4
LT1769
1769fa
ELECTRICAL CHARACTERISTICS
TYPICAL PERFORMANCE CHARACTERISTICS
U
W
Efficiency of Figure 1 Circuit
I
BAT
(A)
0.2
EFFICIENCY (%)
100
98
96
94
92
90
88
86
84
82
80
1.0 1.8 2.2
1769 G01
0.6 1.4
V
IN
= 16.5
V
BAT
= 8.4V
CHARGER EFFICIENCY
INCLUDES LOSS
IN DIODE D3
V
CC
(V)
0
I
CC
(mA)
7.0
6.5
6.0
5.5
5.0
4.5
5
10 15 20
1769 G03
25 30
T
J
= 125°C
T
J
= 25°C
T
J
= 0°C
MAXIMUM DUTY CYCLE
I
CC
vs Duty Cycle
DUTY CYCLE (%)
010305070
I
CC
(mA)
80
1769 G02
20
40
60
8
7
6
5
4
3
2
1
0
T
J
= 125°C
T
J
= 0°C
T
J
= 25°C
V
CC
= 16V
I
CC
vs V
CC
The denotes specifications which apply over the full operating
temperature range, otherwise specifications are at T
A
= 25°C. V
CC
= 16V, V
BAT
= 8V. No load on any outputs unless otherwise noted.
Note 1: Absolute Maximum Ratings are those values beyond which the life
of a device may be impaired.
Note 2: Tested with Test Circuit 1.
Note 3: Tested with Test Circuit 2.
Note 4: A linear interpolation can be used for reference voltage
specification between 0°C and –40°C.
PARAMETER CONDITIONS MIN TYP MAX UNITS
Voltage Amplifier VA
Transconductance (Note 3) Output Current from 50µA to 500µA 0.25 0.6 1.3 mho
Output Source Current V
OVP
= V
REF
+ 10mV, V
PROG
= V
REF
+ 10mV 1.1 mA
OVP Input Bias Current VA Output Current at 0.5mA
±3 ±10 nA
VA Output Current at 0.5mA, T
A
> 90°C –15 25 nA
VA Output Current at 0.5mA, T
A
< 0°C ±15 nA
Current Limit Amplifier CL1, 8V
Input Common Mode
Turn-On Threshold 0.5mA Output Current 93 100 110 mV
Transconductance Output Current from 50µA to 500µA 0.5 1 2 mho
CLP Input Current 0.5mA Output Current, V
UV
0.4V 0.3 1 µA
CLN Input Current 0.5mA Output Current V
UV
0.4V 0.8 2 mA
5
LT1769
1769fa
TYPICAL PERFORMANCE CHARACTERISTICS
U
W
V
CC
(V)
0
V
REF
(V)
0.003
0.002
0.001
0
0.001
0.002
0.003
5
10 15 20
1769 G04
25 30
ALL TEMPERATURES
V
REF
Line Regulation I
VA
vs V
OVP
(Voltage Amplifier)
I
VA
(mA)
0
V
OVP
(mV)
4
3
2
1
0
0.8
1769 G05
0.20.1 0.3 0.5 0.7 0.9
0.4
0.6
1.0
T
J
= 125°C
T
J
= 25°C
V
C
Pin Characteristics
V
C
(V)
0 0.2 0.6 1.0 1.4 1.8
I
VC
(mA)
1.20
1.08
0.96
0.84
0.72
0.60
0.48
0.36
0.24
0.12
0
0.12
1.6
1769 G07
0.4
0.8
1.2
2.0
JUNCTION TEMPERATURE (°C)
0
DUTY CYCLE (%)
120
1769 G06
40 80
98
97
96
95
94
93
92
91
90
20 60 100 140
Maximum Duty Cycle
Reference Voltage
vs Temperature
JUNCTION TEMPERATURE
0
REFERENCE VOLTAGE (V)
2.470
2.468
2.466
2.464
2.462
2.460
2.458
25
50 75 100
1769 G09
125 150
V
PROG
(V)
0123
54
I
PROG
(mA)
6
0
–6
1769 G08
T
J
= 125°C
T
J
= 25°C
PROG Pin Characteristics
6
LT1769
1769fa
GND (Pins 1 to 3, 7, 8, 14, 15, 22, 26 to 28/Pins 4, 5, 14,
20): Ground Pins. Must be connected to expanded PC
lands for proper heat sinking. See Applications Informa-
tion section for details.
