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PDF MAX17003A Data sheet ( Hoja de datos )

Número de pieza MAX17003A
Descripción Main PowerSupply Controllers
Fabricantes Maxim Integrated 
Logotipo Maxim Integrated Logotipo



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19-0837; Rev 0; 6/07
EVAALVUAAILTAIOBNLEKIT
High-Efficiency, Quad-Output, Main Power-
Supply Controllers for Notebook Computers
General Description
The MAX17003A/MAX17004A are dual step-down,
switch-mode, power-supply (SMPS) controllers with
synchronous rectification, intended for main 5V/3.3V
power generation in battery-powered systems. Fixed-
frequency operation with optimal interleaving minimizes
input ripple current from the lowest input voltages up to
the 26V maximum input. Optimal 40/60 interleaving
allows the input voltage to go down to 8.3V before duty-
cycle overlap occurs, compared to 180° out-of-phase
regulators where the duty-cycle overlap occurs when
the input drops below 10V.
Output current sensing provides peak current-limit pro-
tection, using either an accurate sense resistor or using
lossless inductor DCR current sensing. A low-noise
mode maintains high light-load efficiency while keeping
the switching frequency out of the audible range.
An internal, fixed 5V, 100mA linear regulator powers up
the MAX17003A/MAX17004A and their gate drivers, as
well as external keep-alive loads. When the main PWM
regulator is in regulation, an automatic bootstrap switch
bypasses the internal linear regulator, providing current
up to 200mA. An additional adjustable linear-regulator
driver with an external pnp transistor can be used with a
secondary winding to provide a 12V supply, or powered
directly from the main outputs to generate low-voltage
outputs as low as 1V.
Independent enable controls and power-good signals
allow flexible power sequencing. Voltage soft-start
gradually ramps up the output voltage and reduces
inrush current, while soft-discharge gradually decrease
the output voltage, preventing negative voltage dips.
The MAX17003A/MAX17004A feature output undervolt-
age and thermal-fault protection. The MAX17003A also
includes output overvoltage-fault protection.
The MAX17003A/MAX17004A are available in a 32-pin,
5mm x 5mm thin QFN package. The exposed backside
pad improves thermal characteristics for demanding
linear keep-alive applications.
Applications
Main Power Supplies
2 to 4 Li+ Cell Battery-Powered Devices
Notebook and Subnotebook Computers
PDAs and Mobile Communicators
Features
o Fixed-Frequency, Current-Mode Control
o 40/60 Optimal Interleaving
o Internal BST Switches
o Internal 5V, 100mA Linear Regulator
o Auxiliary Linear-Regulator Driver (12V or
Adjustable Down to 1V)
o Dual Mode™ Feedback—3.3V/5V Fixed or
Adjustable Output Voltages
o 200kHz/300kHz/500kHz Switching Frequency
o Undervoltage and Thermal-Fault Protection
o Overvoltage-Fault Protection (MAX17003A Only)
o 6V to 26V Input Range
o 2V ±0.75% Reference Output
o Independent Enable Inputs and Power-Good
Outputs
o Soft-Start and Soft-Discharge (Voltage Ramp)
o 8μA (typ) Shutdown Current
Ordering Information
PART
TEMP
RANGE
MAX17003AETJ+
-40°C to
+85°C
MAX17004AETJ+
-40°C to
+85°C
+Denotes a lead-free package.
PIN-PACKAGE
32 Thin QFN
(5mm x 5mm)
32 Thin QFN
(5mm x 5mm)
PKG
CODE
T3255-4
T3255-4
Pin Configuration
TOP VIEW
24 23 22 21 20 19 18 17
DH3 25
16 DH5
BST3 26
15 BST5
DSCHG3 27
14 DSCHG5
CSL3 28
CSH3 29
FB3 30
MAX17003A
MAX17004A
13 CSL5
12 CSH5
11 FB5
FBA 31
OUTA 32
+
10 SKIP
9 FSEL
1 2345678
Dual Mode is a trademark of Maxim Integrated Products, Inc.
THIN QFN
5mm x 5mm
________________________________________________________________ Maxim Integrated Products 1
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642,
or visit Maxim’s website at www.maxim-ic.com.

