MAX17005A/MAX17006A/MAX17015A
1.2MHz, Low-Cost,
High-Performance Chargers
10 ______________________________________________________________________________________
BATT
ADAPTER
BST
CSSP CSSN
DHI
LX
DLO
PGND
RS1
15mΩ
CSIN
CSIP
BATT
BATTERY
CC
VCTL
ISET
LDO
AGND
IINP
V
AA
ADAPTER
PWM SIGNAL
R1
22.6kΩ
C4
0.68μF
C2
0.1μF
C5
0.01μF
R2
R3
R4
200kΩ
R5
3kΩ
R6
200kΩ
C
IN
C
OUT
RS2
10mΩ
N1
N2
N3
N4
Q1b
C3
1μF
C1
4.7μF
R7
R8
ONLY FOR MAX17015A
L1
SYSTEM LOAD
D1
C6
1μF
C
IN
= 2 x 4.7μF
C
OUT
= 4.7μF
L1 = 2μH
R9
2MΩ
Q1a
DCIN
C7
0.1μF
R
ACIN1
R
ACIN2
ACIN
ACOK
LDO
10kΩ
MAX17005A
MAX17006A
MAX17015A
Figure 1. Typical Operating Circuit
Detailed Description
The MAX17005A/MAX17006A/MAX17015A include all
the functions necessary to charge Li+, NiMH, and NiCd
batteries. An all n-channel synchronous-rectified step-
down DC-DC converter is used to implement a preci-
sion constant-current, constant-voltage charger. The
charge current and input current-limit sense amplifiers
have low-input offset errors (250μV typ), allowing the
use of small-valued sense resistors.
The MAX17005A/MAX17006A/MAX17015A use a new
thermally optimized high-frequency architecture. With this
new architecture, the switching frequency is adjusted to
control the power dissipation in the high-side
MOSFET. Benefits of the new architecture include:
reduced output capacitance and inductance, resulting in
smaller printed-circuit board (PCB) area and lower cost.
MAX17005A/MAX17006A/MAX17015A
1.2MHz, Low-Cost,
High-Performance Chargers
______________________________________________________________________________________ 11
CSA
A = 17.5V/V
CSSN
CSSP
Gm =
2.8μA/mV
IINP
GMS
CSIN
CSIP
GMI
ISET
26mV
CHARGER
SHUTDOWN
CELL
SELECT
LOGIC
BATT
V
AA
VCTL
GMV
CC
LOWEST
VOLTAGE
CLAMP
CSI
60mV
PWM
FILTER
DHI
DLO
PGND
LX
BST
LEVEL
SHIFT
HIGH-SIDE
DRIVER
LOW-SIDE
DRIVER
CCMP
IMIN
IMAX
IZX
10mV
OVP
DC-DC
CONVERTER
110mV
10mV
BDIV
BDIV
VCTL + 100mV
5.4V LINEAR
REGULATOR
4.2V
REFERENCE
DCIN
LDO
V
AA
POWER
FAIL
LDO
AGND
BATT
V
AA
/2
ACOK
LDO
ACIN
MAX17005A
MAX17006A
MAX17015A
CSA
A = 17.5V/V
Figure 2. Functional Diagram
The MAX17005A/MAX17006A/MAX17015A feature a
voltage-regulation loop (CCV) and two current-regula-
tion loops (CCI and CCS). The loops operate indepen-
dently of each other. The CCV voltage-regulation loop
monitors BATT to ensure that its voltage never exceeds
the voltage set by VCTL. The CCI battery charge cur-
rent-regulation loop monitors current delivered to BATT
to ensure that it never exceeds the current limit set by
ISET. The charge current-regulation loop is in control as
long as the battery voltage is below the set point. When
the battery voltage reaches its set point, the voltage-
regulation loop takes control and maintains the battery
voltage at the set point. A third loop (CCS) takes control
and reduces the charge current when the adapter cur-
rent exceeds the input current limit.
