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AEK-POW-BMSNOTX

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STMicroelectronics

NON-ISOLATED BATTERY MANAGEMENT NODE DEDICATED TO AUXILIAR BATTERY PACKS ABLE TO DIRECTLY CONNECT THE MCU VIA STANDARD SPI PROTOCOL

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AEK-POW-BMSNOTX

Active
STMicroelectronics

NON-ISOLATED BATTERY MANAGEMENT NODE DEDICATED TO AUXILIAR BATTERY PACKS ABLE TO DIRECTLY CONNECT THE MCU VIA STANDARD SPI PROTOCOL

Deep-Dive with AI

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationAEK-POW-BMSNOTXAEK-POW-BMSNOTX Series
--
ContentsBoard(s)Board(s)
EmbeddedYes, MCUYes, MCU
FunctionBattery MonitorBattery Monitor
Primary Attributes [Max]14 Cells14 Cells
Primary Attributes [Min]4 Cells4 Cells
Supplied ContentsBoard(s)Board(s)
TypePower ManagementPower Management
Utilized IC / PartL9963EL9963E

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyBulk 1$ 74.49
NewarkEach 1$ 87.27

AEK-POW-BMSNOTX Series

Non-isolated Battery Management node dedicated to auxiliar battery packs able to directly connect the MCU via standard SPI protocol

PartEmbeddedUtilized IC / PartTypeSupplied ContentsPrimary Attributes [Min]Primary Attributes [Max]FunctionContents
STMicroelectronics
AEK-POW-BMSNOTX
STMicroelectronics
AEK-POW-BMSNOTX
Yes, MCU
L9963E
Power Management
Board(s)
4 Cells
14 Cells
Battery Monitor
Board(s)
STMicroelectronics
AEK-POW-BMSNOTX

Description

General part information

AEK-POW-BMSNOTX Series

The AEK-POW-BMSNOTX is a battery management system (BMS) evaluation board that manages from 4 to 14 battery cells.

The board is based on the L9963E Li-ion battery monitoring and protection chip for high-reliability automotive applications.

The main activity of the L9963E is monitoring the cells and battery node status through stack voltage measurement, cell voltage measurement, temperature measurement, and coulomb counting. Measurement and diagnostic tasks can be executed either on demand or periodically, with a programmable cycle interval. Measurement data are available for an external microcontroller to perform charge balancing and to compute the state of charge (SOC) and the state of health (SOH).