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BQ24735 参数 Datasheet PDF下载

BQ24735图片预览
型号: BQ24735
PDF下载: 下载PDF文件 查看货源
内容描述: 1-4节锂电池SMBus充电控制器与N通道功率MOSFET选择支持睿频加速模式 [1-4 Cell Li Battery SMBus Charge Controller for Supporting Turbo Boost Mode with N-Channel Power MOSFET Selector]
分类和应用: 电池控制器
文件页数/大小: 42 页 / 1517 K
品牌: TI [ TEXAS INSTRUMENTS ]
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bq24735  
SLUSAK9 SEPTEMBER 2011  
www.ti.com  
Adapter Detect and ACOK Output  
The bq24735 uses an ACOK comparator to determine the source of power on VCC pin, either from the battery or  
adapter. An external resistor voltage divider attenuates the adapter voltage before it goes to ACDET. The  
adapter detect threshold should typically be programmed to a value greater than the maximum battery voltage,  
but lower than the maximum allowed adapter voltage.  
The open drain ACOK output requires external pull up resistor to system digital rail for a high level. It can be  
pulled to external rail under the following conditions:  
V
VCC > UVLO;  
2.4V < VACDET < 3.15V (not in ACOVP condition, nor in low input voltage condition);  
VCCVSRN > 275mV (not in sleep mode);  
V
The first time after IC POR always gives 150ms ACOK rising edge delay no matter what the ChargeOption  
register value is. Only after the ACDET pin voltage is pulled below 2.4V (but not below 0.6V, which resets the IC  
and forces the next ACOK rising edge deglitch time to be 1.3s) and the ACFET has been turned off at least one  
time, the 1.3s (or 150ms) delay time is effective for the next time the ACDET pin voltage goes above 2.4V. To  
change this option, the VCC pin voltage must above UVLO, and the ACDET pin voltage must be above 0.6V  
which enables the IC SMBus communication and sets ChargeOption() bit[15] to 0 which sets the next ACOK  
rising deglitch time to be 150ms. The purpose of the default 1.3s rising edge deglitch time is to turn off the  
ACFET long enough when the ACDET pin is pulled below 2.4V by excessive system current, such as over  
current or short circuit.  
Adapter Over Voltage (ACOVP)  
When the ACDET pin voltage is higher than 3.15V, it is considered as adapter over voltage. ACOK will be pulled  
low, and charge will be disabled. ACFET will be turned off to disconnect the high voltage adapter to system  
during ACOVP. BATFET will be turned on if turns on conditions are valid. See the System Power Selection  
section for details.  
When ACDET pin voltage falls below 3.15V and above 2.4V, it is considered as adapter voltage returns back to  
normal voltage. ACOK will be pulled high by external pull up resistor. BATFET will be turned off and ACFET and  
RBFET will be turned on to power the system from adapter. The charge can be resumed if enable charge  
conditions are valid. See the Enable and Disable Charging section for details.  
System Power Selection  
The bq24735 automatically switches adapter or battery power to system. The battery is connected to system at  
POR if battery exists. The battery is disconnected from system and the adapter is connected to system after  
default 150ms delay (first time, the next time default is 1.3s and can be changed to 150ms) if ACOK goes HIGH.  
An automatic break-before-make logic prevents shoot-through currents when the selectors switch.  
The ACDRV drives a pair of common-source (CMSRC) n-channel power MOSFETs (ACFET and RBFET)  
between adapter and ACP (see Figure 1 for details). The ACFET separates adapter from battery or system, and  
provides a limited di/dt when plugging in adapter by controlling the ACFET turn-on time. Meanwhile it protects  
adapter when system or battery is shorted. The RBFET provides negative input voltage protection and battery  
discharge protection when adapter is shorted to ground, and minimizes system power dissipation with its low  
RDS(on) compared to a Schottky diode.  
When the adapter is not present, ACDRV is pulled to CMSRC to keep ACFET and RBFET off, disconnecting  
adapter from system. BATDRV stays at VSRN + 6V to connect battery to system if all the following conditions are  
valid:  
V
V
V
VCC > UVLO;  
SRN > UVLO;  
ACN < 200mV above VSRN (ACN_SRN comparator);  
Approximately 150ms (first time; the next time default is 1.3s and can be changed to 150ms) after the adapter is  
detected (ACDET pin voltage between 2.4V and 3.15V), the system power source begins to switch from battery  
to adapter if all the following conditions are valid:  
Not in LEARN mode or in LEARN mode and VSRN is lower than battery depletion threshold;  
ACOK high  
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