LTC3559/LTC3559-1
7
3559fb
I
LOAD
(mA)
30
EFFICIENCY (%)
90
100
20
10
80
50
70
60
40
0.1 10 100 1000
3559 G28
0
1
PV
IN
= 2.7V
PV
IN
= 4.2V
V
OUT
= 1.2V
Burst Mode
OPERATION
PULSE SKIP
MODE
I
LOAD
(mA)
30
EFFICIENCY (%)
90
100
20
10
80
50
70
60
40
0.1 10 100 1000
3559 G25
0
1
Burst Mode
OPERATION
PULSE SKIP
MODE
V
OUT
= 2.5V
PV
IN
= 4.2V
Buck Regulator Enable
Thresholds vs Temperature
TYPICAL PERFORMANCE CHARACTERISTICS
Buck Regulator Effi ciency vs I
LOAD
(LTC3559) Buck Regulator Load Regulation
Buck Regulator Effi ciency vs I
LOAD
(LTC3559)
Buck Regulator Load Regulation
Buck Regulator PMOS R
DS(0N)
vs Temperature (LTC3559)
TEMPERATURE (°C)
–55
V
EN
(mV)
800
900
1000
105
3559 G22
700
600
400
–15
25
65
–35 125
5
45
85
500
1200
1100
PV
IN
= 3.8V
FALLING
RISING
TEMPERATURE (°C)
–55
400
R
DS(ON)
(mΩ)
500
700
800
900
65
1300
3559 G23
600
5
–35
85
25
–15
105
45 12
5
1000
1100
1200
PV
IN
= 2.7V
PV
IN
= 4.2V
Buck Regulator NMOS R
DS(0N)
vs Temperature (LTC3559)
TEMPERATURE (°C)
–55
400
R
DS(ON)
(mΩ)
500
700
800
900
65
1300
3559 G24
600
5
–35
85
25
–15
105
45 12
5
1000
1100
1200
PV
IN
= 2.7V
PV
IN
= 4.2V
I
LOAD
(mA)
1
2.52
V
OUT
(V)
2.56
2.60
10 100 100
0
3559 G26
2.48
2.50
2.54
2.58
2.46
2.44
Burst Mode
OPERATION
PULSE SKIP
MODE
PV
IN
= 3.8V
V
OUT
= 2.5V
PV
IN
(V)
2.7
V
OUT
(V)
2.50
2.52
2.54
3.6
4.2
3559 G27
2.48
2.46
2.44
3.0 3.3 3.9
2.56
2.58
2.60
V
OUT
= 2.5V
I
LOAD
= 200mA
Buck Regulator Line Regulation
I
LOAD
(mA)
1
1.19
V
OUT
(V)
1.20
1.21
1.22
1.23
10 100 100
0
3559 G29
1.18
1.17
1.16
1.15
1.24
1.25
PV
IN
= 3.8V
V
OUT
= 1.2V
Burst Mode
OPERATION
PULSE SKIP
MODE
PV
IN
(V)
2.7
V
OUT
(V)
1.21
1.23
1.25
3.9
3559 G30
1.19
1.17
1.20
1.22
1.24
1.18
1.16
1.15
3.0
3.3
3.6
4.2
V
OUT
= 1.2V
I
LOAD
= 200mA
Buck Regulator Line Regulation
LTC3559/LTC3559-1
8
3559fb
TYPICAL PERFORMANCE CHARACTERISTICS
Buck Regulator Start-Up Transient
Buck Regulator Pulse Skip Mode
Operation
V
OUT
500mV/DIV
EN
2V/DIV
PV
IN
= 3.8V
PULSE SKIP MODE
LOAD = 6Ω
50μs/DIV
3559 G33
INDUCTOR
CURRENT
I
L
= 200mA/DIV
Buck Regulator Burst Mode
Operation
V
OUT
20mV/DIV (AC)
SW
2V/DIV
PV
IN
= 3.8V
LOAD = 10mA
200ns/DIV
3559 G34
INDUCTOR
CURRENT
I
L
= 50mA/DIV
V
OUT
20mV/DIV (AC)
SW
2V/DIV
PV
IN
= 3.8V
LOAD = 60mA
2μs/DIV
3559 G35
INDUCTOR
CURRENT
I
L
= 60mA/DIV
Buck Regulator Transient
Response, Pulse Skip Mode
V
OUT
50mV/DIV (AC)
LOAD STEP
5mA TO 290mA
PV
IN
= 3.8V 50μs/DIV
3559 G36
INDUCTOR
CURRENT
I
L
= 200mA/DIV
Buck Regulator Transient
Response, Burst Mode Operation
V
OUT
50mV/DIV (AC)
LOAD STEP
5mA TO 290mA
PV
IN
= 3.8V 50μs/DIV
3559 G37
INDUCTOR
CURRENT
I
L
= 200mA/DIV
LTC3559/LTC3559-1
9
3559fb
GND (Pin 1): Ground, Connect to Exposed Pad (Pin 17).