1 page




MAX17003A pdf
High-Efficiency, Quad-Output, Main Power-
Supply Controllers for Notebook Computers
ELECTRICAL CHARACTERISTICS (continued)
(Circuit of Figure 1, VIN = 12V, both SMPS enabled, FSEL = REF, SKIP = GND, ILIM = LDO5, FBA = LDO5, IREF = ILDO5 = IOUTA =
no load, TA = 0°C to +85°C, unless otherwise noted. Typical values are at TA = +25°C.)
PARAMETER
SYMBOL
CONDITIONS
MIN TYP MAX UNITS
PGDALL Lower Trip Threshold
With respect to either SMPS error-comparator
threshold, hysteresis = 1% (typ)
-12
-10
-8
%
PGDALL Propagation Delay
PGDALL Output Low Voltage
PGDALL Leakage Current
Thermal-Shutdown Threshold
GATE DRIVERS
DH_ Gate-Driver On-Resistance
DL_ Gate-Driver On-Resistance
tPGDALL
IPGDALL
tSHDN
Falling edge, 50mV overdrive
Rising edge, 50mV overdrive
ISINK = 1mA
High state, PGDALL forced to 5.5V
Hysteresis = 15°C
RDH BST_ - LX_ forced to 5V
DL_, high state
RDL DL_, low state
10
1
+160
0.4
1
1.3 5
1.7 5
0.6 3
µs
V
µA
°C
Ω
Ω
DH_ Gate-Driver
Source/Sink Current
DL_ Gate-Driver Source Current
DL_ Gate-Driver Sink Current
Dead Time
Internal BST_ Switch
On-Resistance
BST_ Leakage Current
INPUTS AND OUTPUTS
SHDN Input Trip Level
ONA Logic Input Voltage
ON3, ON5 Input Voltage
DSCHG_ Output Low Voltage
DSCHG_ Leakage Current
Tri-Level Input Logic
Input Leakage Current
IDH
IDL
IDL (SINK)
tDEAD
DH_ forced to 2.5V, BST_ - LX_
forced to 5V
DL_ forced to 2.5V
DL_ forced to 2.5V
DH_ low to DL_ high
DL_ low to DH_ high
RBST
IBST = 10mA
VBST_ = 26V
Rising trip level
Falling trip level
Hysteresis = 600mV High
(typ)
Low
SMPS off level/clear fault level
Delay start level
SMPS on level
ISINK = 1mA
High state, DSCHG_ forced to 5.5V
High
SKIP, FSEL
REF
GND
SKIP, FSEL forced to GND or LDO5
SHDN forced to GND or 26V
2
1.7
3.3
15 45
15 44
5
2 20
1.1 1.6
0.96 1
2.4
1.9
2.4
VLDO5
- 0.4
1.65
-1
-1
2.2
1.04
0.8
0.8
2.1
0.4
1
2.35
0.5
+1
+1
A
A
A
ns
Ω
µA
V
V
V
V
µA
V
µA
_______________________________________________________________________________________ 5

5 Page





MAX17003A arduino
High-Efficiency, Quad-Output, Main Power-
Supply Controllers for Notebook Computers
Typical Operating Characteristics (continued)
(Circuit of Figure 1, VIN = 12V, SKIP = GND, FSEL = REF, TA = +25°C, unless otherwise noted.)
3.3V
0
3.35V
3.25V
2A
0
12V
0
SKIP TRANSITION
MAX17003A/MAX17004A toc22
A
B
C
D
OUTPUT OVERVOLTAGE
FAULT PROTECTION (MAX17003A ONLY)
MAX17003A/MAX17004A toc23
5V
3.3V A
0B
5V C
0
5V
0D
5V
0E
40μs/div
A. SKIP, 5V/div
B. 3.3V OUTPUT (VOUT3),
100mV/div
0.5A LOAD
C. INDUCTOR CURRENT,
2A/div
D. LX3, 10V/div
100μs/div
A. 5V OUTPUT (VOUT5), 2V/div
B. 3.3V OUTPUT (VOUT3), 2V/div
C. DL3, 5V/div
RLOAD5 = 5Ω
D. DL5, 5V/div
E. PGDALL, 5V/div
OUTPUT UNDERVOLTAGE
(SHORT-CIRCUIT) FAULT PROTECTION
MAX17003/MAX17004 toc24
3.3V
A
0
5V
B
5V
0C
5V
0D
4ms/div
A. 3.3V OUTPUT (VOUT3), 2V/div C. PGDALL, 5V/div
B. 5V OUTPUT (VOUT5), 2V/div D. DL3, 5V/div
LD05 LOAD TRANSIENT
MAX17003A/MAX17004A toc25
5.00V
4.95V
100mA
0
20μs/div
A. LDO5 OUTPUT, 50mV/div
B. LOAD CURRENT, 50mA/div
A
B
5V
0
15.0V
14.5V
LDOA LOAD TRANSIENT
MAX17003A/MAX17004A toc26
A
B
12.0V
11.9V
C
20μs/div
A. LOAD FET GATE, 5V/div C. AUX LDO OUTPUT (VOUTA),
B. AUX LDO INPUT, 0.5V/div 0.1V/div
0 TO 150mA LOAD TRANSIENT
______________________________________________________________________________________ 11

11 Page







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