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BQ40Z50RSMT-R2 데이터시트(PDF) 29 Page - Texas Instruments

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부품명 BQ40Z50RSMT-R2
상세설명  1-Series, 2-Series, 3-Series, and 4-Series Li-Ion Battery Pack Manager
PDF  51 Pages
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제조업체  TI1 [Texas Instruments]
홈페이지  http://www.ti.com
Logo TI1 - Texas Instruments

BQ40Z50RSMT-R2 데이터시트(HTML) 29 Page - Texas Instruments

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bq40z50-R2
www.ti.com
SLUSCS4 – JUNE 2017
Product Folder Links: bq40z50-R2
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Copyright © 2017, Texas Instruments Incorporated
Typical Applications (continued)
(1)
When using the device the first time and if a 1-s or 2-s battery pack is used, then a charger or power supply should be connected to the
PACK+ terminal to prevent device shutdown. Then update the cell configuration (see the bq40z50-R2 Technical Reference Manual
[SLUUBK0] for details) before removing the charger connection.
9.2.1 Design Requirements
Table 1 shows the default settings for the main parameters. Use the bqStudio tool to update the settings to meet
the specific application or battery pack configuration requirements.
The device should be calibrated before any gauging test. Follow the procedures on the bqStudio Calibration
page to calibrate the device, and use the information on the bqStudio Chemistry page to update the match
chemistry profile to the device.
Table 1. Design Parameters
DESIGN PARAMETER
EXAMPLE
Cell Configuration
3s1p (3-series with 1 Parallel)(1)
Design Capacity
4400 mAh
Device Chemistry
1210 (LiCoO2/graphitized carbon)
Cell Overvoltage at Standard Temperature
4300 mV
Cell Undervoltage
2500 mV
Shutdown Voltage
2300 mV
Overcurrent in CHARGE Mode
6000 mA
Overcurrent in DISCHARGE Mode
–6000 mA
Short Circuit in CHARGE Mode
0.1 V/Rsense across SRP, SRN
Short Circuit in DISCHARGE Mode
0.1 V/Rsense across SRP, SRN
Safety Overvoltage
4500 mV
Cell Balancing
Disabled
Internal and External Temperature Sensor
External Temperature Sensor is used.
Undertemperature Charging
0°C
Undertemperature Discharging
0°C
BROADCAST Mode
Disabled
Battery Trip Point (BTP) with active high interrupt
Disabled
9.2.2 Detailed Design Procedure
9.2.2.1 High-Current Path
The high-current path begins at the PACK+ terminal of the battery pack. As charge current travels through the
pack, it finds its way through protection FETs, a chemical fuse, the Li-Ion cells and cell connections, and the
sense resistor, and then returns to the PACK– terminal (see Figure 22). In addition, some components are
placed across the PACK+ and PACK– terminals to reduce effects from electrostatic discharge.
9.2.2.1.1
Protection FETs
Select the N-channel charge and discharge FETs for a given application. Most portable battery applications are a
good match for the CSD17308Q3. The TI CSD17308Q3 is a 47A, 30-V device with Rds(on) of 8.2 mΩ when the
gate drive voltage is 8 V.
If a precharge FET is used, R1 is calculated to limit the precharge current to the desired rate. Be sure to account
for the power dissipation of the series resistor. The precharge current is limited to (VCHARGER – VBAT)/R1 and
maximum power dissipation is (Vcharger – Vbat)
2/R1.
The gates of all protection FETs are pulled to the source with a high-value resistor between the gate and source
to ensure they are turned off if the gate drive is open.



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