Power Integrations, AC-DC Converter 120 (MDCM) mA, 170 (CCM) mA, Minimum of 50 V 7-Pin, SOIC LNK3204D-TL
- N° de stock RS:
- 146-4594
- Référence fabricant:
- LNK3204D-TL
- Fabricant:
- Power Integrations
Offre groupée disponible
Prix L'unité (en paquet de 25)**
0,76 €
(TVA exclue)
0,92 €
(TVA incluse)
275 En stock pour livraison sous 4 jour(s)*
* Les dates de livraison peuvent varier selon la quantité choisie et l'adresse de livraison.
FRAIS de livraison offerts pour toute commande de plus de 75,00 €
Unité | Prix par unité | le paquet** |
---|---|---|
25 - 75 | 0,76 € | 19,00 € |
100 - 225 | 0,697 € | 17,425 € |
250 - 475 | 0,642 € | 16,05 € |
500 + | 0,598 € | 14,95 € |
**prix conseillé
- N° de stock RS:
- 146-4594
- Référence fabricant:
- LNK3204D-TL
- Fabricant:
- Power Integrations
Supports buck, buck-boost and flyback topologiesLow component-count buck converter. Selectable device current limitHigh current limit extends peak power and maximizes continuous output power. Low current limit allows the use of lowest-cost surface mount buck chokes 66 kHz operation with accurate current limit. Allows the use of low-cost off-the-shelf inductors. Reduces size and cost of magnetics and output capacitor.
Low component-count buck converter
Excellent load and line regulation
Selectable device current limit
66 kHz operation with accurate current limit
Allows the use of low-cost off-the-shelf inductors
Reduces size and cost of magnetics and output capacitor
Frequency jittering reduces EMI filter complexity
Pin-out simplifies PCB heat sinking
Auto-restart for short-circuit and open loop faults
Limits power delivery to 3% of maximum during a fault
Excellent load and line regulation
Selectable device current limit
66 kHz operation with accurate current limit
Allows the use of low-cost off-the-shelf inductors
Reduces size and cost of magnetics and output capacitor
Frequency jittering reduces EMI filter complexity
Pin-out simplifies PCB heat sinking
Auto-restart for short-circuit and open loop faults
Limits power delivery to 3% of maximum during a fault