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BQ2004E_07 Datasheet, PDF (4/19 Pages) Texas Instruments – Fast-Charge ICs
bq2004E/H
TM1 TM2
TCO
LED1
LED2
DSEL
DCMD
DVEN
OSC
Display
Control
Timing
Control
Charge Control
State Machine
Discharge MOD
Control
Control
TCO
Check
LTF
Check
VTS - VSNS
VBAT - VSNS A/D
PWR
Control
EDV
Check
MCV
Check
TS
SNS
BAT
DIS
MOD
INH
VCC VSS
Figure 2. Block Diagram
BD200401.eps
The valid temperature range is VHTF < VTEMP < VLTF,
where:
VLTF = 0.4 ∗ VCC ± 30mV
VHTF = [(1/3 ∗ VLTF) + (2/3 ∗ VTCO)] ± 30mV
VTCO is the voltage presented at the TCO input pin, and is
configured by the user with a resistor divider between VCC
and ground. The allowed range is 0.2 to 0.4 ∗ VCC.
If the temperature of the battery is out of range, or the
voltage is too low, the chip enters the charge pending
state and waits for both conditions to fall within their al-
lowed limits. During the charge-pending mode, the IC
first applies a top-off charge to the battery.
The top-off charge, at the rate of 1 8 of the fast charge,
continues until the fast-charge conditions are met or the
top-off time-out period is exceeded. The IC then trickle
charges until the fast-charge conditions are met. There
is no time limit on the charge pending state; the charger
remains in this state as long as the voltage or tempera-
ture conditons are outside of the allowed limits. If the
voltage is too high, the chip goes to the battery absent
state and waits until a new charge cycle is started.
Fast charge continues until termination by one or more
of the six possible termination conditions:
n Delta temperature/delta time (∆T/∆t)
n Peak voltage detection (PVD)
n Negative delta voltage (-∆V)
n Maximum voltage
n Maximum temperature
n Maximum time
PVD and -∆V Termination
The bq2004E/H samples the voltage at the BAT pin once
every 34s. When -∆V termination is selected, if VCELL is
lower than any previously measured value by 12mV
±4mV (6mV/cell), fast charge is terminated. When PVD
termination is selected, if VCELL is lower than any previ-
ously measured value by 6mV ±2mV (3mV/cell), fast
charge is terminated. The PVD and -∆V tests are valid
in the range 0.4 ∗ VCC < VCELL < 0.8 ∗ VCC.
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