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BQ78350-R1A データシート(PDF) 18 Page - Texas Instruments

部品番号 BQ78350-R1A
部品情報  BQ78350-R1A CEDV Li-Ion Gas Gauge and Battery Management Controller Companion to the BQ769x0 Battery Monitoring AFE
PDF  32 Pages
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メーカー  TI2 [Texas Instruments]
ホームページ  https://www.ti.com
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BQ78350-R1A データシート(HTML) 18 Page - Texas Instruments

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BQ78350-R1A
SLUSE05 – DECEMBER 2019
www.ti.com
Product Folder Links: BQ78350-R1A
Submit Documentation Feedback
Copyright © 2019, Texas Instruments Incorporated
9.2.3.1.4
Temperature
By default, the 78350 uses an external negative temperature coefficient (NTC) thermistor connected to the
BQ76920 as the source for the Temperature() data. The measurement uses a polynomial expression to
transform the BQ76920 ADC measurement into 0.1°C resolution temperature measurement. The default
polynomial coefficients are calculated using the Semitec 103AT, although other resistances and manufacturers
can be used.
To calculate the External Temp Model coefficients, use the BQ78350-R1 Family Thermistor Coefficient
Calculator shown in the application report, Using the BQ78350-R1 (SLUA924).
For improved accuracy, offset calibration is available for this value and can be managed through the BQSTUDIO
tool. The procedure for calibration is described in the BQ78350-R1A Technical Reference Manual (SLUUBD3) in
the Calibration chapter.
9.2.3.2 Gas Gauging
The default battery chemistry (Chem ID) is 1210, which is a Li-CoO2 type chemistry. The Chem ID should be
updated using BQSTUDIO to select the specific battery used in the application. See the application report, Using
the BQ78350-R1 (SLUA924) for details on selecting the Chem ID.
The default maximum capacity of the battery is 4400 mAh and this should be changed based on the cell and
battery configuration chosen.
The CEDV gas gauging algorithm requires seven coefficients to enable accurate gas gauging. The default values
are generic for Li-CoO2 chemistry, but for accurate gas gauging these coefficients should be re-calculated. The
procedure
to
gather
the
required
data
and
generate
the
coefficients
can
be
found
at
http://www.ti.com/tool/GPCCEDV.
More details on the required steps to set up the BQ78350-R1A device for gas gauging can be found in the
application report, Using the BQ78350-R1 (SLUA924).
9.2.3.3 Charging
The charging algorithm in the BQ78350-R1A device is configured to support Constant Voltage/Constant Current
(CC/CV) charging of a nominal 18-V, 4400-mAh battery.
9.2.3.3.1
Fast Charging Voltage
The charging voltage is configured (Fast Charging: Voltage) based on an individual cell basis (for example, 4200
mV), but the ChargingVoltage() is reported as the required battery voltage (for example, 4200 mV × 5 =
21000 mV).
9.2.3.3.2
Fast Charging Current
The fast charging current is configured to 2000 mA (Fast Charging: Current) by default, which is conservative for
the majority of 4400-mAh battery applications. This should be configured based on the battery configuration, cell
manufacturer's data sheet, and system power design requirements.
9.2.3.3.3
Other Charging Modes
The BQ78350-R1A device is configured to limit, through external components, and report either low or 0
ChargingVoltage() and ChargingCurrent(), based on temperature, voltage, and fault status information.
The Charge Algorithm section of the BQ78350-R1A Technical Reference Manual (SLUUBD3) details these
features and settings.
9.2.3.4 Protection
The safety features and settings of the BQ78350-R1A device are configured conservatively and are suitable for
bench evaluation. However, in many cases, users will need to change these values to meet system
requirements. These values should not be changed to exceed the safe operating limits provided by the cell
manufacturer and any industry standard.
For details on the safety features and settings, see the Protections and Permanent Fail sections of the
BQ78350-R1A Technical Reference Manual (SLUUBD3).



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