Zenode.ai Logo

BQ79654-Q1 Series

Automotive 14-S precision battery monitors, balancer, current sensor with ASIL-D compliance

Manufacturer: Texas Instruments
Link to Manufacturer Page: https://www.ti.com/

Catalog

Automotive 14-S precision battery monitors, balancer, current sensor with ASIL-D compliance

PartPackage / CaseGradeFunctionMounting TypeQualificationNumber of CellsFault ProtectionSupplier Device PackageOperating Temperature [Max]Operating Temperature [Min]Interface
Texas Instruments
BQ79654PAPRQ1
64-PowerTQFP
Automotive
Battery Monitor
Surface Mount
AEC-Q100
1
Over Temperature
64-HTQFP (10x10)
125 °C
-40 °C
SPI, UART

Key Features

Qualified for automotive applicationsAEC-Q100 Qualified with the following results:Device temperature grade 1: –40°C to +125°C ambient operating temperature rangeDevice HBM ESD classification level 2Device CDM ESD classification level C4BFunctional Safety-CompliantDeveloped for functional safety applicationsDocumentation to aid ISO 26262 system designSystematic capability up to ASIL DHardware capability up to ASIL D+/- 1.5mV ADC accuracyPin-package and software compatible device family:Stackable monitor 16S (BQ79616-Q1, BQ79616H-Q1, BQ79656-Q1) , 14S (BQ79614-Q1, BQ79654-Q1), and 12S (BQ79612-Q1, BQ79652-Q1)Standalone monitor 48 V system (BQ75614-Q1)Supports current-sense measurementBuilt-in redundancy path for voltage and temperature and current diagnosticsHighly accurate cell voltage measurements within 128 µs for all cell channelsIntegrated post-ADC configurable digital low-pass filtersSupports bus bar connection and measurementBuilt-in host-controlled hardware reset to emulate POR-like device resetSupports internal cell balancingBalancing current at 240 mABuilt-in balancing thermal management with automatic pause and resume controlIsolated differential daisy chain communication with optional ring architectureEmbedded fault signal and heartbeat through communication line5 V LDO output to power external digital isolatorUART/SPI host interface/communication bridge device BQ79600-Q1Built-in SPI masterQualified for automotive applicationsAEC-Q100 Qualified with the following results:Device temperature grade 1: –40°C to +125°C ambient operating temperature rangeDevice HBM ESD classification level 2Device CDM ESD classification level C4BFunctional Safety-CompliantDeveloped for functional safety applicationsDocumentation to aid ISO 26262 system designSystematic capability up to ASIL DHardware capability up to ASIL D+/- 1.5mV ADC accuracyPin-package and software compatible device family:Stackable monitor 16S (BQ79616-Q1, BQ79616H-Q1, BQ79656-Q1) , 14S (BQ79614-Q1, BQ79654-Q1), and 12S (BQ79612-Q1, BQ79652-Q1)Standalone monitor 48 V system (BQ75614-Q1)Supports current-sense measurementBuilt-in redundancy path for voltage and temperature and current diagnosticsHighly accurate cell voltage measurements within 128 µs for all cell channelsIntegrated post-ADC configurable digital low-pass filtersSupports bus bar connection and measurementBuilt-in host-controlled hardware reset to emulate POR-like device resetSupports internal cell balancingBalancing current at 240 mABuilt-in balancing thermal management with automatic pause and resume controlIsolated differential daisy chain communication with optional ring architectureEmbedded fault signal and heartbeat through communication line5 V LDO output to power external digital isolatorUART/SPI host interface/communication bridge device BQ79600-Q1Built-in SPI master

Description

AI
The BQ7965x-Q1 family of devices provides high-accuracy cell voltage measurements for a minimum of 6S to a maximum of 12S (BQ79652-Q1), 14S (BQ79654-Q1), or 16S (BQ79656-Q1) battery modules in less than 200 µs while these devices also support shunt-resistor current sense measurement. The integrated front-end filters enable the system to implement with simple, low voltage raring, differential RC filters on the cell input channels. The integrated, post-ADC, low-pass filters enable filtered, DC-like, voltage measurements. This family of devices also supports integrated current sensing capabilities with option to synchronize with cell voltage measurements for better state of charge (SOC) calculation. The device supports autonomous internal cell balancing with temperature monitoring to auto-pause and resume balancing to avoid an overtemperature condition. The inclusion of the isolated, bidirectional, daisy chain ports supports both capacitor- and transformer-based isolation, allowing the use of the most effective components for centralized or distribution architectures commonly found in the xEV powertrain system. This device also includes eight GPIOs or auxiliary inputs that can be used for external thermistor measurements. Host communication to the BQ7965x-Q1 family of devices can be connected via the device’s dedicated UART interface or through a communication bridge device, BQ79600. Additionally, an isolated, differential daisy-chain communication interface allows the host to communicate with the entire battery stack over a single interface. in the event of a communication line break, the daisy-chain communication interface is configurable to a ring architecture that allows the host to talk to devices at either end of the stack. All references to the BQ79616-Q1 device also apply to the BQ79616H-Q1 device. The BQ7965x-Q1 family of devices provides high-accuracy cell voltage measurements for a minimum of 6S to a maximum of 12S (BQ79652-Q1), 14S (BQ79654-Q1), or 16S (BQ79656-Q1) battery modules in less than 200 µs while these devices also support shunt-resistor current sense measurement. The integrated front-end filters enable the system to implement with simple, low voltage raring, differential RC filters on the cell input channels. The integrated, post-ADC, low-pass filters enable filtered, DC-like, voltage measurements. This family of devices also supports integrated current sensing capabilities with option to synchronize with cell voltage measurements for better state of charge (SOC) calculation. The device supports autonomous internal cell balancing with temperature monitoring to auto-pause and resume balancing to avoid an overtemperature condition. The inclusion of the isolated, bidirectional, daisy chain ports supports both capacitor- and transformer-based isolation, allowing the use of the most effective components for centralized or distribution architectures commonly found in the xEV powertrain system. This device also includes eight GPIOs or auxiliary inputs that can be used for external thermistor measurements. Host communication to the BQ7965x-Q1 family of devices can be connected via the device’s dedicated UART interface or through a communication bridge device, BQ79600. Additionally, an isolated, differential daisy-chain communication interface allows the host to communicate with the entire battery stack over a single interface. in the event of a communication line break, the daisy-chain communication interface is configurable to a ring architecture that allows the host to talk to devices at either end of the stack. All references to the BQ79616-Q1 device also apply to the BQ79616H-Q1 device.