BAT (Pin 2): Charge Current Output. Provides charge cur-
rent to the battery and regulates fi nal fl oat voltage to 4.2V
(LTC3559) or 4.1V (LTC3559-1).
MODE (Pin 3): MODE Pin for Buck Regulators. When held
high, both regulators are in Burst Mode operation. When
held low both regulators operate in pulse skip mode. This
pin is a high impedance input; do not fl oat.
FB1 (Pin 4): Buck 1 Feedback Voltage Pin. Receives feed-
back by a resistor divider connected across the output.
EN1 (Pin 5): Enable Input Pin for Buck 1. This pin is a high
impedance input; do not fl oat. Active high.
SW1 (Pin 6): Buck 1 Switching Node. External inductor
connects to this node.
PV
IN
(Pin 7): Input Supply Pin for Buck Regulators.
Connect to BAT. A 2.2μF decoupling capacitor to GND is
recommended.
SW2 (Pin 8): Buck 2 Switching Node. External inductor
connects to this node.
EN2 (Pin 9): Enable Input Pin for Buck 2. This pin is a high
impedance input; do not fl oat. Active high.
FB2 (Pin 10): Buck 2 Feedback Voltage Pin. Receives feed-
back by a resistor divider connected across the output.
SUSP (Pin 11): Suspend Battery Charging Operation.
A voltage greater than 1.2V on this pin puts the battery
charger into suspend mode, disables the charger and
resets the termination timer. A weak pull-down current is
internally applied to this pin to ensure it is low at power
up when the input is not being driven externally.
HPWR (Pin 12): High Current Battery Charging Enabled.
A voltage greater than 1.2V at this pin programs the
BAT pin current at 100% of the maximum programmed
charge current. A voltage less than 0.4V sets the BAT pin
current to 20% of the maximum programmed charge
current. When used with a 1.74k PROG resistor, this pin
can toggle between low power and high power modes per
USB specifi cation. A weak pull-down current is internally
applied to this pin to ensure it is low at power up when
the input is not being driven externally.
NTC (Pin 13): Input to the NTC Thermistor Monitoring
Circuit. The NTC pin connects to a negative temperature
coeffi cient thermistor which is typically co-packaged with
the battery pack to determine if the battery is too hot or
too cold to charge. If the battery temperature is out of
range, charging is paused until the battery temperature
re-enters the valid range. A low drift bias resistor is re-
quired from V
CC
to NTC and a thermistor is required from
NTC to ground. To disable the NTC function, the NTC pin
should be grounded.
PROG (Pin 14): Charge Current Program and Charge
Current Monitor Pin. Charge current is programmed by
connecting a resistor from PROG to ground. When charg-
ing in constant-current mode, the PROG pin servos to 1V
if the HPWR pin is pulled high, or 200mV if the HPWR pin
is pulled low. The voltage on this pin always represents
the battery current through the following formula:
I
PROG
R
BAT
PROG
= •800
CHRG (Pin 15): Open-Drain Charge Status Output. The
CHRG pin indicates the status of the battery charger. Four
possible states are represented by CHRG: charging, not
charging (i.e., the charge current is less than 1/10th of the
full-scale charge current), unresponsive battery (i.e., the
battery voltage remains below 2.9V after 1/2 hour of charg-
ing) and battery temperature out of range. CHRG requires
a pull-up resistor and/or LED to provide indication.
V
CC
(Pin 16): Battery Charger Input. A 1μF decoupling
capacitor to GND is recommended.
Exposed Pad (Pin 17): Ground. The Exposed Pad must
be soldered to PCB ground to provide electrical contact
and rated thermal performance.
PIN FUNCTIONS

LTC3559EUD#TRPBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Battery Management Low Power USB Charger, Dual Buck Regulator in 3x3 DFN
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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