MAX8808XETA+T Maxim Integrated Products, MAX8808XETA+T Datasheet - Page 8

IC CHARGER LI+ SGLL CCCV 8TDFN

MAX8808XETA+T

Manufacturer Part Number
MAX8808XETA+T
Description
IC CHARGER LI+ SGLL CCCV 8TDFN
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX8808XETA+T

Function
Charge Management
Battery Type
Lithium-Ion (Li-Ion)
Voltage - Supply
0 V ~ 15 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-TDFN Exposed Pad
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The MAX8808X/MAX8808Y/MAX8808Z linear chargers
contain an internal linear regulator to supply the power
for the IC. Bypass VL to GND with a 0.47µF ceramic
capacitor. VL is regulated to 3.0V whenever the input
voltage is above the battery voltage.
CHG is an open-drain output that indicates charge sta-
tus.
stages of operation. CHG is suitable for driving a
charge-indication LED. If the MAX8808X/MAX8808Y/
MAX8808Z is used in conjunction with a µP, a pullup
resistor to the logic I/O voltage allows CHG to indicate
charge status to the µP instead of driving an LED.
The soft-start algorithm activates when entering fast-
charge mode. In the MAX8808X, when the prequalifica-
tion state is complete (V
charging current ramps up in 1ms to the full charging
current. This reduces the inrush current on the input
supply. Note that the MAX8808Y and MAX8808Z do not
have a prequalification state and enter soft-start directly
after being enabled.
The maximum charging current is programmed by an
external resistor connected from ISET to GND (R
1A Linear Li+ Battery Chargers with Integrated Pass
FET and Thermal Regulation in 2mm x 2mm TDFN
Table
X = Don’t care.
— = Prequal not applicable to MAX8808Y and MAX8808Z.
*I
8
FAST
MAX8808X
_______________________________________________________________________________________
Table
High
Low
Low
Low
Low
EN
is reduced as necessary to prevent the die temperature from exceeding +115°C.
X
1. CHG States
1 describes the state of CHG during different
MAX8808Y
Applications Information
VL Internal Voltage Regulator
CHG Charge-Indicator Output
High
High
High
Low
EN
X
Charge-Current Selection
BATT
MAX8808Z
High
Low
Low
Low
EN
X
exceeds +2.5V), the
4.25V ≤ V
4.25V ≤ V
4.25V ≤ V
Soft-Start
≤V
>7V
V
BATT
X
IN
ISET
IN
IN
IN
≤ 7V
≤ 7V
≤ 7V
).
V
<2.4V
≥2.5V
≥V
4.2V
Calculate R
where I
can be used to monitor the fast-charge current level.
The output current from ISET is 1.08mA per amp of
charging current. The output voltage at ISET is propor-
tional to the charging current:
The voltage at ISET is nominally 1.4V at the selected
fast-charge current, and falls with charging current as
the cell becomes fully charged or as the thermal-regu-
lation circuitry activates.
Connect a ceramic capacitor from BATT to GND for
proper stability. Use a 1µF X5R ceramic capacitor for
most applications. Connect a 1µF ceramic capacitor
from IN to GND. Use a larger input bypass capacitor
for high charging currents to reduce supply noise.
Connect a 0.47µF ceramic capacitor from VL to GND.
The MAX8808X/MAX8808Y/MAX8808Z are available in
a thermally enhanced TDFN package with exposed
paddle. Connect the exposed paddle to a large cop-
per ground plane to provide a thermal contact
between the device and the circuit board for increased
power dissipation. The exposed paddle transfers heat
away from the device, allowing the ICs to charge the
battery with maximum current, while minimizing the
increase in die temperature.
BATT
X
X
IN
FASTCHG
<10% of I
10% of I
ISET
V
I
I
ISET
FAST
BATT
R
0
0
0
as follows:
ISET
is in Amps and R
FAST
*
FAST
= (I
= 1302V / I
CHARGE
Thermal Considerations
High-Impedance
High-Impedance
High-Impedance
High-Impedance
Capacitor Selection
x R
CHG
Low
Low
FASTCHG
ISET
ISET
) / 930
is in Ohms. ISET
Fast-Charge
Shutdown
Shutdown
Disabled
Prequal
STATE
Top-off

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