参数资料
型号: MAX8606ETD+T
厂商: Maxim Integrated Products
文件页数: 6/14页
文件大小: 0K
描述: IC BATT CHRGR LI+ 1CELL 14TDFN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 1
功能: 充电管理
电池化学: 锂离子(Li-Ion)、锂聚合物(Li-Pol)
电源电压: 4.25 V ~ 5.5 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 14-WFDFN 裸露焊盘
供应商设备封装: 14-TDFN-EP(3x3)
包装: 标准包装
其它名称: MAX8606ETD+TDKR
USB/AC Adapter, Li+ Linear Battery Charger
with Integrated 50m Ω Battery Switch in TDFN
Pin Description
PIN
1, 2
3
4
5
6
7
8
9
10
11
12
13, 14
NAME
BAT
IN
VL
THM
CHG
POK
TMR
EN2
EN1
GND
SETI
SYS
EP
FUNCTION
Battery Connection. The IC delivers charging current and monitors battery voltage using BAT. Connect
both BAT outputs together externally. During suspend mode, BAT is internally connected to SYS.
Supply Voltage Input. Connect IN to a 4.25V to 5.5V supply. Charging is suspended if V IN exceeds
6V. Bypass IN to GND with a 4.7μF or larger ceramic capacitor.
+3.3V Output Voltage and Logic Supply. VL is regulated to +3.3V and is capable of sourcing 500μA
to provide power for external circuits. Bypass VL to GND with a 0.1μF or larger ceramic capacitor. VL
is internally pulled to GND during suspend mode.
Thermistor Input. Connect a 10k Ω NTC thermistor from THM to GND in close proximity to the battery
to monitor the battery temperature. The IC suspends charging when the temperature is outside the
hot and cold limits. Connect THM to GND to disable the thermistor monitoring function.
Charging Status Output. CHG is an open-drain output that goes low when the battery is charging.
CHG goes high impedance when the charge current drops below 50mA (typ) and the battery voltage
is 4.2V (typ). CHG is high impedance when the IC is in suspend mode.
Power-OK Monitor. POK is an open-drain output that pulls low when a valid charging source is detected at IN.
Timer-Selection Input. Drive TMR high to enable the microprocessor mode where the charge times
are determined by an external device. Drive TMR low to use the internal prequal, fast-charge, and
top-off timers.
Charge-Current Selection Input. Drive EN_ high or low to select the charge current or to put the
MAX8606 into suspend mode (see Table 1).
Charge-Current Selection Input. Drive EN_ high or low to select the charge current or to put the
MAX8606 into suspend mode (see Table 1).
Ground. Connect directly to exposed paddle under the IC.
Charge-Current Programming Input. Connect a resistor from SETI to GND to set the maximum
charging current. R SETI must be between 17.68k Ω and 35.36k Ω .
System Supply Output. SYS delivers up to 1A RMS to power an external system. Bypass SYS to GND
with a 4.7μF or larger ceramic capacitor. SYS is connected to BAT through an internal 50m Ω switch
when V BAT exceeds 3.5V or when the MAX8606 is in suspend mode.
Exposed Paddle. Connect to GND under the IC. Connect to a large ground plane to improve power
dissipation.
Detailed Description
The MAX8606 charger uses current, voltage, and ther-
mal control loops to charge and protect a single Li+
battery cell. It can start the system even when the bat-
tery is in deep saturation. The MAX8606 provides a
SYS output that supplies the external system with a
minimum 3.5V at 1A.
Two active-low enable inputs ( EN1 and EN2 ) are sup-
plied to set the SYS and charging current limits. During
prequal and fast-charge modes, the CHG output status
flag is pulled low. As the battery voltage approaches
4.2V, the charging current is reduced. When the charg-
ing current drops below 50mA and the battery voltage
equals 4.2V, the CHG output goes high impedance,
signaling a full battery. At any time during charging, if
both EN1 and EN2 are driven high, the charger enters
suspend mode, charging stops, and CHG goes high
impedance.
The MAX8606 contains an internal timer to measure the
prequal, fast-charge, and top-off charge time. If the
battery voltage has not risen above 3V after 30 minutes
or has not completed fast-charge in 8 hours, the charg-
er goes into a fault state where the charging is
6
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