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AEK-POW-BMS63EN - AEK-POW-BMS63EN

AEK-POW-BMS63EN

Active
STMicroelectronics

BMS EVAL BRD, BATT MONITORING/PROTECTING ROHS COMPLIANT: YES

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AEK-POW-BMS63EN - AEK-POW-BMS63EN

AEK-POW-BMS63EN

Active
STMicroelectronics

BMS EVAL BRD, BATT MONITORING/PROTECTING ROHS COMPLIANT: YES

Deep-Dive with AI

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationAEK-POW-BMS63ENAEK-POW-BMS63EN Series
--
ContentsBoard(s)Board(s)
EmbeddedYes, MCUYes, MCU
FunctionBattery MonitorBattery Monitor
Supplied ContentsBoard(s)Board(s)
TypePower ManagementPower Management
Utilized IC / PartFalseFalse

Pricing

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

DistributorPackageQuantity$
DigikeyBulk 1$ 41.25
NewarkEach 1$ 43.48

AEK-POW-BMS63EN Series

Battery management system module based on L9963E

PartFunctionUtilized IC / PartContentsEmbeddedSupplied ContentsType
STMicroelectronics
AEK-POW-BMS63EN
Battery Monitor
Board(s)
Yes, MCU
Board(s)
Power Management
STMicroelectronics
AEK-POW-BMS63EN
STMicroelectronics
AEK-POW-BMS63EN

Description

General part information

AEK-POW-BMS63EN Series

The AEK-POW-BMS63EN is a battery management system (BMS) evaluation board that can handle from 1 to 31 Li-ion battery nodes. Each battery node manages from 4 to 14 battery cells, for a voltage range between 48 V and 800 V.

The board is based on the L9963E, which is designed for operation in both hybrid (HE) and full electric (BE) vehicles using lithium battery packs, but its use can be extended to other Transportation and Industrial applications.

The main activity of the L9963E is monitoring 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).