The MAX17005A/MAX17006A/MAX17015A have single-
point compensation. The two current loops are internal-
ly compensated while the voltage loop is compensated
with a series RC network at CC pin. See the
CC Loop
Compensation
section for the resistor and capacitor
selection. A functional diagram is shown in Figure 2.
MAX17005A/MAX17006A/MAX17015A
1.2MHz, Low-Cost,
High-Performance Chargers
12 ______________________________________________________________________________________
Setting Charge Voltage
The VCTL input adjusts the battery-output voltage,
V
BATT
, and determines the number of cells. For 3- and
4-cell applications, use the MAX17005A; for 2- and
3-cell applications, use the MAX17006A. Use the
MAX17015A to adjust the cell number and set the cell
voltage with a resistive voltage-divider from the output.
Based on the version of the part, the number of cells
and the level of VCTL should be set as in Table 1:
The MAX17005A/MAX17006A support from 4.2V/cell to
4.4V/cell, whereas the MAX17015A supports minimum
2.1V. The maximum voltage is determined with the
dropout performance of IC. When the required voltage
falls outside the range available with the MAX17005A or
MAX17006A, the MAX17015A should be used.
The charge-voltage regulation for the MAX17005A and
MAX17006A is calculated with the following equations:
for 3-cell selection of MAX17005A and MAX17006A,
4.2V > VCTL > 2.4V:
for 2- or 4-cell selection of MAX17006A or MAX17005A,
respectively, 0 < VCTL < 1.8V. Connect VCTL to GND
or to V
AA
for default 4.2V/cell battery-voltage setting.
For the MAX17015A, connect VCTL to GND to set the FB
regulation point to 2.1V. The charge-voltage regulation is
calculated with the following equation:
There are two constraints in choosing R7 and R8. The
resistors cannot be too small since they discharge the
battery, and they cannot be too large because FB pin
consumes less than 1μA of input bias current. Pick R8
to be approximately 10kΩ and then calculate R7.
FB regulation error (±0.5% max) and the tolerance of R7
and R8 both contribute to the error on the battery volt-
age. Use 0.1% feedback resistors for best accuracy.
Setting Charge Current
The voltage at ISET determines the voltage across cur-
rent-sense resistor RS2. ISET can accept either analog
or digital inputs. The full-scale differential voltage
between CSIP and CSIN is 80mV (8A for RS2 = 10mΩ)
for the analog input, and 60mV (6A for RS2 = 10mΩ) for
the digital PWM input.
When the MAX17005A/MAX17006A/MAX17015A power
up and the charger is ready, if there is no clock edge
within 20ms, the circuit assumes ISET is an analog
input, and disables the PWM filter block. To configure
the charge current, force the voltage on ISET according
to the following equation:
The input range for ISET is from 0 to V
AA
/2. To shut
down the charger, pull ISET below 26mV.
If there is a clock edge on ISET within 20ms, the PWM
filter is enabled and ISET accepts digital PWM input.
The PWM filter has a DAC with 8-bit resolution that cor-
responds to equivalent V
CSIP-CSIN
steps.
I
mV
RS
V
V
CHG
ISET
AA
240
2
VV
RR
R
CHG REG FB SETPOINT__
+87
8
VV
V
CELL
VCTL
=+42
6
.
VV
VV
CELL
VCTL
=+42
42
6
.
.-
VERSION NO. OF CELLS LEVEL
MAX17005A 3 2.4V < VCTL < 4.2V
MAX17005A 4 0 < VCTL < 1.8V
MAX17006A 2 0 < VCTL < 1.8V
MAX17006A 3 2.4V < VCTL < 4.2V
MAX17015A Sets FB VCTL = GND or VCTL = V
AA
Table 1. Cell Configuration
CSIN
FB
BATTERY
C
OUT
R7
R8
MAX17015A
Figure 3. The MAX17015A Charge-Voltage Regulation Feedback
Network

MAX17005AETP+T

Mfr. #:
Manufacturer:
Maxim Integrated
Description:
IC BATT CHARGER 1.2MHZ 20TQFN
Lifecycle:
New from this manufacturer.
Delivery:
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