-TR
- Fabricant:
- Microchip
Sous-total (1 bobine de 5000 unités)*
4 415,00 €
(TVA exclue)
5 340,00 €
(TVA incluse)
Frais de livraison offerts pour toute commande de plus de 75,00 €
Temporairement en rupture de stock
- Expédition à partir du 03 avril 2026
Besoin de plus? Cliquez sur " Vérifier les dates de livraison " pour plus de détails
Unité | Prix par unité | la bobine* |
|---|---|---|
| 5000 + | 0,883 € | 4 415,00 € |
*Prix donné à titre indicatif
- N° de stock RS:
- 598-270
- Référence fabricant:
- MIC2250YML-TR
- Fabricant:
- Microchip
Spécifications
Documentation technique
Législations et de normes
Détails du produit
Recherchez des produits similaires en sélectionnant un ou plusieurs attributs.
Sélectionner tout | Attribut | Valeur |
|---|---|---|
| Marque | Microchip | |
| Regulator Type | Boost, Buck | |
| Product Type | Voltage Regulator | |
| Number of Outputs | 1 | |
| Output Voltage | 32 V | |
| Line Regulation | 2 % | |
| Load Regulation | 2 % | |
| Package Type | SOT-23 | |
| Quiescent Current | 52μA | |
| Pin Count | 5 | |
| Series | MIC2250 | |
| Standards/Approvals | No | |
| Maximum Input Voltage | 5.5V | |
| Minimum Operating Temperature | -40°C | |
| Maximum Operating Temperature | 125°C | |
| Minimum Input Voltage | 2.5V | |
| Automotive Standard | No | |
| Sélectionner tout | ||
|---|---|---|
Marque Microchip | ||
Regulator Type Boost, Buck | ||
Product Type Voltage Regulator | ||
Number of Outputs 1 | ||
Output Voltage 32 V | ||
Line Regulation 2 % | ||
Load Regulation 2 % | ||
Package Type SOT-23 | ||
Quiescent Current 52μA | ||
Pin Count 5 | ||
Series MIC2250 | ||
Standards/Approvals No | ||
Maximum Input Voltage 5.5V | ||
Minimum Operating Temperature -40°C | ||
Maximum Operating Temperature 125°C | ||
Minimum Input Voltage 2.5V | ||
Automotive Standard No | ||
The Microchip boost switching regulator designed for noise-sensitive, battery-powered applications. It uses a proprietary control method to maintain low ripple and high efficiency across a wide output range. Its architecture includes EMI reduction techniques and supports quiet operation even under varying load conditions. This makes it a solid choice for handheld devices and compact systems that demand clean, reliable power conversion.
Constant peak current control reduces output ripple
EMI reduction circuitry
Stable with small ceramic capacitors
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