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Antall | |
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1+ | kr 96,680 |
10+ | kr 65,070 |
73+ | kr 46,670 |
146+ | kr 44,030 |
292+ | kr 41,270 |
511+ | kr 41,150 |
Produktinformasjon
Produktoversikt
LTC4162 is a advanced monolithic synchronous step-down switching battery charger and PowerPath™ manager that seamlessly manages power distribution between input sources such as wall adapters, backplanes, solar panels, etc., and a rechargeable lithium iron phosphate battery. A high resolution measurement system provides extensive telemetry information for circuit voltages, currents, battery resistance and temperature which can all be read back over the I²C port. The I²C port can also be used to configure many charging parameters including charging voltages and currents, termination algorithms and numerous system status alerts. The power path topology decouples the output voltage from the battery allowing a portable product to start up instantly under very low battery voltage conditions. It is used in application like medical instruments, USB-C power delivery, industrial handhelds, ruggedized notebooks, tablet computers etc.
- LiFePO4 battery charger with termination
- Wide charging input voltage range is 4.5V to 35V
- High efficiency synchronous operation, low loss PowerPath™
- Charges 1-9 lithium iron phosphate cells
- Input undervoltage charge current limit loop
- Input MPPT for solar panel inputs
- Input current limit prioritizes system load output
- Instant-on operation with discharged or missing battery
- JEITA temperature controlled charging
- Operating temperature is -40°C to 125°C, package style is 28-lead plastic QFN
Merknader
ADI products are only authorized (and sold) for use by the customer and are not to be resold or otherwise passed on to any third party
Tekniske spesifikasjoner
LiFePO4
35V
QFN-EP
9Cells
125°C
-
No SVHC (21-Jan-2025)
35V
3.2A
28Pins
-40°C
Surface Mount
MSL 1 - Unlimited
Teknisk dokumentasjon (1)
Lovgivning og miljø
Land der forrige produksjonsprosess av betydning ble fortattOpprinnelsesland:Philippines
Land der forrige produksjonsprosess av betydning ble fortatt
RoHS
RoHS
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