SW (Pin 4/Pin 1): Switch Output. The Schottky catch
diode must be placed with very short lead length in close
proximity to SW pin and GND.
BOOST (Pin 5/Pin 2): This pin is used to bootstrap and
drive the switch power NPN transistor to a low on-voltage
for low power dissipation. In Figure 1, V
BOOST
= V
CC
+ V
BAT
when switch is on. For lowest IC power dissipation,
connect boost diode D1 to a 3V to 6V at 30mA voltage
source (see Figure 10).
UV (Pin 6/Pin 3): Undervoltage Lockout Input. The rising
threshold is at 6.7V with a hysteresis of 0.5V. Switching
stops in undervoltage lockout. When the input supply
(normally the wall adapter output) to the IC is removed, the
UV pin must be pulled down to below 0.7V (a 5k resistor
from adapter output to GND is required) otherwise the
reverse battery current drained by the IC will be approxi-
mately 200µA instead of 3µA. Do not leave the UV pin
floating. When connected to V
IN
with no resistor divider,
the built-in 6.7V undervoltage lockout will be effective.
OVP (Pin 9/Pin 6): This is the input to amplifier VA with a
threshold of 2.465V. Typical bias current is about 3nA out
of this pin. For charging lithium-ion batteries, VA monitors
the battery voltage and reduces charging when battery
voltage reaches the preset value. If it is not used, the OVP
pin should be grounded.
CLP (Pin 10/Pin 8): This is the positive input to the input
current limit amplifier CL1. The threshold is set at 100mV.
When used to limit supply current, a filter is needed to filter
out the 200kHz switching noise.
CLN (Pin 11/Pin 7): This is the negative input to the input
current limit amplifier CL1.
COMP1 (Pin 12/Pin 9): This is the compensation node for
the input current limit amplifier CL1. At input adapter
current limit, this node rises to 1V. By forcing COMP1 low
with an external transistor, amplifier CL1 will be defeated
(no adapter current limit). COMP1 can source 200µA. If
this function is not used, the resistor and capacitor on
COMP1 pin, shown on the Figure 1 circuit, are not needed.
SENSE (Pin 13/Pin 10): Current Amplifier CA1 Input.
Sensing can be at either terminal of the battery.
SPIN (Pin 16/Pin 11): This pin is for the current amplifier
CA1 bias. It must be connected to R
S1
as shown in the 2A
Lithium Battery Charger (Figure 1).
BAT (Pin 17/Pin 12): Current Amplifier CA1 Input.
COMP2 (Pin 18): This is also a compensation node for
amplifier CL1. Voltage on this pin rises to 2.8V at input
adapter current limit and/or at constant-voltage charging.
UV
OUT
(Pin 19/Pin 13): This is an open-collector output for
undervoltage lockout status. It stays low in undervoltage
state. With an external pull-up resistor, it goes high at valid
V
CC
. Note that the base drive of the open-collector NPN
comes from CLN pin. UV
OUT
stays low only when CLN is
higher than 2V. Pull-up current should be kept under 100µA.
V
C
(Pin 20/Pin 15): This is the inner loop control signal for
the current mode PWM. Switching starts at 0.7V. In
normal operation, a higher V
C
corresponds to higher
charge current. A capacitor of at least 0.33µF to GND
filters out noise and controls the rate of soft start. To stop
switching, pull this pin low. Typical output current is 30µA.
PROG (Pin 21/Pin 16): This pin is for programming the
charge current and for system loop compensation. During
normal operation, V
PROG
stays close to 2.465V. If it is
shorted to GND switching will stop. When a microproces-
sor controlled DAC is used to program charge current, it
must be capable of sinking current at a compliance up to
2.465V.
V
CC1
,
V
CC2
,
V
CC3
(Pins 23 to 25/Pins 17 to 19): Input
Supply. For good bypass, a low ESR capacitor of 15µF or
higher is required, with the lead length kept to a minimum.
V
CC
should be between 8V and 28V and at least 3V higher
than V
BAT
. Undervoltage lockout starts and switching
stops when V
CC
goes below 7V typical. Note that there is
an internal parasitic diode from SW pin to V
CC
pin. Do not
force V
CC
below SW by more than 0.7V with battery
present. All three V
CC
pins should be shorted together
close to the pins.
PIN FUNCTIONS
UUU
(GN/FE Pin Numbers)

LT1769IGN#TRPBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Battery Management Const-C/Const-V 2A Bat Chr w/ In C Limin
Lifecycle:
New from this manufacturer.
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