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BQ34Z100-R2 数据表(PDF) 17 Page - Texas Instruments

部件名 BQ34Z100-R2
功能描述  BQ34Z100-R2 Wide Range Fuel Gauge with Impedance Track™ Technology
PDF  27 Pages
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制造商  TI [Texas Instruments]
网页  http://www.ti.com
标志 TI - Texas Instruments

BQ34Z100-R2 数据表(HTML) 17 Page - Texas Instruments

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9 Power Supply Recommendations
Power supply requirements for the BQ34Z100-R2 are simplified due to the presence of the internal LDO voltage
regulation. The REGIN pin accepts any voltage level between 2.7 V and 4.5 V, which is optimum for a single-cell
Li-ion application. For higher battery voltage applications, a simple pre-regulator can be provided to power the
bq34Z100-R2 and any optional LEDs. Decoupling the REGIN pin should be done with a 0.1-µF 10% ceramic
X5R capacitor placed close to the device. While the pre-regulator circuit is not critical, special attention should be
paid to its quiescent current and power dissipation. The input voltage should handle the maximum battery stack
voltage. The output voltage can be centered within the 2.7-V to 4.5-V range as recommended for the REGIN pin.
For high stack count applications, a commercially available LDO is often the best quality solution, but comes with
a cost tradeoff. To lower the BOM cost, the following approaches are recommended.
In Figure 9-1, Q1 is used to drop the battery stack voltage to roughly 4 V to power the BQ34Z100-R2 REGIN
pin and also to feed the anode of any LEDs used in the application. To avoid unwanted quiescent current
consumption, R1 should be set as high as is practical. It is recommended to use a low-current Zener diode.
From Battery Stack +
Q1
R1
D1
5.6 V
~4 V
To REGIN/LED(s)
Figure 9-1. Q1 Dropping Battery Stack Voltage to 4 V
Alternatively, if the range of a high-voltage battery stack can be well defined, a simple source follower based on
a resistive divider can be used to lower the BOM cost and the quiescent current. For example:
From Battery Stack +
Q1
R1
R2
2.7 V ~ 4.5 V
To REGIN /LED(s)
Figure 9-2. Source Follower on a Resistive Divider
Power dissipation of the linear pre-regulator may become an important design decision when multiple LEDs
are employed in the application. For example, the BQ34Z100-R2 EVM uses a pair of FETs in parallel to
inexpensively dissipate enough power for 10-LED evaluation.
www.ti.com
BQ34Z100-R2
SLUSF37 – DECEMBER 2022
Copyright © 2022 Texas Instruments Incorporated
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Product Folder Links: BQ34Z100-R2



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