3000 Ahora puede reservar el stock
| Cantidad | Precio (sin IVA) |
|---|---|
| 1+ | 1,180 € |
| 25+ | 0,980 € |
| 100+ | 0,884 € |
| 3000+ | 0,869 € |
Información del producto
Resumen del producto
The MCP1662T-E/OT is a high-voltage step-up LED Driver with UVLO and open load protection. The MCP1662 device is a compact, space-efficient, fixed-frequency, non-synchronous step-up converter optimized to drive LED strings with constant current from a two- or three-cell alkaline or lithium Energizer® or NiMH/NiCd or one-cell Lithium-Ion or Li-polymer batteries. The device integrates a 36V, 800mΩ low-side switch, which is protected by the 1.3A cycle-by-cycle inductor peak current limit operation. All compensation and protection circuitry is integrated to minimize the number of external components. The internal feedback (VFB) voltage is set to 300mV for low power dissipation when sensing and regulating the LED current. A single resistor sets the LED current.
- 36V, 800mΩ Integrated switch
- Up to 92% efficiency
- Drive LED strings in constant current
- 1.3A Peak input current limit
- VFB = 300mV Feedback voltage reference
- Under-voltage lockout (UVLO)
- Sleep mode with 20nA typical quiescent current
- Cycle-by-cycle current limiting
- Internal compensation
- Open load protection (OLP) in the event of feedback pin shorted to GND
- Over-temperature protection
Advertencias
ESD sensitive device, take proper precaution while handling the device. Market demand for this product has caused an extension in leadtimes. Delivery dates may fluctuate. Product exempt from discounts.
Especificaciones técnicas
Boost
2.4V
32V
500kHz
SOT-23
-40°C
-
MSL 1 - Ilimitado
-
SOT-23
500kHz
-
5.5V
200mA
Montaje en superficie
5Pins
125°C
-
No SVHC (25-Jun-2025)
Boost
1Outputs
Documentos técnicos (2)
Productos asociados
3 productos encontrados
Legislación y medioambiente
País donde se realizó la mayor parte del proceso de producciónPaís de origen:United States
País donde se realizó la mayor parte del proceso de producción
RoHS
RoHS
Certificado de conformidad del producto